Philips LC4.9A AA Plasma TV Service Manual
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Colour Television Chassis
LC4.9A
AA
For manual LGE plasma panel see: 3122 785 15590
E_14710_000.eps
240604
Contents Page
Technical Specifications, Connections, and Chassis
Safety Instructions, Warnings, and Notes
Service Modes, Error Codes, and Fault Finding 14
Block Diagrams, Testpoint Overviews, and
Testpoint Overview SSB (Top Side)
Circuit Diagrams and PWB Layouts
Diagram PWB
SSB: Audio Delay Line (Reserved)
©
Copyright 2005 Philips Consumer Electronics B.V. Eindhoven, The Netherlands.
All rights reserved. No part of this publication may be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, or otherwise without the prior permission of Philips.
Published by BB 0566 TV Service Printed in the Netherlands
Contents Page
Circuit Descriptions, Abbreviation List, and IC Data
Subject to modification EN 3122 785 15450
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LC4.9A AA Technical Specifications, Connections, and Chassis Overview
1.
Technical Specifications, Connections, and Chassis Overview
Index of this chapter:
Notes:
• Figures can deviate due to the different set executions.
• Specifications are indicative (subject to change).
Power consumption
- Normal operation (W)
- Stand-by (W)
Dimensions (WxHxD cm)
Weight (kg)
:
≈ 450
: < 2
: 42 inch: 124x68x10.4
: 50 in.:141.5x78x10.4
: 42 inch: 38
: 50 inch: 50
1.1
Technical Specifications
1.1.1
Vision
Display type
Screen size
Screen size
Resolution (HxV pixels)
Contrast ratio
- 42PF7320 /79 /93 /98
- 50PF7320 /79 /93 /98
Light output (cd/m
2
)
Viewing angle (HxV degrees)
Tuning system
TV Colour systems
Video playback
Supported computer formats
Supported video formats
Presets/channels
Tuner bands
: Plasma
: 42” (107 cm), 16:9
: 50” (127 cm), 16:9
: 42 inch: 852 x 480
:
: 50 inch: 1366 x 768
: 13,000:1
: 10,000:1
: 1500
: 160x160
: PLL
: PAL B/G, D/K, I
: SECAM B/G, D/K, L/L’
: PAL B/G; SECAM L/L’
: NTSC M/N 3.58, 4.43
: VGA (640x480)
: VGA (720x400)
: VGA (720x480)
: MAC (640x480)
: MAC (832x624)
: SVGA (800x600)
: XVGA (1024x768)
: WXGA (1280x768)
: WXGA (1280x960)
: WXGA (1280x1024)
: 640x480i - 1fH
: 720x576i - 1fH
: 640x480p - 2fH
: 720x576p - 2fH
: 852x480p - 2fH
: 1920x1080i - 2fH
: 100/125 presets
: VHF
: UHF
: S-band
: Hyper-band
1.2
Connection Overview
Note: The following connector colour abbreviations are used
(acc. to DIN/IEC 757): Bk= Black, Bu= Blue, Gn= Green, Gy=
Grey, Rd= Red, Wh= White, and Ye= Yellow.
1.2.1
Side I/O connections
S-Video Video Audio
L R
E_14710_005.eps
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Figure 1-1 Side I/O connections
S-Video (Hosiden): Video Y/C - In
1 - Ground Y Gnd
2 - Ground C
3 - Video Y
4 - Video C
Gnd
1 V
PP
/ 75 ohm
0.3 V
PP
/ 75 ohm
Cinch: Video CVBS - In, Audio - In
Ye - Video CVBS
Wh - Audio L
Rd - Audio R
1 V
PP
/ 75 ohm
0.5 V
RMS
/ 10 kohm
0.5 V
RMS
/ 10 kohm
Mini Jack: Audio Head phone - Out
Bk - Head phone 32 - 600 ohm / 10 mW
1.2.2
Rear Connections j j
H
H jq jq jq ot
1.1.2
Sound
Sound systems : FM-mono
: FM-stereo B/G
: NICAM B/G, D/K, I, L
: AV Stereo
: 2 x 15
Figure 1-2 Rear I/O
Maximum power (W
RMS
)
1.1.3
Miscellaneous
Aerial - In
- IEC-type (EU) Coax, 75 ohm
Power supply:
- Mains voltage (V
AC
)
- Mains frequency (Hz)
: 220 - 240
: 50 / 60
Cinch: Video CVBS - In, Audio - In
Ye - Video CVBS
Wh - Audio L
Rd - Audio R
1 V
PP
/ 75 ohm
0.5 V
RMS
/ 10 kohm
0.5 V
RMS
/ 10 kohm
Ambient conditions:
- Temperature range (
°C)
- Maximum humidity
: +5 to +40
: 90% R.H.
Cinch: Video CVBS - Out, Audio - Out
Ye - Video CVBS
Wh - Audio L
Rd - Audio R
1 V
PP
/ 75 ohm
0.5 V
RMS
/10 kohm
0.5 V
RMS
/ 10 kohm
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F_15270_071.eps
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D jq jq jq kq kq kq
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Technical Specifications, Connections, and Chassis Overview
Cinch: CVI-1 Video YPbPr - In
Gn - Video Y
Bu - Video Pb
Rd - Video Pr
1 V
PP
/ 75 ohm
0.7 V
PP
/ 75 ohm
0.7 V
PP
/ 75 ohm
Cinch: CVI-1 Audio - In
Rd - Audio - R
Wh - Audio - L
0.5 V
RMS
/ 10 kohm
0.5 V
RMS
/ 10 kohm
Cinch: PC Audio - In
Rd - Audio - R
Wh - Audio - L
0.5 V
RMS
/ 10 kohm
0.5 V
RMS
/ 10 kohm
S-Video (Hosiden): Video Y/C - In
1 - Ground Y Gnd
2 - Ground C
3 - Video Y
4 - Video C
Gnd
1 V
PP
/ 75 ohm
0.3 V
PP
P / 75 ohm
Service connector (ComPair)
1 - SDA-S I
2
C Data (0 - 5 V)
2 - SCL-S I
2
C Clock (0 - 5 V)
3 - Ground Gnd jq jq jq jq jq jq jq j j
H
H jk j
H
LC4.9A AA 1.
EN 3
5 - Shield Gnd
6 - D1- Data
7 - D0+ Data
8 - Shield Gnd
9 - D0- Data
11 - Shield Gnd
13 - n.c.
14 - n.c.
17 - Ground Gnd
18 - +5V
19 - HPD Hot Plug Detect
20 - Ground Gnd j jk
H j j
H j j
H j
H j j
H
PC VGA/DVI-2: Video 2fH RGB/YPbPr - In
1
11
6
5
10
15
E_06532_002.eps
050404
Figure 1-4 VGA Connector
Service connector (UART)
1 - UART_TX Transmit
2 - Ground Gnd
3 - UART_RX Receive k
H j
HDMI/PC-D: Digital Video, Digital Audio - In
19
18 2
1
E_06532_017.eps
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Figure 1-3 HDMI (type A) connector
1 - D2+ Data
2 - Shield Gnd
3 - D2- Data
4 - D1+ Data j
H j j
1 - Video Red/Pr 0.7 V
PP
/ 75 ohm
2 - Video Green/Y 0.7 V
PP
/ 75 ohm
3 - Video Blue/Pb 0.7 V
PP
/ 75 ohm
4 - n.c.
5 - Ground Gnd
6 - Ground Red Gnd
7 - Ground Green Gnd
8 - Ground Blue Gnd
9 - +5V
DC
10 - Ground Sync Gnd
11 - n.c.
13 - H-sync
14 - V-sync
0 - 5 V
0 - 5 V j j j j
H
H
H
H
H j j j j
1.3
Chassis Overview
PLASMA
DISPLAY PANEL
LOUDSPEAKER
COMPARTMENT
B
SMALL SIGNAL
BOARD
E
KEYBOARD CONTROL
PANEL
Figure 1-5 PWB locations
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PDP AUDIO
AMPLIFIER PANEL
C
POWER SUPPLY
PANEL
A
LOUDSPEAKER
COMPARTMENT
IR & LED PANEL
J
SIDE I/O PANEL
D
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LC4.9A AA Safety Instructions, Warnings, and Notes
2.
Safety Instructions, Warnings, and Notes
Index of this chapter:
2.1
Safety Instructions
Safety regulations require the following during a repair:
• Connect the set to the Mains (AC Power) via an isolation transformer (> 800 VA).
• Replace safety components, indicated by the symbol h, only by components identical to the original ones. Any other component substitution (other than original type) may increase risk of fire or electrical shock hazard.
Safety regulations require that after a repair, the set must be returned in its original condition. Pay in particular attention to the following points:
• Route the wire trees correctly and fix them with the mounted cable clamps.
• Check the insulation of the Mains (AC Power) lead for external damage.
• Check the strain relief of the Mains (AC Power) cord for proper function.
• Check the electrical DC resistance between the Mains (AC
Power) plug and the secondary side (only for sets that have a Mains (AC Power) isolated power supply):
1.
Unplug the Mains (AC Power) cord and connect a wire between the two pins of the Mains (AC Power) plug.
2.
Set the Mains (AC Power) switch to the "on" position
(keep the Mains (AC Power) cord unplugged!).
3.
Measure the resistance value between the pins of the
Mains (AC Power) plug and the metal shielding of the tuner or the aerial connection on the set. The reading should be between 4.5 Mohm and 12 Mohm.
4.
Switch "off" the set, and remove the wire between the two pins of the Mains (AC Power) plug.
• Check the cabinet for defects, to prevent touching of any inner parts by the customer.
2.3
Notes
2.3.1
General
• Measure the voltages and waveforms with regard to the chassis (= tuner) ground ( H), or hot ground (I), depending on the tested area of circuitry. The voltages and waveforms shown in the diagrams are indicative. Measure them in the
Service Default Mode (see chapter 5) with a colour bar signal and stereo sound (L: 3 kHz, R: 1 kHz unless stated otherwise) and picture carrier at 475.25 MHz for PAL, or
61.25 MHz for NTSC (channel 3).
• Where necessary, measure the waveforms and voltages with ( D) and without (E) aerial signal. Measure the voltages in the power supply section both in normal operation ( G) and in stand-by (F). These values are indicated by means of the appropriate symbols.
• The semiconductors indicated in the circuit diagram and in the parts lists, are interchangeable per position with the semiconductors in the unit, irrespective of the type indication on these semiconductors.
2.3.2
Schematic Notes
• All resistor values are in ohms, and the value multiplier is often used to indicate the decimal point location (e.g. 2K2 indicates 2.2 kohm).
• Resistor values with no multiplier may be indicated with either an "E" or an "R" (e.g. 220E or 220R indicates 220 ohm).
• All capacitor values are given in micro-farads (
µ= x10 -6 ), nano-farads (n= x10
-9
), or pico-farads (p= x10
-12
).
• Capacitor values may also use the value multiplier as the decimal point indication (e.g. 2p2 indicates 2.2 pF).
• An "asterisk" (*) indicates component usage varies. Refer to the diversity tables for the correct values.
• The correct component values are listed in the Spare Parts
List. Therefore, always check this list when there is any doubt.
2.3.3
Rework on BGA (Ball Grid Array) ICs
2.2
Warnings
• All ICs and many other semiconductors are susceptible to electrostatic discharges (ESD w). Careless handling during repair can reduce life drastically. Make sure that, during repair, you are connected with the same potential as the mass of the set by a wristband with resistance. Keep components and tools also at this same potential. Available
ESD protection equipment:
– Complete kit ESD3 (small tablemat, wristband, connection box, extension cable and earth cable) 4822
310 10671.
– Wristband tester 4822 344 13999.
• Be careful during measurements in the high voltage section.
• Never replace modules or other components while the unit is switched "on".
• When you align the set, use plastic rather than metal tools.
This will prevent any short circuits and the danger of a circuit becoming unstable.
General
Although (LF)BGA assembly yields are very high, there may still be a requirement for component rework. By rework, we mean the process of removing the component from the PWB and replacing it with a new component. If an (LF)BGA is removed from a PWB, the solder balls of the component are deformed drastically so the removed (LF)BGA has to be discarded.
Device Removal
As is the case with any component that, is being removed, it is essential when removing an (LF)BGA, that the board, tracks, solder lands, or surrounding components are not damaged. To remove an (LF)BGA, the board must be uniformly heated to a temperature close to the reflow soldering temperature.
A uniform temperature reduces the risk of warping the PWB. To do this, we recommend that the board is heated until it is certain that all the joints are molten. Then carefully pull the component off the board with a vacuum nozzle. For the appropriate temperature profiles, see the IC data sheet.
Area Preparation
When the component has been removed, the vacant IC area must be cleaned before replacing the (LF)BGA.
Removing an IC often leaves varying amounts of solder on the mounting lands. This excessive solder can be removed with either a solder sucker or solder wick. The remaining flux can be removed with a brush and cleaning agent.
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P b
Safety Instructions, Warnings, and Notes
After the board is properly cleaned and inspected, apply flux on the solder lands and on the connection balls of the (LF)BGA.
Note: Do not apply solder paste, as this has been shown to result in problems during re-soldering.
Device Replacement
The last step in the repair process is to solder the new component on the board. Ideally, the (LF)BGA should be aligned under a microscope or magnifying glass. If this is not possible, try to align the (LF)BGA with any board markers.
So as not to damage neighbouring components, it may be necessary to reduce some temperatures and times.
More Information
For more information on how to handle BGA devices, visit this
URL: www.atyourservice.ce.philips.com (needs subscription, not available for all regions). After login, select “Magazine”, then go to “Workshop Information”. Here you will find
Information on how to deal with BGA-ICs.
2.3.4
Lead-free Solder
Philips CE is producing lead-free sets (PBF) from 1.1.2005 onwards.
Identification: The bottom line of a type plate gives a 14-digit serial number. Digits 5 and 6 refer to the production year, digits
7 and 8 refer to production week (in example below it is 1991 week 18).
E_06532_024.eps
230205
Figure 2-1 Serial number example
Regardless of the special lead-free logo (which is not always indicated), one must treat all sets from this date onwards according to the rules as described below.
LC4.9A AA 2.
EN 5
To avoid wear-out of tips, switch “off” unused equipment or reduce heat.
• Mix of lead-free soldering tin/parts with leaded soldering tin/parts is possible but PHILIPS recommends strongly to
avoid mixed regimes. If this cannot be avoided, carefully clear the solder-joint from old tin and re-solder with new tin.
• Use only original spare-parts listed in the Service-Manuals.
Not listed standard material (commodities) has to be purchased at external companies.
• Special information for lead-free BGA ICs: these ICs will be delivered in so-called "dry-packaging" to protect the IC against moisture. This packaging may only be opened shortly before it is used (soldered). Otherwise the body of the IC gets "wet" inside and during the heating time the structure of the IC will be destroyed due to high (steam-) pressure inside the body. If the packaging was opened before usage, the IC has to be heated up for some hours
(around 90°C) for drying (think of ESD-protection!).
Do not re-use BGAs at all!
• For sets produced before 1.1.2005, containing leaded soldering tin and components, all needed spare parts will be available till the end of the service period. For the repair of such sets nothing changes.
In case of doubt whether the board is lead-free or not (or with mixed technologies), you can use the following method:
• Always use the highest temperature to solder, when using
SAC305 (see also instructions below).
• De-solder thoroughly (clean solder joints to avoid the mixing of two alloys).
Caution: For BGA-ICs, you must use the correct temperature profile, which is coupled to the 12NC. For an overview of these profiles, visit the website www.atyourservice.ce.philips.com
(needs subscription, but is not available for all regions).
You will find this and more technical information within the
"Magazine", chapter "Workshop information".
For additional questions please contact your local repair help desk.
2.3.5
Practical Service Precautions
• It makes sense to avoid exposure to electrical shock.
While some sources are expected to have a possible dangerous impact, others of quite high potential are of limited current and are sometimes held in less regard.
• Always respect voltages. While some may not be dangerous in themselves, they can cause unexpected reactions that are best avoided. Before reaching into a powered TV set, it is best to test the high voltage insulation.
It is easy to do, and is a good service precaution.
Figure 2-2 Lead-free logo
Due to lead-free technology some rules have to be respected by the workshop during a repair:
• Use only lead-free soldering tin Philips SAC305 with order code 0622 149 00106. If lead-free solder paste is required, please contact the manufacturer of your soldering equipment. In general, use of solder paste within workshops should be avoided because paste is not easy to store and to handle.
• Use only adequate solder tools applicable for lead-free soldering tin. The solder tool must be able:
– To reach a solder-tip temperature of at least 400°C.
– To stabilise the adjusted temperature at the solder-tip.
– To exchange solder-tips for different applications.
• Adjust your solder tool so that a temperature of around
360°C - 380°C is reached and stabilised at the solder joint.
Heating time of the solder-joint should not exceed ~ 4 sec.
Avoid temperatures above 400°C, otherwise wear-out of tips will increase drastically and flux-fluid will be destroyed.
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LC4.9A AA
3.
Directions for Use
Directions for Use
You can download this information from the following websites: http://www.philips.com/support http://www.p4c.philips.com
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Mechanical Instructions LC4.9A AA
4.
Mechanical Instructions
Index of this chapter:
4.
EN 7
Notes:
• Figures below can deviate slightly from the actual situation, due to the different set executions.
• Follow the disassembling instructions in described order.
4.1
Cable Dressing
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4.2
Service Positions
Figure 4-1 Cable dressing
For easy servicing of this set, there are a few possibilities created:
• The buffers from the packaging (see figure "Rear cover").
• Foam bars (created for service).
• Aluminium service stands (created for Service).
4.2.1
Foam Bars face down on the (ESD protective) foam bars, a stable situation is created to perform measurements and alignments.
By placing a mirror under the TV, you can monitor the screen.
4.2.2
Aluminium Stands
E_06532_019.eps
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Figure 4-3 Aluminium stands (drawing of MkI)
E_06532_018.eps
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Figure 4-2 Foam bars
The foam bars (order code 3122 785 90580 for two pieces) can be used for all types and sizes of Flat TVs. By laying the TV
The aluminium stands (order code 3122 785 90480) can be mounted with the back cover removed or still left on. So, the stand can be used to store products or to do measurements. It is also very suitable to perform duration tests without taking much space, without having the risk of overheating, or the risk of products falling. The stands can be mounted and removed
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LC4.9A AA Mechanical Instructions quick and easy with use of the delivered screws that can be tightened and loosened manually without the use of tools. See figure above.
Note: Only use the delivered screws to mount the monitor to the stands.
4.3
Assy/Panel Removal
4.3.1
Metal Rear Cover
Caution: Disconnect the Mains/AC Power cord before you remove the rear cover!
1.
Place the TV set upside down on a table top, using the foam bars (see part "Foam Bars").
Caution: do not put pressure on the display, but let the monitor lean on the speakers or the Front cover.
2.
Remove all T10 screws around the edges of the metal rear cover: “parker” screws around the outer rim, “tapping” screws around the connector plate.
3.
Remove the four "mushrooms" from the rear cover.
4.
Lift the metal rear cover from the set. Make sure that wires and flat foils are not damaged.
4.3.2
Speaker Compartment Cover
After removing the metal rear cover, you gain access to the
Speaker Compartment covers.
1.
Remove all T10 screws [1] around the outer rim of the cover (see Figure “Speaker compartment cover removal”).
2.
Remove the T10 screws [2] on top of the inner rim, including the one which secures the grounding clamp (3, see Figure “Grounding clamp”).
3.
Now, remove the plastic cable fixation noose (4, see Figure
“Cable fixation noose”).
4.
After removal of all the screws, slightly push the top of the cover inwards. This will lift the outer rim slightly up so you can take the cover out.
3
Figure 4-5 Grounding clamp
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4
Figure 4-6 Cable fixation noose
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1
2
F_15430_045.eps
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Figure 4-4 Speaker compartment cover removal
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Mechanical Instructions LC4.9A AA
4.3.4
LED Panel 4.3.3
Side I/O Panel
After removal of the Speaker Compartment Covers, this panel is accessible.
1.
Disconnect the cable (1) from the panel.
2.
Remove the T10 mounting screws [2] that hold the assy.
3.
Remove the panel from its bracket [3], by pushing against the front side of the side I/O cinch connectors.
1
1 3
4.
EN 9
2
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Figure 4-8 LED panel
1.
Remove the fixation screws (1) and take the panel out of its brackets.
2.
Disconnect the cable (2) from the panel.
4.3.5
Keyboard Control Panel
2
Figure 4-7 Side I/O panel removal
When it is defective, replace the whole unit.
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2
1
3
F_15420_037.eps
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Figure 4-9 Keyboard control panel
1.
Remove the panel (1) from its three brackets (2).
2.
Disconnect the cable (3) from the panel.
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EN 10 4.
4.3.6
SSB Cover Shield http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Mechanical Instructions
4.3.7
SSB Board
3
2
1
3
2
1
Figure 4-10 SSB cover shield
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Figure 4-12 SSB
1.
Remove the two fixation screws (1) that secure the SSB board on the lower part of the SSB shielding, see Figure
“SSB board”.
2.
Remove the SSB panel.
4.3.8
Power Supply Panel
3 3
F_15270_075.eps
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Figure 4-11 DVI-I connector and rear I/O panel screws
1.
Very cautiously disconnect the LVDS cable (1) from the
SSB panel (see Figure “SSB board cover shield”). Notice that this cable is very fragile.
2.
Remove all other cables (2) from the SSB board (see
Figure “SSB board cover shield”), including the grounding cable.
3.
Remove the fixation screws (3), see Figure “SSB board cover shield” and remove the SSB shield with the SSB board inside, and the rear I/O panel still attached to it.
4.
Remove the fixation screws (1) from the DVI-I connector and from the rear panel, see Figure “DVI-I connector and rear panel screws”, and remove the rear I/O panel from the
SSB board.
5.
Remove the upper part of the shield from the SSB panel, by unhooking it from its brackets. Be careful not to damage the LVDS connector on the SSB board, see Figure “SSB board cover shield”.
1
2
F_15430_050.eps
100605
Figure 4-13 Power supply panel
1.
Disconnect all cables (1) from the panel.
2.
Remove the fixation screws (2) from the panel.
3.
Take the panel out of its brackets.
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Mechanical Instructions LC4.9A AA
4.3.9
Class D Audio Amplifier Panel
4.
EN 11
3
1
2
F_15430_051.eps
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Figure 4-14 Class D audio amplifier panel
1.
Disconnect all cables (1) from the panel.
2.
Pinch the plastic fixation clamps (2) firmly between your fingers, and pull the panel upwards.
3.
Take the panel out of its brackets (3).
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LC4.9A AA Mechanical Instructions
4.3.10 Plasma Display Panel / Glass Plate
1.
Remove the T20 display panel mounting screws [1].
2.
Remove the T10 screws [2] from the mounting frame.
3.
Unplug all cable(s):
– LVDS cable at SSB side (fragile connector!).
– SSB supply cables at the Main Supply board.
– Mains cable at the Main Supply board.
– Side I/O cable at SSB side (fragile connector!).
– Cable at LED panel.
– Keyboard cable at SSB side.
– Audio Amplifier supply cable at the Main Supply board.
– Loudspeaker cables (incl. ferrites) at the Audio panel.
4.
Lift the metal frame (together with all PWBs) from the display panel (see figure “Frame lift”).
5.
After removal of the frame, lift the PDP from the set.
2
1
2
2 2
1
F_15400_121.eps
200505
Figure 4-15 Display panel removal
F_15400_120.eps
200505
Figure 4-16 Frame lift
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Mechanical Instructions LC4.9A AA
4.3.11 PDP Glass Plate
In order to remove/exchange the PDP glass plate:
1.
Remove the PDP as described earlier.
2.
Remove the T10 screws [1] from the mounting frame.
3.
After removal of the frame, you can lift the glass plate from the set.
4.
EN 13
1
Figure 4-17 Glass plate removal
4.4
Set Re-assembly
To re-assemble the whole set, execute all processes in reverse order.
Notes:
• While re-assembling, make sure that all cables are placed and connected in their original positions. See Figure "Cable dressing". Be careful with the fragile LVDS cable.
• For a complete description of the Plasma panel, see the
LGE plasma panel Service Manual (12nc is listed on the frontpage).
F_15400_119.eps
200505
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EN 14 5.
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LC4.9A AA Service Modes, Error Codes, and Fault Finding
5.
Service Modes, Error Codes, and Fault Finding
Index of this chapter:
5.3 Problems and Solving Tips Related to CSM
5.6 The Blinking LED Procedure
5.7 Fault Finding and Repair Tips
5.1
Test Points
This chassis is equipped with test points in the service printing.
In the schematics test points are identified with a rectangle box around Fxxx or Ixxx.
Perform measurements under the following conditions:
• Television set in Service Default Alignment Mode.
• Video input: Colour bar signal.
• Audio input: 3 kHz left channel, 1 kHz right channel.
How to Enter
To enter SDM, use one of the following methods:
• Press the following key sequence on the remote control transmitter: “062596” directly followed by the MENU button
(do not allow the display to time out between entries while keying the sequence).
• Short "Service" jumpers on the TV board during cold start and apply mains (see Figure "Service jumpers"). Then press the mains button (remove the short after start-up).
Caution: Entering SDM by shorting "Service" jumpers will override the +8V-protection. Do this only for a short period.
When doing this, the service-technician must know exactly what he is doing, as it could damage the television set.
• Or via ComPair.
5.2
Service Modes
Service Default mode (SDM) and Service Alignment Mode
(SAM) offers several features for the service technician, while the Customer Service Mode (CSM) is used for communication between the call centre and the customer.
This chassis also offers the option of using ComPair, a hardware interface between a computer and the TV chassis. It offers the possibilities of structured troubleshooting, error code reading, and software version readout for all chassis.
Minimum requirements for ComPair: a Pentium processor, a
Windows OS, and a CD-ROM drive (see also paragraph
"ComPair").
5.2.1
Service Default Mode (SDM)
Purpose
• To create a predefined setting for measurements to be made.
• To override software protections.
• To start the blinking LED procedure.
• To inspect the error buffer.
• To check the life timer.
Specifications
• Tuning frequency: 61.25 MHz.
• Colour system: NTSC.
• All picture settings at 50% (brightness, colour contrast, hue).
• Bass, treble, and balance at 50 %; volume at 25 %.
• All service-unfriendly modes (if present) are disabled. The service unfriendly modes are:
– Timer / Sleep timer.
– Child / parental lock.
– Blue mute.
– Hotel / hospital mode.
– Auto shut off (when no “IDENT” video signal is received for 15 minutes).
– Skipping of non-favourite presets / channels.
– Auto-storage of personal presets.
– Auto user menu time-out.
– Auto Volume Levelling (AVL).
1
F_15270_053.eps
180505
Figure 5-1 Service jumpers
After entering SDM, the following screen is visible, with SDM in the upper right corner of the screen to indicate that the television is in Service Default Mode.
00035 LC4XAP1 1.14/S4XGNV 1.17 SDM
ERR 0 0 0 0 0
OP 000 057 140 032 120 128 000
F_15430_058.eps
260705
Figure 5-2 SDM menu
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Service Modes, Error Codes, and Fault Finding
How to Navigate
Use one of the following methods:
• When you press the MENU button on the remote control, the set will switch on the normal user menu in the SDM mode.
• On the TV, press and hold the VOLUME DOWN and press the CHANNEL DOWN for a few seconds, to switch from
SDM to SAM and reverse.
How to Exit
Switch the set to STANDBY by pressing the mains button on the remote control transmitter or the television set.
If you turn the television set off by removing the mains (i.e., unplugging the television) without using the mains button, the television set will remain in SDM when mains is re-applied, and the error buffer is not cleared.
5.2.2
Service Alignment Mode (SAM)
Purpose
• To change option settings.
• To display / clear the error code buffer.
• To perform alignments.
Specifications
• Operation hours counter (maximum five digits displayed).
• Software version, Error codes, and Option settings display.
• Error buffer clearing.
• Option settings.
• AKB switching.
• Software alignments (Tuner, White Tone, Geometry &
Audio).
• NVM Editor.
• ComPair Mode switching.
How to Enter
To enter SAM, use one of the following methods:
• Press the following key sequence on the remote control transmitter: “062596" directly followed by the OSD/
STATUS/INFO(I+) button (do not allow the display to time out between entries while keying the sequence).
• Or via ComPair.
After entering SAM, the following screen is visible, with SAM in the upper right corner of the screen to indicate that the television is in Service Alignment Mode.
00035 LC4XAP1 1.14/S4XGNV 1.17 SAM
ERR 0 0 0 0 0
OP 000 057 140 032 120 128 000
. Clear Clear ?
. Options
. Tuner
. White Tone
. Audio
. NVM Editor
. SC NVM Editor
. ComPair Mode On
F_15430_059.eps
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LC4.9A AA 5.
EN 15
Menu Explanation
1.
LLLLL. This represents the run timer. The run timer counts normal operation hours, but does not count standby hours.
2.
AAABCD-X.Y. This is the software identification of the main microprocessor:
– A= the project name (LC04.x).
– B= the region: E= Europe, A= Asia Pacific, U= NAFTA,
L= LATAM.
– C= the software diversity:
• Europe: T= 1 page TXT, F= Full TXT, V= Voice control.
• LATAM and NAFTA: N= Stereo non-dBx, S=
Stereo dBx.
• Asian Pacific: T= TXT, N= non-TXT, C= NTSC.
• ALL regions: M= mono, D= DVD, Q= Mk2.
– D= the language cluster number.
– X= the main software version number (updated with a major change that is incompatible with previous versions).
– Y= the sub software version number (updated with a minor change that is compatible with previous versions).
3.
EEEEE-F.GG. This is the software identification of the
Scaler:
– EEEEEE= the scaler sw cluster
– F= the main sw version no.
– GG= the sub-version no.
4.
SAM. Indication of the Service Alignment Mode.
5.
Error Buffer. Shows all errors detected since the last time the buffer was erased. Five errors possible.
6.
Option Bytes. Used to set the option bytes. See “Options” in the Alignments section for a detailed description. Seven codes are possible.
7.
Clear. Erases the contents of the error buffer. Select the
CLEAR menu item and press the MENU RIGHT key. The content of the error buffer is cleared.
8.
Options. Used to set the option bits. See “Options” in the
Alignments section for a detailed description.
9.
Tuner. Used to align the tuner. See “Tuner” in the
Alignments section for a detailed description.
10. White Tone. Used to align the white tone. See “White
Tone” in the Alignments section for a detailed description.
11. Audio. No audio alignment is necessary for this television set.
12. NVM Editor. Can be used to change the NVM data in the television set. See table “NVM data” further on.
13. SC NVM Editor. Can be used to edit Scaler NVM.
14. ComPaIr. Can be used to switch on the television to In
System Programming (ISP) mode, for software uploading via ComPair.
Caution: When this mode is selected without ComPair connected, the TV will be blocked. Remove the AC power to reset the TV.
How to Navigate
• In SAM, select menu items with the MENU UP/DOWN keys on the remote control transmitter. The selected item will be highlighted. When not all menu items fit on the screen, use the MENU UP/DOWN keys to display the next / previous menu items.
• With the MENU LEFT/RIGHT keys, it is possible to:
– Activate the selected menu item.
– Change the value of the selected menu item.
– Activate the selected submenu.
• In SAM, when you press the MENU button twice, the set will switch to the normal user menus (with the SAM mode still active in the background). To return to the SAM menu press the MENU or STATUS/EXIT button.
• When you press the MENU key in while in a submenu, you will return to the previous menu.
Figure 5-3 SAM menu
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LC4.9A AA Service Modes, Error Codes, and Fault Finding
How to Store SAM Settings
To store the settings changed in SAM mode, leave the top level
SAM menu by using the POWER button on the remote control transmitter or the television set.
How to Exit
Switch the set to STANDBY by pressing the mains button on the remote control transmitter or the television set.
If you turn the television set “off” by removing the mains (i.e., unplugging the television) without using the mains button, the television set will remain in SAM when mains is re-applied, and the error buffer is not cleared.
5.2.3
Customer Service Mode (CSM)
Purpose
The Customer Service Mode shows error codes and information on the TV’s operation settings. The call centre can instruct the customer (by telephone) to enter CSM in order to identify the status of the set. This helps the call centre to diagnose problems and failures in the TV set before making a service call.
The CSM is a read-only mode; therefore, modifications are not possible in this mode.
How to Enter
To enter CSM, press the following key sequence on the remote control transmitter: “123654” (do not allow the display to time out between entries while keying the sequence).
Upon entering the Customer Service Mode, the following screen will appear:
1 00035 LC4XAP1 1.14/S4XGNV 1.17 CSM
2 CODES 0 0 0 0 0
3 OP 000 057 140 032 120 128 000
4
5
6 NOT TUNED
7 PAL
8 STEREO
9 CO 50 CL 50 BR 50
0 AVL Off
8.
Displays the detected Audio (e.g. stereo/mono).
9.
Displays the picture setting information.
10. Displays the sound setting information.
How to Exit
To exit CSM, use one of the following methods:
• Press the MENU, STATUS/EXIT, or POWER button on the remote control transmitter.
• Press the POWER button on the television set.
5.3
Problems and Solving Tips Related to CSM
5.3.1
Picture Problems
Note: The problems described below are all related to the TV settings. The procedures used to change the value (or status) of the different settings are described.
Picture too Dark or too Bright
If:
• The picture improves when you press the AUTO PICTURE button on the remote control transmitter, or
• The picture improves when you enter the Customer
Service Mode,
Then:
1.
Press the AUTO PICTURE button on the remote control transmitter repeatedly (if necessary) to choose
PERSONAL picture mode.
2.
Press the MENU button on the remote control transmitter.
This brings up the normal user menu.
3.
In the normal user menu, use the MENU UP/DOWN keys to highlight the PICTURE sub menu.
4.
Press the MENU LEFT/RIGHT keys to enter the PICTURE sub menu.
5.
Use the MENU UP/DOWN keys (if necessary) to select
BRIGHTNESS.
6.
Press the MENU LEFT/RIGHT keys to increase or decrease the BRIGHTNESS value.
7.
Use the MENU UP/DOWN keys to select PICTURE.
8.
Press the MENU LEFT/RIGHT keys to increase or decrease the PICTURE value.
9.
Press the MENU button on the remote control transmitter twice to exit the user menu.
10. The new PERSONAL preference values are automatically stored.
White Line around Picture Elements and Text
F_15430_060.eps
080605
If:
The picture improves after you have pressed the AUTO
PICTURE button on the remote control transmitter,
Figure 5-4 CSM menu
Menu Explanation
1.
Indication of the decimal value of the operation hours counter, Software identification of the main microprocessor
(see "Service Default or Alignment Mode" for an explanation), and the service mode (CSM = Customer
Service Mode).
2.
Displays the last five errors detected in the error code buffer.
3.
Displays the option bytes.
4.
Displays the type number version of the set.
5.
Reserved item for P3C call centres (AKBS stands for
Advanced Knowledge Base System).
6.
Indicates the television is receiving an "IDENT" signal on the selected source. If no "IDENT" signal is detected, the display will read "NOT TUNED"
7.
Displays the detected Colour system (e.g. PAL/NTSC).
Then:
1.
Press the AUTO PICTURE button on the remote control transmitter repeatedly (if necessary) to choose
PERSONAL picture mode.
2.
Press the MENU button on the remote control transmitter.
This brings up the normal user menu.
3.
In the normal user menu, use the MENU UP/DOWN keys to highlight the PICTURE sub menu.
4.
Press the MENU LEFT/RIGHT keys to enter the PICTURE sub menu.
5.
Use the MENU UP/DOWN keys to select SHARPNESS.
6.
Press the MENU LEFT key to decrease the SHARPNESS value.
7.
Press the MENU button on the remote control transmitter twice to exit the user menu.
8.
The new PERSONAL preference value is automatically stored.
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Service Modes, Error Codes, and Fault Finding
Snowy Picture
Check CSM line 6. If this line reads “Not Tuned”, check the following:
• Antenna not connected. Connect the antenna.
• No antenna signal or bad antenna signal. Connect a proper antenna signal.
• The tuner is faulty (in this case line 2, the Error Buffer line, will contain error number 10). Check the tuner and replace/ repair the tuner if necessary.
Black and White Picture
If:
• The picture improves after you have pressed the AUTO
PICTURE button on the remote control transmitter,
Then:
1.
Press the AUTO PICTURE button on the remote control transmitter repeatedly (if necessary) to choose
PERSONAL picture mode.
2.
Press the MENU button on the remote control transmitter.
This brings up the normal user menu.
3.
In the normal user menu, use the MENU UP/DOWN keys to highlight the PICTURE sub menu.
4.
Press the MENU LEFT/RIGHT keys to enter the PICTURE sub menu.
5.
Use the MENU UP/DOWN keys to select COLOR.
6.
Press the MENU RIGHT key to increase the COLOR value.
7.
Press the MENU button on the remote control transmitter twice to exit the user menu.
8.
The new PERSONAL preference value is automatically stored.
Menu Text not Sharp Enough
If:
• The picture improves after you have pressed the AUTO
PICTURE button on the remote control transmitter,
Then:
1.
Press the AUTO PICTURE button on the remote control transmitter repeatedly (if necessary) to choose
PERSONAL picture mode.
2.
Press the MENU button on the remote control transmitter.
This brings up the normal user menu.
3.
In the normal user menu, use the MENU UP/DOWN keys to highlight the PICTURE sub menu.
4.
Press the MENU LEFT/RIGHT keys to enter the PICTURE sub menu.
5.
Use the MENU UP/DOWN keys to select PICTURE.
6.
Press the MENU LEFT key to decrease the PICTURE value.
7.
Press the MENU button on the remote control transmitter twice to exit the user menu.
8.
The new PERSONAL preference value is automatically stored.
LC4.9A AA
You do not have to know anything about I
2
C commands yourself because ComPair takes care of this.
3.
ComPair speeds up the repair time since it can automatically communicate with the chassis (when the microprocessor is working) and all repair information is directly available. When ComPair is installed together with the Force/SearchMan electronic manual of the defective chassis, schematics and PWBs are only a mouse click away.
Specifications
ComPair consists of a Windows based fault finding program and an interface box between PC and the (defective) product.
The ComPair interface box is connected to the PC via a serial
(or RS-232) cable.
For this chassis, the ComPair interface box and the TV communicate via a bi-directional service cable via the service connector(s).
The ComPair faultfinding program is able to determine the problem of the defective television. ComPair can gather diagnostic information in two ways:
• Automatically (by communicating with the television):
ComPair can automatically read out the contents of the entire error buffer. Diagnosis is done on I
2
C/UART level.
ComPair can access the I
2
C/UART bus of the television.
ComPair can send and receive I
2
C/UART commands to the microcontroller of the television. In this way, it is possible for ComPair to communicate (read and write) to devices on the I
2
C/UART buses of the TV-set.
• Manually (by asking questions to you): Automatic diagnosis is only possible if the microcontroller of the television is working correctly and only to a certain extent.
When this is not the case, ComPair will guide you through the faultfinding tree by asking you questions (e.g. Does the screen give a picture? Click on the correct answer: YES /
NO) and showing you examples (e.g. Measure test-point I7 and click on the correct oscillogram you see on the
oscilloscope). You can answer by clicking on a link (e.g.
text or a waveform picture) that will bring you to the next step in the faultfinding process.
By a combination of automatic diagnostics and an interactive question / answer procedure, ComPair will enable you to find most problems in a fast and effective way.
How to Connect
This is described in the chassis faultfinding database in
ComPair.
Caution: It is compulsory to connect the TV to the PC as shown in the picture below (with the ComPair interface in between), as the ComPair interface acts as a level shifter. If one connects the TV directly to the PC (via UART), ICs will be blown!
TO
UART SERVICE
CONNECTOR
5.
EN 17
TO
I2C SERVICE
CONNECTOR
5.4
Service Tools
5.4.1
ComPair
Introduction
ComPair (Computer Aided Repair) is a service tool for Philips
Consumer Electronics products. ComPair is a further development on the European DST (service remote control), which allows faster and more accurate diagnostics. ComPair has three big advantages:
1.
ComPair helps you to quickly get an understanding on how to repair the chassis in a short time by guiding you systematically through the repair procedures.
2.
ComPair allows very detailed diagnostics (on I
2
C level) and is therefore capable of accurately indicating problem areas.
PC VCR Power
9V DC
I2C
E_06532_021.eps
180804
Figure 5-5 ComPair interface connection
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LC4.9A AA Service Modes, Error Codes, and Fault Finding
How to Order
• ComPair order codes (EU/AP/LATAM):
• Starter kit ComPair32/SearchMan32 software and
ComPair interface (excl. transformer): 3122 785 90450.
• ComPair interface (excl. transformer): 4822 727 21631.
• Starter kit ComPair32 software (registration version): 3122
785 60040.
• Starter kit SearchMan32 software: 3122 785 60050.
• ComPair32 CD (update): 3122 785 60070 (year 2002),
3122 785 60110 (year 2003 onwards).
• SearchMan32 CD (update): 3122 785 60080 (year 2002),
3122 785 60120 (year 2003), 3122 785 60130 (year 2004).
• ComPair firmware upgrade IC: 3122 785 90510.
• Transformer (non-UK): 4822 727 21632.
• Transformer (UK): 4822 727 21633.
• ComPair interface cable: 3122 785 90004.
• ComPair interface extension cable: 3139 131 03791.
• ComPair UART interface cable: 3122 785 90630.
Note: If you encounter any problems, contact your local support desk.
5.4.2
LVDS Tool
Introduction
This service tool (also called “ComPair Assistant 1“) may help you to identify, in case the TV does not show any picture, whether the Small Signal Board (SSB) or the display of a Flat
TV is defective.
Furthermore it is possible to program EPLDs with this tool
(Byteblaster). Read the user manual for an explanation of this feature.
Since 2004, the LVDS output connectors in our Flat TV models are standardised (with some exceptions). With the two delivered LVDS interface cables (31p and 20p) you can cover most chassis (in special cases, an extra cable will be offered).
When operating, the tool will show a small (scaled) picture on a VGA monitor. Due to a limited memory capacity, it is not possible to increase the size when processing high-resolution
LVDS signals (>= 1280x768). Generally this tool is intended to determine if the SSB is working or not. Thus to determine if
LVDS, RGB, and sync signals are okay.
How to Connect
Connections are explained in the user manual, which is delivered with the tool.
Note: To use the LVDS tool, you must have ComPair release
2004-1 (or later) on your PC (engine version >= 2.2.05).
For every TV type number and screen size, one must choose the proper settings via ComPair. The ComPair file will be updated regularly with new introduced chassis information.
How to Order
• LVDS tool (incl. two LVDS cables: 31p and 20p):
3122 785 90671.
• Service Manual LVDS tool:
3122 785 00810.
• LVDS cable 20p (for Telra 14-inch):
3122 785 90810.
• LVDS cable 30p (for LC4.3):
3122 785 90820.
• LVDS cable 41p-to-31p for CA1 (dual -> single LVDS):
3122 785 90830.
5.5
Error Codes
The error code buffer contains all errors detected since the last time the buffer was erased. The buffer is written from left to right. When an error occurs that is not yet in the error code buffer, it is displayed at the left side and all other errors shift one position to the right.
5.5.1
How to Read the Error Buffer
You can read the error buffer in 3 ways:
• On screen via the SAM (if you have a picture).
Examples:
– ERROR: 0 0 0 0 0 : No errors detected
– ERROR: 6 0 0 0 0 : Error code 6 is the last and only detected error
– ERROR: 9 6 0 0 0 : Error code 6 was detected first and error code 9 is the last detected (newest) error
• Via the blinking LED procedure (when you have no picture). See “The Blinking LED Procedure”.
• Via ComPair.
5.5.2
How to Clear the Error Buffer
The error code buffer is cleared in the following cases:
• By using the CLEAR command in the SAM menu:
– To enter SAM, press the following key sequence on the remote control transmitter: “062596” directly followed by the OSD/STATUS button (do not allow the display to time out between entries while keying the sequence).
– Make sure the menu item CLEAR is highlighted. Use the MENU UP/DOWN buttons, if necessary.
– Press the MENU RIGHT button to clear the error buffer. The text on the right side of the “CLEAR” line will change from “CLEAR?” to “CLEARED”
• If the contents of the error buffer have not changed for 50 hours, the error buffer resets automatically.
Note: If you exit SAM by disconnecting the mains from the television set, the error buffer is not reset.
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Service Modes, Error Codes, and Fault Finding
5.5.3
Error Codes
In case of non-intermittent faults, write down the errors present in the error buffer and clear the error buffer before you begin the repair. This ensures that old error codes are no longer present.
If possible, check the entire contents of the error buffer. In some situations, an error code is only the result of another error and not the actual cause of the problem (for example, a fault in the protection detection circuitry can also lead to a protection).
Table 5-1 Error code overview
2
3
4
5
6
7
8
Error
0
1
9
10
11
12
13
14
15
16
17
18
Device
Not applicable
Not applicable
Not applicable
Not applicable
Genesis Scaler
Flash-ROM
Error Description Check Item
No Error
Mis-match of TV
Hercules SW and
Scaler SW
-
-
-
-
I
2
C error while communicating with the Genesis Scaler and/or Flash-ROM is faulty/empty
-
7801
7B01
Diagram
-
-
-
B7 + B8
B10
Scaler supply
7752
+5V protection 7752 B6
Not applicable General I
2
C error
ADC I
2
C error
Scaler EEPROM I
2
C error while
Hercules
EEPROM
Tuner
Columbus communicating with the Scaler
EEPROM
I
2
C error while communicating with the Hercules
EEPROM (NVM for
TV).
Remark: when the
Hercules EEPROM is defective, the
Hercules should operate with its default values.
I
2
C error while communicating with the PLL tuner
I
2
C error while communicating with the 2D/3D combfilter
Columbus
1102, 7L04, 7M00 B1 + B18
+ B19
7L04
7C01
7207
1102, F102, F104,
F107
B1
7M00
B18
B11
B2
B19
-
B12
(only in
NAFTA and AP sets)
Not applicable
HDMI Panellink
Receiver/
Decoder
-
I
2
C error while communicating with the iBoard HDMI
Panellink Receiver/
Decoder (only in
NAFTA and AP sets)
-
7D03
Scaler SDRAM Read-write error with the Scaler
SDRAM
7B01
Not applicable -
EPLD I
2
C error while communicating with
EPLD
I
2
C error while Digital Module
(only on Digital sets) communicating with the Digital Module
(only on Digital sets)
-
7N02
Digital Module
(only on Digital sets)
Not applicable -
B10
-
B20 +
B21
-
LC4.9A AA 5.
EN 19
5.6
The Blinking LED Procedure
Using this procedure, you can make the contents of the error buffer visible via the front LED. This is especially useful when there is no picture.
When the SDM is entered, the front LED will blink the contents of the error-buffer:
• The LED blinks with as many pulses as the error code number, followed by a time period of 1.5 seconds, in which the LED is off.
• Then this sequence is repeated.
Any RC5 command terminates this sequence.
Example of error buffer: 12 9 6 0 0
After entering SDM, the following occurs:
• 1 long blink of 5 seconds to start the sequence,
• 12 short blinks followed by a pause of 1.5 seconds,
• 9 short blinks followed by a pause of 1.5 seconds,
• 6 short blinks followed by a pause of 1.5 seconds,
• 1 long blink of 1.5 seconds to finish the sequence,
• The sequence starts again with 12 short blinks.
5.7
Fault Finding and Repair Tips
Notes:
• It is assumed that the components are mounted correctly with correct values and no bad solder joints.
• Before any fault finding actions, check if the correct options are set.
5.7.1
NVM Editor
In some cases, it can be handy if one directly can change the
NVM contents. This can be done with the “NVM Editor” in SAM mode. With this option, single bytes can be changed.
Caution:
• Do not change the NVM settings without understanding the function of each setting, because incorrect NVM settings may seriously hamper the
correct functioning of the TV set!
• Do not change the Scaler NVM settings, as this will
hamper the DVI functionality of the TV set!
• Always note down the existing NVM settings, before changing the settings. This will enable you to return to the orgininal settings, if the new settings turn out to be incorrect.
Table 5-2 NVM editor overview
.ADR
.VAL
.Store
Hex
0x000A
0x0000
Dec
10
0
Store?
Description
Existing value
New value
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LC4.9A AA Service Modes, Error Codes, and Fault Finding
Table 5-3 NVM Default values (option bit settings through NVM Editor in SAM Mode)
Byte Nr. Bit Feature/Mode Description
Byte 0
174(dec)
0 QSS (LSB)
1 FMI
2 HCO
3 HP2
4 FSL
5 TFR
6 OSVE
7 MVK (MSB)
Total Dec Values
Total Hex Values
Mode of quasi split sound amplifier
Connection of output of QSS amplifier
EHT tracking mode
Synchronization of OSD/Text display
1 1
1 1
0 0
1 1
Forced slicing level for vertical sync
DC transfer ratio of luminance signal
1 1
1 1
Black current measuring in overscan 0 0
(For Future Usage, as defined by software) 0 0
59 59
3B 3B
Byte 1
175(dec)
0 PSE
1 OPC
PSE
OPC
2 PRIS PRIS
3 CONTINUOUS FACTORY Continuous factory mode
4 WHITE PATTERN ON
5 SDM MODE
6 SAM MODE
7 SVMA
Total Dec Values
Total Hex Values
Last color pattern status in factory mode
Service default mode on/off
Service Align mode on/off
Scavm On / Off
0 0
0 0
0 0
0 0
0 0
0 0
0 0
0 0
0 0
00 00
Byte 2
176(dec)
0 MUTE STATUS
1 TUNER AUTO MODE
2 CABLE MODE
3 LAST POWER MODE
4 CHILD LOCK MODE
5 SURF MODE
6 FACTORY MODE
7 PSNS
Total Dec Values
Total Hex Values
Byte 3
177(dec)
0 RADIO/TV MODE
1 WAKE-UP MODE
2 HOTEL MODE
3 HOTEL KBD LOCK
4 HBL
5 BLS
6 SL
7 CFA0
Total Dec Values
Total Hex Values
Mute status
Auto mode
Cable/Antenna mode
Last power status of the set
Child lock enabled
Surf mode on/off
Factory mode on
For PAL color enhancement in ES4
Radio mode or TV mode
WAKE-UP MODE
TV in Hotel mode
Keyboard locked
HBL
Blue stretch mode
SL
Comb filter On/Off
0 0
0 0
0 0
0 0
0 0
1 1
0 0
1 1
160 160
A0 A0
0 0
1 1
0 0
1 1
0 0
0 0
0 0
1 1
138 138
8A 8A
Byte 4
178(dec)
0 Signal Strength
1 LPG
2 DVD TRAY LOCK
3 SCRSAVER MODE
4 BKS
5 BSD
6 CRA0
7 PIP QSS
Total Dec Values
Total Hex Values
Signal Strength Switch in MK2
LPG
Lock/Unlock DVD tray
Screen saver mode
Black Stretch Mode
Black Stretch Depth
Coring on SVM
PIP QSS
0 0
0 0
0 0
1 1
1 1
1 1
1 1
0 0
120 120
78 78
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Service Modes, Error Codes, and Fault Finding LC4.9A AA 5.
EN 21
Byte Nr. Bit Feature/Mode Description
Byte 5
179(dec)
Byte 6
180(dec)
Byte 7
181(dec)
0 FFI
1 NNR
2 MUS
3 GAM
4 CBS
5 LLB
6 DSA
7 DSK
Total Dec Values
Total Hex Values
0 LTI status
1 Inc_Life_Time
2 PC_Mode
3 HD_Mode
4 Tact_Switch
5 Set_In_Special_Stby
6 Hotel_OSDDisplay
7 Hotel_MonitorOut
Total Dec Values
Total Hex Values
0 Hotel_IconMode
Fast Filter
No red reduction during blue stretch
NTSC matrix
Gamma control
Control sequence of beam current limiting 0
Low level of beam current limiter 0
Dynamic skin tone angle area
Dynamic skin tone angle on/ off
1
0
1
1
0
1
LTI last status
Inc_Life_Time
PC_Mode
HD_Mode
Tact_Switch
Set_In_Special_Stby
Hotel_OSDDisplay
Hotel_MonitorOut
0
0
0
0
78 78
4E 4E
1
0
1
0
0
0
0
0
0
0
0
0
1 1
01 01
1
0
0
0
1
1
0
1
Hotel_IconMode
1 DBE
2 SD
DBE
SD
3 Set_in_PC_Sleep_Mode Set_in_PC_Sleep_Mode
4 Reserved Reserved
5 Reserved
6 Reserved
7 Reserved
Total Dec Values
Total Hex Values
Reserved
Reserved
Reserved
0 0
0
0
1
0
0
2
0
0
0
0
0
2
02 02
0
0
1
0
5.7.2
Load Default NVM Values 8.
Restart the set.
5.7.3
Tuner and IF In case a blank NVM is placed or when the NVM content is corrupted, default values can be downloaded into the NVM.
(For empty NVM replacement, short the SDM with a jumper and apply the mains voltage. Remember to remove the jumper after the reload is completed). After the default values are downloaded, it will be possible to start up and to start aligning the TV set. This is no longer initiated automatically; to initiate the download the following action has to be performed:
1.
Switch “off” the TV set by disconnecting the AC Power plug.
2.
Short circuit the SDM jumpers (keep short-circuited).
3.
Press P+ or Ch+ on the local keyboard (and keep it pressed).
4.
Switch on the TV set via the AC Power plug.
5.
Keep pressing the P+/Ch+ button until the set has started up and the SDM is shown.
No Picture in RF Mode, but there is a Noise Raster
1.
Check whether picture is present in AV. If not, go to Video processing troubleshooting section.
2.
If present, check if the Option settings are correct.
3.
Check if all the supply voltages are present (3.3/5/8/12/33
V).
4.
Check if the I
2 C lines are working correctly (3.3 V).
5.
Manually store a known channel and check if there is IF output at Tuner pin 11.
6.
Check the tuning DC voltage at pin 2 of the Tuner. The DC voltage should vary according to the frequency/channel being chosen.
7.
If the tuning voltage is OK, check the tuner output, pin 11.
8.
If it has no output, the Tuner may have a defect. Change the Tuner.
Alternative method:
1.
Go to SAM.
2.
Select NVM Editor (not SC NVM Editor).
3.
Select ADR (address) to 1 (dec).
4.
Change the VAL (value) to 170 (dec).
5.
Store the value.
6.
Disconnect the mains plug and wait for a few seconds.
7.
Reconnect the mains plug and wait until the set goes into its standby mode (red LED lights up).
Sound in Picture Problem for L' System (rolling horizontal lines)
1.
Check whether AGC L' in SAM mode is set to 0.
2.
If yes, align the set to correct value.
Required System is not Selected Correctly
Check whether a Service jumper (#4204 & 4205, 0805 size) is present. If yes, remove it.
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LC4.9A AA Service Modes, Error Codes, and Fault Finding
5.7.4
Video Processing
No Power
1.
Check +12 V and 3V3 at position 1J02.
2.
If no supply, check the connector 1J02.
3.
If it is correct, check the power supply board.
Power Supply is Correct, but no Green LED
1.
Check if the connectors 1K00 are properly inserted.
2.
If they are inserted correctly, check if the 3V3 is present.
No Picture Display (blank screen with correct sound output)
1.
Check whether the user menu is visible.
2.
If the user menu is OK, activate teletext mode.
3.
If teletext is OK, the problem is in the ADC (B18) &
Columbus 3D combfilter (B19), if present (depending on model, see also paragraph “Teletext Path” in chapter 9).
4.
If the user menu is not visible, check if the LCD panel backlight is ON.
5.
If the backlight is OFF, the problem is in the power supply board or LCD panel. Also check pin 12 (LAMP_ON_OFF) of 1J02. It should be HIGH during normal operation.
Note: For faultfinding purposes, it is important to know the following: in Pixel Plus and Digital Crystal Clear models, which have an ADC (B18) and Columbus 3D combfilter (B19), the digital input of the scaler is used for the digital video path
(Hercules output), whereas the analogue RGB input (analogue input of the scaler) is only used for teletext. This means that no mixed mode (video plus teletext simultaneously) is possible. If there is sound and teletext, but no video and user menu (blank screen), the digital path (Hercules - ADC - Columbus - Scaler) is faulty. If there is sound but no teletext, the back-end part
(Scaler - LCD panel) is faulty. In Crystal Clear models, which do not have an ADC and Columbus, the RGB path (analogue input of scaler) is used for both video and teletext.
No TV, but PC is Present
1.
Check if Hsync_SDTV and Vsync_SDTV are present at pin
1 & pin13 of 7E03.
2.
If they are present, check teletext output.
3.
If there is no teletext output, the IC TDA150xx may be defect.
5.7.5
Power Supply
In case the power supply does not work, check (apart from the obvious fuse-check) if the oscillators in IC7001 (in TV sets with
37 inch screens) or in IC7001 and IC7U01 (in TV sets with 42 inch screens) are working. If not, replace the ICs.
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LC4.9A AA 6.
23
6.
Block Diagrams, Testpoint Overviews, and Waveforms
Wiring Diagram 42 Inch
WIRING 42”
C AUDIO AMPLIFIER
8735
8736
RIGHT
SPEAKER
1M01
3P
8101
INVERTER
CN308
2P3
PDP POWER SUPPLY
1M03
10P
1M46
11P
8102
INVERTER
AC INLET
8900
8146
B SSB
31P
1J04
31P
LVDS
CONNECTOR
11P
1J01
10P
1J00
9P
1J04
1107
3P
1101
3P
UART Compair
1103
3P
Tuner
8152
8120
8136
J LED PANEL
6P
0345
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LEFT
SPEAKER
D SIDE I/O
F_15430_052.eps
160605
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LC4.9A AA 6.
24
Wiring Diagram 50 Inch
WIRING 50”
C AUDIO AMPLIFIER
8735
9P
RIGHT
SPEAKER
1M01
3P
8101
INVERTER
8736
PDP POWER SUPPLY
INVERTER
CN1M46
11P
CN1M03
10P
8103
8146
8900
AC INLET
B SSB
31P
1J04
31P
LVDS
CONNECTOR
11P
1J01(1M46)
10P
1J00(1M03)
9P
1J04
1107
3P
1101
3P
UART Compair
1103
3P
Tuner
1K00
4P
8152
8120
8136
J LED PANEL
6P
0345
LEFT
SPEAKER
D SIDE I/O
F_15430_056.eps
260705
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LC4.9A AA 6.
25
Block Diagram Video
VIDEO
B1 TUNER & VIF
+5SW_a
+VTUN
RF
IN
1102
UV1318SD 6 7 9
11 IF-TER
2106
2
1104
7
TUNER
4 5
B23 CINCH ANALOGUE IO
1R02
VIDEO
IN
1
3
S-VHS 5
4
2
VIDEO
OUT
Pr
1R07
1R06
Y
Pb
B2 SEL_IF_SDM
7101
D SIDE AV
1002
VIDEO
IN
SVHS 5
1001
1
3
4
2
1
CVI_Pr_IN
CVI_Y_IN
CVI_Pb_IN
6104
4R70
4R69
3 8
VIF1
VIF2
B2 HERCULES
7217
TDA15021H
24
25
SC1_CV1_DMMI_G_Y_IN
SC1_CV1_DMMI_B_Pb_IN
Y
C
B17 SIDE
CONNECTIONS
1M36
2
4
1K04
2 FRONT_YCVBS_IN
4 FRONT_C_IN
B23
B23
Sound
Traps
CVBS1
3104
RF_AGC 31
DC
AC AGC
Detect
2
1106
7 SIF1
8 SIF2
29
30
QSS/FM
QSS Mixer
AM Demod. AM
Video
Switch
+
Control c
SC2_Y_IN
FRONT_Y_CVBS_IN
SC2_C_IN
FRONT_C_IN
1
12
2
7R57
13
7R12
EF
4R68
14
SC2_AV3_C_IN
7206
EF
15 SC2_AV3_Y_IN
59
64
SC2_CVBS_MON_OUT
CVBS_COMB
SC2_Y_IN_1
4R12
14
7219
B7 SC2_OUT_SW 9
13
12 48
51
52
58
SC1_CV1_DMMI_R_Pr_IN
55
43
B13
B13
B13 cvbs/y
HERCULES
RGB/Pr Pb Insert
YUV Interface
RGB Matrix
Blue & Black
Strech
Gamma Corr.
SAT
Skin Tone
U/V Tint
Saturation
YUV
77 78 79 80 74 75 76 70 71 72
N.C.
INTF_V_OUT
INTF_U_OUT
INTF_Y_OUT
RO
GO
BO
85
86
87
Dig. 2H/4H
Combfilter
Y Delay Adj.
Yint
SCAVEM on text
Peaking
SCAVEM
U/V Delay
Vertical &
East-West
Geometry
YUV in/out
VDRB 22
Chroma
PAL/NTSC/
SECAM
Decoder &
Baseband
Delay
Uint
Vint
H/V
Sync Sep
H-OSC
H-Shift
H-Drive
HOUT 67
B3
RO
GO
BO
1
7436-2
2
3
7436-1
4
B18
SYNC INTERFACE
7L01
EF
HISTO-
GRAM
7L02
EF
7208
EF
7210
EF
7L03
EF
SCL
SDA
7209
EF
Vsync_SDTV
Hsync_SDTV
48
56
57
30
31
7L04
MST9883C
54
43
A/D
CONV.
B13
F624
F625
F626
B13
B13
B13
B22
B22
B22
B13
B3
MUX-SYNC INTERFACE
B22
B22
B13
B3
R_SDTV
G_SDTV
27
7E01
3
SOG
B_SDTV
SC1_R_CVI_Pr_IN
7
25
SC1_G_CVI_Y_IN
1
SC1_B_CVI_Pb_IN 5
BINA|Pb 11
7E02
GINA|YINA 15
RINA|Pr
Vsync_SDTV
V_PC
H_PC
9
12
14
2
12
1
1
7E03
2
19
15
14
17 R_PR-ADC
14 G_Y-ADC
11 B_PB-ADC
5
1
R_PR+
G_Y+
B_PB+
PC_HD_DET B7
7604
8 AVSYNC
4 AHSYNC
Hsync_SDTV 13
10,11 SD_HD_SEL B7
B10 SDRAM
7B01
K4D263238F
+2V5_DDR
95
B7 SCALER
7801
GM1501
C3
D2
C2
B2
L3
L4
ANALOG
INPUT
PORT
SDRAM
1Mx32x4
FSDATA
FRAME
STORE
CONTROL
FSADDR
B19 COLUMBUS
(Dig. PAL/NTC Comb)
7M00
T6TU5XBG
COL_Di(1-7)
COL_YA(1-7)
COLUMBUS
DIGITAL COMB
FILTER
COL_Do(1-7)
COL_YB(1-7)
7M01
MSM56V16
DRAM
512Kx16x2
B22 DIGITAL IO
1Q01
1
2
3
13
14
5Q06
5Q21
PC-VGA/
CVI-2
5Q01
5Q11
5Q23
BINA|Pb
GINA|YINA
RINA|Pr
V_PC
H_PC
B23
B23
B23
B13
B13
B13
B13
B13
SC1_CV1_DMMI_R_Pr_IN
SC1_CV1_DMMI_G_Y_IN
SC1_CV1_DMMI_B_Pb_IN
BINA|Pb
GINA|YINA
RINA|Pr
13
1
3
7E00
5
2
12
9
14
15
4
SC1_R_CVI_Pr_IN
SC1_G_CVI_Y_IN
SC1_B_CVI_Pb_IN
RGB|CVI_HDA_SEL B7
B2,B13
B2,B13
B2,B13
H_HDMI 5
V_HDMI 1
7E05
8
4
HDMI_VHS
HDMI_VVS
C14
B14
SCALER
B11 FLASH/CONTROL
7C00
MX29LV040QC
OCMDATA
EXTERNAL
ROM
INTERFACE
OCMADDR
FLASH
ROM
512Kx8
B21 EPLD
B20 EPLD
LVDS_VCC
LVDSA-
LVDSA+
LVDSB-
LVDSB+
LVDSC-
LVDSC+
LVDSD-
LVDSD+
LVDSCLK-
LVDSCLK+
15
16
17
18
19
20
24
1P07
1
11
12
13
14
25
26
21
22
OR
GRAPHIC
ZOOM
B9 SCALER
AE16
AF16
AE15
AF15
DISPLAY
TIMING
GEN.
AE14
AF14
AF12
AF11
AF13
AE12
VIDEO
ZOOM
TXB0-
TXB0+
TXB1-
TXB1+
TXB2-
TXB2+
TXB3-
TXB3+
TXBC-
TXBC+
4N03
4N01
4N07
4N05
4N11
4N09
4N15
4N13
4N19
4N17
LVDSAn
LVDSAp
LVDSBn
LVDSBp
LVDSCn
LVDSCp
LVDSDn
LVDSDp
LVDSCLKn
LVDSCLKp
OR
TXB0+
TXB0-
TXB1+
TXB1-
TXB2+
TXB2-
TXB3+
TXB3-
TXBC+
TXBC-
Only for sets with
PIXEL PLUS
7N04
THC63LVDF84B
7P02
THC63LVDM83R
LVDS
INTERFACE
RECEIVER
LVDS
TRANS-
MITTER
LVDSAn
LVDSAp
LVDSBn
LVDSBp
LVDSCn
LVDSCp
LVDSDn
LVDSDp
LVDSCLKn
LVDSCLKp
LVDS_VCC
LVDSA-
LVDSA+
LVDSB-
LVDSB+
LVDSC-
LVDSC+
LVDSD-
LVDSD+
LVDSCLK-
LVDSCLK+
1P06
1
11
27
26
28
22
21
23
10
12
14
13
15
19
18
20
UART
INTERFACE
7N02
EP1C12F256C8N
EPLD
PIXEL+
PROCESSOR
HDMI/PC-D
1Q03
1
2
10
11
12
8
9
3
4
5
6
7
RX2+
RX2-
RX1+
RX1-
RX0+
RX0-
RXC+
RXC-
B12 HDMI
97
7D03
SII9993CTG100
86
84
83
96
92
91
87
HDMI
PANELLINK
RECEIVER
33
34
HDMI_Y(0-7)
HDMI_CbCr(1-7)
DVI/HDMI
INPUT
PORT
MICRO
CONTROLLER
INTERNAL
RAM
TV EXT1 EXT2 Side-AV PC HD
SD_HD_SEL H H H H H H
PC_HD_DET H H H H L H
RGB|CVI_HDA_SEL L H L L L L
F_15420_049.eps
130705
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LC4.9A AA 6.
26
Block Diagram Audio
AUDIO
B1 TUNER & IF
RF IN
1102
UV1316E/A I H-4
IFOUT
11
TUNER
F108
IF-TER
RF OUT
Only on
DVB Sets
4 5
B2
SEL_IF_SDM
2106 4110
7101
6104
2
1106
3
7
8
SIF1
SIF2
B23 CINCH ANALOGUE
1R06
SC1_COMP_AV1_L_IN
CVI-1
AUDIO
IN L/R
SC1_COMP_AV1_R_IN
1R03
AV
AUDIO
IN L/R
SC2_L_IN
SC2_R_IN
AV3_L
PC
AUDIO
IN L/R
HDMI
1Q03
1
3
4
6
7
9
10
12
AV3_R
SC1_COMP_AV1_L_IN
SC1_COMP_AV1_R_IN
SC2_L_IN
SC2_R_IN
B22 DIGITAL IO
3Q30
AV3_LEFT
3Q31
AV3_RIGHT
B12 HDMI
RX2+
RX2-
RX1+
RX1-
RX0+
RX0-
RXC+
RXC-
97
96
92
91
87
86
84
83
7D03
SII9993CT
HDMI
PANELINK
RECEIVER
16
14
12
7D05
13
2
1
15
14
AudioIN2L
AudioIN2R
53
54
10,11
AV3_HDMI-AUDIO_SEL
B7
34
35
56
57
D SIDE AV
AUDIO
L/R IN
1302
L_FRONT_IN
R_FRONT_IN
1M36
6
B17 SIDE CONNECTORS
1K04
6
8 8
FRONT_L_IN
FRONT_R_IN
49
50
B2 HERCULES
29
7217
TDA15021H
30
AM
QSS Mixer
AM Demod.
QSS/FM
33 AD Conv.
Std Stereo
Decoder
AUDIO
SELECT
ADC/DAC
I2S
Processor
AUDIO
CONTROL
Vol/Treb/
Bass
Features
DACs
61 4212
60
4211
AUDOUTLSL
AUDOUTLSR
B16
B5 AUDIO PROCESSING B16 SA3 AUDIO
4618
4219
AUDIO-L
AUDIO-R
SOUND-ENABLE_1
POR_AUDIO
B5
2
7601
TS482ID
1
1J04
(1M52)
1
1739
1
3
N.C.
7
8
9
3
8
9
7
AUDIO-L
7700
+16V+19V
TDA7490 4,22
10
PWM
3
6 stby-mute
OSC
AUDIO-R
PWM
23
SOUND-ENABLE
POR-CLASSD
7701:7707
SOUND
ENABLE
18
2,24
-16V-19V
PROT1
PROT_AUDIOSUPPLY
7709/7710
AUDIO
SUPPLY
PROT, CIRCUIT
6703 3764
6702 3761
5701
3718
5702
3717
5731
5730
DCPROT
+16 V+19V
-16 V-19V
+16 V+19V
-16 V-19V
B17 SIDE
CONNECTORS
HP_LOUT
1K04
10
D SIDE I/O
1M36
10 SOUND L-HEADPHONE-OUT
1010
2
1736
1
3
1735
1
3
Speaker L
15W/8
Ω
1M02
7
6
5
2
1
Speaker R
15W/8 Ω
TO 1002
SA
SUPPLY
SOUND R-HEADPHONE-OUT
DETECT
3
5
6 7
OUT_MUTE
OUT_MUTE 8
POR_AUDIO
3
7602
74HC08PW
&
2
1
6 &
&
&
5
9
10
12
13
7606
MUTE
HP_ROUT
N.C.
11
7
SOUND_ENABLE B2 B23 CINCH ANALOGUE
POWER_DOWN B16
EXT_MUTE
B2
3628
+5V
11
7
HEADPHONE
62
63
36 SC1_L_RF_OUT
37 SC1_R_RF_OUT
OUT_MUTE
N.C.
7202
MUTE
SC2_L_MON_OUT
SC2_R_MON_OUT
SC2_L
SC2_R
SC2_L_MON_OUT
SC2_R_MON_OUT
1R07
AUDIO
OUT L/R
CONTROL
E CONTROL BOARD
Channel+
Channel-
Menu
Volume+
Volume-
Power
1703
1704
1705
1702
1701
1706 KEYBOARD
B17 SIDE CONNECTORS
1M01
2
1K02
(1M01)
2 KEYBOARD
J LED PANEL
+5V2-STBY
1040
3
VS
2
GND OUT
1
6070
+5V2-STBY
7052
6050
Green 7062
RC
LIGHT-SENSOR
7051
6051
Red
3051
0345
3
1K00
3
1
2
+5V2-STBY 5
1
2
5
LED1
LED2
4
6
4
6
IR
LIGHT_SENSOR
+3V3STBY
LED_SEL
B3 SYNC INTERFACE
3431
7430
6F00
3432
RES
+3v3STBY
+5VSW
ITV_IR_SW_RESET
PC-TV-LED
B2 HERCULES
7217
TDA15021H
114
120
HERCULES
97
115
123
SEL_IF_SDM
4022
SERVICE
SDM
116
119
102
111
122
127
STATUS_1
STATUS_2
EXT_MUTE
SOUND-ENABLE
SC_STANDBY
AV2_DMMI_SW
B6 DC-DC CONVERTER
B1
B3
B3
B5
B5
B6 B15
B15
B8
PANEL-PWR-CTL
B2
SC_STANDBY
+12VSW
3758
5756
7755
+3V3STBY
3759
7756
7754
5754
7758
107
10
11
1202
家电维修资料网,免费下载各种维修资料
LVDS_VCC
PAN_VCC
+3V3SW
F_15420_050.eps
130705
Block Diagrams, Testpoint Overviews, and Waveforms http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 6.
27
Testpoint Overview SSB (Top Side)
F101 C1
F102 D2
F103 C1
F104 D2
F105 D1
F106 D2
F107 C1
F108 C2
F109 C2
F110 B2
F111 B2
F112 B2
F113 B2
F114 C2
F115 D2
F116 D2
F117 D2
F201 A2
F202 A2
F203 A2
F204 B3
F205 B2
F206 B2
F207 B2
F208 B2
F209 B2
F210 C2
F211 A2
F212 A2
F213 A2
F214 A2
F215 A2
F216 B3
F218 A2
F219 A2
F220 A3
F221 A3
F222 B2
F223 B2
F224 A2
F225 A3
F226 A3
F227 C3
F228 A3
F229 B2
F230 A3
F231 A2
F232 B3
F233 B3
F234 B3
F235 B3
F236 C3
F237 B2
F238 B2
F239 B2
F240 B2
F241 B3
F242 B2
F243 B2
F244 B2
F245 A2
F246 B2
F247 A2
F248 B2
F249 B2
F250 B3
F501 A2
F502 A2
F503 A2
F504 A2
F505 A3
F601 A1
F602 A2
F603 A1
F604 A2
F605 A2
F700 A6
F701 A5
F710 A5
F736 A3
F737 A3
F738 A3
F743 B3
F754 A5
F755 A6
F800 B7
F801 B6
F802 C5
F803 B5
F804 B5
F900 C5
F901 C5
F902 C6
F903 C5
F904 C6
F905 B6
F906 B6
F907 B5
F908 C5
F909 C5
F910 C6
FB01 B7
FC00 B5
FC01 B5
FC02 B5
FC03 B5
FC04 B5
FC05 C5
FC06 B5
FC07 B4
FC08 B5
FC09 B5
FC10 B4
FD00 C7
FD01 D7
FD02 D7
FD03 D7
FD04 C7
FD05 C6
FD06 C6
FD07 C7
FD08 C7
FD09 C7
FD10 C7
FD11 D7
FD12 C7
FD13 C7
FD14 C7
FD15 C7
FD16 C7
FD17 B6
FE00 C5
FE01 C5
FE02 C4
FE03 B5
FE04 D5
FE05 C5
FE06 D5
FE07 B7
FE08 C4
FE09 C5
FE10 C4
FE11 C5
FE12 C5
FE13 C5
FF00 D6
FF01 D6
FF02 D4
FF03 D7
FF04 D7
FF05 D7
FF06 D6
FF07 D6
FF08 D3
FF09 D7
FF10 D6
FF11 D6
FF12 D6
FF13 D6
FG00 D4
FG01 D4
FG02 D3
FG03 D4
FG04 D3
FG05 D3
FG06 D3
FG07 D3
FG08 D3
FG09 D3
FG10 D2
FG11 D3
FG12 D2
FG13 D2
FG14 D6
FG15 D5
FG16 D6
FG17 D6
FG18 D5
FG19 D5
FG20 D5
FG21 D5
FG22 D5
FG23 D4
FG24 D3
FG25 D3
FG26 D5
FG27 D5
FG28 D5
FG30 D5
FG32 D3
FG33 D3
FG34 D3
FG35 D3
FG36 D4
FG37 D3
FG38 D3
FG39 D4
FG40 D7
FG41 D3
FG42 D4
FG43 D4
FG44 D4
FG45 D4
FG47 D4
FG48 D4
FG49 D4
FG50 D4
FG51 C2
FG53 D4
FG54 D4
FG56 D4
FJ00 A7
FJ01 A5
FJ02 A4
FJ03 A5
FJ04 A5
FJ05 A4
FJ06 A4
FJ07 A5
FJ08 A4
FJ09 A2
FJ10 A2
FJ11 A4
FJ12 A2
FJ13 A2
FJ14 A2
FJ15 A7
FJ16 A7
FJ17 A7
FJ18 A7
FJ19 A7
FJ20 A7
FJ21 A5
FJ22 A5
FJ23 A5
FJ24 A5
FJ25 A5
FJ26 A5
FK00 B1
FK01 B1
FK02 B1
FK03 B1
FK04 B1
FK05 B1
FK06 B1
FK07 C1
FK08 C1
FK09 C1
FK10 B1
FK11 A1
FM01 C4
FM02 C4
FM03 C4
FM04 C4
FM05 C4
FN01 A6
FN02 A6
FN03 A6
FN04 A7
FN05 A7
FN06 A7
FN07 A7
FN08 A7
FN09 A7
FN10 A7
FN11 B6
FN12 A6
FN13 A6
FN14 A6
FN15 A6
FN16 A6
FN17 A6
FN18 B6
FN19 B5
FN20 A7
FN21 A7
FN22 A7
FN23 A7
FN24 A6
FN25 B6
FN26 A7
FN27 A7
FN28 A7
FN29 A7
FN30 A7
FN31 A7
FN32 A7
FN33 A7
FN34 A7
FN35 A7
FP01 A6
FP02 A6
FP03 A6
FP04 A6
FP05 A6
FP06 A6
FP07 A6
FP08 A7
FP09 A7
FP10 A7
FP11 A7
FP12 A7
FP13 A6
FP14 A7
FP15 A6
FP16 A6
FP17 A7
I101 D2
I102 C2
I103 C2
I104 C2
I105 C2
I106 C2
I107 C2
I108 C2
I109 C2
I110 C2
I111 C1
I112 D2
I113 D2
I201 A2
I202 A2
I203 B2
I204 B2
I205 B2
I206 B2
I207 B2
I208 B2
I209 B2
I210 A3
I211 A3
I212 A3
I213 A2
I214 B2
I215 A2
I216 B2
I217 B3
I218 A3
I219 B3
I220 B3
I221 A2
I222 A2
I223 A2
I224 A3
I225 A2
I226 B2
I227 B2
I228 B3
I229 B2
I230 A3
I231 B2
3139 123 6093.1
I232 A2
I233 B2
I234 B2
I235 B2
I236 B2
I237 B2
I238 A2
I239 A3
I240 A3
I241 A2
I242 A2
I243 A3
I244 B3
I246 A3
I247 A3
I248 A3
I254 C3
I255 B3
I256 B3
I257 B3
I258 B2
I259 B3
I262 B2
I264 A2
I265 B3
I266 B3
I267 B3
I268 B3
I269 A2
I270 B3
I271 A3
I272 B3
I273 C3
I274 A1
I275 A3
I277 A3
I278 A3
I283 B3
I284 B3
I285 B3
I288 B3
I289 A2
I290 A2
I291 A2
I292 A2
I293 A2
I294 A2
I297 A1
I298 B3
I430 A1
I440 B3
I443 B3
I449 A3
I450 A3
I451 A3
I452 A3
I453 A1
I454 A1
I501 A3
I502 A3
I503 A2
I504 A2
I505 A2
I602 A1
I603 A2
F_15430_038.eps
180405
I754 A5
I755 A5
I756 A6
I757 A5
I758 A5
I759 A5
I760 A6
I800 C6
I801 C5
I802 B5
I803 B5
I804 B6
I805 B5
I731 A4
I732 A3
I733 A3
I734 A3
I735 A3
I736 A3
I740 B3
I741 B3
I742 B3
I747 A5
I748 A5
I749 A5
I750 A6
I751 A5
I752 A5
I753 A5
I618 A1
I619 A1
I705 A3
I706 A4
I708 A5
I709 A5
I710 A4
I711 A4
I712 A4
I713 A4
I714 A4
I715 A4
I716 A4
I604 A1
I605 A2
I606 A2
I607 A1
I608 A1
I610 A1
I611 B1
I612 A1
I613 A1
I614 A1
I615 A1
I616 A1
I617 A2
I900 B7
I901 B6
I902 C6
I903 C6
I904 B6
I905 B6
I906 C5
IA00 C6
IA03 B4
IA05 C6
IA06 C6
IA07 C6
IA08 B5
IA09 B6
IB02 B7
IB03 B7
ID00 C7
I806 B5
I807 B5
I808 B5
I809 B5
I810 B5
I811 C7
I812 C6
I813 B7
I815 C6
I816 C6
I817 C6
I818 C4
I819 B5
I820 B6
I821 B5
I822 B5
ID01 D7
ID02 C7
ID03 C7
ID04 C7
ID05 C7
ID06 C7
ID07 C7
ID08 C7
ID09 C7
ID10 C7
ID11 C7
ID12 C7
ID13 C6
ID14 C6
ID15 C7
ID16 C7
ID17 C7
ID18 C7
ID19 C7
IL12 B4
IL13 B4
IL14 B4
IL15 B4
IL16 C3
IL17 B3
IL18 B3
IL19 B4
IM00 C4
IM01 C3
IM03 B4
IM04 B4
IM06 B4
IK02 A1
IK03 A1
IK16 A1
IK17 B1
IK18 B1
IL01 B3
IL02 B3
IL03 B3
IL04 B3
IL05 B3
IL06 B3
IL07 B3
IL08 B3
IL09 B3
IL10 B4
IL11 B4
IJ03 A4
IJ04 A3
IJ05 A3
IJ06 A3
IJ07 A3
IJ08 A3
IJ09 A3
IJ10 A3
IJ11 A3
IJ12 A3
IJ13 A3
IK00 A1
IK01 A1
IG62 D2
IG63 D3
IG64 D3
IG67 D3
IG69 D3
IG73 D4
IG75 D5
IG76 D6
IG78 D5
IG79 D5
IG80 D5
IJ01 A3
IJ02 A3
IM07 B4
IM08 B4
IM09 B4
IM10 B3
IM11 C3
IN01 A6
IN02 A6
IN03 A6
IN04 A6
IN05 A6
IN06 A6
IN07 B6
IN08 A6
IN09 A6
IN10 A6
IN11 A6
IN12 A6
IN13 B6
IN14 A6
IN15 B6
IN16 A7
IN17 A7
IN18 A7
IN19 A6
IF01 D7
IF02 D7
IF03 D7
IF04 D6
IF05 D6
IF06 D7
IF07 D7
IF08 D7
IF11 D6
IF12 D6
IF13 D7
IF14 D7
IF15 D6
IE23 C5
IE24 C5
IE25 D5
IE26 D5
IE27 C5
IE28 C4
IE29 C4
IE30 C4
IE31 C5
IE32 C5
IE33 C5
IE34 C5
IE35 D5
IE36 C5
IE37 C5
IF00 D7
IE10 C5
IE11 C5
IE12 C5
IE13 D5
IE14 D4
IE15 D4
IE16 C4
IE17 C4
IE18 C4
IE19 D5
IE20 D5
IE21 D5
IE22 D5
ID20 C7
ID21 C7
ID22 C6
IE00 D4
IE01 C4
IE02 D5
IE03 C6
IE04 C5
IE05 C5
IE06 C4
IE07 C4
IE08 C4
IE09 C5
IG11 D3
IG12 D3
IG13 D2
IG14 D6
IG15 D5
IG16 D6
IG17 D5
IG18 D6
IG19 D5
IG20 D6
IG21 D5
IG23 D5
IG24 D5
IG25 D5
IG26 D5
IG27 D4
IG28 D3
IF17 D7
IF20 D7
IF21 D4
IF22 D6
IF23 D6
IG00 D4
IG01 D4
IG02 D4
IG03 D4
IG04 D3
IG05 D3
IG06 D3
IG07 D3
IG08 D3
IG09 D3
IG10 D3
IG29 D3
IG30 D3
IG40 D5
IG42 D5
IG43 D4
IG46 D5
IG47 D5
IG49 D4
IG50 D4
IG52 D5
IG53 D5
IG54 D5
IG55 D5
IG56 D5
IG57 D5
IG58 D5
IG59 D4
IG60 D3
IG61 D2
家电维修资料网,免费下载各种维修资料
Block Diagrams, Testpoint Overviews, and Waveforms
I
2
C Overview
I²C
B2 HERCULUS
+3V3STBY
7217
TDA15021H
109
108
SDA
SCL
B8 SCALER
ERR
6 HERCULES
SET
PROCESSOR
5
104
+3V3STBY
NVM_WP_HERC
7207
M24C16
7
EEPROM
NVM
6
ERR
9
N1
7801
GM1501H
SCALER
N2
ERR
4
B23 CINCH ANALOGUE IO (1FH) http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 6.
28
B7 SCALER
M1
M2
+3V3SW
B1 TUNER & IF B19 COLUMBUS
B11
5
1102
UV1318S
TUNER
4
ERR
10
UART_TX
3122
UART_RX
3123
SDA
1101
1
SCL 2
3
+3V3STBY
SERVICE
CONNECTOR
COMPAIR
1107
1
2
3
FLASH / CONTROL
A15 B15
7M00
T6TU5XBG
COLUMBUS
CTRL
SERVICE
CONNECTOR
UART
B9 SCALER INTERFACE
ERR
11
B18 ADC
7L07
+3V3SWB
7L06
+3V3SWB
B21 EPLD B12 HDMI
112 SW_I2C_SDA
113 SW_I2C_SCL
ERR
17
1R03
1
2
Reserved for DMMI
P3
P4
SDA_IO
SCL_IO
AF5 NVM_WP_SCALER
5
7C01
M24C32
6
7 EEPROM
ERR
8
3
2
7A00
PCA9515ADP
6
7
SDA_DMA_BUS1_DISP
1P07
(1G50)
31
SDA_DMA_BUS1_DISP 30
ADDRESS
DATA
OCMADDR
OCMDATA
7C00
MX29LV040
FLASH ROM
RES
4A01
4A00
FOR
PDP ONLY
TO
DISPLAY
57 56
7L04
MST9883C
ANALOG
INTERFACE
ERR
7
B22 DIGITAL IO
75 74
7D03
SII9993CT
HDMI
PANELLINK
RECEIVER
ERR
13
76
77
+3V3SW
5
7D00
M24C02
EEPROM
256x8
6
7D02
7D01
DOC_SDA
1Q03
16
DOC_SCL 15
+3V3SW
HDMI
CONNECTOR
B20 EPLD
4N21
4N22
T2 R2
7N02
EP1C12F256C8N
EPLD
BANK 4
ERR
16
+3V3IO
B10 SDRAM
B22 DIGITAL IO
ADDRESS
DATA
AF7
AD6
JTAG_TDI_SDA
JTAG_CLK_SCL
1802
2
1
JTAG
I2C
FSADDR
FSDATA
7B01
K4D263238F
SDRAM
ERR
14
VGA
CONNECTOR
1Q01
12
15
5
7Q25
M24C02
6
EEPROM
256x8
SDA_VGA
SCL_VGA
+3V3SW
SDA
SCL
1N02
1
2
3
4
FOR
DEVELOPMENT
USE ONLY
F_15270_083.eps
150605
家电维修资料网,免费下载各种维修资料
Block Diagrams, Testpoint Overviews, and Waveforms http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 6.
29
Supply Voltage Overview
SUPPLY LINE OVERVIEW
B16 TOP CONNECTORS
SUPPLY
PANEL
(PSU)
B6
MFD SUPPY
8
9
10
11
12
6
7
4
5
1J02
1
2
3
POWER_DOWN
STANDBY
BACKLIGHT_CTRL
LAMP_ON_OFF
RES
7
8
9
10
11
5
6
3
4
1
2
1J01
(1M46)
N.C
N.C
.
.
N.C
N.C
.
.
1J07
1J08
4J01
UFD SUPPY
+12VUFD
+5V_UFD
VP
1J03
+3V3STBY
5J03 +12VUNREG
+5V_UFD
1
N.C.
B6
B5,B6,B9
B16
B16
B6
B6
B16
B6
B6
1J00
(1M03)
7
8
5
6
3
4
1
2
9
10
N.C
N.C
N.C
.
.
.
UFD CONTROL
BACKLIGHT_CTRL
LAMP_ON_OFF
FAN_SPEED
STANDBY
PROTECT_AUD
POWER_UP_OK
B6
B6
B16
TO 1M02
C
AUDIO
AMPLIFIER
B6
B16
B16
B16
N.C.
B1 TUNER & IF
+5VSW
+3V3STBY
5102
5103
+5VSW
+5VSW_a
+5VSW_b
+3V3STBY
B8
B8
B6
B8
B8
B7 SCALER
+1V8_CORE
+2V5_DDR
+3V3SW
+3V3_IO
+3V3_PLL
B2 HERCULES
+3V3STBY
3265
7215
+5VSW
+8VSW_TV
3264
7216-1
3263
7217
3262
7216-2
+3V3STBY
+1V8_A
+1V8_B
HERCULES
+5VSW
+8VSW_TV
B6
B8 SCALER
+3V3SW
5900
5901
5902
5903
5904
5905
5906
5907
7900
IN OUT
COM
5908
B3 SYNC INTERFACE
+3V3STBY
+3V3SW
+5VSW
+3V3STBY
+3V3SW
+5VSW
7901
IN OUT
COM
5909
5910
5911
B4 AUDIO DELAY LINE
(RESERVED)
+5VSWI +5VSWI
5501
B5 AUDIO PROCESSING
+3V3SW
+3V3STBY
+5VSW
+5V (Only UFD)
+5VD
+3V3SW
+3V3STBY
+5VSW
+5V
B16
B16
B6
B6
B9 SCALER INTERFACE
+3V3SW
+3V3STBY
+5VSWI
+5V
B8
B10 SDRAM
+2V5_DDR
3B01
B6 DC-DC CONVERTER
+12VUNREG +12VUNREG
+12VSW
+8VSW_TV 5738
7738
IN OUT
COM
5752
7752
DC/DC
Converter
5753
5754
5730
7730
PWR
REG
5733
+5VSWI
6735 +VTUN
5737 +5VSW
7754
5757
5700
(Only LCD)
PAN+VCC
LVDS_VCC
PANEL-PWR-CTL
B8
B6
B2
B11 FLASH / CONTROL
+3V3_IO
+3V3SW
B6
B4,B9,B13,
B14,B19
B12 HDMI (Not for EUR Sets)
+3V3SW
+5VHDMI
B22
B1,B2,B3,
B15,B17
B13 MUX-SYNC INTERFACE
+3V3SW
B6
B21
B6
+5VSWI
+5V
+3V3STBY
7710
IN OUT
COM
5712
5704
7708
IN OUT
COM
SC_STANDBY
7758
(Only UFD)
+5V
+3V3STBY
+3V3SW
+1V8_CORE
+2V5_DDR
+3V3SW
+3V3_IO
+3V3_PLL
+3V3SW
3V3_PLL
3V3_ADC
3V3_DVI
3V3_IO
3V3_LBADC
3V3_LVDSA
3V3_LVDSB
3V3_LVDS
+2V5_DDR
+1V8
+1V8_ADC
+1V8_DV1
+1V8_CORE
+3V3SW
+3V3STBY
+5VSWI
+5V
+2V5_DDR
FSVREF
+3V3_IO
+3V3SW
+3V3SW
+5VHDMI
+3V3SW
+5VSWI
B16
B6
B19
B7
B6
B14 DIGITAL IO (Only for EUR Sets)
+5VSWI
3F20 6F01
6F00 5F03
B1,B2,B3,
B5,B9,B17
DVI
1F00
1
+5VSWI
DDC_5V
DVI_5V
1M02
PSU
B6
B3,B5,B7,
B8,B9,B11
B12,B13,
B19,B20,
B21
B15 SCART ANALOGUE IO
(Only for EUR Sets)
+5VSW +5VSW
B17 SIDE CONNECTORS
+3V3STBY
+5VSW
5K00
5K01
+3V3STBY
+3V3STBY_1
1K00
5
1K04
B17
0345
J
+5VSW_1
+5VSW
1K01
7
1M16
D
1K00
B17
D SIDE I/0
1M36
7
J
0345
5
LED PANEL
B18 ADC
+5VSWIA
B6
B7,
B11,B20
B19 COLUMBUS
+3V3SW
5M03
+5VSWI
B6
B7,B10
5M04
B6
B8
B7
B6
B6
B6
B6
B20 EPLD
B21
+3V3SW
LVDS_VCC
5P02
5P03
+3V3SW
+3V3-IO
1V5
1V5-PLL
1V5-INT
LVDS_VCC
B22 DIGITAL IO
(Not for EUR Sets)
HDMI
1Q03
18
1870
9
VGA
10
+5VSWI
3Q16
3Q17
6Q16
3Q18
5Q16
B23 CINCH ANALOGUE
+5VSW
C AUDIO AMPLIFIER
1M02
1
2
5
6
+3V3SW
+3V3-IO
EPLD
7K05
IN OUT
COM
5P01
7P01
IN OUT
COM
7702
5708
5714
5701
5705
5709
+5VSWIA
+3V3SWB
+3V3SW
+3V3SWA
+5VSWI
+5VSWIA
+3V3SW
+3V3-IO
+5VSW
DDC_5V
+5VSWI
(Not for EUR Sets)
+5VSW
-19-16V
-19-16VS1
-19-16VS2
VDDOPAMP
+19-16V
+19-16VS1
+19-16VS2
B18
B12
家电维修资料网,免费下载各种维修资料
+5VSW
+5V2-STBY
F_15430_054.eps
160605
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
30
7.
Circuit Diagrams and PWB Layouts
A
B
C
D
E
F
G
SSB: Tuner and VIF
1
B1
TUNER & IF
3139 123 6093.1
1
2
FROM SCALER
UART_TX 3122
UART_RX 3123
100R
100R
3120
10K
3121
10K
6106 6107
3
1102
UV1318ST/AIH-MK3
RF
IN
RF
OUT
F101
12
13
14
MT
PRE-FIL BOOSTER
SPLITTER
PRE-FIL
TRACK
FILTER
GAIN
CTRL
PRE-AMP
TRACK
FILTER
INTMED
FILTER
MIX-OSC
IF AMP
IFOUT 11 0V
AGC
DET
PLL
MT
15
16
17
F108
4115 RES
4116 RES
1
SERVICE
COMPAIR
1101
F102
2
3
4 5
F104
3124
100R
3125
100R
SCL
SDA
I112
6101
BZX384-C6V8
5VSW_a
I113
5107
5108
3102
3101
6102
BZX384-C6V8
F103
RES
RES
100R
100R
5VSW_a
I101
2104
22p
3103
10K
2105
22p
F105
RF_AGC
+VTUN
F106
3105
1K0
F107
2107
47n
2108
2u2
50V
3106
RES
6103
BAS316
*
3104 *
10K
2109
22u
16V
For ITV Only
SCL
SDA
3126
3127
+3V3STBY
100R
100R
1
2
3
4
6
1103
5
SEL_IF_SDM
2
+3V3STBY
3
F115
F116
F117
SERVICE
UART
1107
5
1
2
4
3
4
4
F109
IF-TER
3111
22K
5
5
5101
390n
+5VSW
2106
10n
I104
3112
18K
3115
I111
5102
6u8
5103
6u8
3107
6K8
I103
3109
2K2
6
5VSW_b
7101
BC847BW
0V
I105
0V
+5VSW
2110
1n0
I107
6
2101
100u
16V
2102
10n
2113
100u
16V
2103
10n
I102
3108
2K2
6104
1SS356
3116
100K
3118
150K
FOR FM RADIO ONLY
3113
22K
2114
1u0
5VSW_a
5VSW_b
I106
7
3114
47K
3117
820R
I108 2111
7103
BFS20
1n0
I109
3119
560R
2112
1n0
4114
7
F114
I110
FOR -/93 ONLY
3110
2K2
6105
1SS356
7102
BC847BW
8
4102
4103
4104
4105
*
*
4109
4110
4111
4112
EUROPE & AP
PAL-MUTLI
ONLY
8
*
9
1104
2
3
I1
I2
1
4
5
6
9
10
13
14
15
18
GND
38M9
O1
O2
NC
11
12
16
17
7
8
1105
OFWK3955L
2
3
*
I1
I2
1
4
5
6
9
10
13
14
15
18
GND
38M
O1
O2
7
8
NC
11
12
16
17
9
VIF1
F110
5105
RES
VIF2
F111
* *
2
3
10
13
14
15
18
5
6
9
1
4
I
ISWI
GND
1106
O1
O2
NC
11
12
16
17
7
8
5106 RES
SIF1
SIF2
F112
F113
40M4
10
10
B1
F_15270_011.eps
250505
A
B
C
D
E
F
G
3108 C6
3109 D6
3110 C7
3111 E5
3112 E5
3113 D7
3114 E7
3115 F5
3116 F6
3117 F7
3118 F6
3119 F6
3120 F3
3121 F3
2110 F6
2111 F7
2112 F7
2113 B6
2114 E7
3101 D2
3102 D2
3103 D3
3104 D4
3105 D2
3106 E3
3107 C6
1101 C1
1102 A1
1103 E2
1104 C9
1105 D8
1106 E9
1107 F3
2101 A6
2102 A6
2103 B6
2104 D3
2105 D3
2106 D5
2107 E2
2108 E3
2109 D4
4116 C4
5101 B5
5102 A6
5103 B6
5105 C9
5106 E9
5107 D2
5108 D2
6101 D1
6102 D2
6103 D4
6104 C6
6105 C7
6106 G2
6107 G3
7101 D6
7102 D7
7103 F6
F101 B1
F102 C1
F103 C2
F104 C1
F105 C4
3122 F2
3123 G2
3124 C1
3125 C1
3126 E1
3127 E1
4102 C8
4103 C8
4104 C8
4105 C8
4106 C8
4107 D9
4108 D10
4109 E8
4110 F8
4111 F8
4112 F8
4113 F8
4114 F7
4115 B4
F106 D2
F107 D3
F108 B4
F109 E5
F110 C10
F111 C10
F112 E10
F113 F10
F114 G7
F115 F3
F116 G3
F117 G3
I101 D3
I102 C6
I103 D6
I104 E5
I105 D6
I106 D7
I107 F6
I108 F7
I109 F7
I110 D7
I111 F6
I112 C1
I113 D2
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
31
H
D
E
F
G
C
B
A
SSB: Hercules
1 2
B2
HERCULES
B15 / B23
AUDIO PROCESSING
B5 AUDOUTLSR
B5 AUDOUTLSL
7201-1 PUMH7
OUT_MUTE
B5 0V
3V9
7201-2 PUMH7 3V9
3V9
7202-1
PUMH7
3 4
+8VSW_TV +8VSW_TV
4211
2280
3201
I289
4u7
100R 2201 1u0
I290
7204-2
BC857BS
I291
7204-1
BC857BS
2281
3204
4u7
I292
100R 2202 1u0
I294
I293 7205-2
BC857BS
3205
7205-1
BC857BS
*
3206
4212
I201
I202
Const_L_OUT
Const_R_OUT
3V9
7202-2
PUMH7
7203-1
PUMH7 3V9
7203-2
PUMH7 3V9
5
+5VSW
+5VSW
MAIN_OUTR
MAIN_OUTL
6
+5VSW
7
2219
RES
I206
2V2
1201
SFSKA
4M5
RES
1V6
I207
RESERVED
INTF_V_OUT
INTF_Y_OUT
INTF_U_OUT
+5VSW
3250
100R
3228
3244
3289
I246
2203
10u
16V
7209
BC847BW
RES
RES
RES
7210
BC847BW
F220
F221
7208
BC847BW
I218
B13
B13
B13
R_SDTV
B_SDTV
G_SDTV
4207
3255
0R
RES
3258
330R
4208
RES
3256
0R
3259
330R
4209
3257
RES
0R
3260
330R
3251
100R
3252
100R
3253
100R
I243
+8VSW_TV
+5VSW
I219
7217
+3V3STBY
GND
+5VSW
GND1
5206
2234 220n
5207
2235
I221
220n
+1V8_B
+1V8_A
F227
6201
+3V3STBY
+3V3STBY
+3V3STBY
+1V8_A
3280
1R0
2230
100n
5204
2231 220n
5205
2232
2233
100n
F224
I220
10u 16V
82
F222
F223
47
15
110
69
5208
220n
I222
F225
3
124
100
117
2236
5209
2237
5210
220n F226 96
2238
5211
220n
2239 100n
I223
F228
4
94
5212
2240 220n
I224 88
93
5213
2241 220n
2242 100n
F229 45
8V
VP3
VP2
VP1
VDDP_3.3
VDDCOMB
VDDC4
VDDC3
VDDC2
VDDC1
VDDADC_1.8
VDDA3_3.3
VDDA2_3.3
VDDA1
VDDA_1.8
VCC8V
2243
10u 16V
BAS321
2244
2245
2246
3268
100n
100n
100n
100R
5218 RES
B15/B23
7219
RES
2291
16
VDD
MDX
G4
F210
14
SC2_CVBS_MON_OUT
4X1
4X2
1
2
13
12
11
RES
6
15 1
2
10
+5VSW
3282 150R
2290 4u7
3262
22K
4
3
5
9
3254
1K0
+3V3STBY
2V1
3
3263
3R9
7214
BCP69-25
3
1
I242
VSS VEE 2V5
5
1V9
7211
BC847BW
3264
22K
2V8
7216-1
BC847BS
2V
1
6
2
3265
3R9
2V7
3
7215
BCP69-25
F230
1
1V9
7216-2
BC847BS
4
B7
SC2_OUT_SW
2208
1u0 50V
F231
2209
10u 16V
3266
3267
2207
220n
+1V8_A
+1V8_B
5K6
5K6
2285
100n
3286
CVBS_COMB
I255
I256
I257 I258
RES
100R
3285
5217
RES
0R
2288
RES
2287
RES
HERCULES
TDA15021H/N1A11
F248
8
I277
9
I273
3139 123 6093.1
1 2 3 4 5 6 7 8 9
+3V3STBY
F213
+3V3STBY
1202
24M576
10
RES
10
11
VSSP2
1
VSSCOMB
68
VSSC4
VSSC3
VSSC2
VSSC1|P
2
125
101
121
VSSADC
95
F247
GND1
VSSA1
12
GNDA
GND3
GND2
GND1
92
81
40
18
GNDIF
28
F249
2292
I265 100n
B2
+3V3STBY
F218 3249 4K7
3V2
7207
NVM_WP_HERC
2V9
M24C16-WMN6
3V2
WC
Φ
(2Kx8)
7 EEPROM
3247 100R 6
SCL
3248 100R
ADR
5
+3V3STBY 2V8
SDA
0
1
2
1
2
3
F219
POWER_DOWN_BOLTON_P50
I269
I217
5215
47u
2278 27p
I267
8V
3278
68K
0V
7218
BC847BW
11
12
F_15270_012.eps
170505
12
A
B
C
D
E
F
G
H
F214 C10
F215 C10
F216 C10
F218 A11
F219 B12
F220 D3
F221 D3
F222 D5
F223 D5
F224 D5
F225 D5
F226 D5
F227 D4
F228 E5
7217 C6
7218 F11
7219 F2
F201 B2
F202 B2
F203 B3
F204 B3
F205 B6
F206 B6
F207 C7
F208 C7
F209 B7
F210 F1
F211 C9
F212 C8
F213 C10
7202-2 C3
7203-1 C3
7203-2 C3
7204-1 A4
7204-2 A3
7205-1 B4
7205-2 B4
7206 B6
7207 B11
7208 D2
7209 D2
7210 D3
7211 F4
7214 G3
7215 G4
7216-1 G3
7216-2 G3
5209 D5
5210 D5
5211 E5
5212 E5
5213 E5
5214 G9
5215 F10
5216 F10
5217 H7
5218 F2
6201 E4
6204 C11
6205 C11
6206 C12
7201-1 B1
7201-2 C2
7202-1 C2
F246 F10
F247 D11
F248 F8
F249 E11
F250 A7
I201 A5
I202 B5
I203 B6
I204 B6
I205 B6
I206 A7
I207 C7
I208 B7
I209 C8
I210 C8
I211 B8
I212 B9
I213 C10
I214 C10
I215 C10
F229 E5
F230 G4
F231 G4
F232 F5
F233 F5
F234 F5
F235 F5
F236 F6
F237 F6
F238 F6
F239 F6
F240 F6
F241 G7
F242 G7
F243 G7
F244 F8
F245 F9
3262 F3
3263 F3
3264 F4
3265 F4
3266 F4
3267 F4
3268 F5
3270 F7
3271 F7
3272 F8
3273 F8
3274 F8
3275 F9
3276 F9
3277 F10
3278 F11
3245 C10
3246 C11
3247 B11
3248 B11
3249 A11
3250 D2
3251 D3
3252 D3
3253 D3
3254 F3
3255 E2
3256 E2
3257 E3
3258 E2
3259 E2
3260 E3
3230 B9
3231 B9
3232 B9
3233 B9
3234 B9
3235 B9
3236 B9
3237 C9
3238 C10
3239 C10
3240 B10
3241 B10
3242 C10
3243 C10
3244 D2
3215 B6
3216 A6
3217 B7
3218 B7
3219 B7
3220 B7
3222 B8
3223 B8
3224 B8
3225 B8
3226 B9
3227 C8
3228 D2
3229 C9
3294 G2
3295 F8
3296 B5
4201 F5
4202 F5
4203 F5
4204 C9
4205 C9
4206 F3
4207 E2
4208 E2
4209 E3
4211 A4
4212 B4
4213 F5
4214 F5
3279 G11
3280 E4
3281 F8
3282 F3
3283 B8
3284 B8
3285 G6
3286 H6
3287 B7
3288 B7
3289 D2
3290 B8
3291 F2
3292 F2
3293 G2
4215 F5
5201 B5
5202 B5
5203 B7
5204 D5
5205 D5
5206 D4
5207 D4
5208 D5
I270 B11
I271 B10
I272 B10
I273 C9
I274 A9
I275 A9
I277 C8
I278 C8
I283 B6
I284 B6
I285 B6
I288 B6
I289 A3
I290 A3
I291 A4
I292 B3
I293 B3
I294 B3
I297 B8
I298 C7
I246 D2
I247 D4
I248 D4
I254 F6
I255 F6
I256 E7
I257 E7
I258 E7
I259 F8
I262 F8
I264 F9
I265 F10
I266 F10
I267 F11
I268 G11
I269 C11
I229 F7
I230 F7
I231 F7
I232 F8
I233 F8
I234 F8
I235 F8
I236 F8
I237 F8
I238 F9
I239 F9
I240 F10
I241 B10
I242 F4
I243 C4
I244 B7
I216 C10
I217 C11
I218 D3
I219 C5
I220 D5
I221 D5
I222 D5
I223 D5
I224 E5
I225 C10
I226 F8
I227 F6
I228 F7
2255 F7
2256 F8
2257 F8
2258 G5
2259 G8
2260 F8
2262 G8
2263 F8
2264 G8
2265 G8
2266 G8
2267 F8
2268 G8
2269 F9
2270 F9
2271 F9
2239 E5
2240 E5
2241 E5
2242 E5
2243 E5
2244 E5
2245 E5
2246 F5
2247 F6
2248 G6
2249 G6
2250 F7
2251 F7
2252 F7
2253 F7
2254 F7
2218 A7
2219 A7
2220 B7
2221 A7
2223 B8
2224 C8
2225 B10
2226 C10
2227 B11
2228 C5
2229 C5
2230 D5
2231 D5
2232 D5
2233 D5
2234 D4
2235 D4
2236 D5
2237 D5
2238 E5
1201 B7
1202 G10
2201 A3
2202 B3
2203 D2
2205 G4
2206 G4
2207 F5
2208 G4
2209 G4
2210 B5
2211 B6
2214 B6
2216 B6
2287 H7
2288 H6
2290 F3
2291 F2
2292 E11
2293 C10
3201 A3
3202 A4
3203 A4
3204 B3
3205 B4
3206 B4
3207 B6
3208 B6
3209 B6
3210 B6
3211 B6
3212 B6
3213 B6
3214 B7
2272 F9
2273 F10
2274 F10
2275 G9
2276 G10
2277 F10
2278 F11
2279 F11
2280 A3
2281 B3
2282 F10
2283 F10
2284 F10
2285 F6
2286 F7
家电维修资料网,免费下载各种维修资料
A
B
C
D
E
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
32
SSB: Sync Interface
1 2
B3
SYNC INTERFACE
3 4 5 6 7
3139 123 6093.1
1
+3V3STBY +5VSW
6430
BZX384-C2V7
3431
1K0
TO SIDE CONNECTORS
LED_SEL
I454
I453
6431
1N4148
0V
7430
PDTC114ET
I430
3432
3V1
RES ITV_IR_SW_RESET
COL_HREF 4440
H_DELAY 4438
RES
+3V3SW
3458
100R
7436-3
74LVC14APW
14
5
7
6 9
3463
RES
+3V3SW
7436-4
74LVC14APW
14
8
3459
100R
7
H_1FH
COL_VA 4441
Vsync_SDTV 4439
RES
3461
100R
13
+3V3SW +3V3SW
7436-6 7436-5
74LVC14APW74LVC14APW
14
12 11
14
7 7
2449
100n
10
3462
100R
V_1FH
2 3 4
HOUT
3451
4K7
I443
VSYNC
5
4436
RES
+3V3SW
3453
100R
7436-1
74LVC14APW
14
1
7
2
3454
100R
I440
3455
100R
3
4437
RES
+3V3SW
7436-2
74LVC14APW
14
4
7
3456
100R
6
8
Hsync_SDTV
Vsync_SDTV
9
SC1_CVBS_RF_OUT
&
I449
I450 4
5
7
1
2
3
1440
6
BM05B-SRSS-TBT
+12VSW
5431
2447
10p
1441
I451
(NC)
I452
2448
10p
1
2
3
5 4
S3B-PH-SM4-TB
FOR ITV ONLY
7 8 9
F_15270_013.eps
170505
D
E
B3
A
B
C
4436 A6
4437 B6
4438 D2
4439 E2
4440 D2
4441 E2
5431 E8
6430 A3
6431 B3
7430 B3
7436-1 A6
7436-2 C7
7436-3 D3
7436-4 D4
7436-5 E4
7436-6 E3
I430 B3
I440 C6
I443 B5
1440 D9
1441 E9
2447 E8
2448 E9
2449 E4
3431 A3
3432 B3
3451 A5
3453 B6
3454 B7
3455 C6
3456 C7
3458 D2
3459 D4
3461 E2
3462 E4
3463 C4
I449 D8
I450 D8
I451 E9
I452 E9
I453 B3
I454 B2
家电维修资料网,免费下载各种维修资料
A
B
C
D
E
F
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
33
SSB: Audio Delay Line (Reserved)
1 2 3
B4
AUDIO DELAY LINE (RESERVED)
4 5 6 7 8
+5VSWI
5501 1u0 F501
+5VD
+5VD
+5VD
COUNTER
7501
14
M74HC590T
EN3
16
VCC
2501
13
2V3
12
C2
G1 CTR8
11
2V3
10
5V3
1+ (CT=255)Z4
CT=0
4
100n
9
5V3
15
2D 3
1
2
3
4
5
6
14
13
7
EN3
GND
8
+5VD
2503 100n
16
VCC
5V3
C2
2502
100n
F502
+5VD
+5VD
12
5V3
11
2V3
10
5V3
G1 CTR8
1+ (CT=255)Z4
CT=0
4
9
7503
M74HC590T
GND
8
COUNTER
2D 3
15
1
2
3
4
I503
5
I504
6
I505
4501
4502
4503 *
7
2V6
2V6
2V6
2V6
2V6
2V6
2V6
28
5V3
2V6
2V6
2V6
2V6
2V6
2V6
2V6
*
7502
CY62256LL-70ZC
14
+5VD
I501
2V3
3501
470R
7504
BC847BW
0V2
I502
2508
82p
3502
47K
2509
82p
2V3
+5VD
LATCH
7505
74HC573PW
5V3 20
1
11
EN
C1
8
9
6
7
4
5
2
3
2V6
1D
10
2504
100n
15
14
13
12
19
18
17
16
9
2V3
8
9
6
7
4
5
2
3
+5VD
LATCH
7506
74HC573PW
5V3
1
11
EN
C1
1D
20
2505
100n
15
14
13
12
19
18
17
16
10
10
4507
4508
4509
4510
4511
4512
4513
4514
RES
RES
RES
RES
RES
RES
RES
2V6
F503
2506
330p
I2SDI1
B4
A
B
C
4506 F3
4507 C9
4508 C9
4509 C9
4510 C9
4511 C9
4512 C9
4513 C9
4514 C9
5501 A1
7501 A1
7502 B3
7503 F1
7504 F6
7505 B7
7506 B8
F501 A2
F502 B2
F503 C10
F504 D10
F505 F10
I501 F5
I502 F6
I503 E2
I504 E2
I505 F2
2501 A2
2502 B2
2503 D2
2504 B8
2505 B9
2506 C10
2507 D10
2508 F6
2509 F7
3501 F6
3502 F6
4501 E2
4502 F2
4503 F2
4504 F3
4505 F3
F504
2507
470p
I2SDO1
D
E
F
F505
I2SCLK
3139 123 6093.1
1 2 3 4 5 6 7 8 9 10
F_15270_014.eps
240505
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A
B
C
D
E
F
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
34
SSB: Audio Processing
1 2
B5
AUDIO PROCESSING
FROM HERCULES
3 4 5 6 7
AUDOUTLSL
AUDOUTLSR
SOUND_ENABLE
HP_DET_R_DC
+5VSW
3626
10K
4613
3627
22K
POWER_DOWN
EXT_MUTE
3139 123 6093.1
OUT_MUTE
1
AUDIO-L
AUDIO-R
2
ITV ONLY
4601
RES
3
I613
2616
2u2
4618
RES
F601
F602
2617
2u2
4619
RES
+3V3SW +3V3STBY
7602-1
74HC08PW
14
I606
1
I607
2
7
3 3V3
2603
1u0
I608
HPIC_LIN
2604
470p
3604
22K
2605
1u0
2608 I610
HPIC_RIN
1u0
2609
470p
2610
1u0
3610
100K
3609
22K
3611
100K
7602-2
74HC08PW
4
14
5
7
6
3605 22K
2615
I604
470u 16V
** 4604
RES
2618 I605
470u 16V
** 4605
RES
4609
3632
39R
I618
F603
2V6
2
2V6
3
7601-1
TS482IDT
2V6
3612
5V3
22K
1
HPIC_LOUT
I602
HPIC_ROUT
+5VSW
I603
4610
3633
39R
F604
F605
2611
100u
16V
3625
3K3
2V6
6
2V6
5
+5VSW
7601-2
TS482IDT
5V3
2V6
7
I612
3V4
I611
3V2
7607
BC847BW
+3V3SW
3615
10K
4606
2614
100n
4602
3.2 TO 4.3V
2613
1u0
10V
3618
22K
RESERVED FOR UFD
3619
10K
7604
BC847BW
I619
SOUND_ENABLE_1
+3V3STBY
3617
1K0
+5V
I614
9
10
14
7
7602-3
74HC08PW
8
3628
RES
3629
RES
+5V
+5VSW
12
13
3630
470R
7605
PDTA143ET
6601
BZX384-C3V3
I615
5V
5V2
2619
47u
0V
3623
47K
I617
3631
470R
14
7602-4
74HC08PW
11
7
0V
7606-1
BC847BS
0V
7606-2
BC847BS
RESERVED FOR UFD
3620
10K
I616
3621
RES
7603
BC847BW
+3V3STBY
3616
1K0
2612
1u0
10V
4603
4614
RES
4615
RES
HP_LOUT
HP_ROUT
B5
POR_AUDIO
F_15270_015.eps
170505
A
B
C
D
E
F
3630 E5
3631 F5
3632 A9
3633 B9
4601 D2
4602 C8
4603 F8
4604 A9
4605 B9
4606 C7
4609 A9
4610 B9
4611 B4
4612 B4
3616 E9
3617 C9
3618 C8
3619 D8
3620 E8
3621 E8
3623 F5
3625 C6
3626 D2
3627 D2
3628 D5
3629 E5
2603 A5
2604 A6
2605 B6
2608 B5
2609 B6
2610 B6
2611 B6
2612 E9
2613 C8
2614 B8
2615 A8
2616 A4
2617 B4
2618 B8
2619 F5
3604 A6
3605 A7
3609 B6
3610 B6
3611 B6
3612 B7
3615 C7
4613 D2
4614 F8
4615 F8
4616 C4
4617 C5
4618 A4
4619 B4
4620 E5
4621 E5
6601 E4
7601-1 A7
7601-2 B7
7602-1 C4
7602-2 C5
7602-3 D5
7602-4 D6
7603 E8
7604 D8
7605 E4
7606-1 E6
7606-2 F6
7607 C7
F601 A4
F602 B4
F603 A6
F604 B6
F605 B6
I602 A8
I603 B8
I604 A9
I605 B9
I606 C4
I607 C4
I608 A5
I610 B5
I611 C7
I612 C6
I613 E3
I614 E4
I615 E4
I616 E8
I617 F5
I618 A6
I619 D8
4 5 6 7
8
8
9
9
家电维修资料网,免费下载各种维修资料
A
B
C
D
E
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G
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LC4.9A AA 7.
35
SSB: DC-DC Converter
1 2
B6
DC-DC CONVERTER
FROM TOP CONNECTORS
3139 123 6093.1
1
+12VUNREG
+12VUNREG
+5V
FOR UFD ONLY
3708 10K
I706
2706
10u 16V
I709
I708
6708
SS24
I710
6709
SS14
3709
6K8
2708
RES
2709
47u 16V
5709
10u
2710
10u
2711
10u
I711
SUP_GND2 SUP_GND2
SUP_GND2
3
2
NC
7710
L5973D
VCC
NC
Φ VREF
OUT
INH
FB
SYNC
COMP
GND GND_HS
1
5
4
5704
1
2
7708
LF33CPT
IN OUT
CTRL NC
COM
5
4
NC
I712
I714
I715
5712
33u
6712
SS36
I713
2715
I716
22n
2714
220p
3716
4K7
SUP_GND2 SUP_GND2
3712
5K6
1%
3713
3K3
1%
5713
10u
2713
470u
16V
SUP_GND2
SUP_GND2 SUP_GND2 SUP_GND2 SUP_GND2
SUPPLY TO TUNER & HERCULES
+12VSW 5738
+12VSW 5730
10u
I731
I705
2730
10u
25V
2733
220p
2734
22n
3736
4K7
SUP_GND1
SUP_GND1
SUP_GND1 SUP_GND1 SUP_GND1
7730
L5970D
8
VCC
4
COMP
3
INH
7
GND
OUT
1
FB
5
SYNC
2
VREF
6
SUP_GND1
3732
1K0 1%
3733
I732
1
2738
47u 16V
IN OUT
COM
2
7738
L78M08CDT
3
2739
47u 16V
+3V3STBY
3743
3742
15K
22K
I742
7742
BC847BW
+12VUNREG 6740 I740 3740
BZX384-C8V2 1K5
I741
7741
BC847BW
3741
1K5
2741
220n
FOR UFD ONLY
I733
6735
BAV99
2736
22u
35V
F736
32V9
+VTUN
TO TUNER CELL
6736
BZX384-C33
7735
BC817-25
I735
5733
220u
3K3
1%
6733
SS14
I734
3735
1K0
SUP_GND1
5735
1m0
SUP_GND1
SUP_GND1
I736
5737
10u
2735
470p
SUP_GND1
2731
470u 16V
TO HERCULES CELL
5V2
8V
F737
+5VSW
F738
+8VSW_TV
F743
POWER_DOWN
B5
2737
470u 16V
B7
B16
SUP_GND1
2
3
2704
10u 16V
3
F701
+12VSW
4
4
5
5
6
F710 +3V3STBY
2716
470u 16V
6
7
7
8
FOR LCD ONLY
+3V3STBY
+5VSWI
5758
RES
3758
15K
+12VSW
I757
I749
5755
RES
I756
5756
7754
SI2301BDS-T1-E3
11V5 2 3
3755
10K
5757
2751
100n
1
I747 6V8
I759
5759
RES
7753
L4940D2T12
1
IN OUT
3760
100R
2759
RES
COM
RES
I750
3
PAN_VCC
2752
47u 16V
7
1751
RES
6
5
4
3
2
1
FROM SCALER 7755
PDTC114ET
I760
PANEL-PWR-CTL
F755
(0V)
0V6
2760
1u0
25V
FOR UFD ONLY
SUPPLY TO SCALER
8
7752
MC34063AD
2761
1u0
25V
FOR UFD ONLY
9
9
10
10
5700
2700
RES
11
TO EPLD
F700
LVDS_VCC
11V5
2701
100p
11
B6
8 DCOL SWC 1
11V7
S Q
+12VSW
I751
7
11V7
IS
R
3734
2K2
I755
5752
10u
3751
1R0
3752
1R0
IPK
OSC
SWE 2
TIMC 3
I758
I752
6
11V7
VCC
REFERENCE
REGULATOR
2753
470u 16V
3753
1K0 1%
I753
5
1V2
GND
2754
SUP_GND3
RES
SUP_GND3
FROM HERCULES
CIN_NEG
3754
3K3 1%
I754
3750
22K
2755
4n7
+3V3STBY
3V2
2750
2u2 2762
22u 16V
2756
470p
5753
220u
GND 4
SUP_GND3
SUP_GND3
6751
SS14
SUP_GND3
TO SCALER CELL TO LIPSYNC
5754
10u
2757
470u 16V
F754 +5VSWI
5V4
2758
470u 16V
SUP_GND3
SC_STANDBY
3V1
0V
3759
1K0 I748
7756
PDTC114ET
3761
100R
4
7758
SI9433BDY-T1-E3
SI4433DY
3V2
+3V3SW
F_15270_016.eps
250505
A
B
C
D
E
F
G
2760 B9
2761 G9
2762 F9
3708 B2
3709 C3
3712 D5
3713 D5
3716 D5
3732 F4
3733 F4
3734 D11
3735 F5
3736 F3
3740 G2
3741 G2
3742 G3
3743 G4
3750 F9
3751 D8
3752 D8
2734 E3
2735 F6
2736 E6
2737 G6
2738 G2
2739 G3
2741 G3
2750 F9
2751 B9
2752 B10
2753 E8
2754 E8
2755 F9
2756 E10
2757 E11
2758 E11
2759 B9
1751 A10
2700 B11
2701 B11
2704 A3
2706 B3
2708 C3
2709 C3
2710 C2
2711 C2
2713 D5
2714 D4
2715 D4
2716 D6
2730 E2
2731 G5
2733 F2
5754 E11
5755 A9
5756 A9
5757 A9
5758 A8
5759 B9
6708 C2
6709 C2
6712 D4
6733 F5
6735 E6
6736 E6
6740 G2
6751 E11
7708 B4
7710 C3
7730 E3
7735 E5
3753 E8
3754 E9
3755 B9
3758 B8
3759 F8
3760 B9
3761 F9
5700 B11
5704 B4
5709 C2
5712 C4
5713 C5
5730 E2
5733 F5
5735 F5
5737 F5
5738 F1
5752 D8
5753 E11
I716 D5
I731 E2
I732 F4
I733 E5
I734 F5
I735 E5
I736 F5
I740 G2
I741 G3
I742 G4
I747 B9
I748 F8
I749 A10
I750 A10
I751 D8
I752 E8
I753 E8
I754 E9
I755 D10
I756 B9
I757 A9
I758 D10
I759 B9
I760 B8
F754 E11
F755 C8
I705 E3
I706 B3
I708 B3
I709 B3
I710 C2
I711 C2
I712 C4
I713 C5
I714 C4
I715 D4
7738 F2
7741 G3
7742 G4
7752 D9
7753 B10
7754 A9
7755 B8
7756 G8
7758 F10
F700 B11
F701 A3
F710 B6
F736 E6
F737 F6
F738 F6
F743 G6
家电维修资料网,免费下载各种维修资料
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LC4.9A AA 7.
36
SSB: Diversity Tables B1-B6
B1
TUNER & IF
B2
HERCULES
B3
SYNC INTERFACE
B5
AUDIO WITHOUT AMPLIFIER
Item
3114
4102
4103
4104
4106
4107
4108
4110
3104
3107
3108
3109
3110
3111
3112
3113
1104
1104
1104
1105
1106
1106
1106
3101
3102
3104
1102
1102
1102
1102
1102
1104
4111
4113
5101
5101
5102
5102
5107
5107
5108
5108
6103
6105
7101
7102
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V
V
V
V
V
V
V
V
V
V
V
V V
V
V
V
V
V
V
V V V
V
V
V V
V
V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V TUN V+U PLL IEC BGDKM B
TUN V+U PLL IEC BGHIL B
TUNER UV1338/A F S H-4
TUNER UV1316E/A I H-4
TUNER UV1318SD/A CP H N-4
FIL SAW SM 38MHZ9 OFWK3953L R
V FIL SAW SM 38MHZ OFWM3956L R
FIL SAW SM 45MHZ75 OFWM1967L R
FIL SAW SM 38MHZ9 OFWK7265L R
V FIL SAW SM 38MHZ OFWK3955L R
FIL SAW SM 38MHZ9 OFWK9656L R
V FIL SAW SM 38MHZ OFWK9352L R
FIL SAW SM 38MHZ9 OFWK9361L R
V RST SM 0603 100R PM5 COL
V RST SM 0603 100R PM5 COL
RST SM 0603 10K PM5COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 6K8 PM5 COL
V RST SM 0603 2K2 PM5 COL
V RST SM 0603 2K2 PM5 COL
V RST SM 0603 2K2 PM5 COL
V RST SM 0603 22K PM5 COL
V RST SM 0603 18K PM5 COL
V RST SM 0603 22K PM5 COL
V RST SM 0603 47K PM5 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V FXDIND SM 0805 0U39 PM10 COL R
FXDIND SM 0805 0U68 PM10 COL R
V FXDIND SM 0805 12U PM10 COL R
FXDIND SM 1008 6U8 PM5 COL R
FXDIND 0603 100MHZ 600R COL R
RST SM 0603 100R PM5 COL
FXDIND 0603 100MHZ 600R COL R
RST SM 0603 100R PM5 COL
DIO SIG SM BAS316 (COL) R
V DIO SIG SM 1SS356 (RHM0) R
V TRA SIG SM BC847BW (COL) R
V TRA SIG SM BC847BW (COL) R
3292
3293
3294
3295
3296
4206
4213
4214
3282
3285
3286
3291
3292
4215
5218
6206
7208
7209
7210
7217
7217
7219
2255
2286
2289
2289
2290
Item
2203 V
2229
2244
2245
2246
V
V
V
V
V
V
V
V 2291
2292
3250
3251
3252
3253
3255
3256
3257
3258
3259
3260
3270
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V
V
V
V V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V ELCAP SM 16V 10U PM20 COL R
CER2 0805 X5R 6V3 10U PM10 R
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
CER2 0805 Y5V 10V 4U7 P8020 R
RST SM 0603 150R PM5 COL
CER2 0805 Y5V 10V 4U7 P8020 R
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 1K PM5 COL
V RST SM 0402 1K PM5 COL
V RST SM 0402 1K PM5 COL
RST SM 0402 10K PM5 COL
RST SM 0603 150R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 100R PM5 COL
RST SM 0402 47K PM5 COL
RST SM 0402 12K PM5 COL
RST SM 0402 47K PM5 COL
RST SM 0402 47K PM5 COL
RST SM 0402 47K PM5 COL
V RST SM 0402 100K PM5 COL
RST SM 0402 100R PM5 COL
V RST SM 0805 JUMP. 0R05 COL R
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
IND FXD 1206 EMI 100MHZ 120R R
DIO SIG SM BAT54 SOD323 COL R
V TRA SIG SM BC847BW (COL) R
V TRA SIG SM BC847BW (COL) R
V TRA SIG SM BC847BW (COL) R
IC SM TDA15011H/N1BD0 (PHSE) Y
V IC SM TDA15021H/N1B91 (PHSE) Y
IC SM 74HC4053D (PHSE) R
Item
2449
3432
3458
3459
3461
3462
4436
4437
4440
4441
6430
6431
7436
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
CER2 0402 Y5V 16V 100N COL
RST SM 0402 2K7 PM5 COL
RST SM 0402 100R PM5 COL
RST SM 0402 100R PM5 COL
RST SM 0402 100R PM5 COL
RST SM 0402 100R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
V DIO REG SM PDZ2.4B (PHSE) R
V DIO SIG SM 1N4148WS (VISH) R
IC SM 74LVC14APW (PHSE) R
Item
4602
4603
4606
4609
4610
4611
4612
4613
3629
3630
3630
3631
3631
3632
3633
4601
4614
4615
4616
4617
4618
4619
4620
4621
7603
7604
7607
3616
3617
3618
3619
3620
3623
3625
3627
3628
2612
2613
2616
2617
3615
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V CER2 0603 Y5V 10V 1U COL
CER2 0603 Y5V 10V 1U COL
CER2 0603 X5R 6V3 2U2 PM10 R
CER2 0603 X5R 6V3 2U2 PM10 R
RST SM 0402 10K PM5 COL
V RST SM 0402 1K PM5 COL
V RST SM 0402 1K PM5 COL
RST SM 0402 22K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
RST SM 0402 47K PM5 COL
RST SM 0402 3K3 PM5 COL
RST SM 0402 22K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 22K PM5 COL
RST SM 0402 330R PM5 COL
V RST SM 0402 470R PM5 COL
RST SM 0402 330R PM5 COL
V RST SM 0402 470R PM5 COL
V RST SM 0402 RC31 39R PM5 R
V RST SM 0402 RC31 39R PM5 R
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V TRA SIG SM BC847BW (COL) R
V TRA SIG SM BC847BW (COL) R
TRA SIG SM BC847BW (COL) R
B6
DC DC CONVERTER
Item Description
2701 V V
2706
V CER1 0402 NP0 50V 100P COL
V V V V ELCAP SM 16V 10U PM20 COL R
2709
2710
2711
2713
V V V V ELCAP SM 16V 47U PM20 COL R
V V V V CER2 1210 Y5V 25V 10U P8020 R
V V V V CER2 1210 Y5V 25V 10U P8020 R
V V V V ELCAP SM SEV 16V 470U PM20 R
2714
2715
V V V V CER2 0402 X7R 50V 220P COL
V V V V CER2 0402 X7R 16V 22N PM10 R
2741 V V V V CER2 0603 X7R 10V 220N COL
2751 V V
2752 V V
2760 V V
V CER2 0402 Y5V 16V 100N COL
V ELCAP SM 16V 47U PM20 COL R
V CER2 1206 X7R 25V 1U PM10 R
V V V V CER2 1206 X7R 25V 1U PM10 R 2761
3708
3709
3712
3713
3716
3740
3741
3742
3743
V V V V RST SM 0402 10K PM5 COL
V V V V RST SM 0402 6K8 PM5 COL
V V V V RST SM 0603 RC22H 5K6 PM1 R
V V V V RST SM 0603 RC22H 3K3 PM1 R
V
V
V
V
3755 V V
V
V
V
V
V
V
V
V
V
V
V
V
RST SM 0402 4K7 PM5 COL
RST SM 0402 1K5 PM5 COL
RST SM 0402 1K5 PM5 COL
RST SM 0402 15K PM5 COL
V V V V RST SM 0402 22K PM5 COL
3758 V V
3760 V V
3761 V
5700 V V
V V
V RST SM 0402 10K PM5 COL
V RST SM 0402 15K PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V IND FXD 1206 EMI 100MHZ 120R R
V V V V IND FXD SM 1206 10U PM20 R 5704
5709
5712
5713
V V V V IND FXD SM 7032 10U PM20 R
V V V V IND FXD SM 12565 33U PM20 R
V V V V INDFXD SM 10145 10U PM20 R
5756 V V
5757 V V
6708
V IND FXD 1206 EMI 100MHZ 120R R
V IND FXD 1206 EMI 100MHZ 120R R
V V V V DIO REC SS24 COL R
V V V V DIO REC SS14 COL R 6709
6712
6740
7708
V
V
V
V
V
V
V
V
V
V
V
V
DIO REC SS36 COL R
DIO REG SM PDZ8.2B (PHSE) R
IC SM LF33CPT (ST00) R
V V V V IC SM E-L5973D (ST00) R 7710
7741
7742
7754 V V
V V V V TRA SIG SM BC847BW (COL) R
V V V V TRA SIG SM BC847BW (COL) R
7755 V V
V
V
FET POW SM SI2301BDS-E3(VISH)R
TRA SIG SM PDTC114ET (COL) R
F_15270_069.eps
230505
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
37
A
B
C
D
E
F
H
I
G
SSB: Scaler
1 2 3 4 5 6 7 8 9 10 11 12 13 14
B7
SCALER
+2V5_DDR
F800
2800
100u 16V
2801
100n
2802
100n
2803
100n
2804
100n
2805
100n
2806
100n
2807
100n
2808
100n
2809
100n
2810
100n
2811
100n
2812
100n
I813 +2V5_DDR
B7
FSDATA(0)
FSDATA(1)
FSDATA(2)
FSDATA(29)
FSDATA(26)
FSDATA(7)
FSDATA(25)
FSDATA(24)
FSDATA(21)
FSDATA(11)
FSDATA(10)
FSDATA(19)
FSDATA(14)
FSDATA(18)
FSDATA(16)
FSDATA(15)
FSDATA(17)
FSDATA(20)
FSDATA(12)
FSDATA(13)
FSDATA(23)
FSDATA(22)
FSDATA(9)
FSDATA(8)
FSDATA(5)
FSDATA(6)
FSDATA(4)
FSDATA(3)
FSDATA(30)
FSDATA(31)
FSDATA(27)
FSDATA(28)
FROM SDRAM
#RESET
FROM SDRAM
FSVREF
TO COLUMBUS
COL_DE
3801-4
3801-3
3801-2
3801-1
4
3
2
1
3802-4 4
3802-3 3
3802-2 2
3802-1 1
3803-4
3803-3
3803-2
3803-1
4
3
2
1
3804-1
3804-2
1
2
3804-3 3
3804-4 4
3805-4 4
3805-3 3
3805-2 2
3805-1 1
3806-1
3806-2
1
2
3806-3 3
3806-4 4
3807-4
3807-3
3807-2
3807-1
4
3
2
1
3808-2
3808-3
2
3
3808-4 4
3808-1 1
3820
V_1FH
H_1FH
FROM SYNC INTERFACE
COL_YB(1)
COL_YB(2)
COL_YB(3)
COL_YB(1:8)
COL_Do(1:7)
COL_YB(4)
COL_YB(5)
COL_YB(6)
COL_YB(7)
COL_YB(8)
FROM HDMI
COL_Do(1)
COL_Do(2)
COL_Do(3)
COL_Do(4)
COL_Do(5)
COL_Do(6)
COL_Do(7)
HDMI_CbCr(0)
HDMI_CbCr(1)
HDMI_CbCr(2)
HDMI_CbCr(3)
HDMI_CbCr(4)
HDMI_CbCr(5)
HDMI_CbCr(6)
HDMI_CbCr(7)
FROM MUX-SYNC INTF
FS_2.5
K1
RESET_
M3
M4
IR0|GPIO_29
IR1|GPIO_28
5
6
7
8
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
8
7
6
5
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
8
7
6
5
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
FSDATAU0
FSDATAU1
FSDATAU2
FSDATAU29
FSDATAU26
FSDATAU7
FSDATAU25
FSDATAU24
FSDATAU21
FSDATAU11
FSDATAU10
FSDATAU19
FSDATAU14
FSDATAU18
FSDATAU16
FSDATAU15
FSDATAU17
FSDATAU20
FSDATAU12
FSDATAU13
FSDATAU23
FSDATAU22
FSDATAU9
FSDATAU8
FSDATAU5
FSDATAU6
FSDATAU4
FSDATAU3
3800
R4
EXTCLK|GPI_02
10K
F801
J24
K26
FSVREF1
FSVREFVSS1
2813
100n
2814
100n W25
W24
FSVREF2
FSVREFVSS2
FSDATAU0
FSDATAU1
FSDATAU2
FSDATAU3
FSDATAU4
FSDATAU5
FSDATAU6
FSDATAU7
FSDATAU8
FSDATAU9
FSDATAU10
FSDATAU11
FSDATAU12
FSDATAU13
FSDATAU14
FSDATAU15
FSDATAU16
FSDATAU17
FSDATAU18
FSDATAU19
FSDATAU20
FSDATAU21
FSDATAU22
FSDATAU23
FSDATAU24
FSDATAU25
FSDATAU26
FSDATAU27
FSDATAU28
FSDATAU29
FSDATAU30
FSDATAU31
P24
P26
N24
N26
M25
L24
L25
M26
E24
E25
E26
G26
G24
H26
H24
J25
T26
R25
M24
N25
N23
P25
R26
R24
K24
J26
H25
G23
G25
F24
F25
F26
FSDATA0
FSDATA1
FSDATA2
FSDATA3
FSDATA4
FSDATA5
FSDATA6
FSDATA7
FSDATA8
FSDATA9
FSDATA10
FSDATA11
FSDATA12
FSDATA13
FSDATA14
FSDATA15
FSDATA16
FSDATA17
FSDATA18
FSDATA19
FSDATA20
FSDATA21
FSDATA22
FSDATA23
FSDATA24
FSDATA25
FSDATA26
FSDATA27
FSDATA28
FSDATA29
FSDATA30
FSDATA31
7
6
5
8
22R
22R
22R
22R
FSDATAU30
FSDATAU31
FSDATAU27
FSDATAU28
10K
+3V3SW
3819
RES
I800
I816
COL_Do(8)_INV 3840
22R
7801-12
GM1501-LF-BD
SYSTEM FS_2.5
FSADDR0
FSADDR1
FSADDR2
FSADDR3
FSADDR4
FSADDR5
FSADDR6
FSADDR7
FSADDR8
FSADDR9
FSADDR10
FSADDR11
AD25
AD26
AC24
AC25
AB26
AA24
AA25
AA26
Y24
AB25
AC26
AB24
FSADDRU0
FSADDRU1
FSADDRU2
FSADDRU3
FSADDRU4
FSADDRU5
FSADDRU6
FSADDRU7
FSADDRU8
FSADDRU9
FSADDRU10
FSADDRU11
FSBKSEL0
FSBKSEL1
Y25
Y26
FSDQM0
FSDQM1
FSDQM2
FSDQM3
T25
U25
U26
T24
FSBKSELU0
FSBKSELU1
FSDQMU0
FSDQMU1
FSDQMU2
FSDQMU3
FSCKEU
FSCKE
W26
FSWE
V26
FSCAS
V25
FSWEU
FSCASU
FSRASU
FSRAS
V24
FSCLKn
U23
FSCLKp
U24
FSDQS
L26
MSTR_SCL|GPI_03
MSTR_SDA|GPI_04
P4
P3
3817
3818
FSADDRU3
FSADDRU2
FSADDRU1
FSADDRU0
3809-4 4
3809-3 3
3809-2 2
3809-1 1
FSADDRU8
FSADDRU7
FSADDRU6
FSADDRU5
3810-1
3810-2
1
2
3810-3 3
3810-4 4
FSADDRU4
FSADDRU9
FSADDRU11
FSADDRU10
3811-4 4
3811-3 3
3811-2
3811-1
2
1
FSDQMU0
FSDQMU1
FSDQMU2
FSDQMU3
FSWEU
FSCASU
FSRASU
FSCKEU
3812-1 1
3812-3 3
3812-4 4
3812-2 2
3813-1 1
3813-2 2
3813-3 3
3813-4 4
FSBKSELU0
FSBKSELU1
3814
3815
10K
10K
3816
SCL_IO
SDA_IO
+3V3SW
7801-6
GM1501-LF-BD
VIDEO
3839
100R
I812
I818
I815
B17
VCLAMP|GPIO_31
D20
VDV|VSOG|GPIO07
B20
VODD|HSOUT|GPIO_06
C20
VVS|GPIO_05
D19
VHS_CSYNC|GPIO_04
A23
C22
B22
A22
D21
C21
B21
A21
C19
B19
A19
D18
C18
B18
A18
C17
VGRN0|GPIO_G02_B0
VGRN1|GPIO_G02_B1
VGRN2|GPIO_G02_B2
VGRN3|GPIO_G02_B3
VGRN4|GPIO_G02_B4
VGRN5|GPIO_G02_B5
VGRN6|GPIO_G02_B6
VGRN7|GPIO_G02_B7
VRED0|GPIO_G01_B0
VRED1|GPIO_G01_B1
VRED2|GPIO_G01_B2
VRED3|GPIO_G01_B3
VRED4|GPIO_G01_B4
VRED5|GPIO_G01_B5
VRED6|GPIO_G01_B6
VRED7|GPIO_G01_B7
B25
A25
D24
C24
B24
A24
C23
B23
VBLU0|GPIO_G03_B0
VBLU1|GPIO_G03_B1
VBLU2|GPIO_G03_B2
VBLU3|GPIO_G03_B3
VBLU4|GPIO_G03_B4
VBLU5|GPIO_G03_B5
VBLU6|GPIO_G03_B6
VBLU7|GPIO_G03_B7
FROM MUX-SYNC INTF
3823
SVCLK|GPI_0
D16
SVHSYNC|GPIO_02
C14
SVVSYNC|GPIO_01
B14
SVODD|GPIO_00
A14
SVDV|VCOAST|GPIO_03
SVDATA7|GPIO_G00_B7
SVDATA6|GPIO_G00_B6
SVDATA5|GPIO_G00_B5
SVDATA4|GPIO_G00_B4
SVDATA3|GPIO_G00_B3
SVDATA2|GPIO_G00_B2
SVDATA1|GPIO_G00_B1
SVDATA0|GPIO_G00_B0
A17
D14
A15
B15
C15
D15
A16
B16
C16
VCLK|GPI_01
A20
I817
RES
HDMI_VHS
HDMI_VVS
3822 100R
4801
HDMI_VCLK
HDMI_VDV
HDMI_Y(7)
HDMI_Y(6)
HDMI_Y(5)
HDMI_Y(4)
HDMI_Y(3)
HDMI_Y(2)
HDMI_Y(1)
HDMI_Y(0)
COL_CLKASB
COL_CLKASA
FROM HDMI
FROM COLUMBUS
8
6
5
7
22R
22R
22R
22R
8
7
6
5
22R
22R
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
8
7
6
5
22R
22R
22R
22R
5
6
7
8
22R
22R
22R
22R
22R
TO SDRAM
FSADDR(3)
FSADDR(2)
FSADDR(1)
FSADDR(0)
FSADDR(8)
FSADDR(7)
FSADDR(6)
FSADDR(5)
FSADDR(4)
FSADDR(9)
FSADDR(11)
FSADDR(10)
FSDQM(0)
FSDQM(1)
FSDQM(2)
FSDQM(3)
FSWE
FSCAS
FSRAS
FSCKE
FSBKSEL(0)
FSBKSEL(1)
FSCLK-
FSCLK+
FSDQS
TO FLASH / CONTROL
OCMADDR(0)
OCMADDR(1)
OCMADDR(2)
OCMADDR(3)
OCMADDR(4)
OCMADDR(5)
OCMADDR(6)
OCMADDR(7)
OCMADDR(8)
OCMADDR(9)
2823
22p
G3
TCLK
XTAL
G4
ACS_RSET_HD
K2
I801
7801-4
GM1501-LF-BD
OCM-ADR
AA1
AA2
AA3
Y1
Y2
Y3
W1
W2
W3
V1
OCMADDR0
OCMADDR1
OCMADDR2
OCMADDR10|GPIO_G11_B2
OCMADDR11|GPIO_G11_B3
OCMADDR12|GPIO_G11_B4
OCMADDR3
OCMADDR4
OCMADDR5
OCMADDR6
OCMADDR13|GPIO_G11_B5
OCMADDR14|GPIO_G11_B6
OCMADDR15|GPIO_G11_B7
OCMADDR7|GPIO_18
OCMADDR8|GPIO_G11_B0
OCMADDR9|GPIO_G11_B1
OCMADDR16|GPIO_19
OCMADDR17|GPIO_20
OCMADDR18|GPIO_21
OCMADDR19|GPIO_22
V2
V3
V4
U1
U2
U3
U4
T1
T2
T3
3824
3K3
2824
22p
1801
14M31818
SMD-49
OCMADDR(10)
OCMADDR(11)
OCMADDR(12)
OCMADDR(13)
OCMADDR(14)
OCMADDR(15)
OCMADDR(16)
OCMADDR(17)
OCMADDR(18)
OCMADDR(19)
TO FLASH / CONTROL
TO SCALER INTRF
TO FLASH CONTROL
TO HDMI
TO EPLD
OCMDATA(0)
OCMDATA(1)
OCMDATA(2)
OCMDATA(3)
OCMDATA(4)
OCMDATA(5)
OCMDATA(6)
OCMDATA(7)
3825-3 3
3825-2 2
3825-1 1
3826-3 3
3826-1 1
3825-4 4
3826-2
3826-4
2
4
6
8
5
6
7
8
7
5
I802
I803
10K
7801-5
GM1501-LF-BD
OCM_DATA
AD4
AF3
AE3
AD3
AF2
AE2
AD2
AF1
AE1
AD1
AC1
AC2
AC3
AB1
AB2
AB3
OCMDATA0
OCMDATA1
OCMDATA2
OCMDATA3
OCMDATA4
OCMDATA5
OCMDATA6
OCMDATA7
OCM_TIMER1|PWM3|GPIO_13
OCMDATA8|GPIO_G10_B0
OCMDATA9|GPIO_G10_B1
OCMDATA10|GPIO_G10_B2
OCMDATA11|GPIO_G10_B3
OCMDATA12|GPIO_G10_B4
OCMDATA13|GPIO_G10_B5
OCMDATA14|GPIO_G10_B6
OCMDATA15|GPIO_G10_B7
OCM_UDI|GPIO_27
OCM_UDO|GPIO_26
OCM_INT1|GPIO_30
OCM_INT2|GPI_10
OCM_WE_
OCM_RE_
OCM_CS0_|GPIO_23
OCM_CS1_|GPIO_24
OCM_CS2_|GPIO_25
D25
M2
M1
L2
L1
R3
R2
T4
P1
P2
ROM_CS_|GPI_9
R1
TO SCALER INTRF
I804
I805
V-CHIP_INT
(RESERVED)
POWER_DOWN
#OCM_WE
#OCM_RE
I806
I807
I808
3827
3828
3829
10K
10K
10K
BU_LHT_ADJ1
UART_RX
UART_TX
+3V3SW
#ROM_CS
TO TUNER
TO DC-DC CONVERTER
TO HDMI
FROM DIGITAL-IO
(CINCH) TO EPLD
HDMI_HOTPLUG_RESET
AV3_HDMI-AUDIO_SEL
PIXEL+_RESET
(RESERVED FOR CINCH ONLY)
CVI_VGA_SEL
3831
3832
100R
100R
POWER_UP_OK
3833 10R
HOT_PLUG
PDP_GO_UP
VS_ON
I819
I820
I821
RESERVED
FROM ANALOG-IO
(CINCH)
TO DIGITAL-IO
+3V3_IO
3830
RES
AD23
AD24
AE24
AF24
AF25
GPIO_G04_B1|DOBLU3
GPIO_G04_B2|DOBLU4
GPIO_G04_B3|DOBLU5
AF26
AE25
GPIO_G04_B0|DOBLU2
GPIO_G04_B4|DOBLU6
GPIO_G04_B5|DOBLU7
GPIO_G04_B6|DOBLU8
AE26
GPIO_G04_B7|DOBLU9
NC
AD21
AD22
GPIO_G05_B0|DOGRN2
GPIO_G05_B3|DOGRN5
AC18
AD18
GPIO_G06_B0|DORED2
AE18
GPIO_G06_B1|DORED3
AF18
GPIO_G06_B2|DORED4
GPIO_G06_B3|DORED5
AE8
AF8
GPIO_G07_B0|DERED2
AC9
GPIO_G07_B1|DERED3
AD9
GPIO_G07_B2|DERED4
AE9
AF9
AD10
GPIO_G07_B5|DERED7
AE10
GPIO_G07_B3|DERED5
GPIO_G07_B4|DERED6
GPIO_G07_B6|DERED8
GPIO_G07_B7|DERED9
GPIO_16|DEN
AD7
B3B-PH-SM4-TBT(LF)
+3V3_IO
FOR SW TESTING
(RES)
1802
7801-9
GM1501-LF-BD
GPIO
GPIO_G08_B0|JTAG_CLK|DORED0
GPIO_G08_B1|JTAG_MODE|DORED1
GPIO_G08_B2|JTAG_TDI|DOGRN0
GPIO_G08_B3|DVS|DOGRN1
GPIO_G08_B4|JTAG_TDO|DOBLU0
GPIO_G08_B5|JTAG_RESET|DOBLU1
GPIO_G09_B0|DERED0
GPIO_G09_B1|DERED1
GPIO_G09_B2|DEGRN0
GPIO_G09_B3|DEGRN1
GPIO_G09_B4|DEBLU0
GPIO_G09_B5|DEBLU1
AE4
AF4
AC5
AD5
AE5
AF5
AD6
AE6 I809
AF6
AE7
NC
I810
AF7
AD8 I822
3834
3835
3836
10K
10K
10K
SC2|AV2_SIDE_SW
JTAG_CLK_SCL
JTAG_TDI_SDA
PC_HD_SEL
RGB|CVI_HDA_SEL
TV_SC_COM
TV_IRQ
NVM_WP_SCALER
GPIO_14|DHS
AF17
GPIO_15|DVS
AD16
SC2_OUT_SW
3837
10K
3838
10K
F803
F804
I811
5
3841
10K
COL_RST
4
3
2
1
TO MUX-SYNC INTF
+3V3_IO
TO FLASH / CONTROL
Y_NOTCH
TO ANALOG-IO
(SCART)
/
(CINCH)
TO HERCULES
TO COLUMBUS
3139 123 6093.1
1 2 3 4
+2V5_DDR +1V8_CORE
5 6 7 8
(SCART)
+3V3_PLL
F802
2815
22u 16V
2816
100n
2817
100n
2818
100n
2819
100n
9
+3V3_PLL
10
7801-11
GM1501-LF-BD
CLK-SYN
11
2820
100n
2821
100n
12
2822
100n
+3V3_PLL
13 14
F_15270_017.eps
170505
A
B
C
D
E
F
G
H
I
3807-4 E1
3808-1 E1
3808-2 E1
3808-3 E1
3808-4 E1
3809-1 B6
3809-2 B6
3809-3 B6
3809-4 B6
3810-1 B6
3810-2 B6
3810-3 B6
3810-4 B6
3811-1 C6
3811-2 C6
3811-3 C6
3811-4 C6
3812-1 C6
3812-2 C6
3812-3 C6
3812-4 C6
3813-1 C6
3802-1 C1
3802-2 C1
3802-3 C1
3802-4 C1
3803-1 D1
3803-2 D1
3803-3 C1
3803-4 C1
3804-1 D1
3804-2 D1
3804-3 D1
3804-4 D1
3805-1 D1
3805-2 D1
3805-3 D1
3805-4 D1
3806-1 D1
3806-2 E1
3806-3 E1
3806-4 E1
3807-1 E1
3807-2 E1
3807-3 E1
2813 B2
2814 B3
2815 A9
2816 A9
2817 A10
2818 A10
2819 A10
2820 A12
2821 A12
2822 A12
2823 A10
2824 A12
3800 B3
3801-1 C1
3801-2 C1
3801-3 C1
3801-4 C1
1801 B12
1802 G14
2800 A1
2801 A1
2802 A1
2803 A1
2804 A2
2805 A2
2806 A2
2807 A2
2808 A2
2809 A3
2810 A3
2811 A3
2812 A3
3826-3 F9
3826-4 F9
3827 F13
3828 F13
3829 F13
3830 H10
3831 I9
3832 I9
3833 I9
3834 G13
3835 G13
3836 G13
3837 G14
3838 G14
3839 G3
3840 I3
3841 H14
4801 H5
7801-11 A11
3813-2 D6
3813-3 D6
3813-4 D6
3814 D6
3815 D6
3816 D6
3817 D6
3818 E6
3819 F2
3820 F1
3822 G5
3823 F5
3824 B12
3825-1 F9
3825-2 F9
3825-3 F9
3825-4 F9
3826-1 F9
3826-2 F9
I803 F10
I804 E12
I805 E12
I806 F12
I807 F12
I808 F12
I809 G12
I810 G12
I811 G14
I812 F3
I813 A1
I815 G3
I816 G2
I817 H5
I818 F3
I819 I10
I820 I10
I821 I10
I822 G12
7801-12 A4
7801-4 C11
7801-5 E11
7801-6 F4
7801-9 G11
F800 A1
F801 B3
F802 A9
F803 G14
F804 G14
I800 G2
I801 B12
I802 F10
家电维修资料网,免费下载各种维修资料
F
A
B
C
D
E
G
SSB: Scaler
1
B8
SCALER
2
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
38
SUPPLY FOR SCALER
+3V3SW
5900
+3V3_PLL
5901
+3V3_ADC
5902
+3V3_DVI
5903
5904
+3V3_IO
F900
+3V3_LBADC
5905
+3V3_LVDSA
5906
+3V3_LVDSB
5907
+3V3_LVDS
+3V3SW
2900
100n
1
7900
LF25CDT
IN OUT
COM
3
I900 5908
2901
1n0
2902
470u 16V
+3V3SW
7901
LD1086D2T18
I901
3
IN OUT
COM
2903
100n
2
I902 +1V8
2904
47u 16V
5909
5910
5911
3139 123 6093.1
1 2
+2V5_DDR
3
+1V8_ADC
+1V8_DVI
+1V8_CORE
3
4 9
+3V3_IO
F901
2905
100u
16V
2906
100n
2907
100n
2908
100n
2909
100n
2910
100n
2911
100n
2912
100n
2913 2914
100n 100n
2915
100n
+3V3_IO
2916
100n
+1V8_CORE
+1V8_CORE
F902
2917
100u
16V
2918
100n
2919
100n
2920
100n
2921
100n
2922
100n
2923
100n
2924
100n
2925
100n
2926
100n
2927 2928
100n 100n
2929
100n
I905
D_GND
TO DIGITAL-IO (SCART ONLY)
SCL_DVI
SDA_DVI
RXC+IN
RXC-IN
RX0+IN
RX0-IN
RX1+IN
RX1-IN
RX2+IN
RX2-IN
2940
47u 16V
2941
100n
(RES)
7801-3
GM1501-LF-BD
ADC
C12
LBADC_IN1
B12
LBADC_IN2
(RES) A12
LBADC_IN3
D12
LBADC_RETURN
LBADC_GND
I906
TO MUX-SYNC INTERFACE
ADC
&
TO COLUMBUS HERCULES
AVSYNC
7801-7
GM1501-LF-BD
CTRL
3900 3K3 I904
AC16
OEXTR
FAN_SPEED C26
PWM0|GPIO_10
PPWR|GPIO_08
PBIAS|GPIO_09
FROM DC-DC CONVERTER
A26
B26
PANEL-PWR-CTL
LAMP_ON_OFF
HD_FILTER C25
PWM1|GPIO_11
DCLK|GPIO_17
PWM2|GPIO_12
AC7
D26
NC
I903
BU_LHT_ADJ2
(RES)
AHSYNC
SCL
SDA
SOG
R_PR+
R_PR-
G_Y+
G_Y-
B_PB+
B_PB-
TO TOP CONN.
+3V3STBY
F908
+1V8_ADC +3V3_ADC
F909
3901 3902
RES RES
3903
3904
2953
100n
2954
100n
L3
ADC_1.8
AVSYNC
7801-1
GM1501-LF-BD
ANA-IN ADC_3.3
L4
C2
C1
AHSYNC
100R
100R
N2
N1
VGA_SCL|GPI_05
VGA_SDA|GPI_06
C3
SOG
D2
D1
REDp
REDn
GREENp
GREENn
B2
B1
BLUEp
BLUEn
ADC_AGND ADC_DGND
2955
22u 16V
F910
4
IO_3.3
5
+1V8_DVI +3V3_DVI
F903
2930
100n
2931
100n
2932
100n
2933
100n
7801-2
GM1501-LF-BD
DVI_1.8
DVI
DVI_3.3
N4
N3
DVI_SCL|GPI_07
DVI_SDA|GPI_08
A6
B6
RXCp
RXCn
A8
B8
RX0p
RX0n
A9
B9
RX1p
RX1n
A10
B10
RX2p
RX2n
B11
REXT
DVI_GND
5
7801-13
GM1501-LF-BD
SUPPLY
D_GND
6
6
CORE_1.8
D_GND
7
F904
2934
47u 16V
2935
100n
2936
100n
2937
100n
2938
100n
2939
100n
7
8
8
KEYBOARD
4900 RES
2942
100n
AD19
LVDSA_GND_1
AC19
LVDSA_GND_2
AC20
LVDSA_GND_3
AC13
LVDSB_GND_1
AC14
LVDSB_GND_2
AC15
LVDSB_GND_3
AD17
VSSD33_LVDS
7801-10
GM1501-LF-BD
DISPLAY PWR
VDDD33_LVDS
AE17
LVDSA_3.3_3
AC22
LVDSA_3.3_2
AC21
LVDSA_3.3_1
AD20
LVDSB_3.3_3
AC12
LVDSB_3.3_2
AD13
LVDSB_3.3_1
AD12
9
10
NC
A1
7801-14
GM1501-LF-BD
NC
AC17
NC
NC
C5
NC
D5
NC NC
K3
NC
F1
NC
+3V3_LVDS
F905
F906
+3V3_LVDSA
2945
22u 16V
2946
100n
2947
100n
F907
+3V3_LVDSB
2948
100n
2950
22u 16V
2951
100n
2952
100n
10
+3V3_LBADC
2956
100n
2957
100n
2958
100n
2959
100n
11
11
B8
2949
100n
F_15270_018.eps
170505
A
B
C
D
E
F
G
2917 A7
2918 A7
2919 A7
2920 A7
2921 A7
2922 A8
2923 A8
2924 A8
2925 A8
2926 A9
2927 A9
2928 A9
2929 A9
2930 C5
2931 C5
2932 C5
2933 C5
2934 C7
2935 C7
2900 D1
2901 D2
2902 D2
2903 E1
2904 E2
2905 A4
2906 A4
2907 A4
2908 A4
2909 A4
2910 A5
2911 A5
2912 A5
2913 A5
2914 A6
2915 A6
2916 A6
2955 E10
2956 E10
2957 E10
2958 E11
2959 E11
3900 F4
3901 E8
3902 E8
3903 F8
3904 F8
4900 B9
5900 A1
5901 B1
5902 B1
5903 B1
5904 B1
5905 C1
5906 C1
5907 C1
5908 C2
5909 D2
5910 E2
5911 E2
7801-1 F9
2936 C7
2937 C8
2938 C8
2939 C8
2940 B9
2941 B10
2942 C9
2945 D10
2946 D11
2947 D11
2948 D11
2949 D11
2950 D10
2951 D11
2952 D11
2953 E8
2954 E8
7801-10 C9
7801-13 B6
7801-14 A10
7801-2 C6
7801-3 B10
7801-7 F5
7900 C1
7901 D1
F900 B2
F901 A4
F902 A7
F903 C5
F904 C7
F905 D10
F906 D10
F907 D10
F908 E9
F909 E10
F910 G9
I900 C2
I901 E1
I902 E2
I903 G6
I904 F4
I905 C4
I906 E6
家电维修资料网,免费下载各种维修资料
A
B
C
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
39
SSB: Scaler Interface
1 2
B9
SCALER INTERFACE
3 4 5 6 7
7801-8
GM1501-LF-BD
ACp|GPIO_G06_B6|DORED8
ACn|GPIO_G06_B7|DORED9
AE20
AF20
A3p|GPIO_G06_B4|DORED6
A3n|GPIO_G06_B5|DORED7
AE19
AF19
A2p|GPIO_G05_B1|DOGRN3
A2n|GPIO_G05_B2|DOGRN4
AE21
AF21
A1p|GPIO_G05_B4|DOGRN6
A1n|GPIO_G05_B5|DOGRN7
AE22
AF22
A0p|GPIO_G05_B6|DOGRN8
A0n|GPIO_G05_B7|DOGRN9
AE23
AF23
SHIELD5|DEBLU5
SHIELD4|DEBLU2
SHIELD3|DEGRN5
AD14
AE13
AE11
SHIELD2|DEGRN4
SHIELD1|DEGRN3
SHIELD0|DEGRN2
AD11
AC11
AF10
BCp|DEGRN8
BCn|DEGRN9
AE12
AF13
B3p|DEGRN6
AF11
B3n|DEGRN7
AF12
B2p|DEBLU3
B2n|DEBLU4
AF14
AE14
B1p|DEBLU6
B1n|DEBLU7
AF15
AE15
B0p|DEBLU8
AF16
B0n|DEBLU9
AE16
LVDS
NC
TXBC+
TXBC-
TXB3+
TXB3-
TXB2+
TXB2-
TXB1+
TXB1-
TXB0+
TXB0-
TO EPLD
TO SCALER
BU_LHT_ADJ1
IA07
RESERVED
4A02
RES
3A02
1K0
RES
+5VSWI
3A03 RES
1
2
3A05
RES
7A01
3
SI2301DS-T1
3A04
1K0
IA06 3A06
10K
IA00
2A03
1u0
4A03
D
E
F
TO EPLD
SDA_DMA_BUS1_DISP
SCL_DMA_BUS1_DISP
FOR PDP ONLY
+3V3SW
3A07
10K
3A08
10K
2A01
100p
2A02
100p
+3V3SW
2A00
100n
5A00
3A00
68R
IA08
6
3A01
68R
IA09
7
1
NC
SDA1
VCC
7A00
PCA9515ADP
SDA0 3
SCL1
NC
GND
SCL0
EN
2
5
4A00
4A01
RES
RES
FOR UFD ONLY
SDA_IO
4A04
(PDP)
SCL_IO
BUF_ENABLE
FROM HERCULES
SC_STANDBY
7A02
BC847BW
3A10
10K
IA03
2A12
10n
4A05
+3V3STBY
2A13
100n
3A13
10K
3A11
4K7
8
+3V3STBY
7A03
BC847BW
4A06
IA05
+5V
3A14
4K7
9
BACKLIGHT_DIM
BACKLIGHT_CTRL
FROM EPLD
B9
TO TOP CONNECTORS
A
B
C
7A00 E4
7A01 C6
7A02 F6
7A03 E8
IA00 C7
IA03 F6
IA05 B8
IA06 C7
IA07 B6
IA08 E3
IA09 E3
3A10 F6
3A11 E7
3A13 E8
3A14 E9
4A00 F3
4A01 F3
4A02 B6
4A03 D6
4A04 F4
4A05 F6
4A06 F8
5A00 E3
6A01 F8
7801-8 A2
2A00 E3
2A01 F2
2A02 F2
2A03 C7
2A12 F6
2A13 E8
3A00 E2
3A01 E2
3A02 C5
3A03 C6
3A04 C6
3A05 C6
3A06 C7
3A07 E2
3A08 E2
STANDBY
D
E
F
3139 123 6093.1
1 2 3 4 5 6 7 8 9
F_15270_019.eps
250505
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
40
A
SSB: SDRAM
1
B10
SDRAM
+2V5_DDR
B
C
D
E
2 3 4
2B01
47u
16V
2B02
47u
6.3V
2B03
100n
2B04
100n
2B05
100n
2B06
100n
2B07
100n
2B08
100n
2B09
100n
2B10
100n
2B11
100n
2B12
100n
2B13
100n
2B14
100n
2B15
100n
2B16
100n
+2V5_DDR
TO/FROM SCALER
FSRAS
FSCAS
FSWE
FSCLK+
FSCLK-
FSCKE
FSDQM(0)
FSDQM(1)
FSDQM(2)
FSDQM(3)
FSBKSEL(0)
FSBKSEL(1)
FSADDR(0)
FSADDR(1)
FSADDR(2)
FSADDR(3)
FSADDR(4)
FSADDR(5)
FSADDR(6)
FSADDR(7)
FSADDR(8)
FSADDR(9)
FSADDR(10)
FSADDR(11)
FSVREF
IB03
3B03
IB02
3B01
10K
1%
FB01
2B18
16V 22u
2B17
100n
3B02
10K
1%
7B01
K4D263238F-UC50
VREF
CS
RAS
CAS
WE
150R 1%
28
27
26
25
55
54
53
CK
CK
CKE
23
56
24
57
0
1
2
3
DM
29
30
0
1
BA
31
32
33
34
47
48
49
50
51
45
36
37
0
1
2
5
6
3
4
7
8
9
10
11
A
38
39
40
41
42
43
NC
VDD
Φ
SDRAM
VDDQ
1M X 32 X 4
93
52
RFU
MCL
VSS VSSQ
+2V5_DDR
NC
D
D
22
23
24
25
26
27
28
29
30
31
12
13
14
15
16
17
18
19
20
21
10
11
6
7
8
9
2
3
0
1
4
5
97
98
100
1
3
4
6
7
60
61
63
64
68
69
71
72
9
18
20
21
74
75
77
78
80
81
83
84
10
12
13
17
DQS
94
44
87
88
89
90
91
5 6 7
F
G
3139 123 6093.1
1 2 3 4 5 6
家电维修资料网,免费下载各种维修资料
7 8
8
FSDATA(24)
FSDATA(25)
FSDATA(26)
FSDATA(27)
FSDATA(28)
FSDATA(29)
FSDATA(30)
FSDATA(31)
FSDATA(12)
FSDATA(13)
FSDATA(14)
FSDATA(15)
FSDATA(16)
FSDATA(17)
FSDATA(18)
FSDATA(19)
FSDATA(20)
FSDATA(21)
FSDATA(22)
FSDATA(23)
FSDATA(0)
FSDATA(1)
FSDATA(2)
FSDATA(3)
FSDATA(4)
FSDATA(5)
FSDATA(6)
FSDATA(7)
FSDATA(8)
FSDATA(9)
FSDATA(10)
FSDATA(11)
B10
TO/FROM SCALER
A
B
2B01 A1
2B02 A1
2B03 A1
2B04 A1
2B05 A2
2B06 A2
2B07 A2
2B08 A3
2B09 A3
2B10 A3
2B11 A3
2B12 A4
2B13 A4
2B14 A4
2B15 A5
2B16 A5
2B17 B4
2B18 B4
3B01 B3
3B02 B3
3B03 C2
7B01 C3
FB01 B3
IB02 C2
IB03 C2
C
D
E
F
G
F_15270_020.eps
170505
A
B
C
D
E
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
41
SSB: Flash / Control
1 2
B11
FLASH / CONTROL
3 4 5 6
+3V3_IO
TO SCALER
OCMADDR(0)
OCMADDR(1)
OCMADDR(2)
OCMADDR(3)
OCMADDR(4)
OCMADDR(5)
OCMADDR(6)
OCMADDR(7)
OCMADDR(8)
OCMADDR(9)
OCMADDR(10)
OCMADDR(11)
OCMADDR(12)
OCMADDR(13)
OCMADDR(14)
OCMADDR(15)
OCMADDR(16)
OCMADDR(17)
OCMADDR(18)
#OCM_RE
#OCM_WE
#ROM_CS
NVM_WP_SCALER
SCL_IO
SDA_IO
+3V3_IO
5C00
2C00
FC00
100n
2C01
10u 16V
12
8
7
6
11
10
9
5
27
26
23
25
4
28
29
3
2
30
1
7C00
M29W040B-55K1
11
12
13
14
6
7
8
9
10
15
16
17
18
0
1
2
3
4
5
ROM
512Kx8
[FLASH]
A
0
512K-1
DQ
0
7
13
14
15
17
18
19
20
21
24
31
22
OE
WE
CE
+3V3SW +3V3SW
3C00
10K
0V
3V2
3V2
FC01 7
FC02 6
FC03 5
2C02
WC
100n
3V2
7C01
8 M24C32-WMN6
Φ
(4Kx8)
EEPROM
SCL
SDA
ADR
0
1
2
4
1
2
3
TO SCALER
OCMDATA(0:7)
OCMDATA(0)
OCMDATA(1)
OCMDATA(2)
OCMDATA(3)
OCMDATA(4)
OCMDATA(5)
OCMDATA(6)
OCMDATA(7)
OCMADDR(0:19)
OCMADDR(0)
OCMADDR(1)
OCMADDR(2)
OCMADDR(3)
OCMADDR(4)
OCMADDR(5)
OCMADDR(6)
OCMADDR(7)
OCMADDR(8)
OCMADDR(9)
OCMADDR(10)
OCMADDR(11)
OCMADDR(12)
OCMADDR(15)
OCMADDR(16)
OCMADDR(18)
OCMADDR(17)
OCMADDR(14)
OCMADDR(13)
OCMADDR(19)
2C03
100n
2
4
1C00
SKQR
For Software
Development only - (RES)
1
3
FC04
1
0V
MR
3C01
10K
3C06-1
3C06-2
3C06-3
3C06-4
1
2
3
4
3C07-1 1
3C07-2 2
3C07-3
3C07-4
3
4
3C08-2
3C08-1
3C08-3
3C08-4
2
1
3
4
3C09-1 1
3C09-2 2
3C09-3 3
3C09-4 4
3C10-1
3C10-2
3C10-3
3C10-4
1
2
3
4
+3V3SW
3V2
8
7
6
5
10K
10K
10K
10K
8
7
6
5
10K
10K
10K
10K
8
7
6
5
10K
10K
10K
10K
8
7
6
5
10K
10K
10K
10K
7
8
6
5
10K
10K
10K
10K
7C02
PST596J
VOUT
FC05
4
3V2
3C11
3C12
3C13
3C14
3C15
+3V3_IO
RES
RES
RES
RES
RES
FC06
FC07
FC08
3C19
RES
3C20
RES
3C21
RES
7
3C02
1K0
#RESET
TO SCALER
&
&
TO HDMI
TO COLUMBUS
3C03
RES
3C18
10K
FC09 FC10
B11
A
B
C
D
E
3C16-2 B7
3C16-3 B6
3C16-4 B6
3C17 B6
3C18 B7
3C19 C6
3C20 C7
3C21 C7
5C00 A3
7C00 A2
7C01 E3
7C02 E5
FC00 A3
FC01 E2
3C08-4 C5
3C09-1 C5
3C09-2 C5
3C09-3 C5
3C09-4 C5
3C10-1 C5
3C10-2 C5
3C10-3 C5
3C10-4 C5
3C11 A6
3C12 A6
3C13 A6
3C14 B6
3C15 B6
3C16-1 B7
FC02 E2
FC03 E2
FC04 E4
FC05 E6
FC06 C6
FC07 C6
FC08 C7
FC09 B7
FC10 B7
1C00 E4
2C00 A3
2C01 A3
2C02 E2
2C03 E5
3C00 E2
3C01 E5
3C02 E6
3C03 E6
3C04-1 A6
3C04-2 A6
3C04-3 A6
3C04-4 A6
3C05 A6
3C06-1 B5
3C06-2 B5
3C06-3 B5
3C06-4 B5
3C07-1 B5
3C07-2 B5
3C07-3 B5
3C07-4 B5
3C08-1 B5
3C08-2 B5
3C08-3 C5
3139 123 6093.1
1 2 3 4 5 6
家电维修资料网,免费下载各种维修资料
7
F_15270_021.eps
170505
SSB: HDMI
2D00 A3
2D01 C2
2D02 C3
2D03 F4
2D04 F4
2D05 F4
2D06 F4
2D07 A5
2D08 B5
2D09 B5
2D10 B5
2D11 B5
2D12 A5
2D13 B5
2D14 B5
2D15 B5
2D16 B5
2D17 A6
1
B12
HDMI
2
2D18 B6
2D19 B6
2D20 A7
2D21 B6
2D22 B6
2D23 A7
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
42
2D24 B7
2D25 B7
2D26 B7
2D27 A8
2D28 B8
2D29 B8
3
2D30 B8
2D31 B8
2D32 E11
2D33 E11
2D34 E12
2D35 E12
2D36 G11
2D37 H11
2D38 G12
2D39 G12
2D40 G12
2D41 H13
4
2D44 F14
2D45 G14
3D00 A2
3D01 A3
3D02 A3
3D03 C2
3D04 C2
3D05 C4
3D06 C4
3D07 D4
3D08 D4
3D09 C5
5
3D10 C5
3D11 F4
3D12 F4
3D15-1 B11
3D15-2 B11
3D15-3 C11
3D15-4 C11
3D16-1 C11
3D16-2 C11
3D16-3 C11
3D16-4 C11
3D17-1 C11
3D17-2 D11
3D17-3 D11
3D17-4 D11
3D18-1 D11
3D18-2 D11
3D18-3 D11
3D18-4 D11
3D19 E12
3D20 E12
3D21-1 G9
3D21-2 G9
3D21-3 F9
3D21-4 F9
3D22 G9
3D23 G9
3D24 G11
3D25 H11
3D26 G12
6 7 8
3D27 H13
3D30 F14
3D31 F14
3D32 G14
3D33 G14
3D34 H11
3D35 H12
4D00 F13
4D01 F13
5D00 A5
5D01 A6
5D02 A6
9
5D03 A7
5D04 A7
7D00 A2
7D01 D3
7D02 D4
7D03 C5
7D04 E11
7D05 F13
FD00 B3
FD01 C2
FD02 C2
FD03 C2
10
FD04 D2
FD05 G2
FD06 G2
FD07 A5
FD08 A6
FD09 A6
FD10 A6
FD11 A7
FD12 F9
FD13 E11
FD14 E12
FD15 F10
11
FD16 E13
FD17 H7
ID00 C3
ID01 D3
ID02 D4
ID03 D4
ID04 F5
ID05 F5
ID06 F5
ID07 G5
ID08 G10
ID09 G11
12
ID10 G12
ID11 G12
ID12 H12
ID13 H12
ID14 H12
ID15 F13
13
ID16 E13
ID17 E13
ID18 F14
ID19 G14
ID20 F14
ID21 G14
ID22 F4
14 15
B12
A
B
C
D
E
F
G
H
FROM SCALER
+3V3SW +3V3SW +3V3SW
SCL_IO
SDA_IO
7D00
M24C02-WMN6
Φ
(256x8)
EEPROM
1
2
3
0
1
2
ADR
WC
SCL
SDA
3D00
4K7
3D01
4K7
FD00 7
6
5
3D02
4K7
2D00
100n
5D00 5D01 5D02
2D07
22u
6.3V
2D08 100n
FD07
2D12
22u
6.3V
2D13 100n
FD08
2D17
FD09
10u
2D18 100n
2D09 1n0 2D14 1n0 2D19 1n0
2D15 1n0 2D10 1n0
2D11 1n0 2D16 1n0
5D03
FD10
2D20 10u
2D21 100n
2D22 1n0
PLLIN
FROM DIGITAL-IO (CINCH ONLY)
DOC_SDA
DOC_SCL
+5VHDMI
FD01
3D03
FD02 3D04
FD03
TO MUX-SYNC INTF
H_HDMI
V_HDMI
RXC-
RXC+
RX0-
RX0+
RX1-
RX1+
RX2-
RX2+
COMP
PLLIN
FD05
FD06
0R
0R ID00
2D01
10n
FD04
2D02
1n0
ID01
FROM
FLASH/CONTROL
3D05
100R
#RESET
+3V3SW
3D06
100R
3D07
4K7
+3V3SW
3D08
4K7
3D10
390R
7D03
SII9993CTG100
72
RESET
AVCC
3D09
33R
27
26
MCLKIN
MCLKOUT
7D01
BSN20
+3V3SW
7D02
BSN20
+3V3SW
ID02
ID03
74
CSCL
75
CSDA
77
DSCL
76
DSDA
83
RXC-
84
RXC+
86
RX0-
87
RX0+
2D03 10u
2D04 10n
2D05 47n
3D11
100R
2D06 10u
ID22
3D12
3K9
ID04
ID05
ID06
ID07
91
RX1-
92
RX1+
96
RX2-
97
RX2+
9
8
RSET
COMP
24
PLLIN
25
PLLOUT
81
EXT-RES
33
HSYNC
34
VSYNC
VCC Φ
HDMI
PANELLINK
RECEIVER
AGND GND PGND
FD17
+3V3SW +3V3SW
TO SCALER
COMP
A
5D04
FD11 2D23 22u
6.3V
2D24 100n
2D25 1n0
2D26 1n0
2D27
22u
6.3V
2D28 100n
2D29 1n0
2D30 1n0
2D31 1n0
OGND
OVCC1
NC
RSVDL
RSVDO
18
73
19
20
3
4 NC
Q 11
12
13
14
15
16
6
9
10
7
8
2
3
4
5
0
1
17
18
19
20
21
22
23
62
61
60
59
58
55
70
69
68
63
49
48
44
43
42
39
38
37
36
54
53
52
51
50
ANRPR
ANGY
7
12
NC
15
ANBPB
SPDIF
SDO
WS
SCK
31
32
29 SPDIF
(NC)
30
DE
ODCK
INT
35
46
71
NC
FD12
3D21-4 4 5 33R
FD15
3D21-3
3D21-2
3D21-1
3D22
3D23
3
2
1
6 33R
7 33R
8 33R
33R
33R
B
HDMI_Y(0:7)
3D15-1 1
3D15-2 2
3D15-3 3
3D15-4 4
3D16-11
3D16-22
3D16-3 3
3D16-4 4
3D17-1 1
3D17-2 2
3D17-3 3
3D17-4 4
3D18-1 1
3D18-22
3D18-3 3
3D18-4 4
8 33R
7 33R
6 33R
5 33R
8 33R
7 33R
6 33R
5 33R
8 33R
7 33R
6 33R
5 33R
8 33R
7 33R
6 33R
5 33R
+3V3SW
HDMI_Y(0)
HDMI_Y(1)
HDMI_Y(2)
HDMI_Y(3)
HDMI_Y(4)
HDMI_Y(5)
HDMI_Y(6)
HDMI_Y(7)
HDMI_CbCr(0)
HDMI_CbCr(1)
HDMI_CbCr(2)
HDMI_CbCr(3)
HDMI_CbCr(4)
HDMI_CbCr(5)
HDMI_CbCr(6)
HDMI_CbCr(7)
HDMI_CbCr(0:7)
ID08
2D32
47u 6.3V
2D33
3D19
1R0
FD13
FD14
3D20
1R0
2D34
AUDIO DAC
47u 6.3V
2D35
100n
7D04
UDA1334BT/N2
13
VDDA
1 BCK
4
VDDD
2 WS DIGITAL
INTERFACE
3
DATAI
100n
SFOR0
DE-EMPHASIS
6
8
SYSCLK
MUTE
INTERPOLATION
FILTER
9 DEEM
NOISE SHAPER
10
PCS
SFOR1
11
7
1u0
ID09
100K
3D34
100K
14
2D36
3D24
3D25
100R
VOL
VSSA
10n
15
2D37
VSSD
5
2D38
47u
ID10
6.3V
12
VOR
VREF-DAC
2D39
100n
16
ID17
FD16
ID16
4D00
4D01
FOR SET WO AV3
+3V3SW +3V3SW
2D40
1u0 10V
ID15
ID11
3D26
100K
3D27
100R
3D35
100K
2D41
10n
0V
0V
7D05
HEF4053B
6
3V3
MDX
G4
VDD
1V6 13
12
11
1
2
4X1
4X2
3D30
RES
14
1V7
ID20
1V7
0V
1
2
10
15
1V7
ID21
NC
NC
3
5
9
3D32
RES
4
NC
VEE VSS
TO DIGITAL-IO (CINCH ONLY)
AV3_LEFT
AV3_HDMI-AUDIO_SEL
AV3_RIGHT
3D31
RES
2D44 ID18
1u0
2D45 ID19
1u0
3D33
RES
TO HERCULES
AudioIN2R
AudioIN2L
ID12
ID13
ID14
HDMI_VDV
HDMI_VCLK
C
D
E
F
G
H
3139 123 6058.1
1 2 3 4 5 6 7 8 9 10 11 12 13 14
FROM SCALER
F_15420_068.eps
180705
15
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
43
A
B
C
D
E
F
G
SSB: MUX-Sync Interface
1 2
B13
3
MUX-SYNC INTERFACE
FROM HERCULES
R_SDTV
G_SDTV
B_SDTV
(SCART)
FROM ANALOG-IO
/
FROM DIGITAL-IO
/
(SCART) (CINCH)
SYNC INTERFACE
(CINCH)
FE00
FE01
FE02
SC1_CVI_DMMI_R_Pr_IN
SC1_CVI_DMMI_G_Y_IN
SC1_CVI_DMMI_B_Pb_IN
RINA|Pr
GINA|YINA
BINA|Pb
Hsync_SDTV
H_PC
3E31
3E32
Vsync_SDTV
V_PC
3E33
3E34
FROM DIGITAL-IO
/
(SCART) (CINCH)
3139 123 6093.1
1 2
3E00
3E01
3E02
56R
56R
56R
2E00
2E01
2E02
4u7
4u7
4u7
IE13
IE14
IE15
2E33 4u7
2E34 4u7
2E35 4u7 IE18
100R
100R
IE09
6E00
100R
100R
IE11
6E02
IE10
6E01
IE12
6E03
IE16
+5VSWI
7E03
74HC4053D
6
MDX
G4
VDD
13
12
11
1
2
4X1
4X2
1
2
10
5E03
2E31 100n
14
15
FROM ADC
3
5
9
4
VEE VSS
4E11
RES
3E35
100R
3E36
100R
+3V3SW
7E04-1
74LVC14APW
14
1
7
7E04-3
74LVC14APW
14
5
7
7E04-5
74LVC14APW
14
COL_Di(8) 3E37
11
22R
7
3E49
22R
10
COL_Di(8)_INV COL_Do(8)
2 3
6 9
13
3
+3V3SW
4 5 6
2E32
100n
7E04-2
74LVC14APW
14
4
3E39
7
100R
7E04-4
74LVC14APW
14
8
3E38
7
100R
7E04-6
74LVC14APW
14
12
IE28
7
7
3E09
3E10
3E11
+5VSWI
+5VSWI
RESERVED
5E00 IE00
47K
47K
47K
7E00
ADG733BRU
16
VDD
Φ
EN
A0
A1
A2
12
S1A
D1
13
S1B
2
S2A
D2
1
S2B
5
3
S3A
D3
S3B
VSS
7
GND
8
2E03
100n
6
11
10
9
3E12 10K
RGB|CVI_HDA_SEL
FE03
14
15
4
SC1_R_CVI_Pr_IN
SC1_G_CVI_Y_IN
SC1_B_CVI_Pb_IN
3E13
3E14
3E15
330R
330R
330R
FROM SCALER
TO HERCULES
3V2
IE19
IE21
SD_HD_SEL
TO SCALER
HD_FILTER
0V
IE03
0V
4E03
RES
3E19
56R
3E20
56R
3E21
56R
3E22
100K
3V2
2E04
2E05
2E06
3E16
330R
3E17
330R
3E18
330R
IE25 2E08
2E07
33p
4u7
IE26
2E10
2E09
33p
4u7
2E12
2E11
33p
4u7
1u0
1u0
1u0
IE37
IE35
IE36
I_PC_HD_SEL
5E01
FE06
2E16
2E17
2E18
2E19
2E20
100n
100n
100n
100n
47u
6.3V
IE01
9
IE02
23
FE04
22
THROUGH
IE20
IE22
1
IE23
26
25
27
2
3
6
5
VCC
DISABLE
Φ
VCC
MUXSEL
NC1
GSR1
NC2
RINA|YINA
NC3
RINB|YINB
GSG1 ROUT|YOUT
7E01
SM5301BS-G
4
8
28
17 R-PR-ADC
GINA|UINA
GOUT|UOUT
GINB|UINB
14 G-Y-ADC
11 B-PB-ADC
GSB1
BINA|VINA
BOUT|VOUT
7
IE04
20
FE05
21
BINB|VINB
RFC
VFC
GND GND_HS
2E13
1u0
2E14
33p
3E23
820R
FE07
4 5 6
IE27
AHSYNC
IE24
AVSYNC
COL_Do(8)_INV
7
TO SCALER
PC_HD_SEL
8
8
FROM HDMI
V_HDMI
H_HDMI
I_PC_HD_SEL
3E41
100R
3E42
100R
3E43
100R
9 10 11
9
+5VSWI
2E21
IE17
IE29
IE30
4u7
IE05
2E22 4u7
IE06
2E23 4u7
IE07
2E37
2E38
2E39
15p
15p
15p
5E02
16
18
20
2E15
IE08
100n
5V4
VDD
Φ
SPST
NC
SWITCH
NC
7E02
ADG781BCP
6
8
10
B13
TO SCALER
2
0V6
1
2V7
14
0V8
15
S1
D1
S2
D2
IN1
12
0V4
11
2V7
4
S3
D3
5
IN3
S4
IN4
D4
GND_HS GND
19
IN2
17
3V3
FE08
9
7
PC_HD_SEL
3V2
TO SCALER
FE09 3E24
7E05-1
74LVC14APW
14
1
7
7E05-3
74LVC14APW
14
5
7
7E05-5
74LVC14APW
14
11
7
FE10
FE11
3E25
3E26
FE12 3E27
3E28
FE13 3E29
3E30
+3V3SW
470R 2E24 100n
IE33
39R
22R
IE32
2E25 100n
2E26 100n
39R
22R
2E27 100n
2E28 100n
39R
22R
IE34
2E29 100n
2E30 100n
2E36
7E05-2
74LVC14APW
14
2 3
7
100n
4
7E05-4
74LVC14APW
14
6 9
7
7E05-6
74LVC14APW
14
10 13
7
10
8
12
3E44
100R
IE31
HDMI_VVS
3E45
100R
SOG
R_PR+
R_PR-
G_Y+
G_Y-
B_PB+
B_PB-
HDMI_VHS
3E46
100R
(NC)
11
F_15270_023.eps
250505
A
B
C
D
E
F
G
2E30 D10
2E31 E3
2E32 E6
2E33 C2
2E34 C2
2E35 D2
2E36 E10
2E37 B9
2E38 B9
2E39 B9
3E00 A2
3E01 A2
3E02 A2
3E06 C3
3E07 C3
3E08 C3
3E09 C3
3E10 C3
2E17 B8
2E18 B8
2E19 B8
2E20 B8
2E21 A9
2E22 B9
2E23 B9
2E24 C10
2E25 C10
2E26 C10
2E27 C10
2E28 C10
2E29 D10
2E00 C2
2E01 C2
2E02 C2
2E03 B5
2E04 B7
2E05 B7
2E06 B7
2E07 C7
2E08 C7
2E09 C7
2E10 C7
2E11 D7
2E12 D7
2E13 D7
2E14 D7
2E15 A10
2E16 B8
3E24 C10
3E25 C10
3E26 C10
3E27 C10
3E28 C10
3E29 D10
3E30 D10
3E31 E2
3E32 F2
3E33 F2
3E34 F2
3E35 E5
3E36 F5
3E37 G4
3E38 F6
3E39 E6
3E41 E9
3E42 F9
3E43 G9
3E44 E11
3E45 F11
3E46 G11
3E49 G5
3E11 C3
3E12 C5
3E13 B6
3E14 B6
3E15 B6
3E16 B6
3E17 B6
3E18 B7
3E19 C6
3E20 C6
3E21 D6
3E22 D6
3E23 D7
FE08 B11
FE09 C9
FE10 C9
FE11 C9
FE12 C9
FE13 D9
IE00 B4
IE01 B7
IE02 B7
IE03 D6
IE04 D7
IE05 A9
IE06 B9
IE07 B9
IE08 A10
IE09 E2
7E05-1 E9
7E05-2 E10
7E05-3 F9
7E05-4 F10
7E05-5 G9
7E05-6 G10
FE00 B2
FE01 B2
FE02 B2
FE03 C5
FE04 C7
FE05 D7
FE06 B8
FE07 D8
IE10 F2
IE11 F2
IE12 F2
IE13 C3
IE14 C3
IE15 C3
IE16 C3
IE17 A10
IE18 D2
IE19 C6
IE20 C7
IE21 D6
IE22 C7
IE23 D7
IE24 F7
IE25 C7
IE26 C7
IE27 E7
IE28 G6
IE29 A10
IE30 A10
IE31 E11
IE32 C10
IE33 C11
3E50 C3
3E51 C3
3E52 C3
3E53 D3
3E54 D3
3E55 D3
4E03 B6
4E10 E2
4E11 G3
4E12 D5
4E13 D5
4E14 D5
5E00 B4
5E01 B8
5E02 A10
5E03 E3
6E00 F2
6E01 F2
6E02 F2
6E03 F2
7E00 B4
7E01 B8
7E02 A10
7E03 E3
7E04-1 E5
7E04-2 E6
7E04-3 F5
7E04-4 F6
7E04-5 G5
7E04-6 G6
IE34 D10
IE35 B7
IE36 B7
IE37 B7
家电维修资料网,免费下载各种维修资料
A
B
C
D
E
FOR UFD ONLY
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
44
SSB: Top Connectors
1 2
B16
TOP CONNECTORS
9
10
7
8
5
6
3
4
1
2
(1M03)
1J00
IJ01
IJ02
IJ03
IJ04
POR (NC)
LAMP_ON_OFF_1
TEMP_SENSOR (NC)
IJ05 STANDBY_1
IJ06
IJ07
NC
POWER_UP_OK_1
6
7
4
5
10
11
8
9
1
2
3
(1M46)
1J01
FJ00
FJ01
FJ02
(NC)
5V(NC)
FJ03
FJ04
FJ05
NC
1J07
3A T
1J08
+33V_TUN(NC)
4J01
+12V_UFD
+5V_UFD
1J02
6
7
4
5
1
2
3
10
11
8
9
12
B12P-PH-K-S(LF)
VP
GND_AUDIO
FJ06
FJ07
IJ08
IJ09
IJ10
IJ11
F
3139 123 6093.1
1
1J03
B3B-PH-K-S(LF)
FJ08
3
2
1
FJ09
VP
GND_AUDIO
2J03
1n0
GND_AUDIO
2
5J04
3
FROM SCALER INTERFACE
FROM SCALER
5J05
RES
3J06 RES
FAN_SPEED
PROTECT_AUD
POWER_UP_OK
IJ12
TO DC-DC CONVERTER
+5V
4
FROM SCALER
3V2
+3V3STBY
5J03
POWER_DOWN
3J05
3J03
3J04
68R
68R
68R
FROM SCALER INTERFACE
FROM SCALER
STANDBY
BACKLIGHT_CTRL
LAMP_ON_OFF
IJ13
3V1
3V2
5
PROTECT_AUD
FROM EPLD
6
B_LT_PWM
G_LT_PWM
R_LT_PWM
B_RT_PWM
G_RT_PWM
R_RT_PWM
B_LB_PWM
G_LB_PWM
R_LB_PWM
B_RB_PWM
G_RB_PWM
R_RB_PWM
3 4 5 6
家电维修资料网,免费下载各种维修资料
7
FROM AUDIO
AUDIO-L
AUDIO-R
5J01
5J02
3V3
3V3
SOUND_ENABLE_1
POR_AUDIO
2J26
100p
2J27 2J28
100p 100p
(1M52)
1J04
FJ10
FJ12
FJ13
FJ14
2J29
100p
2J36
1n0
FJ11
AUDIO-SW (NC)
7
8
9
4
5
6
1
2
3
B9B-PH-K-S(LF)
RESERVED
7
FJ15
FJ16
FJ17
FJ18
FJ19
FJ20
1J05
5
6
7
3
4
1
2
B7B-PH-K-S(LF)
FJ21
FJ22
FJ23
FJ24
FJ25
FJ26
1J06
6
7
4
5
1
2
3
B7B-PH-K-S(LF)
8
8
B16
F_15270_026.eps
170505
A
B
C
D
E
F
1J00 B1
1J01 C1
1J02 D1
1J03 F1
1J04 B8
1J05 C8
1J06 E8
1J07 C2
1J08 C2
2J02 F2
2J03 F2
2J04 D6
2J05 D7
2J06 D7
2J07 D7
2J08 D7
2J09 D7
2J10 E6
2J11 E7
2J12 E7
2J13 E7
2J14 E7
2J15 E7
2J16 C2
2J17 F3
2J18 F2
2J19 F3
2J20 C3
2J21 F3
2J22 F3
2J23 F3
2J26 C6
2J27 C7
2J28 C7
2J29 C7
2J30 F2
2J31 D2
2J33 C2
2J34 C3
2J35 F2
2J36 C7
3J03 E3
3J04 E3
3J05 E3
3J06 B3
4J01 D2
4J02 C2
5J01 B7
5J02 B7
5J03 E2
5J04 C2
5J05 B3
FJ00 C1
FJ01 C1
FJ02 C1
FJ03 C1
FJ04 C1
FJ05 D1
FJ06 E2
FJ07 E2
FJ08 F1
FJ09 F2
FJ10 B7
FJ11 B8
FJ12 B7
FJ13 B7
FJ14 C7
FJ15 C7
FJ16 C7
FJ17 D7
FJ18 D7
FJ19 D7
FJ20 D7
FJ21 E7
FJ22 E7
FJ23 E7
FJ24 E7
FJ25 E7
FJ26 E7
IJ01 B1
IJ02 B1
IJ03 B1
IJ04 B1
IJ05 B1
IJ06 B1
IJ07 B1
IJ08 E2
IJ09 E2
IJ10 E2
IJ11 E2
IJ12 B4
IJ13 E4
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
45
SSB: Side Connectors
1
B17
SIDE CONNECTORS
FOR DISC/ ARCH CABINET
1K03
RESERVED
14
13
12
11
10
9
8
7
6
5
4
3
2
1
20
19
18
17
16
15
+3V3STBY_1
4K06
4K07
+3V3STBY_1
RES
+5VSW_1
LIGHT_SENSOR_1
IR_1
PC-TV-LED_1
LED_SEL_1
KEYBOARD
ITV_IR_SW_RESET
+3V3STBY
LED_SEL
PC-TV-LED
IR
LIGHT_SENSOR
2K01
1n0
3K11
5K00
5K02
3K12
3K13
68R
1u0
1u0
68R
IK16
68R
2K00
1n0
B17
4K01
4K03
4K04
4K05
RES
RES
IK00
IK01
IK02
IK03
TO/FROM 1540 OF
IR/ LED
1K00
(1M21)
PC-TV-LED_1
6
+3V3STBY_1
5
LED_SEL_1
4
IR_1
3
2
1
LIGHT_SENSOR_1
B6B-PH-K
FK11
10
11
7
8
9
4
5
6
1
2
3
RES
1K04
TO/FROM 1304
OF SIDE I/O
1K01 (1M06)
9
10
11
12
5
6
7
8
1
2
3
4
FK00
FK01
FK02
FK03
FK04
FK10
FK05
FK06
FK07
FRONT_Y_CVBS_IN_1
FRONT_C_IN_1
FRONT_L_IN_1
+5VSW_1
FRONT_R_IN_1
HP_LOUT_1
HP_DET_R_DC_1
HP_ROUT_1
3V3
3V3
4K02
RES
3K00
100R
2K02
10p
3K01
100R
2K04
10p
2K03
10p
2K05
10p
3K02
10K
2K06
100p
IK17 2K08
2u2
5K01
1u0
2K19
1n0
2K20
1n0
2K07
100p
3K03
15K
+5VSW
3K05
10K
2K10
100p
2K12
IK18
2K11
100p
3K06
15K
2u2
*
* 3K07
39R
2K13
100p
*
2K14
100p
3K08
2K15
100p
68R
*
3K09 *
39R
2K16
100p
*
2K17
100p
FRONT_Y_CVBS_IN
FRONT_C_IN
HP_LOUT
HP_DET_R_DC
HP_ROUT
FRONT_L_IN
FRONT_R_IN
KEYBOARD
2K18
100p
TOP/SIDE KEYBOARD
1K02 (1M01)
FK09
FK08
1
2
3
B3B-PH-K-S(LF)
F_15270_027.eps
250505
3139 123 6093.1
1
家电维修资料网,免费下载各种维修资料
1K00 A8
1K01 D1
1K02 E8
1K03 A1
1K04 D1
2K00 B7
2K01 B6
2K02 C3
2K03 C3
2K04 D3
2K05 D3
2K06 D3
2K07 D3
2K25 B7
2K26 B7
2K27 B7
2K28 B7
3K00 C3
3K01 C3
3K02 D3
3K03 D3
3K05 E3
3K06 E3
3K07 E3
3K08 F3
3K09 F3
3K11 A7
3K12 A7
3K13 B7
2K08 D4
2K10 E3
2K11 E3
2K12 E4
2K13 F3
2K14 E3
2K15 F3
2K16 F3
2K17 F3
2K18 E8
2K19 E3
2K20 E3
2K21 B6
2K22 B6
2K23 B6
2K24 B6
4K01 A7
4K02 F2
4K03 A7
4K04 A7
4K05 A7
4K06 B1
4K07 B1
5K00 A7
5K01 D3
5K02 A7
FK00 E1
FK01 E1
FK02 E1
FK03 E1
FK04 E1
FK05 E1
FK06 E1
FK07 E1
FK08 E8
FK09 E8
FK10 E1
FK11 B8
IK00 A8
IK01 A8
IK02 A8
IK03 B8
IK16 A7
IK17 D3
IK18 E3
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
46
A
B
C
D
E
F
SSB: ADC
1 8
B18
ADC
B18
7L05
LD1117DT33
+3V3SWB +3V3SWB
+5VSWIA
3
IN OUT
COM
2
IL16
3V3
+3V3SWB
2L30
10u 16V
5L02
5L01
IL18
+3V3SWB
TO HERCULES
+5VSWIA
2L02
10u
2L03
100n
2L04
100n
2L05
100n
2L06
100n
2L27
10u 16V
INTF_V_OUT
IL04
3L00
1K0
2L35
RES
3L01
RES
1V5
3L03
RES
5V4
7L01
BC847BW
3L04
0V9
0R
3L33
220R
3L05
150R
5L00
IL17
2L29
16V 10u
2L22
10u
2L23
100n
2L24
100n
IL19
2L07
10u
2L08 2L09
100n 100n
2L10
100n
2L11
100n
2L33 2L34
100n 100n
CVBS_COMB
INTF_Y_OUT
4L03
RES
4L02
FROM SYNC INTERFACE
Hsync_SDTV
Vsync_SDTV
INTF_U_OUT
IL06
3L12
1K0
2L36
RES
FROM HERCULES
SDA
SCL
IL05
3L06
0R
+5VSWIA
3L07
RES
7L02
BC847BW
3L09
RES
3L11
150R
+5VSWIA
3L13
RES
1V5
3L15
RES
3L10
330R
5V4
7L03
BC847BW
3L16
0V9
0R
+3V3SWB
3L36
3K3
4L04
RES
2L38
RES
5L03 10u
2L37
68p
5L04
10u
3L35
220R
3L17
150R
IL09
+3V3SWB
3L37
3K3
3L38
0R
2L39
82p
2L17
47n
4L05
+5VSWIA
7L08
RES
3L39
RES
3L08
RES
IL07
7L04
AD9985KSTZ
9883(MSTAR)
2L13 47n
IL01
54
RAIN
3L34
0R
IL08
2L26 220n
IL02
IL03
48
43
GAIN
BAIN
3L21 2K2
3L22 2K2
2L15
RES
3L23 RES
3L24
2L20
2K2
100n
2L18 82n
2L21
3L18
100n
2K7
2L19 8n2
2L31
100u
16V
2L32
100u
16V
30
31
HSYNC
VSYNC
33
57
56
55
49
SOGIN
38
29
58
CLAMP
COAST
37
REF_BYPASS
MIDSCV
FILT
SDA
SCL
A0
VD
Φ
VDD
ANALOG INTERFACE FOR
FLAT PANEL DISPLAY
PVD
RED
2
3
4
5
6
7
0
1
GREEN
3
4
0
1
2
5
6
7
BLUE
2
3
4
0
1
5
6
7
DATACK
HSOUT
VSOUT
SOGOUT
66
64
65
19
18
17
16
15
14
13
12
67
77
76
75
74
73
72
71
70
IL10
IL11
IL12
3L25-1
3L25-2
3L25-3
3L25-4
3L26-1
3L26-2
3L26-3
6
5
4
3
2
9
8
7
IL13
IL14
IL15
3L27-4
3L27-3
3L27-2
3L27-1
3L28-4
3L28-3
3L28-2
3L28-1
3L30
3L31
3L32
GND
3L19
3L20
150R
150R
22R
22R
2K2
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
22R
COL_Di(8)
2L28
10u 16V
COL_CLKASA
COL_HREF
COL_VA
TO COLUMBUS
COL_Di(1:7)
COL_Di(1)
COL_Di(2)
COL_Di(3)
COL_Di(4)
COL_Di(5)
COL_Di(6)
COL_Di(7)
COL_YA(1:8)
COL_YA(1)
COL_YA(2)
COL_YA(3)
COL_YA(4)
COL_YA(5)
COL_YA(6)
COL_YA(7)
COL_YA(8)
TO SCALER
COL_CLKASA
COL_HREF
COL_VA
SYNC INTF
3139 123 6093.1
1
3
2
2
2
7L06
BSN20
+3V3SWB
3
3
2
7L07
BSN20
3
4
4
5
5
6
6
7
7 8
9
9
F_15270_028.eps
170505
A
B
C
D
E
F
2L26 C4
2L27 A8
2L28 B9
2L29 B4
2L30 A3
2L31 E4
2L32 E5
2L33 B8
2L34 B8
2L35 B2
2L36 E1
2L37 C3
2L38 C3
2L39 C3
3L00 B2
3L01 B2
3L03 B2
3L04 B3
3L05 B3
3L06 C1
3L07 C2
3L08 C3
3L09 C2
3L10 C2
3L11 C2
3L12 E1
3L13 D2
3L15 E2
3L16 E2
3L17 E3
3L18 E4
3L19 F3
3L20 F3
3L21 C4
3L22 D4
3L23 D4
3L24 D4
3L25-1 C7
3L25-2 C7
3L25-3 C7
3L25-4 C7
3L26-1 C7
3L26-2 C7
3L26-3 C7
3L27-1 D7
3L27-2 D7
3L27-3 D7
3L27-4 D7
3L28-1 D7
3L28-2 D7
3L28-3 D7
3L28-4 D7
3L30 E7
3L31 E7
3L32 E7
3L33 B3
3L34 C4
3L35 E3
3L36 E2
2L02 A7
2L03 A7
2L04 A7
2L05 A8
2L06 A8
2L07 B7
2L08 B7
2L09 B7
2L10 B8
2L11 B8
2L13 C4
2L15 D4
2L17 E3
2L18 E4
2L19 E4
2L20 D4
2L21 D4
2L22 B5
2L23 B5
2L24 B5
3L37 E3
3L38 C3
3L39 C4
4L00 D3
4L01 D3
4L02 C1
4L03 C1
4L04 C3
4L05 C4
5L00 B4
5L01 A5
5L02 A6
5L03 C3
5L04 C3
7L01 B3
7L02 C2
7L03 E2
7L04 C5
7L05 A2
7L06 F2
7L07 F3
7L08 C3
IL01 C5
IL02 C5
IL03 C5
IL04 B1
IL05 C1
IL06 E1
IL07 C4
IL08 C4
IL09 E3
IL10 C7
IL11 C7
IL12 C7
IL13 D7
IL14 D7
IL15 D7
IL16 A3
IL17 B4
IL18 A5
IL19 B6
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
47
A
B
C
D
E
F
H
G
SSB: Columbus
1 2 3 4 5 6 7 8 9 10 11 12
B19
COLUMBUS
+3V3SW
+5VSWI
5M03
5M04
+3V3SWA
2M65
100n
2M67
100n
3V2
2M66
100u
16V
+3V3SWA
5V3
2M68
100u
16V
7M17
RES
3M79
3K3
+5VSWIA
COL_DQM
COL_RAS
COL_CAS
COL_CLK
COL_WE
COL_A0
COL_A1
COL_A2
COL_A3
COL_A4
COL_A5
COL_A6
COL_A7
COL_A8
COL_A9
COL_A10
COL_A11
COL_CLKASA
COL_YA(1:8)
FROM ADC
COL_VA
COL_HREF
COL_Di(1:7)
COL_YA(1)
COL_YA(2)
COL_YA(3)
COL_YA(4)
COL_YA(5)
COL_YA(6)
COL_YA(7)
COL_YA(8)
COL_Di(8)_INV
3M00
RES
4M00
4M01
4M02
4M03
3M26
3M89
22R
H1
B13
0R IM03
IM04
IM06
IM07
B7
B9
A9
B10
A10
B11
A11
B12
A12
P6
R6
P5
R5
R1
R2
R3
P3
R4
P4
R7
P7
L14
K15
K14
J14
J15
A13
A14
3M27
COL_Di(1)
COL_Di(2)
COL_Di(3)
COL_Di(4)
COL_Di(5)
COL_Di(6)
COL_Di(7)
3M90 22R
0R IM08
A4
B5
A5
B6
A6
A2
B3
A3
B4
3M87 0R
+3V3SWA
3M86
RES
7M00-1
COLUMBUS
TO SCALER
COL_DE
A0
A1
A2
A3
A4
A5
A6
A7
A8
A9
A10
A11
DQM
RAS_
CAS_
CLK
WE_
CLKASA
WEA / DAVA
YA0 / Di9
YA1
YA2
YA3
YA4
YA5
YA6
YA7
YA8
MUX
656
Decod
VA
HREF
UVA0 / Di0
UVA1 / Di1
UVA2 / Di2
UVA3 / Di3
UVA4 / Di4
UVA5 / Di5
UVA6 / Di6
UVA7 / Di7
UVA8 / Di8
MUX
COLUMBUS_IO
Memory
Interface
656
MUX
Encod
CLKASB
WEB / DAVB
YB0 / Do9
YB1
YB2
YB3
YB4
YB5
YB6
YB7
YB8
DQ7
DQ8
DQ9
DQ10
DQ11
DQ12
DQ13
DQ14
DQ15
DQ16
DQ1
DQ2
DQ3
DQ4
DQ5
DQ6
UVB0 / Do0
UVB1 / Do1
UVB2 / Do2
UVB3 / Do3
UVB4 / Do4
UVB5 / Do5
UVB6 / Do6
UVB7 / Do7
UVB8 / Do8
M2
M1
L2
L1
K2
K1
J2
J1
H2
G1
A1
D2
D1
C2
C1
B1
G2
F2
E2
E1
P12
R12
P11
P10
R10
P9
P8
R8
R13
R14
R15
P15
N15
M14
M15
L15
3M01-1 1
3M01-2 2
3M01-3
3M01-4
3M02-1
3
4
1
3M02-2
3M02-3
2
3
3M02-4
3M03-4
3M03-3
3M03-2
3M03-1
3M04-4
3M04-3
3M04-2 2
3M04-1 1
4
3
3
2
1
4
4
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
68R
6
7
8
5
5
5
6
7
8
8
7
6
5
8
7
6
3M88 22R
IM10
COL_CLKASB
IM00
3M28
3M06-1 1
3M06-2 2
3M06-3 3
3M06-4
3M07-1
3M07-2
3M07-3 3
3M07-4 4
4
1
2
RES
8 22R
7
6
22R
22R
5
8
7
22R
22R
22R
6
5
22R
22R
COL_YB(1)
COL_YB(2)
COL_YB(3)
COL_YB(4)
COL_YB(5)
COL_YB(6)
COL_YB(7)
COL_YB(8)
3M29
3M08-1 1
3M08-2 2
3M08-3 3
3M08-4
3M09-1
4
1
3M09-2
3M09-3
2
3
COL_Do(8)
RES
8 22R
7 22R
6 22R
5
8
22R
22R
7 22R
6 22R
COL_Do(1)
COL_Do(2)
COL_Do(3)
COL_Do(4)
COL_Do(5)
COL_Do(6)
COL_Do(7)
COL_DQ1
COL_DQ2
COL_DQ3
COL_DQ4
COL_DQ5
COL_DQ6
COL_DQ7
COL_DQ8
COL_DQ9
COL_DQ10
COL_DQ11
COL_DQ12
COL_DQ13
COL_DQ14
COL_DQ15
COL_DQ16
+3V3SWA
FROM FLASH/
CONTROL
FROM SCALER
COL_RST
#RESET
+3V3SWA
4M17
2M33
3M10
4M04
RES
100p
RES
G15
H15
4M05
H14
3M11
4M06 RES
4M16
4K7
G14
A7
FM01
FM02
FM03
FM04
FM05
3M53
3M54
3M55
3M57
3M59
47R
47R
47R
47R
47R
D15
F15
E15
E14
F14
3M58
10K
3M51
10K
A8
F1
H3
B8
3M12 RES
+3V3SWA
3M13
4K7
7M00-2
COLUMBUS
RESET
CLKSEL
CLKEXT
A0IIC
656SEL
TCK
TDI
TDO
TMS
TRST
TST1
TST2
TST3
BISTEN
3139 123 6093.1
1
5M02
2 3 4
VDDS
COLUMBUS_CTRL
VSS
5
VDDC
AVD
AVS
SNDA
SNCL
SNRST
6
SDA
SCL
NC_2
NC_3
N1
P1
C14
D14
C15
A15
B15
D4
N2
5M01
IM11
IM01
7M03
LF15ABDT
3V2 3
OUT
COM
IN
1
1V5
IM09
2M22
100n
2M24
3M78
4M08
4M09
1K0 +3V3SWA
FROM HERCULES
3M14
3M15
7
100R
100R
SDA
SCL
100n
8
COL_DQM
5M00
+3V3SWA
2M23
100u
16V
TO/FROM SYNC INTERFACE
+5VSWIA
Hsync_SDTV
3M68
15K
1
2
2M60
1n0
3
14
15
+5VSWIA
VCC
7M14-1
74HCT221D
+5VSWIA
3M69
10K
13
4
R
CX
CX|RX
GND
2M61
1n0
+5VSWIA
3M71
2K7
2M62
1n0
1
2
+5VSWIA
VCC
7M15-1
74HCT221D
13
4 3
14
15
R
CX
CX|RX
GND
TO ADC
+5VSWIA
9
10
VCC
7M14-2
74HCT221D
5
12 11
6
7
R
CX
CX|RX
GND
H_DELAY
9
+3V3SWA
5M05
2M32
100u
16V
2M25
100n
2M26
100n
2M27
100n
2M28
100n
COL_A0
COL_A1
COL_A2
COL_A3
COL_A4
COL_A5
COL_A6
COL_A7
COL_A8
COL_A9
COL_A10
COL_A11
+3V3SWA
COL_CLK
3M16
COL_RAS
COL_CAS
COL_WE
2M29
100n
2M30
100n
4K7
35
34
18
17
16
15
21
22
23
24
27
28
29
30
31
32
20
19
VDD
5
6
7
8
9
10
2
3
4
0
1
0
A
512K-1
Φ
DRAM
VDDQ
512K X 16 X 2
MSM56V16160F-7T3
A11
D
NC
7M01
33
37
CLK
CKE
CS
RAS
CAS
WE
VSS VSSQ
9
11
12
39
40
42
43
2
3
5
6
8
45
46
48
49
8
9
10
11
12
13
14
15
16
3
4
5
1
2
6
7
DQM
U
L
36
14
10 11
COL_DQ1
COL_DQ2
COL_DQ3
COL_DQ4
COL_DQ5
COL_DQ6
COL_DQ7
COL_DQ8
COL_DQ9
COL_DQ10
COL_DQ11
COL_DQ12
COL_DQ13
COL_DQ14
COL_DQ15
COL_DQ16
B19
F_15270_029.eps
170505
12
A
B
C
D
E
F
G
H
3M87 A5
3M88 C8
3M89 C5
3M90 E4
4M00 B5
4M01 B5
4M02 B5
4M03 B5
4M04 F3
4M05 F3
4M06 F3
4M08 F7
4M09 F7
4M10 D10
4M16 F3
4M17 F3
5M00 E8
5M01 F7
5M02 E2
5M03 A2
5M04 A2
5M05 A10
7M00-1 A7
7M00-2 F4
7M01 B11
7M03 E8
7M14-1 E10
7M14-2 E11
7M15-1 F10
7M17 A4
FM01 G2
FM02 G2
FM03 G2
FM04 G2
FM05 G2
IM00 C8
IM01 E7
IM03 C5
IM04 C5
IM06 C5
IM07 C5
IM08 D5
IM09 E8
IM10 C8
IM11 F7
3M03-2 B7
3M03-3 B7
3M03-4 B7
3M04-1 C7
3M04-2 C7
3M04-3 C7
3M04-4 C7
3M06-1 C7
3M06-2 C7
3M06-3 C7
3M06-4 C7
3M07-1 C7
3M07-2 D7
3M07-3 D7
3M07-4 D7
3M08-1 D7
3M08-2 D7
3M08-3 D7
3M08-4 D7
3M09-1 D7
3M09-2 D7
3M09-3 E7
3M10 F3
3M11 F3
3M12 G3
3M13 H3
2M28 A10
2M29 A11
2M30 A11
2M31 E4
2M32 A9
2M33 F3
2M56 E7
2M60 F9
2M61 F11
2M62 G9
2M65 A2
2M66 A2
2M67 B2
2M68 B2
3M00 A4
3M01-1 B7
3M01-2 B7
3M01-3 B7
3M01-4 B7
3M02-1 B7
3M02-2 B7
3M02-3 B7
3M02-4 B7
3M03-1 B7
3M14 G7
3M15 G7
3M16 C9
3M26 C4
3M27 D4
3M28 C7
3M29 D7
3M50 G3
3M51 G3
3M52 G3
3M53 G2
3M54 G2
3M55 G2
3M56 G2
3M57 G2
3M58 G2
3M59 G2
3M68 E9
3M69 E11
3M71 F9
3M78 F7
3M79 A5
3M86 A6
2M14 E6
2M15 E6
2M16 E6
2M17 E6
2M18 E7
2M19 E7
2M20 E7
2M21 E7
2M22 E8
2M23 E8
2M24 F7
2M25 A9
2M26 A10
2M27 A10
2M00 E2
2M01 E2
2M02 E3
2M03 E3
2M04 E3
2M05 E3
2M06 E3
2M07 E3
2M08 E3
2M09 E4
2M10 E4
2M11 E5
2M12 E5
2M13 E6
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
48
E
F
A
B
C
D
G
H
SSB: EPLD
1
B20
EPLD
3139 123 6093.1
1
2
+3V3-IO +3V3-IO +3V3-IO +3V3-IO +3V3-IO
2N01 100n
7N01
EPCS4SI8
2
DATA
VCC
Φ
SCD
CS_
DCLK
ASDI
GND
1
6
5
IN01
IN03
IN02
IN04
+3V3-IO
IN05
IN10
FN01
IN11
3N09
1K0
TO EPLD
IN08
IN06
3
5
IN09
7N03-2
BC847BS
4
2
6
7N03-1
BC847BS
1
H2
K4
G4
K3
J3
J2
K13
J13
H3
J4
DATA0
7N02-1
EP1C12F256C8
Φ
CONTROL
DCLK
CSO
ASDO
0
1
MSEL
CONF_DONE
STATUS
CONFIG
CE
SCAN
TDI
TDO
TCK
TMS
CEO
CLK
0
1
2
3
H14
H15
J14
J15
H4
G1
H1
G16
H16
3N11
47R
IN12
FOR NON-
PIXEL+ SETS
TO SCALER
INTERFACE
TXB0+
TXB0-
TXB1+
TXB1-
TXB2+
TXB2-
TXB3+
TXB3-
TXBC+
TXBC-
CLK_REF
FN02
FN03
+3V3-IO
3N21
3N22
3N23
3N24
3N25
+3V3SW
LVDS IN
+3V3SW +3V3SW
3
1N05
14M31818
2N05 100n
2N06 100n
IN14 IN13
2N07 100n
2N08
100n
2N09
100R
100R
100R
100R
3N26
4K7
IN07
10
9
100R
18
17
25
FN25
26
12
11
16
15
20
19
RA+
RA-
RB+
RB-
RC+
RC-
RD+
RD-
RCLK+
100n
LVDSVCC
7N04
THC63LVDF84B
PLLVCC
VCC
Φ
LCD PANEL
INTERFACE
RECEIVER
RA
2
3
4
5
6
0
1
27
29
30
32
33
35
37
FN11
FN12
R_IN(0)
R_IN(1)
R_IN(2)
R_IN(3)
R_IN(4)
R_IN(5)
G_IN(0)
RB
5
6
3
4
0
1
2
38
39
43
45
46
47
51
FN13
G_IN(1)
G_IN(2)
G_IN(3)
G_IN(4)
G_IN(5)
B_IN(0)
B_IN(1)
RC
2
3
4
5
6
0
1
53
54
55
1
3
5
6
FN14
FN15
FN16
B_IN(2)
B_IN(3)
B_IN(4)
B_IN(5)
HS_IN
VS_IN
DE_IN
RCLK-
PDWN
CLKOUT
RD
0
1
2
3
4
5
6
7
34
41
42
49
50
2
R_IN(6)
R_IN(7)
G_IN(6)
G_IN(7)
B_IN(6)
B_IN(7)
PARITY_IN
FN17
LVDSGND GND PLLGND
OC
1
2N10
100n
R_IN(1)
R_IN(2)
R_IN(0)
R_IN(5)
R_IN(7)
G_IN(1)
G_IN(0)
G_IN(3)
G_IN(7)
R_IN(3)
R_IN(4)
G_IN(2)
G_IN(6)
G_IN(4)
2
3
3
4
4
5
5
6
6
3N15
3N16
3N17
3N18
47R
47R
47R
47R
7
FN04
FN05
FN06
FN07
3N27
47R
7N02-2
EP1C12F256C8
N4
P3
P2
IO_40
IO_39
R1
IO_38
IO_37
L4
K5
IO_36
IO_35
N3
M4 IO_34
L5
IO_33
M3
IO_32
N2
IO_31
M2
IO_30
N1
IO_29
M1
IO_28
L2 IO_27
L1
IO_26
K1
IO_25
L3
IO_24
K2
IO_23
J1
IO_22
IO_21
IO_20
IO_19
IO_18
IO_17
BANK 1
Φ
IO_7
IO_6
IO_5
IO_4
IO_3
IO_2
IO_1
CLKUSR
INIT_DONE
IO_16
IO_15
IO_14
IO_13
IO_12
IO_11
IO_10
IO_9
IO_8
D2
E3
F5
E4
D3
F4
G5
B1
C2
C3
D4
H5
F1
G2
E1
F2
G3
F3
D1
E2
B_IN(7)
B_IN(0)
G_IN(5)
B_IN(4)
R_IN(6)
B_IN(6)
B_IN(1)
PARITY_IN
DE_IN
B_IN(5)
VS_IN
B_IN(3)
HS_IN
B_IN(2)
7
8
+3V3-IO
8
FOR DEBUGGING
1N01
RES
FN09
FN08
FN10
1
2
3
4
5
6
7
8
9
10
2N15
100p
TO SCALER
SDA_IO FN18
SCL_IO FN19
4N21
4N22
B21 LVDS_PWR_DWN
9
+3V3-IO
PIXEL+_RESET
IN19
3N28
180R 6N01
LED_OUT
FN20
TLMG3100
9
10
10
11
11
12
B20
3N46
3N47
100R
100R
P6
R6
M7
T6
R7
M5
M6
N5
N6
R2
T2
R3
P4
R4
T4
R5
P5
P7
N7
R8
T8
M8
N8
P8
IO_41
IO_42
IO_43
IO_44
IO_45
IO_46
IO_47
IO_48
IO_49
IO_50
IO_51
IO_52
IO_53
IO_54
IO_55
IO_56
IO_57
IO_58
IO_59
IO_60
IO_61
IO_62
IO_63
IO_64
7N02-5
EP1C12F256C8
Φ
BANK 4 IO_65
IO_66
IO_67
IO_68
IO_69
IO_70
IO_71
IO_72
IO_73
IO_74
IO_75
IO_76
IO_77
IO_78
IO_79
IO_80
IO_81
IO_82
IO_83
IO_84
IO_85
IO_86
IO_87
IO_88
P10
R11
P11
N11
N12
M9
M11
M12
P12
M10
R9
T9
P9
N9
R10
T11
N10
R12
T13
R13
R14
P13
T15
R15
+3V3SW
IN15
IN16
IN17
IN18
1N02
B4B-PH-SM4-TBT(LF)
6
1
2
3
5
4
FOR DEVELOPMENT
USE ONLY
TO SCALER INTERFACE
3N39
3N40
3N41
3N42
3N43
3N44
3N45
3N30
3N31
3N32
3N33
3N34
3N35
3N36
3N37
3N38
3N29
100R
BACKLIGHT_DIM
2N16
TO TOP CONN.
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100R
100p
B_LT_PWM
G_LT_PWM
R_LT_PWM
B_RT_PWM
G_RT_PWM
R_RT_PWM
B_LB_PWM
G_LB_PWM
R_LB_PWM
B_RB_PWM
G_RB_PWM
R_RB_PWM
FN21
FN22
FN23
FN24
1N03
7
3
4
1
2
6
5
BM05B-SRSS-TBT
RES
F_15270_030.eps
250505
12
A
B
C
D
E
F
G
H
4N10 D2
4N11 D2
4N12 D2
4N13 D2
4N14 D2
4N15 D3
4N16 D3
4N17 D3
4N18 D3
4N19 D3
4N20 D3
4N21 D9
4N22 D9
5N01 A8
5N02 D4
5N03 D4
5N04 D5
5N05 C6
6N01 F9
7N01 A2
7N02-1 A4
3N19 C5
3N20 C5
3N21 E3
3N22 E3
3N23 E3
3N24 F3
3N25 F3
3N26 D4
3N27 D6
3N28 F8
3N29 E11
3N30 E11
3N31 E11
3N32 E11
3N33 E11
3N34 E11
3N35 E11
3N36 E11
3N37 E11
3N38 F11
3N39 F11
3N40 F11
3N41 F11
3N42 F11
3N43 F11
3N44 F11
3N45 F11
3N46 D10
3N47 D10
4N01 D2
4N02 D2
4N03 D2
4N04 D2
4N05 D2
4N06 D2
4N07 D2
4N08 D2
4N09 D2
1N01 A9
1N02 D11
1N03 F12
1N05 D5
2N01 A2
2N02 C1
3N07 C2
3N08 C2
3N09 B4
3N10 C2
3N11 C4
3N12 A5
3N13 A5
3N14 A5
3N15 B6
3N16 B6
3N17 B6
3N18 B6
2N03 C2
2N04 C2
2N05 D4
2N06 D4
2N07 D5
2N08 D5
2N09 D5
2N10 D6
2N11 B7
2N12 B7
2N13 B7
2N14 B7
2N15 B8
2N16 E11
2N17 F11
2N18 F11
2N19 F11
2N20 F11
3N01 A3
3N02 A3
3N03 A3
3N04 A3
3N05 A3
3N06 A3
IN05 B3
IN06 C2
IN07 D4
IN08 C2
IN09 C2
IN10 B3
IN11 B4
IN12 C5
IN13 D5
IN14 D4
IN15 D11
IN16 D11
IN17 D11
IN18 D11
IN19 F9
FN26 D2
FN27 D2
FN28 D2
FN29 D2
FN30 D2
FN31 D2
FN32 D2
FN33 D3
FN34 D3
FN35 D3
IN01 B3
IN02 B3
IN03 B3
IN04 B3
7N02-2 D7
7N02-5 D10
7N03-1 C3
7N03-2 C2
7N04 D5
FN01 B4
FN02 B6
FN03 C5
FN04 A8
FN05 B8
FN06 B8
FN07 B8
FN08 B8
FN09 B8
FN10 B8
FN11 D5
FN12 E5
FN13 E5
FN14 F5
FN15 F5
FN16 F5
FN17 G5
FN18 D9
FN19 D9
FN20 F9
FN21 F11
FN22 F11
FN23 F11
FN24 F12
FN25 F4
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Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
49
F
A
B
C
D
E
G
SSB: EPLD
1
B21
EPLD
+3V3SW
FP01
2P15
100u
16V
7P01
LF15ABDT
1
2P16
100n
IN OUT
COM
2
3 FP03 +1V5
2P17
2u2
5P02
5P03
3139 123 6093.1
1
2
5P01
PARITY_OUT
HS_OUT
VS_OUT
DE_OUT
B(5)
B(4)
B(6)
B(3)
B(2)
G(4)
G(5)
B(1)
B(7)
B(0)
CLK_OUT
G(7)
LVDS OUT
K14
L12
N14
M13
M14
L13
M15
M16
L14
L15
L16
K16
K15
J16
N13
P14
P15
R16
N15
N16
K12
H12
IO_89
IO_90
IO_91
IO_92
IO_93
IO_94
IO_95
IO_96
IO_97
IO_98
IO_99
IO_100
IO_101
IO_102
IO_103
IO_104
IO_105
IO_106
IO_107
IO_108
IO_109
IO_110
7N02-4
EP1C12F256C8
Φ
BANK 3 IO_111
IO_112
IO_113
IO_114
IO_115
IO_116
IO_117
IO_118
IO_119
IO_120
IO_121
IO_122
IO_123
IO_124
IO_125
IO_126
IO_127
IO_128
IO_129
IO_130
IO_131
E16
E15
D16
D15
E14
F12
E13
D14
H13
G12
B16
C15
C14
D13
G14
G13
G15
F16
F14
F13
F15
2
3
3
FP04
+1V5-PLL
FP05
4
FP02
+1V5-INT
+3V3-IO
R(1)
G(6)
G(2)
G(1)
R(2)
R(5)
G(0)
R(7)
R(6)
R(0)
R(3)
R(4)
G(3)
B20 (H=NORMAL)
LVDS_PWR_DWN
CLK_OUT
FP06
FP07
3P01
4K7
3P03
R(0)
R(1)
R(2)
R(3)
R(4)
R(5)
G(0)
G(1)
G(2)
G(3)
G(4)
G(5)
B(0)
B(1)
B(2)
B(3)
B(4)
B(5)
HS_OUT
VS_OUT
DE_OUT
R(6)
R(7)
G(6)
G(7)
B(6)
B(7)
PARITY_OUT
FP08
FP09
FP10
FP11
FP12
FP13
FP14
4
5
+3V3-IO
5
1
32
17
31
VCC
RS
PDWN
R|F
CLKIN
0
50
2
8
10
16
18
25
6
6
0
20
22
23
24
27
28
30
6
7
11
12
14
15
19
51
52
54
55
56
3
4
6
0
6
0
TA
TB
TC
TD
GND
2P31 100n
2P32 100n
2P33
100n
47R
6
B15
A15
B14
C13
B13
A13
B12
C12
E12
E11
E9
D12
D11
C11
B11
A11
B10
C10
D10
A9
B9
D9
C9
E10
C8
EAGLE INTERFACE
IO_132
IO_133
IO_134
IO_135
IO_136
7N02-3
EP1C12F256C8
Φ
BANK 2
IO_157
IO_158
IO_159
IO_160
IO_161
IO_137
IO_138
IO_139
IO_140
IO_141
IO_142
IO_143
IO_144
IO_145
IO_146
IO_147
IO_148
IO_149
IO_150
IO_151
IO_152
IO_153
IO_154
IO_155
IO_156
IO_162
IO_163
IO_164
IO_165
IO_166
IO_167
IO_168
IO_169
IO_170
IO_171
IO_172
IO_173
IO_174
IO_175
IO_176
IO_177
IO_178
IO_179
DEV_OE
DEV_CLR
D7
C7
B7
A6
E7
B6
C6
D6
D5
E6
D8
E8
A8
B8
B4
C4
B3
A2
B2
E5
C5
B5
A4
LVDS TRANSMITTER
+3V3SW
2P34 100n
6
7
+3V3-IO
+1V5-INT
+1V5-PLL
2P35 100n
LVDS VCC
7P02
THC63LVDM83R
PLL VCC
FROM EPLD
39 LVDSCLKp
TCLK
+
-
40 LVDSCLKn
DLW21S
TA
+
-
47 LVDSAp
48 LVDSAn
TB
+
-
45 LVDSBp
46 LVDSBn
TC
+
-
41 LVDSCp
42 LVDSCn
+
TD
LVDS GND PLL GND
-
37 LVDSDp
38 LVDSDn
7
8
C1
G6
P1
A14
F10
F7
A3
P16
K11
C16
T3
L7
L10
T14
A7
A10
G8
G10
H7
H9
J8
J10
K7
K9
T7
T10
7N02-6
BANK1
EP1C12F256C8
Φ
POWER
BANK2
BANK3
BANK4
VCCINT
VCCIO
GND
A1
G7
G9
G11
H8
H10
J7
J9
A16
A5
A12
F6
F8
F9
F11
K6
K8
K10
L6
L8
L9
L11
T1
T5
T12
T16
H6
H11
PLL1
PLL2
VCCA
GNDA
PLL1
PLL2
PLL1
GNDG
PLL2
J6
J11
J5
J12
DLW21S
DLW21S
DLW21S
DLW21S
8
FROM SCALER INTERFACE
2P36 10p
2P37 10p
2P38 10p
2P39 10p
2P40
10p
2P41
10p
2P42
10p
2P43 10p
2P44 10p
2P45
10p
LVDSCLK+
LVDSCLK-
LVDSA+
LVDSA-
LVDSB+
LVDSB-
LVDSC+
LVDSC-
LVDSD+
LVDSD-
9
9
FOR MFD ONLY
FOR UFD ONLY
SDA_DMA_BUS1_DISP
SCL_DMA_BUS1_DISP
+3V3SW
3P05
4P09 RES
100R
+3V3SW
LVDSD+
3P04
4P10
100R
RES
LVDSD-
LVDSCLK+
LVDSCLK-
LVDSC+
LVDSC-
LVDSB+
LVDSB-
LVDSA+
LVDSA-
+3V3SW
+3V3SW
+3V3SW
4P03
4P04
4P05
4P06
4P07
4P08
10
10
B21
LVDS_VCC
LVDS_OPT
NC
1P06
32
3
4
5
1
2
6
7
8
13
14
15
16
9
10
11
12
17
18
19
20
21
22
27
28
29
30
31
23
24
25
26
0-1453230-3
33
(1G50)
1P07
32
FP15
+3V3SW 4P01
4P02
FP16
FP17
LVDS_OPT
CTRL_DISP2
CTRL_DISP1
(NC)
(NC)
LVDS_VCC
VDISP_2
VDISP2
15
14
13
12
11
20
19
18
17
16
8
7
10
9
31
30
29
28
27
26
25
24
23
22
21
3
2
1
6
5
4
FI-WE31P-HFE-E1500
FROM DC-DC CONVERTER
FOR LCD ONLY
11
F_15270_031.eps
250505
11
A
B
C
D
E
F
G
2P23 C3
2P24 C3
2P25 C3
2P26 C3
2P27 C3
2P28 C4
2P29 C4
2P30 C4
2P31 C5
2P32 D5
2P33 D5
2P34 D6
2P35 D7
2P36 D8
2P37 E8
2P38 E8
2P39 E8
2P40 F8
2P41 F8
2P42 F8
2P43 F8
2P08 B4
2P09 B4
2P10 B4
2P11 B4
2P12 B4
2P13 B4
2P14 B5
2P15 B1
2P16 B1
2P17 B2
2P18 B3
2P19 B3
2P20 B3
2P21 B3
2P22 C3
5P01 A3
5P02 B3
5P03 C3
5P04 D6
5P05 D6
5P06 D7
7N02-3 A6
7N02-4 E2
7N02-6 A8
7P01 B2
7P02 D7
FP01 A1
FP02 A4
FP03 B2
FP04 B3
FP05 C4
FP06 D4
FP07 E4
FP08 E4
2P44 G8
2P45 G8
3P01 D5
3P03 E5
3P04 D9
3P05 D9
4P01 F10
4P02 F10
4P03 F10
4P04 F10
4P05 F10
4P06 F10
4P07 F10
4P08 F10
4P09 D9
4P10 E9
1P01 E8
1P02 E8
1P03 F8
1P04 F8
1P05 G8
1P06 A11
1P07 D11
2P01 B3
2P02 B3
2P03 B3
2P04 B3
2P05 B3
2P06 B3
2P07 B4
FP09 E4
FP10 F4
FP11 F4
FP12 F4
FP13 F4
FP14 G4
FP15 D11
FP16 D11
FP17 E11
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
50
SSB: Diversity Tables B9-B21
B9 MUX-SYNC INTERFACE B13 MUX-SYNC INTERFACE B15 ANALOG I/O SCART B16 SIDE CONNECTORS B20 & B21 PIXEL PLUS
Item
3A10
3A11
3A13
3A14
4A03
4A04
4A05
4A06
5A00
6A01
7A00
7A02
7A03
3A02
3A06
3A06
3A07
3A07
3A08
2A00
2A01
2A02
2A03
2A12
2A13
3A00
3A01
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V CER2 0603 X7R 16V 100N COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
CER2 0603 Y5V 10V 1U COL
V CER2 0402 X7R 16V 10N COL
V CER2 0402 Y5V 16V 100N COL
V RST SM 0402 68R PM5 COL
V RST SM 0402 68R PM5 COL
RST SM 0402 1K PM5 COL
RST SM 0603 10K PM5COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0402 10K PM5 COL
RST SM 0402 68R PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 560R PM5 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
V FXDIND 0805 100MHZ 30R COL R
V DIO REG SM BZX384-C3V9 COL R
V IC SM PCA9515ADP (PHSE) R
V TRA SIG SM BC847BW (COL) R
V TRA SIG SM BC847BW (COL) R
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
ITEM
2E00
2E01
2E02
2E04
2E05
2E06
3E06
3E07
3E08
3E13
3E14
3E15
3E16
3E17
3E18
V
V
V
V
V
V
V
V
V
DESCRIPTION
V CER2 0603 X5R 6V3 4U7 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
CER2 0402 X5R 6V3 1U PM20 R
CER2 0402 X5R 6V3 1U PM20 R
CER2 0402 X5R 6V3 1U PM20 R
V RST SM 0402 47K PM5 COL
V RST SM 0402 47K PM5 COL
V RST SM 0402 47K PM5 COL
RST SM 0402 330R PM5 COL
RST SM 0402 330R PM5 COL
RST SM 0402 330R PM5 COL
RST SM 0402 330R PM5 COL
RST SM 0402 330R PM5 COL
RST SM 0402 330R PM5 COL
3G77
3G79
3G81
3G83
3G84
3G86
3G68
3G69
3G70
3G71
3G72
3G73
3G75
3G76
2G63
2G64
2G65
2G65
2G66
2G66
3G63
3G64
3G65
3G66
3G67
2G39
2G40
2G41
2G43
2G45
2G46
2G31
2G32
2G33
2G34
2G35
2G36
2G37
2G38
Item
1G01
1G01
1G02
1G02
1G03
2G29
2G30
4G15
4G16
4G17
4G18
4G19
4G22
5G01
6G02
7G07
7G08
7G09
3G88
3G89
3G92
3G93
3G94
3G95
4G09
4G11
4G12
4G13
4G14
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
SOC EURO H 21P F BK R-GRND B
V SOC EURO H 21P F SHD R-GRND Y
SOC EURO H 21P F BK R-GRND B
V SOC EURO H 21P F SHD R-GRND Y
V CON H 32P F 0.50 SM FPC 0.3 R
V ELCAP SM 16V 10U PM20 COL R
V CER2 0603 X7R 16V 100N COL
V CER2 0603 X7R 16V 100N COL
V CER2 0603 Y5V 25V 100N COL
V CER2 0603 Y5V 16V 220N COL
V ELCAP SM 16V 10U PM20 COL R
V CER2 0603 Y5V 25V 100N COL
V CER2 0603 Y5V 10V 1U COL
V RST SM 0603 330R PM5 COL
V CER2 0603 Y5V 10V 1U COL
V CER2 0603 Y5V 10V 1U COL
V RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 330R PM5 COL
V CER2 0603 X7R 50V 1N COL
V CER2 0603 X7R 50V 1N COL
V CER2 0603 X7R 50V 1N COL
V CER2 0603 X5R 6V3 2U2 PM10 R
V CER2 0603 X5R 6V3 2U2 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
V CER2 0603 X5R 6V3 4U7 PM10 R
V RST SM 0603 10K PM5COL
V RST SM 0603 10K PM5COL
V RST SM 0603 10K PM5COL
V RST SM 0603 150R PM5 COL
V RST SM 0603 15K PM5 COL
V RST SM 0603 15K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 560R PM5 COL
V RST SM 0603 10K PM5COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 100R PM5 COL
V RST SM 0603 100R PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 100R PM5 COL
V RST SM 0603 100R PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 75R PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 47K PM5 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
RST SM 0603 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
V FXDIND 0603 100MHZ 120R COL R
V DIO SIG SM BAS316 (COL) R
V IC SM 74HC4053D (PHSE) R
V TRA SIG SM BC847B (COL) R
V IC SM ADG734BRUZ (ANA0) R
Item
1J00
1J01
1J02
1J03
1J07
1J08
2J31
3J03
3J04
4J01
5J04
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V CON V 10P M 2.00 PH B
V CON V 11P M 2.00 PH B
CON V 12P M 2.00 PH B
CON V 3P M 2.00 PH B
V FUSE SM T 3A 125V UL R
V FUSE SM F 630MA 50V UL R
V CER1 0402 NP0 50V 100P COL
V RST SM 0402 68R PM5 COL
V RST SM 0402 68R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
V IND FXD 1206 EMI 100MHZ 120R R
B17 SIDE CONNECTORS
Item
1K00
1K01
1K03
1K04
2K15
3K08
4K02
4K06
5K01
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V CON V 6P M 2.00 PH B
CON V 12P M 2.00 PH B
CON V 20P F 1.25 FFC 0.3 B
V CON V 11P M 2.00 PH B
CER1 0402 NP0 50V 100P COL
RST SM 0402 68R PM5 COL
V RST SM 0603 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
V FXDIND SM 0603 1U PM10 COL R
B18 ADC
Item
3L38
4L05
5L04
Description
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0603 JUMP. 0R05 COL
2P30
2P31
2P32
2P33
2P34
2P35
3N01
3N02
2P22
2P23
2P24
2P25
2P26
2P27
2P28
2P29
2P14
2P15
2P16
2P17
2P18
2P19
2P20
2P21
2P06
2P07
2P08
2P09
2P10
2P11
2P12
2P13
3N03
3N04
3N05
3N06
3N07
3N08
3N09
3N10
3N11
3N12
3N13
3N14
3N15
3N16
2N04
2N05
2N06
2N07
2N08
2N09
2N10
2N11
Item
1N02
1N05
1P06
1P07
2N01
2N02
2N03
2N12
2N13
2N14
2N15
2N16
2P01
2P02
2P03
2P04
2P05
V V
V V
V V
Description
V CON V 4P M 2.00 SM PH R
V OSC XTL SM 14M31818 15P OC R
CON V 30P M 1.25 SM 1453230 R
V V V CON H 31P F 1.25 SM FI-WE R
V V V CER2 0402 Y5V 16V 100N COL
V V
V V
V
V
CER2 0402 Y5V 16V 100N COL
CER2 0402 X5R 6V3 1U PM20 R
V V
V V
V V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
CER2 0402 X7R 50V 1N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
V CER1 0402 NP0 50V 100P COL
V CER2 0603 X5R 6V3 2U2 PM10 R
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V V
V V
V V
V V
V V
V V
V V
V V
V
V
V
V
V
V
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
ELCAP SM 16V 100U PM20 COL R
V CER2 0402 Y5V 16V 100N COL
V CER2 0603 X5R 6V3 2U2 PM10 R
V V
V V
V V
V V
V V
V V
V V
V V
V
V
V
V
V V
V V
V V
V
V
V
V
V
V
CER2 0603 X5R 6V3 2U2 PM10 R
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0402 Y5V 16V 100N COL
CER2 0603 X5R 6V3 2U2 PM10 R
CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V CER2 0402 Y5V 16V 100N COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0603 33K PM5 COL
V RST SM 0402 10K PM5 COL
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V RST SM 0402 1K PM5 COL
V RST SM 0402 33K PM5 COL
V RST SM 0402 47R PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 47R PM5 COL
V RST SM 0402 47R PM5 COL
4P02
4P07
5N01
5N02
5N03
5N04
5N05
5P01
5P02
4N16
4N17
4N18
4N19
4N20
4N21
4N22
4P01
4N08
4N09
4N10
4N11
4N12
4N13
4N14
4N15
3P05
4N01
4N02
4N03
4N04
4N05
4N06
4N07
5P03
5P04
5P05
5P06
6N01
7N01
7N02
7N03
7N04
7P01
7P02
3N32
3N33
3N34
3N35
3N46
3N47
3P01
3P03
3P04
3P04
3P05
3N24
3N25
3N26
3N27
3N28
3N29
3N30
3N31
Item
3N17
3N18
3N19
3N20
3N21
3N22
3N23
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
V
Description
V RST SM 0402 47R PM5 COL
V RST SM 0402 47R PM5 COL
V RST SM 0402 10K PM5 COL
V RST SM 0402 47R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 4K7 PM5 COL
V RST SM 0402 47R PM5 COL
V RST SM 0603 180R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 100R PM5 COL
V RST SM 0402 4K7 PM5 COL
V RST SM 0402 47R PM5 COL
RST SM 0402 100R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
RST SM 0402 100R PM5 COL
V RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
V RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
RST SM 0402 JUMP. 0R05 COL
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V FXDIND 0805 100MHZ 30R COL R
V LED VS SM TLMG3100 (VISH) R
V IC SM EPCS4SI8N (ALT0) R
V IC SM EP1C12F256C8N (ALT0) Y
V TRA SIG SM BC847BS (PHSE) R
V IC SM THC63LVDF84B (THIN) R
V IC SM LF15ABDT (ST00) R
V IC SM THC63LVDM83R (THIN) R
F_15270_070.eps
240505
家电维修资料网,免费下载各种维修资料
A
B
C
D
E
F
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
51
SSB: Digital I/O
1
B22
DIGITAL IO
2 3 4 5 6 7
AV3: VGA + 2fHYPbPr
1Q01
10
11
12
13
7
8
5
6
9
3
4
1
2
14
15
17 16
FQ05
SDA_VGA
SCL_VGA
1285-15S-064-98F
2Q17
330p
2Q18
330p
FQ01
FQ02
FQ03
FQ04
IQ01
3Q16
150R 2Q16
100n
FQ06
3Q17
IQ03
1K0
FQ07
FQ08
FQ09
FQ10
6Q16
BAS316
IQ02
5Q16
3Q18
10K
DDC_5V
2Q25
3
2
1
IQ25
7Q25
M24C02-WMN6
Φ
(256x8)
100n
WC
EEPROM
0 SCL
1 ADR
2 SDA
FROM CINCH ANALOG
AV3_L
AV3_R
FQ30
FQ31
3139 123 6058.1
1
7
FQ25 3Q25
10K
6
5
2
3Q30
3Q31
DDC_5V
3Q26
10K
3Q27
10K
DDC_5V
+5VSWI
10K
10K
2Q30
180p
2Q32
3Q32
15K
2Q31
180p
2Q33
3Q33
15K
3
2u2
2u2
2Q01
RES
3Q01
75R
2Q06
RES
3Q06
75R
2Q11
RES
3Q11
75R
5Q21
3Q21
2K2
5Q23
3Q23
2K2
IQ30
AV3_LEFT
IQ31
AV3_RIGHT
5Q01
5Q06
5Q11
3Q22
220R
3Q24
220R
TO HDMI
2Q21
100p
2Q23
100p
HDMI - (NAFTA & AP ONLY)
1Q03
DC1R019JDA
9
10
11
12
13
14
15
7
8
5
6
1
2
3
4
16
17
18
19
21
23
20
22
FQ40
FQ41
FQ42
FQ43
FQ44
FQ45
FQ46
FQ47
FQ48
NC (CEC)
FQ49
FQ50
FQ51
FQ52
7Q01
BC847BW
4 5 6 7
家电维修资料网,免费下载各种维修资料
3Q40
3Q34
1K0
2K2
8 9
IQ23
IQ21
RX2+
RX2-
RX1+
RX1-
RX0+
RX0-
RXC+
RXC-
DOC_SCL
DOC_SDA
+5VHDMI
HDMI_HOTPLUG_RESET
RINA|Pr
TO PCHD-MUX
B13
GINA|YINA
B13
BINA|Pb B13
H_PC
B13
V_PC
B13
TO HDMI
B22
TO SCALER
A
B
C
D
E
F
5Q23 D4
6Q16 A3
7Q01 F7
7Q25 D1
FQ01 A2
FQ02 A2
FQ03 A2
FQ04 A2
FQ05 A1
FQ06 B2
FQ07 B2
FQ08 B2
FQ09 B2
3Q27 D3
3Q30 E2
3Q31 E2
3Q32 E3
3Q33 E3
3Q34 F7
3Q40 F7
5Q01 A5
5Q06 B5
5Q11 B5
5Q16 A3
5Q21 C4
FQ49 F6
FQ50 F6
FQ51 F6
FQ52 F6
IQ01 A2
IQ02 A3
IQ03 A2
IQ21 D8
IQ23 C8
IQ25 D1
IQ30 E4
IQ31 E4
S080 E2
S081 E2
FQ10 B2
FQ25 D2
FQ30 E1
FQ31 E1
FQ40 E6
FQ41 E6
FQ42 E6
FQ43 E6
FQ44 E6
FQ45 E6
FQ46 E6
FQ47 F6
FQ48 F6
2Q31 E3
2Q32 E3
2Q33 E3
3Q01 A5
3Q06 B5
3Q11 B5
3Q16 A2
3Q17 B2
3Q18 B3
3Q21 C4
3Q22 C5
3Q23 D4
3Q24 D5
3Q25 D2
3Q26 D3
1Q01 A1
1Q03 E6
2Q01 A4
2Q06 B4
2Q11 B4
2Q16 A2
2Q17 B1
2Q18 B2
2Q21 C5
2Q23 D5
2Q25 D2
2Q30 E3
F_15270_032.eps
170505
8 9
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
52
A
B
C
D
E
F
H
I
J
G
SSB: Cinch Analog I/O (1FH)
1 2 3
B23
4
CINCH ANALOGUE IO (1FH)
1R07 2
4
FR84
FR83
6
5
IR04
1
3
FR28
FR16
FR22
1R06 2
4
1
3
6
5
FR85
3R29 IR28
3R28
75R
100R
3R17 IR16
3R16
100R
75R
3R23 IR22
3R22
100R
75R
2R13
RES
FR06 3R07
RES
FR00
FR03
3R92 0R
3R93 0R
3R00
10K
AV1:CVBS+YPbPr+Audio L/R
AV1_CVBS_IN
3R19
RES
+5VSW
4R06
RES
IR06
3R12
68R
7R12
BC847BW
3R13
1K0
3R14
RES
3R20
1K0
3R15
RES
3R03
10K
IR00
2R00
180p
IR02
2R04
180p
3
3R88 150R
2R84
RES
3R87 150R
2R83
RES
2R82
330p
3R90
220K
2R81
330p
3R89
220K
2R01 IR01
3R02
15K
2u2
2R03 IR03
3R05
15K
2u2
AV2: SVHS+CVBS+Audio L/R
+5VSW
1R02-1
MSP-801V1-02-01-A NI LF(PHT)
1
5 3
6 4
2
FR42
FR41
FR34
3R34
0R
2R33
RES
1R02-2 8
4R41
3R41
75R
3R42
10R
2R42
RES 7
IR40
4R42
RES
1R02-3
GND
FR40
FR47 2R47
1R03 2
FR46
4 AV3_L
3R57
75R
2R46
RES
1u0
FR50
+5VSW
3R47
IR47
100K
3R50
56K
3R51
10K
6 AV3_R
IR48
IR50
2R50
180p
5
1
FQ32
FR54 3R54
10K
IR54
3
2R55
180p
TO CINCH DIGITAL
3R35 IR34
10R
3R40
75R
+5VSW
3R53
15K
3R56
15K
3R49
1K0
7R47
BC857BW
2R35
4u7
2R41
4u7
2R51 IR51
2u2
2R54 IR55
2u2
3R36
47K
IR82
3R37
47K
+5VSW
3R46
47K
IR18
3R43
47K
3139 123 6058.1
1 2 4
5
2R85
10u 16V
SC2_L_MON_OUT
SC2_L
2R86
10u 16V
SC2_R_MON_OUT
SC2_R
CVI_Pr_IN
CVI_Y_IN
SC1_CVBS_IN
SC2_C_IN
SC2_Y_IN
CVI_Pb_IN
4R12
SC2_CVBS_MON_OUT
SC1_COMP_AV1_L_IN
SC1_COMP_AV1_R_IN
SC2_L_IN
SC2_R_IN
5
6
TO HERCULES
SC2_L_IN
AV2_DMMI_SW
DMMI_RGB_SW
SC2_R_IN
CVI_Pr_IN
CVI_Pb_IN
CVI_Y_IN
SC1_FBL_IN_1
DMMI_RGB_SW
TO MUX-SYNC INTF
SC1_CVI_DMMI_R_Pr_IN
4R01
SW_I2C_SDA
SW_I2C_SCL
POWER-DOWN_BOLT-ON
FROM SIDE CONNECTOR
FRONT_C_IN
FROM SCALER
SC2_C_IN
SC2|AV2_SIDE_SW
FRONT_Y_CVBS_IN
SC2_Y_IN
7
AV2_DMMI_SW
8
DMMI_L_IN
DMMI_R_IN
DMMI_CVBS_IN
DMMI_R_IN
DMMI_L_IN
3R08 150R
DMMI_CVBS_IN
4R13
IR20
+5VSW
2R58
4u7
+5VSW
IR24 2R59
4u7
3R58
47K
IR21
3R77
47K
3R96
47K
3R98
47K
3R60
2R70
3R76
2R71
3R75
100R
1u0
1u0
3R68
10K
3R69
47K
3R70
47K
2R68
10u
16V
100R
3R78
47K
IR67
IR68
IR66
IR65
IR64
3R79
47K
2R69
100n
1
NC
2
3
4
10
9
8
7
7R68
ADG734BRU
VDD
Φ
SPDT
SWITCH
IN1 IN3
11
12
S1A S3A
13
D1 D3
14
S1B S3B
20
IN2 IN4
19
S2A S4A
18
D2 D4
17
S2B S4B
15
NC
IR63
IR62
IR61
IR60
IR59
IR58
GND VSS 2R72
1u0
3R71
47K
3R80
100R
3R81
100R
3R82
47K
+5VSW
9
39K
3R61
+5VSW
39K
3R62
RES
3R63
47K
3R64
47K
SC2_AV3_Y_IN
2R65
4R60
4R61
3R65
2R66
10
+5VSW
2R60
10u 16V
2u2
2R62
2R63
100n
100n
RESERVED FOR SET WITH DMMI ONLY
+5VSW 5R68 IR69
DMMI_R_Pr_IN
2R14 4u7
4R14
3R09
47K
IR83
IR25
3R10
47K
+5VSW
7R57
74HC4053D
6
16
MDX
G4
VDD
13
12
11
1
2
4X1
4X2
1
2
10
3R11
47K
2R15 4u7
4R15 3R18
47K
3
5
9
VEE VSS
4R16
4
10K
2u2
+5VSW
2R57
100n
11
2R61
100n
7R60
74HC4053D
6
16
G4
VDD
MDX
13
12
11
1
2
4X1
4X2
1
2
10
14
15
4R69
4R70
TO HERCULES
14 SC2_AV3_C_IN B2
15 SC2_AV3_Y_IN
6 7 8 9 10
家电维修资料网,免费下载各种维修资料
3
5
9
11
VEE VSS
4R62
4R63
4R64
4
12
3R66
47K
6R60
BAS316
3R67
47K
2R64
220n
3R72
47K
3R73
47K
3R74
47K
IR81
RESERVED FOR DMMI
2R73 1u0
2R74 1u0
2R75 1u0
3R83
47K
3R84
47K
3R85
47K
2R79 1n0
B2
B2
B2
DMMI_FBL_IN
SC2_L_MON_OUT
SC2_R_MON_OUT
SC2_CVBS_MON_OUT
B2
B2
IR
ITV_IR_SW_RESET
B17
B2
HP_DET_R_DC
SC_STANDBY
12
13
7R61
BC847B
3R91
560R
SC1_CVI_DMMI_G_Y_IN
4R02
SC1_CVI_DMMI_B_Pb_IN
4R03
DMMI_B_Pb_IN
DMMI_G_Y_IN
FR21
FR23
FR24
+3V3STBY
FR25
FR26
FR27
FR10
FR11
FR12
FR13
FR14
FR15
FR17
FR18
FR19
FR20
13
B23
RESERVED FOR DMMI
FR09
FR08
FR07
14
TO HERCULES
SC2_Y_IN_1
SC2_L_IN_1
SC2_R_IN_1
TO MUX-SYNC INTF
FR29
NC
NC
NC
1R01
23
24
25
26
27
28
29
30
31
32
33 34
8
9
10
11
12
13
14
15
16
17
18
19
6
7
4
5
1
2
3
20
21
22
AF732L-N2G1A
14
F_15270_033.eps
170505
A
B
C
D
E
F
G
H
I
J
1R01 G14
1R02-1 G1
1R02-2 H1
1R02-3 H1
1R03 I1
1R06 E1
1R07 A1
2R00 F3
2R01 E4
2R03 F4
2R04 F3
2R13 D2
2R14 H8
2R15 J8
2R33 H3
2R35 G4
2R41 H4
2R42 H3
2R46 I2
2R47 I2
2R50 J3
2R51 I4
2R54 J4
2R55 J3
2R57 H10
2R58 H8
2R59 I8
2R60 A10
2R61 A11
2R62 B10
2R63 C10
2R64 B12
2R65 B10
2R66 B10
2R68 D10
2R69 D10
2R70 E9
2R71 E9
2R72 F11
2R73 E12
2R74 E12
2R75 E12
2R78 I13
2R79 G12
2R80 I13
2R81 A4
2R82 A4
2R83 A3
2R84 A3
2R85 A5
2R86 A5
3R00 E2
3R02 F3
3R03 F2
3R05 F3
3R06 D2
3R07 D2
3R08 G8
3R09 H9
3R10 I9
3R11 I9
3R12 E3
3R13 E3
3R14 E3
3R15 E3
3R16 C2
3R17 C2
3R18 J9
3R19 D3
3R20 E3
3R22 D2
3R23 C2
3R28 B2
3R29 B2
3R34 G3
3R35 G3
3R36 G4
3R37 H4
3R40 G3
3R41 H2
3R42 H3
3R43 I4
3R46 H4
3R47 I2
3R49 H3
3R50 I2
3R51 I2
3R53 J3
3R54 J2
3R56 J3
3R57 I1
3R58 H8
3R60 B9
3R61 B9
3R62 C9
3R63 C9
3R64 C9
3R65 B10
3R66 A12
3R67 B12
3R68 D9
3R69 D9
3R70 D10
3R71 D11
3R72 D12
3R73 D12
3R74 D12
3R75 E9
3R76 E9
3R77 I8
3R78 F9
3R79 F10
3R80 E12
3R81 E12
3R82 F11
3R83 F12
3R84 F12
3R85 F12
3R86 I13
3R87 A3
3R88 A3
3R89 A4
3R90 A4
3R91 B13
3R92 A2
3R93 A2
3R94 I13
3R95 I13
3R96 I8
FR08 F14
FR09 F14
FR10 G14
FR11 G14
FR12 G14
FR13 G14
FR14 G14
FR15 H14
FR16 C1
FR17 H14
FR18 H14
FR19 H14
FR20 H14
FR21 H14
FR22 C1
FR23 H14
FR24 H14
FR25 I14
FR26 I14
FR27 I14
FR28 B1
FR29 I14
FR34 G2
FR40 H2
FR41 G2
FR42 H2
FR46 I1
FR47 I2
FR50 I2
FR54 J2
FR83 B1
FR84 B1
IR24 I7
IR25 I8
IR28 B2
IR34 G3
IR40 H1
IR47 I2
IR48 I3
IR50 I3
IR51 I4
IR54 J3
IR55 J4
IR58 E11
IR59 E11
IR60 E11
IR61 E11
IR62 E11
IR63 E11
IR64 E10
IR65 E10
IR66 E10
IR67 E10
IR68 E10
IR69 D9
IR81 E12
IR82 G4
IR83 H9
S051 F2
S052 F2
S053 B1
S054 C1
S055 D1
S056 D1
S057 A2
S058 A2
S059 H2
S060 H2
S061 J2
S062 J2
S063 H1
FR85 E1
IR00 E3
IR01 E4
IR02 F3
IR03 F4
IR04 B1
IR06 D3
IR16 C2
IR18 H4
IR20 H7
IR21 H8
IR22 C2
3R98 J8
4R01 F7
4R02 E13
4R03 E13
4R06 D3
4R12 E4
4R13 G8
4R14 H9
4R15 J9
4R16 J10
4R41 H1
4R42 H2
4R60 B10
4R61 B10
4R62 C11
4R63 C11
4R64 C11
4R68 E8
4R69 F10
4R70 F10
5R57 H10
5R68 D9
6R60 B12
6R61 F1
6R62 F1
6R63 G2
6R64 F2
6R65 I2
6R66 J2
6R67 J2
6R68 J2
7R12 E3
7R47 I3
7R57 I10
7R60 A11
7R61 B13
7R68 D10
FQ32 J1
FR00 E2
FR03 F2
FR06 D2
FR07 G14
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
53
Layout Small Signal Board (Top Side Overview)
1102 C6
1103 B6
1105 B7
1201 B6
1202 A6
1440 B5
1441 A5
1801 C3
1F00 D1
1F01 D2
1G01 D5
1G02 D3
1G03 D4
1J00 A5
1J01 A3
1J02 A4
1J03 A6
1J04 A6
1J05 A1
1J06 A3
1J07 A4
1J08 A3
1K00 A7
1K01 B7
1K02 C7
1K03 C7
1K04 B7
1P01 A1
1P02 A1
1P03 A1
1P04 A1
1P05 A1
1P06 A1
1P07 A1
2203 A5
2205 B6
2206 B6
2207 B6
2208 A6
2209 A6
2210 B5
2211 B6
2214 B6
2216 B6
2218 B5
2221 B6
2223 A5
2224 A5
2226 B6
2228 B6
2229 B6
2230 B6
2231 A6
2232 B5
2233 B5
2234 A6
2235 A6
2236 A5
2237 A5
2238 A6
2240 A5
2241 A5
2242 B6
2243 B6
2244 B5
2245 B5
2246 B5
2247 B6
2248 B6
2249 B6
2250 A5
2251 B5
2255 B6
2256 B6
2257 B6
2258 A6
2259 B6
2260 A6
2262 B6
2263 B6
2264 B6
2265 B6
2266 B6
2267 B6
2268 B6
2269 A6
2270 A6
2271 A5
2272 A5
2274 B6
2275 A6
2276 A6
2277 B5
2278 B5
2279 B5
2285 A6
2286 B6
2287 B6
2288 B5
2290 C5
2291 B5
2447 A5
2448 A5
2501 A5
2502 A6
2503 A5
2504 A6
2505 A6
2506 A6
2507 A6
2508 A5
2509 A5
2611 A7
2615 A7
2618 A6
2704 A4
2706 A4
2709 A3
2713 A4
2716 A3
2731 A4
2736 A5
2737 A4
2738 A5
2739 A5
2752 A3
2753 A3
2754 A3
2755 A3
2756 A3
2757 A3
2758 A3
2800 C2
2815 C3
2901 B1
2902 B1
2903 C4
2904 C3
2917 C2
2934 C3
2940 C3
2A00 B3
2A01 B2
2A02 B2
2A12 B4
2A13 B3
2B01 B1
2B02 B1
2B05 B1
2B17 B1
2B18 B1
2D03 D1
2D04 C1
2D05 C1
2D06 D1
2D07 C1
2D12 C1
2D15 C1
2D17 C1
2D20 D1
2D21 C1
2D22 C1
2D23 D1
2D24 C1
2D25 C1
2D26 C1
2D27 C1
2D31 C1
2D32 C1
2D34 D2
Part 1
F_15270_034a.eps
Part 3
F_15270_034c.eps
2D38 C1
2D41 C1
2E00 D3
2E01 D4
2E02 D4
2E03 D3
2E04 D3
2E05 D3
2E06 C3
2E07 D3
2E08 D3
2E09 C3
2E10 D3
2E11 C3
2E12 C3
2E13 C3
2E14 C3
2E15 C4
2E16 C3
2E17 C3
2E18 C3
2E19 C3
2E20 C3
2E21 C3
2E22 C4
2E23 C4
2E33 C4
2E34 D4
2E35 C4
2F00 D2
2F02 D1
2F04 D2
2F05 D2
2F07 D1
2F08 D1
2F09 D1
2F10 D1
2F11 D1
2F12 D1
2F13 D2
2F14 D2
2F15 D2
2F16 D2
2G07 D4
2G11 D4
2G20 D2
2G24 D2
2G29 D4
2G30 D4
2G31 D3
2G32 D3
2G33 D3
2G34 D5
2G35 D5
2G36 D5
2G37 D5
2G38 D5
2G39 D5
2G40 D5
2G41 D5
2G43 D5
2G47 D3
2G55 D2
2G56 D2
2G63 D4
2G64 D3
2G65 D3
2G66 D3
2J02 A4
2J03 A6
2J04 A1
2J05 A1
2J06 A1
2J07 A1
2J08 A1
2J09 A1
2J10 A3
2J11 A3
2J12 A3
2J13 A3
2J14 A3
2J15 A3
2J16 A5
2J17 A5
2J18 A5
2J19 A5
2J20 A5
2J21 A5
2J22 A5
2J23 A5
2J26 A6
2J27 A6
2J28 A6
2J29 A6
2J30 A4
2J31 A3
2J33 A5
2J34 A5
2J35 A5
2J36 A6
2L02 B5
2L03 B5
Part 2
2L04 B5
2L05 B5
2L06 B5
2L20 B5
2L21 B4
2L22 B5
2L27 B5
2L28 B4
2L29 B5
2L30 B5
2L31 B5
2L32 B4
2M00 C4
2M01 C4
2M02 C4
2M03 C4
2M04 C4
2M05 C4
2M06 C4
2M07 C4
2M08 C4
2M09 C4
2M10 C4
2M11 C4
2M12 C4
2M13 C4
2M14 C4
2M15 C4
2M16 C4
2M17 C4
2M18 C4
2M19 C4
2M20 B4
2M21 B4
2M22 B4
2M23 B4
2M27 C4
2M28 C4
2M29 C4
2M30 C4
2M31 C4
2M32 C4
2M33 C4
2M56 C4
2M60 C5
2M61 C4
2M62 C5
2M66 B4
2M68 B5
2P15 A2
2P36 A1
2P37 A1
2P38 A1
2P39 A1
2P40 A1
2P41 A1
2P42 A1
2P43 A1
2P44 A1
2P45 A1
3126 B6
3127 B6
3207 B6
3214 B6
3215 B5
3216 B5
3217 B5
3222 A5
3223 A5
3224 A5
3225 A5
3226 A5
3227 A5
3230 A6
3231 A6
3234 A6
3235 A6
3236 A6
3242 B5
3244 B5
3245 B6
3262 B6
3263 B6
3264 B6
3265 B6
3266 B6
3267 B6
3268 B5
3270 A5
3271 B5
3272 B6
3273 B6
3274 B6
3277 B5
3278 B5
3279 B5
3280 B6
3281 B6
3282 C5
3285 B6
3286 B5
3291 B5
3292 C5
3293 B5
3294 C5
3295 B6
3501 A5
3502 A5
3734 A3
3751 A3
3752 A3
3753 A3
3754 A3
3801 C1
3802 C2
3803 B2
3804 B2
3805 B2
3806 B2
F_15270_034b.eps
Part 4
F_15270_034d.eps
3807 C1
3808 C1
3809 B2
3810 B2
3811 B2
3812 B2
3813 B2
3814 B2
3815 B2
3816 C2
3819 C2
3A00 B2
3A01 B2
3A07 B2
3A08 B2
3A10 B4
3A11 B3
3A13 B3
3A14 B3
3B01 B1
3B02 B1
3B03 B1
3D05 C1
3D06 C1
3D07 C1
3D08 C1
3D09 C2
3D10 C1
3D12 C1
3D15 C2
3D16 C2
3D17 C2
3D18 C2
3D20 C2
3E00 C4
3E06 D4
3E07 D4
3E08 D3
3E09 C3
3E10 D4
3E11 D4
3E12 C4
3E13 D3
3E14 C3
3E15 C3
3E16 D3
3E17 C3
3E18 C3
3E19 D3
3E20 D3
3E21 C3
3E22 C3
3E23 C3
3E50 C4
3E52 C4
3E53 C4
3E55 C4
3F00 D2
3F09 D1
3F10 D2
3F11 D2
3F16 D1
3F17 D1
3F18 D1
3F19 D1
3F20 D1
3F21 D1
3F22 D1
3N25 B2
3N36 A2
3N37 A2
3N38 A2
3N39 A2
3N40 A2
3N41 A2
3P04 A1
3P05 A1
3S00 D2
3S03 D2
4107 B6
4108 B6
4201 B5
4202 B5
4203 B5
4205 C5
4206 C5
4213 B5
4214 B5
3J04 A5
3J05 A5
3J06 A5
3L07 B5
3L09 B5
3M12 C4
3M13 C4
3M16 C4
3M26 C4
3M28 C5
3M68 C5
3M69 C5
3M71 C5
3M88 C4
3M89 C5
3M90 C4
3N21 B2
3N22 B2
3N23 B2
3N24 B2
4215 B5
4507 A6
4508 A6
4509 A6
4510 A6
4511 A6
4512 A6
4513 A6
4514 A6
4616 A7
4617 A7
3G79 D5
3G80 D5
3G81 D5
3G82 D5
3G83 D5
3G84 D5
3G85 D5
3G86 D5
3G87 D5
3G88 D5
3G89 D5
3G90 D4
3G91 D4
3G92 D3
3G93 D3
3G94 D3
3G95 D3
3G96 D2
3G99 D2
3J03 A5
3F23 D1
3F24 D2
3F25 D2
3F26 D2
3F27 D2
3F28 D1
3F29 D1
3G63 D4
3G64 D3
3G65 D4
3G66 D3
3G67 D3
3G68 D4
3G69 D3
3G70 D3
3G71 D3
3G72 D5
3G73 D5
3G74 D5
3G75 D5
3G76 D5
3G77 D5
3G78 D5
5207 A6
5208 A6
5209 A5
5210 A6
5212 A5
5213 A5
5215 B5
5217 B6
5218 B5
5431 A5
5501 A6
5712 A4
5737 A4
5752 A3
5753 A3
5754 A3
5900 B3
5A00 B2
5D00 C1
5D01 C1
4N15 A2
4N16 A1
4N17 A2
4N18 A1
4N19 A2
4N20 A1
4P01 A1
4P02 A1
4P03 A1
4P04 A1
4P05 A1
4P06 A1
4P07 A1
4P08 A1
5201 B6
5202 B5
5203 A6
5204 A6
5205 B5
5206 A6
5D02 C1
5D03 D2
5D04 D1
5E00 D4
5E01 C3
5E02 C4
5F00 D2
5F01 D1
5F02 D1
5F03 D1
5G01 D5
4G22 D3
4J01 A4
4J02 A5
4M04 C4
4M16 C4
4M17 C4
4N01 A2
4N02 A1
4N03 B2
4N04 A1
4N05 A2
4N06 A1
4N07 A2
4N08 A1
4N09 A2
4N10 A1
4N11 A2
4N12 A1
4N13 A2
4N14 A1
4620 A7
4621 A7
4900 B3
4A00 B3
4A01 B3
4A04 B4
4A05 B4
4A06 B3
4E12 C3
4E13 C4
4E14 C4
4G09 D4
4G10 D4
4G11 D4
4G12 D3
4G13 D3
4G14 D5
4G15 D5
4G16 D5
4G17 D5
4G18 D4
4G20 D3
4G21 D3
6G06 D5
7206 B5
7214 B6
7215 B5
7216 B6
7218 B5
7219 C5
7501 A6
7502 A6
7503 A6
7504 A5
7505 A6
7506 A6
7752 A3
7801 B2
7901 C4
7A00 B3
7A02 B3
7A03 B3
7B01 B1
5G02 D3
5J01 A6
5J02 A6
5J03 A4
5J04 A4
5J05 A5
5L00 B4
5L01 B4
5L02 B4
5M02 C4
5M05 C4
6201 B6
6708 A4
6735 A5
6736 A5
6751 A3
6A01 B3
6F00 D1
6F01 D1
6G02 D3
6G03 D5
6G04 D5
6G05 D5
7C00 B3
7D01 C1
7D02 C1
7D03 C1
7E00 C4
7E01 C3
7E02 C4
7F03 D1
7G07 D3
7G08 D3
7G09 D5
7G10 D3
7L05 C5
7M03 B4
7M14 C5
7M15 C5
7N02 A2
7N04 B2
7P02 A1
3139 123 6093 .1
F_15270_034.eps
310505
家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
54
Layout Small Signal Board (Top Side Part 1)
Part 1
家电维修资料网,免费下载各种维修资料
F_15270_034a.eps
180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
55
Layout Small Signal Board (Top Side Part 2)
Part 2
家电维修资料网,免费下载各种维修资料
F_15270_034b.eps
180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
56
Layout Small Signal Board (Top Side Part 3)
Part 3
家电维修资料网,免费下载各种维修资料
F_15270_034c.eps
180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
57
Layout Small Signal Board (Top Side Part 4)
Part 4
家电维修资料网,免费下载各种维修资料
F_15270_034d.eps
180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
58
Layout Small Signal Board (Bottom Side Overview)
1101 D2
1104 B1
2109 D1
2110 C2
2282 B3
2283 B3
2111 C2 2284 B3 1106 B1
1107 D2
1751 A5
2112 C2
2113 C2
2292 B3
2293 B2
1802 B6
1C00 C5
1N01 A7
1N02 B7
1N03 A7
1N05 A7
2101 C1
2102 C1 2239 A3
2103 C2
2104 D1
2252 B3
2253 B2
2105 D1
2106 C2
2107 C1
2108 C1
2114 C2
2201 A2
2202 A2
2219 B2
2220 B2
2225 A2
2227 A2
2254 B2
2273 A3
2280 A2
2281 A2
2449 C3
2603 A1
2604 A1
2605 A2
2608 A2
2609 A1
2610 A2
2612 A2
2613 A1
2614 A2
2616 A1
2617 A1
2619 A2
2700 A6
2701 A6
2708 A5
2710 A4
2711 A4
2714 A5
2715 A5
2730 A4
2733 A3
2734 A3
2735 A3
2741 B3
2750 A5
2751 A6
2759 A5
2760 A5
2761 A5
2762 A5
2801 B6
2802 B6
2803 B6
2804 B6
2805 B6
2806 B6
2807 B6
2808 C6
2809 C6
2810 C6
2811 C6
2812 C6
2813 B6
2814 B6
2816 C5
2817 C5
2818 C5
2819 C5
2820 C5
2821 C5
2822 C5
2823 C5
2824 C5
2900 B7
2905 B5
2906 B5
2907 B5
2908 B5
2918 C5
2919 C5
2920 C6
2921 C6
2922 C6
2923 B6
2924 B6
2925 B6
2926 B6
2927 B5
2928 B5
2938 C5
2939 C5
2941 C6
2942 C5
2945 B6
2946 B6
2947 B6
2948 B6
2949 B6
2950 B5
2951 B6
2909 B5
2910 B5
2911 B5
2912 B5
2913 B5
2929 B5
2930 C5
2931 C5
2932 C5
2933 C5
2914 C6 2935 C5
2952 B6
2953 C5
2954 C5
2955 C5
2956 C5
2915 C6
2916 C6
2936 C5
2937 C5
2957 C5
2958 C5
2959 C5
2A03 C6
2B03 B7
2B04 B7
2B06 B7
2B07 B7
2B08 B7
2B09 B7
2B10 B7
2B11 B7
2B12 B7
2B13 B7
2B14 B7
2B15 B7
2B16 B7
2C00 B5
2C01 B5
2D10 C7
2D11 C7
2D13 C7
2D14 C7
2D16 C7
2D18 C7
2D19 C7
2D28 C7
2D29 C7
2D30 C7
2E25 C5
2E26 C5
2E27 C5
2E28 C5
2E29 C5
2E30 C5
2E31 C5
2E32 C4
2E36 D4
2E37 C5
2C02 B5
2C03 B5
2D00 C7
2D36 C7 2G01 D4
2D37 C7
2D39 C7
2G02 D4
2G03 D3
2D01 D7
2D02 D7
2D08 C7
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3139 123 6093 .1
Part 1
F_15270_035a.eps
Part 3
F_15270_035c.eps
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Part 2
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Part 4
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5214 A2
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5700 A6
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7742 B3
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5904 C5
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5905 B6
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5907 B6
7D00 C7
7D04 C7
7D05 C7
5908 B7
5909 C5
7E03 C5
7E04 C5
5910 C5 7E05 C5
5911 C6
5C00 B5
7G03 D3
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家电维修资料网,免费下载各种维修资料
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
59
Layout Small Signal Board (Bottom Side Part 1)
Part 1
家电维修资料网,免费下载各种维修资料
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180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
60
Layout Small Signal Board (Bottom Side Part 2)
Part 2
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180505
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
61
Layout Small Signal Board (Bottom Side Part 3)
Part 3
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LC4.9A AA 7.
62
Layout Small Signal Board (Bottom Side Part 4)
Part 4
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LC4.9A AA 7.
63
0001 A15
1735 C12
1736 A13
1738 G13
1M02 A13
1M06 A14
1M52 E14
2700 A3
2701 B10
2702 H11
2703 A7
2704 A7
PDP Audio Amplifier Panel
2705 B10
2706 A3
2707 C5
2708 F9
2709 A6
2710 A7
2711 A2
2712 A10
2713 A4
2714 G14
2715 A10
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2719 A4
2720 B5
2721 B6
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2725 H10
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2729 H10
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2759 G11
2760 G6
2761 G1
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2764 E8
2766 H11
2767 H11
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2770 A15
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2772 G2
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2775 H5
2776 A6
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2780 A10
2782 F8
2783 G8
2788 H8
2789 D10
PDP AUDIO AMPLIFIER
2790 G15
2791 D14
2793 H1
2794 H3
2795 H3
2796 H3
2797 H4
2798 H4
2799 H9
3700 A2
3701 A10
3702 C2
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3703 A2
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3712 B3
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3714 B4
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3715 B8
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3750 G2
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3752 H14
3753 H11
3754 G4
3755 H5
3756 H5
3757 G3
3758 G2
3759 G7
3760 E2
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3763 H7
3764 A10
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3768 G10
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6704 G13
6705 H13
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7700-2 A4
7701 A7
7702 C14
7705 D5
7706 D3
7707 D2
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7709 E5
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7714 F8
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7716 G14
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9709 G14
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F712 E13
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F728 B6
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1u0
2
2793 I771
120p
3773
3K3
-19-16VS2
I772 3774
100K
2755
100n
7718-1
1
LM833D
F748 2773
1u0
2772
100n
3736
47K
I750
2774
1u0
-19-16VS2
3770
I767
10K
2795
2794
1u0
220p
2796
470n
3771
3K9
+19-16VS2
I764
I770
I742
1
3
7710
BC847BW
2
3732
22K
I740
1
3
7709
BC847BW
2
+19-16VS2
F747 5709
-19-16VS1
I743
2
BC857BW
7711
3
1
I744
+19-16VS1
3738
100K
1
I745
3 3
7712
BC847BW
2
7713
BC847BW
2
1
F725
-19-16VS2
3754
470R
I756
5
6
2752 I752 3743
120p 3K3
I753
3744
100K
7718-2
7
LM833D
2798
560p 2797
560p
I761
F733
3749
I757 2758
2775
39n
10K
2763
1u0
I754
220p
2
3
2768
470n
3755
3K9
I759
I763
3756
8K2
VDDOPAMP
2760
100n
1
LM393PT
7719-1
2771
100n
6
5
-19-16VS2
F724
7
I735
LM393PT
7719-2
-19-16VS2
9708
3759
2K2
F750
I731
-19-16VS2
-19-16V
F722
2782
220n 2708
7714
TDA8925ST
1
2
4
SW1
REL1
EN1
VDD1
Φ
VDD2
CLASS-D
AMPLIFIER
BOOT1
OUT1
9
STAB
DIAG
15
POWERUP
BOOT2
17
16
14
SW2
REL2
EN2
VSS1
OUT2
VSS2
12
11
6
7
3
220n
2783
220n
2788
25V 470u
F723
-19-16VS2
3775
120K 2799
470p
3769
5R6
3104 313 6056.4
1 2 3 4 5 6 7 8 9
I746
3739
39K
I747
3765
100K
I733
+19-16V
-19-16VS2
5706
I728
5704
33u
3768
39K
I711
33u
I762
3767
100K
3762
22R
+19-16VS2
I774
3741
I702
5R6 I741
2740
560p
2742
560p
I768
I773
I727
10
+19-16VS2
3766
100K
I769
I758
3745
100K
3753
22R
3761
100K
11
F702
+19-16VS2
-19-16VS2
F734 A15
F735 A14
F740 A12
F741 A12
F742 A13
F743 B13
F744 C7
F745 C12
F747 E8
F748 G3
F749 G12
F750 G7
12
I700 G13
I701 H13
I702 G11
I703 A2
I704 A3
I705 A3
I706 A4
I707 C3
I708 D4
I709 D5
I710 A4
I711 G10
DC
C (4x)
DC-PROT
AUDIO-C
AUDIO-L
AUDIO-R
F700
F701
1736
F740
F741
3
2
1
B3B-PH-K
TO
LEFT
SPEAKER
PROT-AUDIOSUPLLY
SOUND-ENABLE
POR
PROT-AUDIOSUPLLY
-19-16V
+19-16V
F706
F704
F743
F742
F705
1V2
F703
5
6
7
3
4
1
2
1M02
B7B-PH-K
9700
9701
9702
9703
F710
F712
F717
F716
F718
F715
+19-16V
DC
C (4x)
F721 F720
F719
1738
F749
3
2
1
B3B-PH-K
TO
CENTER
SPEAKER
DC
C (4x)
12
I712 A9
I713 C2
I714 C2
I715 A8
I716 A10
I717 D2
I718 A8
I719 A10
I720 B8
I721 B4
I722 C9
I723 B4
13
F709
DC
C (4x)
F707 F745
1735
3
2
1
B3B-PH-K
+19-16V
TO
RIGHT
SPEAKER
F708
I729
-19-16V
13
I724 B9
I725 C8
I726 B10
I727 D10
I728 G9
I729 D13
I730 D3
I731 G7
I732 D14
I733 D10
I734 D3
I735 H7
I700
I701
3742
100K
3752
10K
I736 D2
I737 D2
I738 D3
I739 D4
I740 E4
I741 G11
I742 E3
I743 F3
I744 F5
I745 F6
I746 F9
I747 G10
14
3
4
1
2
5
6
7
1M06
B7B-EH-A
7702
BC847BW 3
1
2
I732 5701
I751
1
14
F735
I748 G15
I749 G1
I750 G3
I751 G14
I752 G5
I753 G5
I754 G5
I755 G2
I756 G4
I757 G5
I758 H11
I759 H5
3999
1K0
2770
10n
I760 H14
I761 H4
I762 H9
I763 H5
I764 H3
I765 H15
I766 G1
I767 H3
I768 H10
I769 H11
I770 H3
I771 H1
15
F734
0001
1
GND screw
TO 1M02
OR
TO
SDI
SUPPLY
PDP
SUPPLY
F713
3740
100K
3
I748
1
7716
BC847BW
2
VDDOPAMP
1
I760
2
7717
BC847BW
3
I765
1
3748
100K
I772 H2
I773 H10
I774 G10
I775 C9
I776 B10
I777 A11
C
1M52
F711
F714
4V7
0V3
0V
3
4
5
1
2
8
9
6
7
B9B-PH-K
TO 1M52
SSB
BP2.x / FTP2.x
OR
TO 1J04
SSB
LC4.x
3
7715
BC847BW
2
3
7720
BC847BW
2
15
F_15430_055.eps
140605
A
B
C
D
E
F
G
H
家电维修资料网,免费下载各种维修资料
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LC4.9A AA 7.
64
Layout PDP Audio Amplifier Panel (Top Side) Layout PDP Audio Amplifier Panel (Bottom Side)
9731 A1
9732 A1
9733 A1
9734 A1
9735 B1
9739 D1
9740 D1
9741 E1
9742 D1
9744 D1
9745 D1
9747 E1
9749 A1
9774 A1
9797 C1
9798 B1
9799 B1
9801 C1
9804 C1
9805 C1
9810 C1
9811 C1
5714 A1
7701 D1
7714 A1
9704 B1
9705 B1
9708 A1
9715 E1
9716 B1
9721 A1
9723 B1
9724 A1
9725 A1
9726 C1
9727 A1
9728 B1
9730 B1
2746 D1
2751 B1
2754 C1
2756 A1
2764 A1
2766 B1
2776 D1
2778 A1
2788 A1
3753 B1
3762 A1
5700 E1
5702 E1
5704 A1
5705 D1
5706 A1
5708 D1
5709 B1
0001 C1
1735 E1
1736 E1
1738 B1
1M02 C1
1M06 C1
1M52 B1
2704 D1
2714 C1
2715 E1
2720 D1
2728 B1
2736 E1
9800
9784 A1
9785 A1
9786 A1
9787 A1
9788 A1
9789 A1
9790 C1
9792 A1
9793 A1
9795 D1
9796 B1
9800 B1
9801 C1
9765 D1
9766 D1
9768 D1
9770 D1
9775 A1
9776 A1
9777 A1
9778 A1
9779 A1
9780 A1
9781 A1
9782 A1
9783 A1
9802 B1
9803 C1
9806 B1
9807 C1
9706 A1
9707 A1
9709 C1
9710 D1
9711 E1
9712 D1
9713 D1
9748 D1
9757 D1
9758 D1
9759 D1
9760 D1
9761 D1
9762 D1
9763 D1
9764 D1
7711 B1
7712 B1
7713 B1
7715 C1
7716 C1
7717 D1
7718 A1
7719 A1
7720 D1
9700 C1
9701 C1
9702 B1
9703 C1
6700 C1
6702 E1
6703 B1
6704 C1
6705 D1
7700 C1
7702 C1
7705 E1
7706 B1
7707 B1
7708 B1
7709 B1
7710 B1
3765 E1
3766 A1
3767 A1
3768 A1
3769 A1
3770 A1
3771 A1
3772 A1
3773 A1
3774 A1
3775 A1
3776 A1
3777 B1
3778 E1
3999 A1
5701 C1
3740 C1
3741 A1
3742 C1
3743 A1
3744 A1
3745 B1
3746 C1
3747 A1
3748 D1
3749 A1
3750 A1
3751 D1
3752 D1
3754 A1
3755 A1
3756 A1
3757 A1
3758 A1
3759 A1
3760 B1
3761 B1
3763 A1
3764 E1
3723 D1
3724 B1
3725 B1
3726 E1
3727 E1
3728 E1
3729 B1
3730 B1
3731 B1
3732 B1
3733 E1
3734 B1
3735 B1
3710 D1
3711 D1
3712 C1
3713 C1
3714 C1
3715 D1
3716 E1
3717 D1
3718 C1
3719 C1
3720 E1
3721 C1
3722 D1
3736 C1
3737 B1
3738 B1
3739 A1
2794 A1
2795 A1
2796 A1
2797 A1
2798 A1
2799 A1
3700 C1
3701 E1
3702 C1
3703 D1
3704 E1
3705 D1
3706 D1
3707 D1
3708 E1
3709 C1
2771 A1
2772 A1
2773 A1
2774 A1
2775 A1
2779 A1
2780 E1
2782 A1
2783 A1
2789 E1
2790 D1
2791 C1
2793 A1
2750 A1
2752 A1
2755 A1
2757 A1
2758 A1
2759 B1
2760 A1
2761 A1
2762 A1
2763 A1
2767 B1
2768 A1
2770 B1
2727 E1
2729 B1
2731 E1
2732 E1
2733 A1
2737 E1
2739 E1
2740 A1
2741 E1
2742 A1
2743 B1
2744 B1
2745 D1
2747 C1
2748 C1
2749 C1
2700 D1
2701 D1
2702 B1
2703 E1
2705 D1
2706 D1
2707 C1
2708 A1
2709 E1
2710 E1
2711 D1
2712 E1
2713 D1
2716 E1
2717 D1
2718 C1
2719 C1
2721 E1
2722 C1
2723 D1
2724 B1
2725 B1
2726 C1
9808 C1
9809 C1
9812 C1
9813 C1
9814 C1
3104 313 6056.4
F_15400_062.eps
090505
3104 313 6056.4
F_15400_063.eps
090505
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A
B
C
D
E
F
3104 313 6008.4
1
1001
5
I009
F003
1002-1
YELLOW
1
2
1002-2
WHITE
4
5 6
I001
F004
GND_AUD
F005
9004
GND_AUD
I002
F007
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
65
Side I/O Panel
1
D
SIDE I/O
C
2
F001
2 4 3 1
Y / CVBS
F002
1002-3
RED
7
8 9
I003
1010 5
4
2
8
1
3
7
F008
F009
F019
GNDB
2
F006
GNDB
GND_AUD
GNDB
GNDB
3
I010
GNDB
GNDB
GNDB
3
6010
I014
6008
I013
GNDB
I005
6009
I004
GND_AUD
GND_AUD
I007
GNDB
F020
4
GND_AUD
GND_AUD
3009
1K0
3012
1K0
9011
9010
9009
9008
4
I008
I006
GNDB
GNDB
5
5 6
JAGUAR ONLY
TO 1H01
GNDB
GNDB
VIPER
F025
6
1H01
OR
1M60
5
6
3
4
1
2
F022
F021
F023
F024
F012
F014
F016
5000
1050
DLW31S
F013
GNDB
7
F015
F017
I011
7
GNDB
9006
F018
1005
3
5 6
4
1
2
9007
CONNECTOR
1M36
I012
GND_AUD
8
USB
D
6
7
8
4
5
1
2
3
9
10
11
1M37
13
6
7
8
9
10
11
12
1
2
3
4
5
B11B-PH-SM3-TBT
SSB EMGT
OR
TO 1M36
SCART 3 EMGT
OR
TO 1M36
F010
3999
150R
F011
9
TO 1M36
SSB JAGUAR
F_15420_008.eps
030605
A
B
C
D
E
F
2010 E2
2011 E5
3000 A4
3004 B3
3008 C5
3009 C4
3010 C4
3011 C5
3012 D4
3013 D4
1M36 B8
1M37 B8
2003 C5
2004 C3
2005 C4
2006 D3
2007 D4
2008 F2
2009 F5
1001 B2
1002-1 B1
1002-2 C1
1002-3 D1
1005 A8
1010 E1
1050 A7
1101 A3
1102 B3
1106 C3
1108 D3
1109 E3
1110 F3
1111 E3
1112 A7
1H01 A6
3016 F5
3020 E5
3999 F9
5000 A7
6000 A3
6001 A3
6002 B3
6003 B3
6004 C3
6005 C3
6006 D3
6007 D3
6008 F3
6009 F3
6010 E3
6011 F3
9003 C6
9004 C2
9005 D2
9006 F7
9007 F8
9008 F4
9009 F4
9010 E4
9011 E4
F001 A2
8 9
F002 A2
F003 B2
F004 C2
F005 C2
F006 D2
F007 E2
F008 E2
F009 E2
F010 F8
F011 F9
F012 A6
F013 A7
F014 A6
F015 A7
F016 A6
F017 A7
F018 F7
F019 F2
F020 B4
F021 C6
F022 C6
F023 C6
F024 E6
F025 E6
I001 C2
I002 C3
I003 D2
I004 A3
I005 F4
I006 F4
I007 E4
I008 E4
I009 B3
I010 D3
I011 F7
I012 F8
I013 F3
I014 E3
家电维修资料网,免费下载各种维修资料
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LC4.9A AA 7.
66
Layout Side I/O Panel (Top Side) Layout Side I/O Panel (Bottom Side)
1001 B1
1002 A1
1005 A1
1010 A1
1050 A1
1H01 A1
1M36 B1
1M37 B1
5000 A1
3012 A1
3013 A1
3016 A1
3020 A1
3999 B1
6000 B1
6001 B1
6002 B1
6003 B1
6004 A1
6005 A1
6006 A1
6007 A1
6008 A1
6009 A1
6010 A1
2003 A1
2004 A1
2005 A1
2006 A1
2007 A1
2008 A1
2009 A1
2010 A1
2011 A1
3000 B1
3004 B1
3008 A1
3009 A1
3010 A1
3011 A1
6011 A1
9003 A1
9004 A1
9005 A1
9006 A1
9007 B1
9008 A1
9009 A1
9010 A1
9011 A1
3104 313 6008.4
3104 313 6008.4
F_15420_009.eps
060605
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F_15420_010.eps
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LC4.9A AA 7.
67
Control Board
1701 A1
1702 A1
1703 A2
1704 A2
1705 A1
1706 A3
1M01 A4
3002 C2
3003 C2
1
3004 C1
3005 C1
3006 C1
3007 C1
3008 C1
3009 C2
2
3999 C4
9001 C3
9002 C1
9003 C2
F001 A4
F002 A4
3
F003 C4
F004 C4
I006 C1
I007 C1
I008 C1
I009 C2
E
CONTROL BOARD
I010 C2
I100 B1
I101 B1
4
I102 B1
I103 B2
I104 B2
E
I105 B3
Personal Notes:
KEYBOARD
F002
F001
1M01
1
2
3
A
B
I100 I101 I102 I103 I104
C
I006 I007 I008 I009 I010
I105
B
F003 3999
10K
F004 C
D D
3104 313 6071.2
1 2 3 4
F_15420_011.eps
030605
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E_06532_012.eps
131004
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LC4.9A AA 7.
68
Layout Control Board (Top Side)
1701 -1702 -1703 -1704 -1705 -1706 -1M01 --
3104 313 6071.2
Layout Control Board (Bottom Side)
3002 -3003 -3004 -3005 -3006 -3007 --
F_15420_012.eps
060605
3008 -3009 -3999 -9001 -9002 -9003 --
3104 313 6071.2
F_15420_013.eps
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A
B
C
D
E
F
G
H
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
69
LED Panel
1
J
2
LED PANEL
TO 1M20
1
2
SSB
JL2.x / LC4.x
OR
TO 1M20
EXTERNALS
FTx2.x / Bx2.x
9
10
7
8
11
12
13
3
4
5
6
1M20
14
F010
F011
F016
F012
F015
F017
F014
F013
3
F018
+8V
+5V2-STBY
4
9015
3011
100R
9016
9017
KEYBOARD
COM-SND
LED1
RC
LIGHT-SENSOR
9012 LED2
5 6
"BLUE" or
"GREEN"
7 8
"RED"
I053
9 10
0001
EMC HOLE
TO 1M01
CONTROL
BOARD
1M01
1
2
3
4 5
F021
TO 0345
TOP CONTROL
+5V2-STBY
9110
9112
9114
9116
9118
9119
0345
1
2
3
4
5
6
7 8
9083
F084
F086
9082
F083
I012
F089
COM-SND
I010
3094
10K
I093
STATUS-POWER
3104 313 6074.3
1
+8V
2
I011
7092
BC847BW
3096
10K
I094
3
2014
9111
9113
9115
9117 I013
9081
"LED DIMMING"
9031
I039
6030
I047
BAS316
6031
I033
7032
BC847BW
BAS316
3031
100K
3032
180K
I040
3033
1K0
I048
I038
3034
BC857BW
7030
1K0
4
KEYBOARD
LIGHT-SENSOR
KEYBOARD
RC
BLACKLIGHT-TC
LED1
LED2
5
I064
I062
7062
BC857B
I061
(RES)
9063
7061
BC847BW
6
I095
I063
I037
I049
BCP53
7031
7
I054
BLACKLIGHT-TC
I051
8
9053
7051
BC847BW
I065
I052
7052
BC847BW
I044
1040
VS
OUT
GND
TSOP34836YA1
I043
I042
I045
I041
I046
"IR RECEIVER"
9 10
11
11
0002
EMC HOLE
12
F038 3999
10K
F039
I071
2070
470n
4M7
3071
9071
I075
2
3
I073
1
LM358P
7070-1
+8V
I026
I074
5
6
"LIGHT SENSOR"
12
+8V
13
3074
10K
7
7070-2
LM358P
I076
3073
3K3
13
3075
4K7
I072
14
J
F_15420_014.eps
030605
14
A
B
C
D
E
F
G
H
9070 F11
9071 F11
9072 G11
9081 E4
9082 E3
9083 D3
9093 G2
9110 D2
9111 D4
9112 D2
9113 D4
9114 E2
9115 E4
9116 E2
9117 E4
9118 E2
9016 A4
9017 A4
9031 G4
9040 G9
9041 F9
9042 G9
9043 F9
9052 C9
9053 C8
9054 D9
9056 D7
9062 D7
9063 D6
9064 B7
9065 B7
9066 D7
3077 G12
3078 G11
3091 G2
3092 F2
3093 F3
3094 F2
3096 G3
3999 B12
6030 G4
6031 G4
6051 C8
6060 C6
6070 G11
7030 G6
7031 G7
7032 G4
7051 C8
7052 D8
7061 D6
7062 C6
7070-1 F12
7070-2 G13
7092 F2
9011 C6
9012 B4
9015 A4
3032 G5
3033 G5
3034 G6
3035 G6
3036 G7
3037 G7
3040 F9
3041 G9
3042 F9
3051 B8
3052 B8
3053 C8
0001 A10
0002 A11
0345 D2
1040 F9
1M01 C2
1M20 A2
2014 C4
2030 G5
2040 F9
2070 F12
2071 G12
3011 A4
3030 G4
3031 G5
3054 C8
3055 C8
3056 D6
3061 B6
3062 B6
3063 D5
3064 D5
3070 G11
3071 F12
3072 G13
3073 G13
3074 F13
3075 F14
3076 G14
I048 G5
I049 G7
I051 D8
I052 C8
I053 B9
I054 D7
I061 D6
I062 C6
I063 D7
I064 D5
I065 C9
I071 F11
I072 F14
I073 G12
I074 G12
I075 F12
I076 F13
I093 F2
I094 F3
I095 C6
I013 E4
I026 F12
I033 G4
I037 G7
I038 G6
I039 G4
I040 G5
I041 G9
I042 G9
I043 F9
I044 F9
I045 F9
I046 E9
I047 G4
9119 E2
9120 B10
9121 B11
9122 F11
F010 A3
F011 A3
F012 A3
F013 B3
F014 B3
F015 A3
F016 B3
F017 B3
F018 B2
F021 C3
F038 B12
F039 B12
F083 D3
F084 D3
F086 E3
F089 E3
I010 F2
I011 G2
I012 E3
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Layout LED Panel
7062 --
9011 --
9031 --
9054 --
9056 --
9066 --
9110 --
9112 --
9114 --
9116 --
9118 --
9119 --
9120 --
1040 --
3031 --
3032 --
3033 --
3055 --
3056 --
3070 --
6030 --
6031 --
6051 --
6060 --
6070 --
7030 --
7031 --
7052 --
Circuit Diagrams and PWB Layouts http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA 7.
70
9012 --
9015 --
9016 --
9017 --
9040 --
9041 --
9042 --
9043 --
9052 --
9053 --
9062 --
9063 --
9064 --
9065 --
9070 --
3075 --
3076 --
3077 --
3078 --
3091 --
3092 --
3093 --
3094 --
3096 --
3999 --
7032 --
7051 --
7061 --
7070 --
7092 --
9071 --
9072 --
9081 --
9082 --
9083 --
9093 --
9111 --
9113 --
9115 --
9117 --
9121 --
9122 --
3037 --
3040 --
3041 --
3042 --
3051 --
3052 --
3053 --
3054 --
3061 --
3062 --
3063 --
3064 --
3071 --
3072 --
3073 --
3074 --
0345 --
1M01 --
1M20 --
2014 --
2030 --
2040 --
2070 --
2071 --
3011 --
3030 --
3034 --
3035 --
3036 --
Personal Notes:
3104 313 6074.3
F_15420_015.eps
060605
3104 313 6074.3
F_15420_016.eps
060605
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E_06532_012.eps
131004
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Alignments LC4.9A AA
8.
Alignments
Index of this chapter:
8.1 General Alignment Conditions
Note: Figures below can deviate slightly from the actual situation, due to the different set executions.
General: The Service Default Mode (SDM) and Service
Alignment Mode (SAM) are described in chapter 5. Menu navigation is done with the Cursor Up, Down, Left or Right keys of the remote control transmitter.
8.1
General Alignment Conditions
Perform all electrical adjustments under the following conditions:
Mains voltage and frequency: 100-240 V / 50/60 Hz.
Allow the set to warm up for approximately 10 minutes.
Test probe: Ri > 10 M
Ω; Ci < 2.5 pF.
8.2
Hardware Alignments
There are no hardware alignments foreseen for the plasma-TV.
8.3
Software Alignments
With the software alignments of the Service Alignment Mode
(SAM) the geometry, white tone and tuner (IF) can be aligned.
To store the data: Use the RC button Menu to switch to the main menu and next, switch to ‘Stand-by’ mode.
8.
EN 71
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EN 72 8.
8.3.1
SAM Menu http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Alignments
00035 LC4XAP1 1.14/S4XGNV 1.17 SDM
ERR 0 0 0 0 0
OP 000 057 140 032 120 128 000
00035 LC4XAP1 1.14/S4XGNV 1.17
SAM
ERR 0 0 0 0 0
OP 000 057 140 032 120 128 000
. Clear Clear ?
. Options
. Tuner
. White Tone
. Audio
. NVM Editor
. SC NVM Editor
. Test Pattern
. ComPair Mode On
1 00035 LC4XAP1 1.14/S4XGNV 1.17 CSM
2 CODES 0 0 0 0 0
3 OP 000 057 140 032 120 128 000
4
5
6 NOT TUNED
7 PAL
8 STEREO
9 CO 50 CL 50 BR 50
0 AVL Off
SAM
. OP1 0
. OP2 57
. OP3 140
. OP4 32
. OP5 120
. OP6 128
. OP7 0
SAM
. IFPLL 32
. AGC 30
. AGCL' 255
SAM
. Cool
. Normal
. Warm
SAM
. Delta Cool Red -3
. Delta Cool Green -1
. Delta Cool Blue 5
SAM
. Normal Red 32
. Normal Green 35
. Normal Blue 41
SAM
. Delta Warm Red 2
. Delta Warm Green -3
. Delta Warm Blue -13
SAM
. QSS Off
. FMI On
. NICAM Alignment 63
. Lip Sync Off
. DBE Off
SAM
.ADR 0x0000 0
.VAL 0x0000 0
.Store Store ?
SAM
.ADR 0x0000 0
.VAL 0x0000 0
.Store Store ?
F_15430_061.eps
260705
8.3.2
Tuner Adjustment
Figure 8-1 Overview SAM menu.
8.3.3
DCXO (Digital Xtal Oscillator) Alignment (for NICAM sets only)
AGC (RF AGC Take Over Point)
• Activate the SAM menu.
• Go to the sub-menu Tuner.
• Select the AGC sub-menu.
• Adjust the AGC value to AGC = 27.
• Adjust the AGC L’ value to AGC L’ = 27 (Europe only).
• Adjust the IFPLL value to IFPLL = 32 (Europe only).
• Switch the set to standby to store the data.
•
•
•
•
•
Input a Colour bar signal with a colour subcarier frequency of 4.43 MHz on SCART1 or SCART2.
Select as a signal source EXT1 or AV1.
Go to the SAM menu and select Audio.
Activate DCXO Alignment and wait until this process has finished (DONE).
Check if the NICAM audio reception is OK, if not: repeat the procedure.
• Switch the set to standby to store the data.
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8.3.4
ADC Gain and Grey Scale Alignment
The table below shows a number of NVM settings used for each model of TV set. Be sure to use the correct editor in the
SAM menu (NVM Editor or SC NVM Editor), because the first one is used for the Hercules NVM, and the second one for the
SCALER (SC) part of the TV set. For further important NVM settings, see also the other NVM tables elsewhere in this manual.
Caution:
• Do not change the NVM settings without understanding the function of each setting, because incorrect NVM settings may seriously hamper the
correct functioning of the TV set!
• Do not change the Scaler NVM settings, as this will
hamper the DVI functionality of the TV set!
• Always note down the existing NVM settings, before changing the settings. This will enable you to return to the orgininal settings, if the new settings turn out to be incorrect.
Alignments LC4.9A AA 8.
EN 73
Table 8-1 ADC gain and grey scale alignment
SDTV ADC Gain settings: Use the NVM Editor in SAM to set these values in the Hercules NVM
These models are with ADC &
Columbus 3D Combfilter
Setting
NVM_ADC_GAIN_R
NVM_ADC_GAIN_G
NVM_ADC_GAIN_B
Hercules NVM
Address (decimal value)
006
007
008
Settings
Range
(decimal value)
143 143 143 143 075 - 155
191 191 191 191 200 - 250
143 143 143 143 075 - 155
SDTV Greyscale settings: Use the SC NVM Editor in SAM to set these values in the Scaler NVM
These models are with ADC &
Columbus 3D Combfilter
Setting
ADC_RED_OFFSET2
ADC_GRN_OFFSET2
ADC_BLU_OFFSET2
ADC_RED_GAIN
ADC_GRN_GAIN
ADC_BLU_GAIN
Scaler NVM
Address (decimal value)
Settings
Range
(decimal value)
338
339
340
341
343
345
080 080 080 080 050 - 110
080 080 080 080 050 - 110
080 080 080 080 050 - 110
154 154 154 154 045 - 095
154 154 154 154 045 - 095
154 154 154 154 045 - 095
PC Greyscale settings
These models are with ADC &
Columbus 3D Combfilter
Setting
ADC_RED_OFFSET2
ADC_GRN_OFFSET2
ADC_BLU_OFFSET2
ADC_RED_GAIN
ADC_GRN_GAIN
ADC_BLU_GAIN
Scaler NVM
Address (decimal value)
Settings
Range
(decimal value)
325
326
327
328
330
332
080 080 080 080 040 - 090
080 080 080 080 040 - 090
080 080 080 080 040 - 090
154 154 154 154 180 - 270
154 154 154 154 180 - 270
154 154 154 154 180 - 270
HD Greyscale settings
These models are with ADC &
Columbus 3D Combfilter
Setting
ADC_RED_OFFSET2
ADC_GRN_OFFSET2
ADC_BLU_OFFSET2
ADC_RED_GAIN
ADC_GRN_GAIN
ADC_BLU_GAIN
Scaler NVM
Address (decimal value)
351
352
353
354
356
358
Settings
Range
(decimal value)
064 064 064 064 050 - 090
082 082 082 082 050 - 090
064 064 064 064 050 - 090
159 159 159 159 120 - 200
144 144 144 144 120 - 200
147 147 147 147 120 - 200
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EN 74 8.
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LC4.9A AA Alignments
8.3.5
Sound
• For NICAM sets: see paragraph 8.3.3.
• For other sets: No adjustments needed for sound.
8.3.6
Options
Options OP1...OP7 in the SAM menu can be used for quickly restoring 64 features or settings of the HERCULES part of the
TV set to their orginal default factory values (8 groups of 8 features/settings each). When the decimal value of one option byte OP1...OP7 is changed (see the first table below) then a group of 8 bits, representing 8 HERCULES options or features, is changed as well (see the second table below for a detailed description of the features or settings that are changed).
The second table shows which option byte (OP1...OP7) represents which group of 8 option bits. Each bit (0...7) switches a particular HERCULES feature or setting ON or OFF, depending on its value (1 or 0).
It is also possible to change the features or settings mentioned in the second table directly at bit level, by means of the NVM
Editor in the SAM menu. In the NVM Editor, first the correct
NVM address (ADR) has to be entered, then the correct value
(VAL, 1 or 0) for each bit (see second table), and finally the settings have to be stored (STORE). For quickly restoring the
HERCULES part of the TV set to its original factory settings, however, it is more convenient to simply enter the default factory settings OP1...OP7 that are given in the first table below. How to do this, is described in the next paragraph.
How to Change an Option Byte
As has been explained above, an Option byte (OP) represents a number of different HERCULES options. Changing these bytes directly makes it possible to set all HERCULES options very fast. All options are controlled via seven option bytes.
Select the option byte (OP1.. OP7) with the Menu Up/ Down keys, and enter the new (decimal) value. For the correct
Factory Default settings, see the first table below. For more detailed information, see the second table.
Leaving the Option submenu saves the changes in the Option
Byte settings. Some changes will only take effect after the set has been switched “off” and “on” with the AC power switch (cold start).
Table 8-2 Option codes OP1...OP7
Option table for quickly restoring the HERCULES to its
Factory Default settings
OP1
OP2
OP3
OP4
OP5
OP6
OP7
Options (can be changed only via the SAM menu)
128
37
79
225
128
37
79
225
01
37
77
224
01
37
77
224
252
27
252
27
252
27
252
27
28 28 20 20
Total decimal value for each option per model number
How to Change Options at Bit Level
If you wish to know which features or settings of the
HERCULES are changed via OP1...OP7, or if you want to change each option or feature bit by bit, use the more detailed table below.
Note: the table below contains only part of the NVM settings that can be changed. A second range of settings and features can be found in Chapter 5 of this manual, in table NVM Default
values. The settings mentioned there can only be changed via the NVM editor. For further settings, see also the table “ADC
Gain and Grey scale alignment” elsewhere in this manual.
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Alignments LC4.9A AA
Table 8-3 Option codes in detail, at bit level
Option byte & bit table for restoring the TV set to its original Factory Default settings via the NVM Editor in the SAM menu
8.
EN 75
OP1 Description of feature/option to be switched ON or OFF bit 7 (msb) OP_PHILIPS_TUNER bit 6 bit 5
OP_FM_RADIO
OP_LNA bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_ATS // for EU
OP_ACI
OP_UK_PNP
OP_VIRGIN_MODE
OP_CHINA
Total DEC Value
Total HEX Value
OP2 bit 7 (msb) OP_SC bit 6 bit 5
OP_IBEX
OP_CHANNEL_NAMING bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_LTI (Lum Transcient Improvmt)
OP_TILT
OP_FINE_TUNING
OP_PIP_PHILIPS_TUNER
OP_HUE
Total DEC Value
Total HEX Value
OP3 bit 7 (msb) OP_EW_FUNCTION bit 6 bit 5
OP_PIXEL_PLUS
OP_PIP_SPLITTER // temp bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_SPLITTER // temp
OP_VIRTUAL_DOLBY
OP_WIDE_SCREEN
OP_WSSB
OP_OP_ME5 // OP_ME5 - 5/6 local buttons implementation
Total DEC Value
Total HEX Value
OP4 bit 7 (msb) OP_LIP_SYNC bit 6 bit 5
OP_HD
OP_ULTRA_BASS bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_DELTA_VOLUME
OP_TAIWAN_KOREA
OP_VOLUME_LIMITER
OP_STEREO_DBX
OP_STEREO_NICAM_2CS
Total DEC Value
Total HEX Value
OP5 bit 7 (msb) OP_AV1 bit 6 bit 5
OP_AV2
OP_AV3 bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_CVI
OP_SVHS2
OP_SVHS3
OP_HOTEL_MODE
OP_SIMPLY_FACTORY=OP_BTSC_AVSTEREO
Total DEC Value
Total HEX Value
OP6 bit 7 (msb) OP_PERSONAL_ZAPPING bit 6 bit 5
OP_SMART_SURF
OP_FMTRAP bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_COMBFILTER
OP_ACTIVE_CONTROL
OP_VIDEO_TEXT
OP_LIGHT_SENSOR
OP_TWIN_TEXT
Total DEC Value
Total HEX Value
OP7 bit 7 (msb) OP_TIME_WIN1 bit 6 bit 5
OP_DVB_USB = OP_MALAY
OP_AMBILIGHT bit 4 bit 3 bit 2 bit 1 bit 0 (lsb)
OP_COLUMBUS
OP_COLOR_SYSTEM_AP
OP_SOUND_SYSTEM_AP_1
OP_SOUND_SYSTEM_AP_2
OP_SOUND_SYSTEM_AP_3
Total DEC Value
Total HEX Value
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0
0
1
1
1
1
1
1
1
1
1
1
1
1
0
0
1
1
1
1
1
1
0
0
1
1
1
1
252 252 252 252
FC FC FC FC
0
0
1
1
1
1
1
0
0
1
0
0
0
0
0
1
1
0
1
1
0
0
0
1
1
0
1
1
0
1
0
0
27 27 27 27
1B 1B 1B 1B
1
1
1
0
1
1
1
0
0
1
0
0
0
0
0
1
1
0
1
1
0
0
0
1
0
0
1
1
0
1
0
0
28 28 20 20
1C 1C 14 14
1
1
0
0
0
1
0
1
1
0
0
0
37
25
0
0
1
0
0
1
1
0
1
0
0
1
1
0
0
0
0
0
0
1
1
0
0
1
0
1
0
0
128 128 01 01
80 80 01 01
0
1
1
0
0
1
0
1
1
0
0
0
0
0
1
0
0
1
0
1
0
1
0
1
1
0
0
0
37 37 37
25 25 25
1
1
1
1
0
0
0
1
79
4F
1
1
1
1
0
0
0
1
0
0
0
0
1
1
0
1
0
0
0
0
79 77 77
4F 4D 4D
0
1
1
1
0
1
0
0
1
0
1
1
1
1
1
0
0
0
0
1
1
1
1
0
0
0
0
0
1
0
1
1
225 225 224 224
E1 E1 E0 E0
0
0
0
0
EN 76 9.
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LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.
Circuit Descriptions, Abbreviation List, and IC Data Sheets
Index of this chapter:
9.5 Video: TV Part (Diagrams B1, B2, and B3)
9.7 Video: Scaler Part (Diagram B7, B8 and B9)
9.1
Introduction
The “LC4.9 Plasma TV” is a global plasma TV for the year
2005. It is the successor of the “LC4.7” and has a screen size of 42 inch or 50 inch (in 16:9 ratio). It has a new styling, called
Entry+ 05. Globally, there are three different picture qualities available, depending on the model: Pixel Plus (used in the models discussed in this manual), Digital Crystal Clear, and
Crystal Clear. The block diagram below (Figure “Block diagram”) shows the Pixel Plus architecture; the architectures of the other models are shown in the block diagram on the next page (Figure “Block diagram of the internal building blocks”).
The architecture consists of a TV and Scaler panel, an EPLD
(only in the Pixel Plus model), an I/O panel, a Side I/O and
Local Keyboard panel and a Power Supply panel.
The functions for video/audio processing, microprocessor (µP), and CC/Teletext (TXT) decoder are all combined in one IC
(TDA150xx, item 7217), the so-called third generation Ultimate
One Chip (UOC-III) or “Hercules”. This chip has the following features:
• Control, small signal, mono/stereo, and extensive Audio/
Video switching in one IC.
• Upgrade with digital sound & video processing.
• Alignment free IF, including SECAM-L/L1 and AM.
• FM sound 4.5/5.5/6.0/6.5, no traps/bandpass filters.
• Full multi-standard colour decoder.
• One Xtal reference for all functions (microprocessor, RCP,
TXT/CC, RDS, colour decoder, and stereo sound processor).
9.2
Block Diagram
SDRAM NVM FLASH DDR
TUNER IF
CVBS
Y
C
HERCULES
INTERNAL LIP SYNC CKT
CVBS,U,V
A/D
AD9945
601 INTERF.
COLUM-
BUS
601 INTERF.
SCALER
HDMI 601 INTERFACE
SCART/
CINCH
I/O
SM5301
ComPair
NVM
HP
TO
AUDIO
AMP
DMMI HDMI DVI-I
EPLD LCD
PANEL
AUDIO
AMPLIFIER F_15270_007.eps
200505
Figure 9-1 Block Diagram
The PLL tuner UV1316E/1318SD/TEDE9 delivers the IFsignal, via audio & video SAW-filters, to the Video Signal
Processor and FLASH embedded TEXT/Control/Graphics
Micro Controller TDA120x1 (item 7011, also called Hercules).
This IC has the following functions:
• Analogue Video Processing
• Sound Demodulation
• Audio Interfaces and switching
• Volume and tone control for loudspeakers
• Reflection and delay for loudspeaker channels
• Micro Controller
• Data Capture
• Display
The Hercules has one input for the internal CVBS signal and a video switch with 3 external CVBS inputs and a CVBS output.
All CVBS inputs can be used as Y-input for Y/C signals.
However, only 2 Y/C sources can be selected because the circuit has 2 chroma inputs. It is possible to add an additional
CVBS(Y)/C input (CVBS/YX and CX) when the YUV interface and the RGB/YPRPB input are not needed. There are two rear analogue video inputs: AV is for SVHS in and video (CVBS) in, and CVI-1 is meant for RGB/YUV in). The rear VIDEO OUT cinch connector can be used for monitoring purposes:
WYSIWYR (What you see is what you record).
Depending on the model of the TV set, the Hercules delivers its
RGB signals either directly to the Scaler IC or indirectly, via a
Columbus chip (for 2D/3D comb filtering and spatial/temporal noise reduction, for its description: see further down in this text). The EPLD, which is present in the Pixel Plus models discussed in this manual, provides additional sharpening to the picture. For a general outline, see the table and the block diagrams below, in which the architectures of the various models are given, together with their electronic building blocks.
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Circuit Descriptions, Abbreviation List, and IC Data Sheets
Table 9-1 Models and picture quality
Model
50PF7320/79 /93 /98
42PF7320/79 /93 /98
N.a.
N.a.
Picture quality
Pixel Plus
Pixel Plus
Digital Crystal Clear
Crystal Clear
PIXEL PLUS HERCULES
CVBS
Pb, Pr
ADC
DIGITAL
CRYSTAL CLEAR
HERCULES
CVBS
Pb, Pr
ADC
COLUMBUS
COLUMBUS
SCALER
SCALER
EPLD LVDS
LVDS
LC4.9A AA 9.
EN 77
9.4
Tuner and IF
A Philips UV1316E/1318SD/TEDE9 Tuner is used in the TV board. The SIF signals are decoded by the Hercules. Tuning is done via I
2
C.
9.4.1
Video IF Amplifier
The IF-filter is integrated in a SAW (Surface Acoustic Wave) filter. One for filtering IF-video (1104, in some models: 1105) and one for IF-audio (1106). The type of these filters depends on the standard(s) that has/have to be received.
The output of the tuner is controlled via an IF-amplifier with
AGC-control. This is a voltage feedback from pin 31 of the
Hercules to pin 1 of the tuner. The AGC-detector operates on top sync and top white level. AGC take-over point is adjusted via the service alignment mode ’Tuner' - 'AGC’. If there is too much noise in the picture, then it could be that the AGC setting is wrong. The AGC-setting could also be mis-aligned if the picture deforms with perfect signal; the IF-amplifier amplifies too much.
CRYSTAL CLEAR HERCULES
R, G, B
SCALER LVDS
F_15270_008.eps
240505
Figure 9-2 Block diagram of the internal building blocks
The Genesis GM1501 Malibu Scaler IC can receive two video input signals: SDTV (directly from Hercules or via Columbus),
DVI (from an external DVI source), or PC (from external computer).
After the video processing, the digital data is sent via a Low
Voltage Differential Signalling bus to the LCD panel. LVDS is used to improve data speed and to reduce EMI significantly.
There are two I
2
C lines and two interrupt and communication lines (TV_IRQ and TV_SC_COM) for the Scaler control. The
Scaler communicates with the Hercules as a slave device. To avoid buffer overflow at the Scaler side, the TV_SC_COM line provides the necessary hardware flow control. To allow bidirectional communication, the Scaler can initiate a service interrupt-request to the Hercules via the TV_IRQ line.
The Hercules, and EEPROM are supplied with 3.3 V, which is also present during STANDBY.
The EEPROM, or NVM (Non Volatile Memory) is used to store the settings.
The sound part is built up around the Hercules. The Source
Selection, Decoding and Processing are all done by the
Hercules.
Power supply input are several DC voltages coming from a supply panel.
9.3
Input/Output
The I/O is divided over two parts: Rear I/O and Side I/O. The rear has two AV inputs with CVBS, Y/C and YUV, a PC (VGA) input, and an HDMI input. The side has a CVBS and Y/C
(SVHS) input.
The selection of the external I/O's is controlled by the Hercules.
AV1 / CVI-1: The input of AV1 / CVI-1 is CVBS + YUV + L/R.
AV2: The input of AV2 is Y/C + CVBS + L/R.
PC-VGA/CVI-2: This input is directly going to the Scaler IC.
See paragraph “Video: Scaler Part”.
HDMI in / PC-D: This input is directly going to the Scaler IC.
See paragraph “Video: Scaler Part”.
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LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.5
Video: TV Part (Diagrams B1, B2, and B3)
R_OSD
G_OSD
B_OSD
Fast Blanking
CVBS/Y
G/Y3
R/Pr-3
B/Pb-3
UIN
VIN
YIN
VOUT
UOUT
YOUT
INSSW3
N.C.
SC1_G_CVI_Y_IN
SC1_R_CVI_Pr_IN
SC1_B_CVI_Pb_IN
SC1_FBL_IN_1
B13
B13
B13
4R64
SDA
SCL
Figure 9-3 Block diagram video processing
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Circuit Descriptions, Abbreviation List, and IC Data Sheets LC4.9A AA 9.
EN 79
The video processing is completely handled by the Hercules
• IF demodulator.
• Chrominance decoder
• Sync separator.
• Horizontal & vertical drive.
• RGB processing.
• CVBS and SVHS source select.
It has also built-in features like:
• CTI.
• Black stretch.
• Blue stretch.
• White stretch.
• Slow start up.
• Dynamic skin tone correction etc.
Further, it also incorporates sound IF traps and filters, and requires only one crystal for all systems.
9.6
Columbus
9.6.1
Introduction
Comb filter. Such a signal must be bypassed. Notch mode is not even an option since e.g. in double window, one part can be a PAL signal while the other part is NTSC or
SECAM.
• In cases where a SECAM signal is presented to the
Columbus Comb filter; both the luminance and UV path must be bypassed. The PAL delay line inside the
Columbus cannot be used for SECAM signals so it must also be bypassed. The luminance path must have luminance at its input instead of CVBS. A chroma delay line outside Columbus must be used for SECAM signals.
Reason for this: the Columbus PAL delay line halves the output of the chroma signals in case of SECAM.
• Y/C, YPbPr, and RGB signals do not have to be combed.
So both the luminance and UV path must be bypassed.
The PAL delay line will also be bypassed.
• In cases where the Columbus Comb filter does not receive a CVBS signal with burst at the right place according to the standard (this includes black and white signals without burst), phase correction results become unpredictable and the Comb filter must be set in bypass (= luminance path bypassed, UV path bypassed, PAL delay line bypassed)
• VCR signals cannot be combed and must be processed in notch mode, or bypassed.
The Columbus is a combination of:
• A 2D/3D Comb filter for both PAL and NTSC, and
• A spatial/temporal noise reduction system for both colour and luminance signals.
The Columbus 3D Comb filter uses digitalised CVBS, U, and V
(or C) signals and can be used with or without an external 16
Mbit SDRAM. Without external 16Mbit SDRAM, 3D comb filtering and temporal noise reduction are not possible.
The noise reduction part of the Columbus is controlled by the
FBX software using the SNERT interface. The 2D/3D Comb filter part is controlled by the Main software using the I 2 C bus.
Columbus Modes
The several modes of the Columbus 3D Comb filter are:
• Bypass mode.
• Band-Pass-Notch mode.
• 2D Comb filter modes.
– Simple median.
– Median.
• Field Comb filter mode.
• Frame Comb filter mode.
Bypass Mode
The 3D Comb filter can be set in bypass mode. In this mode, the CVBS, U and V signals are just bypassed to the output.
9.6.2
2D/3D Comb Filter
Introduction
The “3D Comb filter Columbus” is a combined 2D/3D Comb filter function that is part of the Columbus chip (circuit diagram
B19, item 7M00). It is a comb filter for both PAL and NTSC.
The 3D Comb filter is used to separate chroma and luminance components out of a CVBS signal. It is of no use when the
CVBS signal is a SECAM signal (SECAM signals cannot be combed) The Columbus chip can be used with or without 16
Mbit external SDRAM (circuit diagram B10, item 7B01). When an external SDRAM is connected to the IC, the Comb filter function can work in combined 2D/3D processing (depending on the detected pixel based motion). When no external
SDRAM is connected, only 2D Comb filtering is possible.
The Columbus can comb the following standard signals:
• PAL B, PAL G, PAL H, PAL I, PAL D, PAL K: Colour standard PAL, Colour carrier at 4.43 MHz, field frequency:
50 Hz
• PAL M: Colour standard PAL, Colour carrier at 3.58 MHz, field frequency: 60 Hz
• PAL N: Colour standard PAL, Colour carrier at 3.58 MHz, field frequency: 50 Hz
• NTSC M: Colour standard NTSC, Colour carrier at 3.58
MHz, field frequency: 60 Hz
For NTSC signals, the PAL delay line must always be bypassed.
The following signals CANNOT be combed:
• Double Window signals or Multi PIP. For these signals, only one part or even no part of the signal is in relation with the burst. The part that is not in relation with the burst can become very blurred when combed by the Columbus
Band-Pass-Notch Mode
This is a mode where no Comb filtering is applied. A “Band
Pass Filter” is used to filter the chroma information out of the
CVBS signal. A “Notch Filter” is used to subtract the sub carrier out of the CVBS in order to make a luminance signal without chroma sub carrier.
In terms of cross colour and cross luminance, this mode has the worst performance of all. It is only used on these signals where no comb filtering can be applied (non-standard signals and most VCR signals for example).
2D Comb Filter Modes
A Comb filter does an action on a current pixel and a delayed pixel. When the delayed pixel is a line-delayed pixel, we talk about a “Spatial or 2D Comb Filter” (for NTSC the delay must be 1 line, for PAL it must be 2 lines).
Spatial or 2D Comb filters show problems on vertical colour transients and on single coloured lines. For these situations, extra hardware is added in the Columbus chip to avoid these kinds of problems. However even with these extra measures, there are still situations where the 2D Comb filter does not perform optimally (diagonal resolution and single lines with equal luminance content). In order to restrict the working area of the 2D Comb filter to the frequencies where the sub carrier is present, a horizontal band pass filter always precedes a 2D
Comb filter.
When a 2D Comb filter has no extra hardware to avoid problems at vertical colour transients (or this extra hardware is switched “off”), the Comb filter is called a “simple median filter”.
When there is extra hardware to avoid these kinds of problems, the filter is called a “median filter”.
Field Comb Filter Mode
A Comb filter does an action on a current pixel and a delayed pixel. When the delayed pixel is a field-delayed pixel, we talk
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LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets about a “Field Comb Filter”. Field Comb filters are only for PAL of commercial interest.
Field Comb filters show also problems on vertical colour transients and on motion. For the vertical transients, a hanging dots detector has been added, however the performance on vertical transients of the field Comb filter, even with this hanging dots detector, is worse than the performance of the 2D
Comb filter. On motion, the field Comb filter performs very badly. A motion detector must detect the pixels where there is motion and on these pixels, the Comb filter must be forced back to 2D Comb filter mode. This switching back is not implemented with a hard switch, but with a motion controlled fader. When there is a lot of motion, the fader will take a lot of the 2D Comb filter output, when there is less motion, more fieldcombed signal will be taken.
A field Comb filter is also called a “vertical-temporal filter” because it filters in the vertical and temporal direction.
Frame Comb Filter Mode
A Comb filter does an action on a current pixel and a delayed pixel. When the delay is a frame, we talk about a “Frame Comb
Filter”. For NTSC we need a delay of one frame, for PAL however the delay must be two frames.
Frame Comb filters have the best performance, but just like the
Field Comb filter, they perform very badly on motion. A motion detector will have to detect motion and on these motion pixels,
2D Comb filtering will have to be applied. A frame Comb filter is a pure “temporal filter”.
The Columbus needs an external memory connected to it, before it can do a temporal or vertical-temporal Comb filter action. When no external memory is connected, field or frame
Comb filtering is impossible.
Block Diagram
In the next block diagram, two main parts of the Columbus 2D/
3D Comb filter can be seen:
• The upper part is what is called the luminance Comb filter.
It tries to make an as clean as possible luminance signal out of the CVBS signal at the input.
• The lower part receives U and V signals (sequentially) that are normally only band pass filtered in front of the 3D Comb filter. It filters all left over luminance signals out of it, in order to make an as clean as possible U and V signal.
The offset block receives the motion dependant 2D/3D Comb filtered signal as input. The black level of the luminance signal is restored and the result is output. The black level restoration is corrected continuously. However, on VCR signals, this restoration can become unstable. Therefore, on VCR signals, a fixed black level restoration value must be forced.
A horizontal dynamic peaking can be done on the luminance signal. This peaking is adaptive in order not to amplify any cross luminance distortion. It detects where there could be left over sub carrier in the luminance signal and reduces the peaking over there. The detection of the left over cross luminance is different depending on the pre-filter or post-filter mode.
The amount of peaking and coring can be chosen. The peaking algorithm behind it is a simplified copy of the luminance peaking of picnic. After the peaking block, the signal is output as clean luminance.
The bypass switches have the obvious purpose of bypassing the input signal, in case no Comb filtering is wanted.
A PAL delay line is added in the UV path. This is done because a delay line in front of the 3D Comb filter does need an extra vertical filter action on the UV signals. This vertical filtering deteriorates the vertical transient performance for colours. The
Columbus Comb filter cannot undo this. However, this reduction in performance can be omitted by putting the PAL delay line after the 3D Comb filter block.
For PAL signals, the PAL delay line in front of the Columbus 3D
Comb filter is bypassed and the Columbus delay line is switched “on”. In cases where the delay line in front of
Columbus cannot be bypassed, the Columbus PAL delay line is bypassed.
For NTSC signals, the PAL delay line is bypassed as usual.
CVBS-IN
Y-OUT
LUMINANCE
COMB FILTER
OFFSET
HORIZONTAL
DYN
PEAKING
FIELD/FRAME
DELAY
(EXTERNAL SDRAM)
UV-IN UV
COMB FILTER
UV-OUT PAL
DELAY
LINE
E_14600_043.eps
230304
Figure 9-4 Columbus 2D/3D Comb Filter block diagram
The Comb filter has two inputs. One is the CVBS where clean luminance (Y) will be extracted from; the other one is UV where a clean U and V signal will be extracted. Both input signals are
digital signals.
The field or frame delay is used for the Field and Frame Comb filter mode. An external memory connected to the Columbus IC provides this delay.
Phase correction is done at the inputs of both the Comb filter blocks. There is a phase correction for spatial filtering (called the spatial phase corrector) and a separate phase correction on the signals used for temporal (Frame or Field) Comb filtering
(called the temporal phase corrector).
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Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.6.3
Noise Reduction and Noise Estimator
The noise reduction function is a sophisticated successor of the noise reduction module from the PICNIC-chip, also known as
“LIMERIC”.
Besides the noise reduction part, the Columbus noise reduction module also comprises a noise estimator. This noise estimator (the LORE-noise estimator) is a new design with the ambition of more accuracy and with less control complexity than the existing noise estimators.
LC4.9A AA 9.
EN 81
9.7
Video: Scaler Part (Diagram B7, B8 and B9)
The Genesis gm1501 Scaler is a dual channel graphics and video processing IC for LCD and plasma monitors and televisions incorporating Picture in Picture, up to SXGA output resolutions. The Scaler controls the display processing in an
LCD or plasma TV, e.g. like the deflection circuit in a CRTbased TV. It controls all the view modes (e.g. like "zooming" and "shifting"). Features like PC (VGA) or HD inputs, are also handled by this part.
ANEL TO PLASMA P ANEL TO LCD P
RGB
RGB
OUT BLENDER
OSD CONTROLLER
BRIGHTNESS/CONTRAST/HUE/SA T
COL_D
COL_A
B2
B2
B2
Figure 9-5 Block diagram scaler part
15
10
11
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1
18
19
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LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.7.1
Teletext Path
9.8
Audio Processing
In Pixel Plus and Digital Crystal Clear models, which have an
ADC (B18) and Columbus 3D combfilter (B19), the digital input of the scaler is used for the digital video signal (Columbus output), whereas the analogue RGB input input of the scaler is used for teletext. This means that no mixed mode (video plus teletext simultaneously) is possible. In Crystal Clear models, which do not have an ADC and Columbus, the analogue RGB input of scaler is used for both video and teletext (generated by the Hercules). The digital input of the Scaler is not used in
Crystal Clear TV sets. See also the block diagrams at the beginning of this chapter. When faultfinding, checking the teletext path may be useful: if there is sound and teletext, but no video and user menu (blank screen), the digital path
(Hercules - ADC - Columbus - Scaler) is faulty. If there is sound but no teletext, the back-end part (Scaler - LCD panel) is faulty.
SIF Input
SSIF Input
AUDIO-IN5L
AUDIO-IN5R
Hercules
AUDIO-LSL
AUDIO-LSR
AUDIO-IN3L
AUDIO-IN3R
AUDIOI-N4L
AUDIO-IN4R
AUDIO-OUTHPL
AUDIO-OUTHPR
For iTV only
Amplifier
Monitor out
* Not available
SCART2 out
*Europe only
Headphone
AUDIO-OUTSL
AUDIO-OUTSR
SCART1 out
*Europe only
AUDIO-IN2L
AUDIO-IN2R
P0.0/I2SDO1
106
2x
Amplifier
2x Stereo
Speaker
9.7.2
Features
Tuner
SIF
FM
AV1 in
*AP/USA/Latam
SCART1 in
*Europe only
Is used on the DMMI
=> No SCART2/AV2 for
Bolt-on
PC in
HDMI
I2S
DAC
PC_HDMI_AUD_SEL
(From Scaler,
GPIO_G07_B0)
AV2 in
*AP/USA/Latam
SCART2 in
*Europe only
Side in
*All region
HEF4053
3X SPDT
Constant Level Out
*Europe only
Lip Sync
Circuit
P0.0/I2SDI1
105
P0.3/I2SCLK
103
The Scaler provides several key IC functions:
• Scaling.
• Auto-configuration/ Auto-Detection.
• Various Input Ports:
– Analog RGB.
– Video Graphics.
• Integrated LVDS Transmitter.
• On-chip Micro-controller
9.7.3
Inputs
Analog RGB
The RGB input is fed to pins B2, C2 and D2 of the Scaler IC
(Genesis GM1501, item 7801, see circuit diagram B8). This input consists of either the Hercules RGB output or the RGB/
YpbPr input of the VGA connector. The Scaler can switch between the two signals via the PC_HD_SEL signal and selection IC SM5301 (see circuit diagram B13).
Figure 9-6 Block diagram audio processing
E_14490_061.eps
121104
The audio decoding is done entirely via the Hercules. The IF output from the Tuner is fed directly to either the Video-IF or the
Sound-IF input depending on the type of concept chosen.
There are mainly two types of decoder in the Hercules, an analogue decoder that decodes only Mono, regardless of any standards, and a digital decoder (or DEMDEC) that can decode both Mono as well as Stereo, again regardless of any standards.
In this chassis, the analogue decoder is used in two cases:
• It is used for AM Sound demodulation in the Europe
SECAM LL’ transmission.
• It is used for all FM demodulation in AV-Stereo sets.
9.8.1
Diversity
PC (VGA) Input
The VGA input is processed by the VGA block of the Scaler.
The Scaler supports pixel frequencies up to 165MHz.
YpbPr format is also supported via the VGA interface and covers a resolution of 480p/560p/720p/1080i.
9.7.4
Output
The Display Output Port provides data and control signals that permit the Scaler to connect to a variety of display devices using a TTL or LVDS interface. The output interface is configurable for single or dual wide TTL/LVDS in 18, 24 or 30bit RGB pixels format. All display data and timing signals are synchronous with the DCLK output clock. The integrated LVDS transmitter is programmable to allow the data and control signals to be mapped into any sequence depending on the specified receiver format.
The diversity for the Audio decoding can be broken up into two main concepts:
• The Quasi Split Sound concept used in Europe and some
AP sets.
• The Inter Carrier concept, used in NAFTA and LATAM.
The UOC-III family makes no difference anymore between
QSS- and Intercarrier IF, nearly all types are softwareswitchable between the two SAW-filter constructions.
Simple data settings are required for the set to determine whether it is using the Inter Carrier or the QSS concept. These settings are done via the “QSS” and “FMI” bit found in SAM mode. Due to the diversity involved, the data for the 2 bits are placed in the NVM location and it is required to write once during startup.
On top of that, it can be further broken down into various systems depending on the region. The systems or region chosen, will in turn affect the type of sound standard that is/are allowed to be decoded.
• For the case of Europe, the standard consists of BG/DK/I/
LL’ for a Multi-System set. There are also versions of
Eastern Europe and Western Europe set and the standard for decoding will be BG/DK and I/DK respectively. FM
Radio (not applicable for the models discussed in this manual) is a feature diversity for some Europe TV sets.
The same version can have either FM Radio or not, independent of the system (e.g. sets with BG/DK/I/LL’ can have or not have FM radio).
• For the case of NAFTA and LATAM, there is only one transmission standard, which is the M standard. The diversity then will be based on whether it has a dBx noise reduction or a Non-dBx (no dBx noise reduction).
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• For the case of AP, the standard consists of BG/DK/I/M for a Multi-System set. The diversity here will then depend on the region. AP China can have a Multi-System and I/DK version. For India, it might only be BG standard.
9.8.2
Functionality
The features available in the Hercules are as follows:
• Treble and Bass Control.
• Surround Sound Effect that includes:
– Incredible Stereo.
– Incredible Mono.
– 3D Sound (not for AV Stereo).
– TruSurround (not for AV Stereo).
– Virtual Dolby Surround, VDS422 (not for AV Stereo).
– Virtual Dolby Surround, VDS423 (not for AV Stereo).
– Dolby Pro-Logic (not for AV Stereo).
• Bass Feature that includes:
– Dynamic Ultra-Bass.
– Dynamic Bass Enhancement.
– BBE (not for AV Stereo).
• Auto-Volume Leveler.
• 5 Band Equalizer.
• Loudness Control.
All the features stated are available for the Full Stereo versions and limited features for the AV Stereo
9.8.3
Audio Amplifier
The audio amplifier part is very straightforward. It uses two integrated TDA8931T power amplifiers for the L and R channels; each amplifier IC is able to deliver a maximum output of 20 W
RMS
continuously in a 4-6 ohm speaker without needing a heatsink.
The operating supply for the amplifier may range from 12 V to
32 V; in the LC04x TV set, depending on the model, supply voltages of 18 V (for the 5 W / 8 ohm version) or 24 V (for the
15 W / 4 ohm version) are used.
Muting is done via the SOUND_ENABLE line connected to pins
7 of both amplifier-ICs, which comes from the Hercules.
9.8.4
Audio: Lip Sync
No Lip Sync adjustments are neccessary in this model.
9.9
Control
9.9.1
Hercules
The System Board has two main micro-controllers on board.
These are:
• On-chip x86 micro-controller (OCM) from Genesis LCD or plasma TV/Monitor Controller.
• On-chip 80C51 micro-controller from Philips
Semiconductor UOCIII (Hercules) series.
Each micro-controller has it own I
2
C bus which hosts its own internal devices.
The Hercules is integrated with the Video and Audio Processor.
For dynamic data storage, such as SMART PICTURE and
SMART SOUND settings, an external NVM IC is being used.
Another feature includes an optional Teletext/Closed Caption decoder with the possibility of different page storage depending on the Hercules type number.
9.9.2
Block Diagram
The block diagram of the Micro Controller application is shown below.
9.
EN 83
Tuner
Sound
Amp
ComPair
NVM
HREC
RST
127
P1.4
Sel IF/
SDM
114
P2.3
Status1
116
ADC1
115
ADC0
Light
Sense
Sound_Enable
111
P2.0
HERCULES
123
P2.5
P50_LINE_ITV_IR_SW
97
INT0
RC
102
P0.4
122
P2.4
NVM_WP
104
P0.2
SDA 109
SCL 108
INT1 98
P1.1 99
ADC3 120
128
P1.5
126
INT2
IIC BUS1
IIC BUS 2
NVM
GPROBE for Debug or ComPair(Scaler)
1407
1406
1405
+3V3STBY
NVM_WP
SDA
SCL
TV_IRQ
TV_SC_COM
Keyboard
POWER_DOWN
93
NVRAM
_SDA
92
NVRAM
_SCL
83
GPIO2
72 71 194 193 187
85
(GPIO4)
88
(GPIO5)
PC_DET
SD_PCHD_SEL
78 DDC_SDA_VGA
89
(GPIO6)
PC_HD_SEL
77 DDC_SCL_VGA
68
(PBIAS)
LAMP_ON_OFF
82 GPIO1 SCALER
81 GPIO0
67
(PPWR)
PANEL_PWR_CTL
HD_FILTER
99
(PWM1)
90 GPIO7
98
(GPIO11/
PWM0)
111
GPIO23
103 106 107 108
5 6 7
ROM_DATA0-7
ROM_ADD0-17
BACK_LIGHT_ADJ1
MUX
TV_IR
EXT_MUTE
Standby
POWER
DOWN
+3V3STBY
HIGH or
LOW level input
Flash ROM
E_14490_062.eps
160904
Figure 9-7 Micro Controller block diagram
9.9.3
Basic Specification
The Micro Controller operates at the following supply voltages:
• +3.3 V
DC
at pins 4, 88, 94, and 109.
• +1.8 V
DC
at pins 93, 96, and 117.
• I
2
C pull up supply: +3.3V
DC
.
9.9.4
Pin Configuration and Functionality
The ports of the Micro Controller can be configured as follows:
• A normal input port.
• An input ADC port.
• An output Open Drain port.
• An output Push-Pull port.
• An output PWM port.
• Input/Output Port
The following table shows the ports used for the LC04 control:
Table 9-2 Micro Controller ports overview
Pin Name
97 INT0/ P0.5
98 P1.0/ INT1
99 P1.1/ T0
Description
IR
TV_IRQ
TV_SC_COM
102 P0.4/ I2SWS EXT_MUTE
103 P0.3/ I2SCLK Lip Sync
104 P0.2/ I2SDO2 NVM_WP
105 P0.1/ I2SDO1 Lip Sync
106 P0.0/ I2SDI/O Lip Sync
107 P1.3/ T1 PC-TV_LED
108 P1.6/ SCL
109 P1.7/ SDA
SCL
SDA
111 P2.0/ TPWM SOUND_ENABLE
112 P2.1/ PWM0 (for future use)
113 P2.2/ PWM1 (for future use)
114 P2.3/ PWM2 SEL_IF
115 P3.0/ ADC0
116 P3.1/ ADC1
119 P3.2/ ADC2
120 P3.3/ ADC3
Light Sensor - SDM ADC0
STATUS_1 ADC1
STATUS_2
KEYBOARD
ADC2
ADC3
122 P2.4/ PWM3 STANDBY
123 P2.5/ PWM4 (for future use)
126 P1.2/ INT2
127 P1.4/ RX
128 P1.5/ TX
(for future use)
HERC_RESET
POWER_DOWN
P2.4
-
-
-
P1.5
Configuration
INT0
INT2
P1.1
P0.4
I2SCLK
P0.2
I2SDO1
I2SDI/O
P1.3
SCL
SDA
P2.0
-
-
P2.3
The description of each functional pin is explained below:
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LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
• LED. This signal is used as an indication for the Standby,
Remote and Error Indicator. Region diversity:
– During protection mode, the LED blinks and the set is in standby mode.
– During error conditions it blinks at a predefined rate.
– After receiving a valid RC-5 or local keyboard command it flashes once.
– For sets with error message indication, the LED blinks when message is active and the set is in standby mode.
• SCL. This is the clock wire of the two-wire single master bidirectional I
2
C bus.
• SDA. This is the data wire of the two-wire single master bidirectional I
2
C bus.
• STANDBY. The Hercules generates this signal. This can enable the power supply in normal operation and disable it during Standby. It is of logic “high” (3.3 V) under normal operation and “low” (0 V) during Standby.
• IR. This input pin is connected to an RC5 remote control receiver.
• SEL-IF. This is an output pin to switch the Video SAW filter between M system and other systems.
– 0: NTSC M (default)
– 1: PAL B/G, DK, I, L
• NVM_WP. The global protection line is used to enable and disable write protection to the NVM. When write to the
NVM is required, pin 7 of the NVM must be pulled to logic
‘0’ first (via Write_Protect of the micro-controller pin) before a write is performed. Otherwise pin 7 of NVM must always be at logic “1”
– 0: Disabled
– 1: Enabled (default)
• SOUND_ENABLE. This pin is used to MUTE the audio amplifier. It is configured as push pull.
• STATUS_1. This signal is used to read the status of the
SCART 1 input.
• STATUS_2. This signal is used to read the status of the
SCART 2 input.
• HERC_RESET. This pin is used to switch the +1.8V supply.
• POWER_DOWN. The power supply generates this signal.
Logic “high” (3.3 V) under normal operation of the TV and goes “low” (0 V) when the Mains input voltage supply goes below 70 V
AC
.
• KEYBOARD. Following are the Keyboard functions and the step values (8 bit) for it.
Table 9-3 Local keyboard values
Function
NAFTA Standby
Voltage
(V
DC
)
0
Ch + 0.43
Exit Factory (Ch- and Vol-) 0.69
Ch -
Menu (Vol - and Vol +)
0.93
1.19
Vol 1.49
DVD Eject (not applicable) 1.8
Vol + 2.12
Step values
(8 bit)
0 - 6
7 - 33
34 - 53
54 - 73
74 - 96
97 - 121
122 - 147
148 - 169
• TV_IRQ. This signal is the interrupt from the Scaler IC.
• TV_SC_COM. This signal is used for the communication with the Scaler IC.
• EXT_MUTE. This signal is used to reduce the Switch-off plop.
9.10 Abbreviation List
0/6/12
1080i
1080p
2CS
480i
480p
ACI
ADC
AFC
AGC
AM
AP or A/P
AR
ASD
AV
B-SC1-IN
B-SC2-IN
B-TXT
B/G
BOCMA
C-FRONT
CBA
CL
CLUT
COLUMBUS
ComPair
CSM
CVBS
CVBS-EXT
CVBS-INT
CVBS-MON
CVBS-TER-OUT
DAC
DBE
DFU
DNR
DRAM
DSP
DST
SCART switch control signal on A/V board. 0 = loop through (AUX to TV), 6
= play 16:9 format, 12 = play 4:3 format
1080 visible lines, interlaced
1080 visible lines, progressive scan
2 Carrier Sound (or 2 Channel Stereo)
480 visible lines, interlaced
480 visible lines, progressive scan
Automatic Channel Installation: algorithm that installs TV channels directly from a cable network by means of a predefined TXT page
Analogue to Digital Converter
Automatic Frequency Control; Control signal used to tune and lock to the correct frequency
Automatic gain control (feedback) signal to the tuner. This circuit ensures a constant output amplitude regardless of the input amplitude
Amplitude Modulation; A "data encoding to a carrier" method, such that the carrier amplitude is proportional to the data value
Asia Pacific
Aspect Ratio: 4 by 3 or 16 by 9
Automatic Standard Detection
External Audio Video
Blue SCART1/EXT1 in
Blue SCART2/EXT2 in
Blue TeleteXT
Monochrome TV system. Sound carrier distance is 5.5 MHz. B= VHFband, G= UHF-band
Bimos one Chip Mid-end Architecture: video and chroma decoder
Chrominance front input
Circuit Board Assembly (also called
PCB or PWB)
Constant Level: audio output to connect with an external amplifier
Colour Look-Up Table
COLour LUMinance Baseband
Universal Subsystem. IC performing noise reduction and 2D/3D comb filtering
Computer aided rePair. A tool for diagnosing a TV through a PC controlled interface
Customer Service Mode
Composite Video and Blanking Signal;
A single video signal that contains luminance, colour, and timing information
CVBS signal from external source
(VCR, VCD, etc.)
CVBS signal from internal Tuner
CVBS monitor signal
CVBS TERrestrial OUTput signal
Digital to Analogue Converter
Dynamic Bass Enhancement: extra low frequency amplification
Directions For Use: Owner's manual
Dynamic Noise Reduction / Digital
Noise Reduction; Noise reduction feature of the set
Dynamic RAM; dynamically refreshed
RAM
Digital Signal Processing
Dealer Service Tool; Special remote control designed for dealers to enter
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Circuit Descriptions, Abbreviation List, and IC Data Sheets LC4.9A AA 9.
EN 85 e.g. service mode (a DST-emulator is available in ComPair)
Digital Theatre System; A multichannel surround sound format, similar to Dolby Digital
Digital Versatile Disc
Electrically Erasable and
Programmable Read Only Memory
Erasable Programmable Logic Device
Electronic Program Guide: system used by broadcasters to transmit TV guide information (= NexTView)
Europe
EXTernal (source), entering the set by
SCART or by cinches (jacks)
Fast BLanking; DC signal accompanying RGB signals. To blank the video signal when it is returning from the right side of the screen to the left side. The video level is brought down below the black video level
Fast blanking signal for SCART1 in
Fast blanking signal for SCART2 in
Fast Blanking Teletext
Field Memory; A memory chip that is capable of storing one or more TV picture fields / Frequency Modulation;
A technique that sends data as frequency variations of a carrier signal
Radio receiver that can receive the FM
Band 87.5 - 108 MHz
Frame Rate Converter
Front input chrominance (SVHS)
Control line for detection of headphone insertion, Service Mode jumper, power failure detection
Front input luminance or CVBS
(SVHS)
Green SCART1/EXT1 in
Green SCART2/EXT2 in
Green teletext
H_sync to the module
Horizontal Acquisition; horizontal sync pulse
High Definition
HeadPhone
Monochrome TV system. Sound carrier distance is 6.0 MHz. VHF- and
UHF-band
Integrated IC bus
Integrated IC Sound bus
Integrated Circuit
Intermediate Frequency
Scan mode where two fields are used to form one frame. Each field contains half the number of the total amount of lines. The fields are written in "pairs", causing line flicker.
Infra Red
Interrupt ReQuest
The settings last chosen by the customer and read and stored in RAM or in the NVM. They are called at startup of the set to configure it according to the customer's preferences
LATin AMerica
Philips chassis name for LCD TV 2004 project
Liquid Crystal Display
Light Emitting Diode; A semiconductor diode that emits light when a current is passed through it
Horizontal (line) deflection drive signal
(for the Line transistor)
DTS
DVD
EEPROM
EPLD
EPG
EU
EXT
FBL
FBL-SC1-IN
FBL-SC2-IN
FBL-TXT
FM
FMR
FRC
FRONT-C
FRONT-DETECT
FRONT-Y_CVBS
G-SC1-IN
G-SC2-IN
G-TXT
H
HA
I
HD
HP
I
2
C
I
2
S
IC
IF
Interlaced
IR
IRQ
Last Status
LATAM
LC04
LCD
LED
LINE-DRIVE
L/L'
LS
LVDS
M/N
MOSFET
MPEG
MSP
MUTE
NC
NICAM
NTSC
NVM
O/C
ON/OFF LED
OSD
PAL
PC
PCB
PIG
PIP
PLL
Progressive Scan
PWB
RAM
RC
RC5 or 6
RGB
RGBHV
ROM
SAM
SC
SC-IN
SC-OUT
S/C
SCART
Monochrome TV system. Sound carrier distance is 6.5 MHz. L' is Band
I, L is all bands except for Band I
LoudSpeaker
Low Voltage Differential Signalling, data transmission system for high speed and low EMI communication.
Monochrome TV system. Sound carrier distance is 4.5 MHz. M= 525 lines @ 60 Hz, N= 625 lines @ 50 Hz
Metal Oxide Semiconductor Field
Effect Transistor
Motion Pictures Experts Group. An
ISO/IEC body that has given its name to an image compressing scheme for moving video
Multi-standard Sound Processor: ITT sound decoder
MUTE Line
Not Connected
Near Instantaneously Companded
Audio Multiplexing; This is a digital sound system, mainly used in Europe
National Television Standard
Committee. Colour system used mainly in North America and Japan.
Colour carrier NTSC M/N = 3.579545
MHz, NTSC 4.43 = 4.433619 MHz
(this is a VCR norm, it is not transmitted off-air)
Non Volatile Memory; IC containing data such as alignment values, preset stations
Open Circuit
On/Off control signal for the LED
On Screen Display
Phase Alternating Line. Colour system used mainly in Western Europe
(colour carrier = 4.433619 MHz) and
South America (colour carrier PAL M =
3.575612 MHz and PAL N = 3.582056
MHz)
Personal Computer
Printed Circuit Board (or PWB)
Picture In Graphic
Picture In Picture
Phase Locked Loop. Used, for example, in FST tuning systems. The customer can directly provide the desired frequency
Scan mode where all scan lines are displayed in one frame at the same time, creating a double vertical resolution.
Printed Wiring Board (also called PCB or CBA)
Random Access Memory
Remote Control transmitter
Remote Control system 5 or 6, the signal from the remote control receiver
Red, Green, and Blue colour space;
The primary colour signals for TV. By mixing levels of R, G, and B, all colours
(Y/C) are reproduced
Red, Green, Blue, Horizontal sync, and Vertical sync
Read Only Memory
Service Alignment Mode
SandCastle: two-level pulse derived from sync signals
SCART in
SCART out
Short Circuit
Syndicat des Constructeurs d'Appareils Radiorécepteurs et
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EN 86
SCL
SD
SDA
SDRAM
SECAM
SRAM
STBY
SVHS
SW
THD
TXT
µP
VA
VL
VCR
VGA
WD
WYSIWYR
XTAL
Y
Y/C
YPbPr
YUV
9.
SIF
SMPS
SND
SNDL-SC1-IN
SNDL-SC1-OUT
SNDL-SC2-IN
SNDL-SC2-OUT
SNDR-SC1-IN
SNDR-SC1-OUT
SNDR-SC2-IN
SNDR-SC2-OUT
SOPS
S/PDIF http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
Téléviseurs; This is a 21-pin connector used in EU, that carries various audio, video, and control signals (it is also called Péritel connector)
Serial CLock Signal on I
2
C bus
Standard Definition
Serial DAta Signal on I
2
C bus
Synchronous DRAM
SÉquence Couleur Avec Mémoire;
Colour system mainly used in France and East Europe. The chroma is FM modulated and the R-Y and B-Y signals are transmitted line sequentially. Colour carriers=
4.406250 MHz and 4.250000 MHz
Sound Intermediate Frequency
Switched Mode Power Supply
SouND
Sound left SCART1 in
Sound left SCART1 out
Sound left SCART2 in
Sound left SCART2 out
Sound right SCART1 in
Sound right SCART1 out
Sound right SCART2 out
Sound right SCART2 out
Self Oscillating Power Supply
Sony Philips Digital InterFace; This is a consumer interface used to transfer digital audio
Static RAM
STandBY
Super Video Home System
Software or Subwoofer or Switch
Total Harmonic Distortion
Teletext; TXT is a digital addition to analogue TV signals that contain textual and graphical information (25 rows x 40 columns). The information is transmitted within the first 25 lines during the Vertical Blank Interval (VBI)
Microprocessor
Vertical Acquisition
Variable Level out: processed audio output towards external amplifier
Video Cassette Recorder
Video Graphics Array; 640x480 (4:3)
Watch Dog
What You See Is What You Record: record selection that follows main picture and sound
Quartz crystal
Luminance signal
Y consists of luminance signal, blanking level and sync; C consists of chroma (colour) signal
This is a scaled version of the YUV colour space. Y= Luminance, Pb/Pr=
Colour difference signals B-Y and R-Y, other amplitudes w.r.t. to YUV
Colour space used by the NTSC and
PAL video systems. Y is the luminance and U/V are the colour difference signals
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Circuit Descriptions, Abbreviation List, and IC Data Sheets LC4.9A AA
9.11 IC Data Sheets
This section shows the internal block diagrams and pin layouts of ICs that are drawn as "black boxes" in the electrical diagrams
(with the exception of "memory" and "logic" ICs).
9.11.1 Diagram B2, Type TDA15021H (IC7217, Hercules)
9.
EN 87
Block Diagram
B l o c k d i a g r a m o f t h e “ A V s t e r e o ” T V p r o c e s s o r w i t h a u d i o D S P
S S I F
Q S S O / A M O U T
S C A R T / C I N C H I N / O U T
R E F O
I 2 S
L S O U T
L R
H P O U T
L R
S I F I N / D V B I N
D V B O / I F V O /
F M R O
D V B O / F M R O
A G C O U T
V I F I N
I F V O / S V O /
C V B S I
Y S Y N C
C V B S 2 / Y 2
C V B S 3 / Y 3
C 2 / C 3
C V B S 4 / Y 4
C 4
C V B S O /
P I P
S W I T C H
Q S S S O U
A G C
N D I F
Q S S M I X E R
A M D E M O D U L A T O R
S O U N D P L L
D E E M P H A S I S
A M
A U D I O S E L E C T
A D C / D A C
A U D I O C O N T R O L
V O L U M E
T R E B B L E / B A S S
F E A T U R E S
D A C s I / O s
R D S
V I S I O N I F / A G C / A F C
P L L D E M O D .
S O U N D T R A P
G R O U P D E L A Y
V I D E O A M P .
V I D E O S W I T C H
V I D E O I D E N T .
V I D E O F I L T E R S
C
Y
H / V S Y N C S E P .
H O S C .
+ P L L
2 n d
L O O P
H S H I F T
H D R I V E
H / V
H O U T
P A L / S E C A M / N T S C
D E C O D E R
B A S E B A N D
D E L A Y L I N E
µ P R O C E S S O R A N D T E L E T E X T D E C O D E R
D I G I T A L S I G N A L P R O C E S S I N G F E A T U R E S
D I G I T A L
2 H / 4 H
C O M B F I L T E R
Y D E L A Y A D J .
V E R T I C A L
& E A S T W E S T
G E O M E T R Y
R E F
R G B / Y P
R
P
B
I N S E R T
Y U V I N T E R F A C E
V o U o Y o Y i V i U i
V D R I V E E H T O B L
E W D
G / Y
R / P
R
B / P
B
S W O 1 B L
B / P
B
G / Y
( C V B S x / Y x )
R /
( C
P
R x )
P E A K I N G
S C A N V E L
M O D U L
O C I T Y
A T I O N
U / V D E L A Y
S
O
C A V E M
N T E X T
B L R G B
C O N .
B R I
R G B C O N T R O L
O S D / T E X T I N S E R T
C O N T R / B R I G H T N
C C C
W H I T E P .
A D J .
C R
R O
G O
B O
B C L I N
B L K I N
S V M
S K I N T O N E
U / V T I N T
S A T U R A T I O N
S A T
R G B M A T R I X
B L U E S T R E T C H
B L A C K S T R E T C H
G A M M A C O N T R O L
Pin Configuration
P1.5/TX
P1.4/RX
P1.2/INT2
VSSC3
VDDC3
P2.5/PWM4
P2.4/PWM3
VSSC1/P
P3.3/ADC3
P3.2/ADC2
DECV1V8
VDDC1(1.8)
P3.1/ADC1
P3.0/ADC0
P2.3/PWM2
10
11
12
13
14
P2.2/PWM1
15
16
6
7
8
9
1
2
3
4
5
P2.1/PWM0
P2.0/PMW
VDDP(3.3V)
P1.7/SDA
17
18
19
20
P1.6/SCL
P1.3/T1
P0.0/I2SDI1
P0.1/I2SDO1
21
22
23
P0.2/I2SDO2
P0.3/I2SCLK
24
25
26
P0.4/I2SWS
VSSC2
VDDC2
P1.1/T0
P1.O/INT1
INT0/P0.5
27
28
29
30
31
32
Pin configuration “stereo” and “AV-stereo” versions with Audio DSP
QFP-128 0.8 mm pitch “face down version”
96
AVL/SWO/SSIF/
REFIN/REFOUT
95
94
93
AUDIOIN5L
AUDIOIN5R
AUDOUTSL
92
91
90
AUDOUTSR
DECSDEM
AMOUT/QSSO/AUDEEM
89
88
GND2
PLLIF
87
86
SIFAGC/DVBAGC
DVBO//IFVO/FMRO
85 DVBO/FMRO
79
78
77
76
82
81
80
84
83
VCC8V
AGC2SIF
VP2
SVO/IFOUT/CVBSI
AUDIOIN4L
AUDIOIN4R
CVBS4/Y4
C4
AUDIOIN2L/SSIF
AUDIOIN2R 75
74
73
CVBS2/Y2
AUDIOIN3L
72
71
AUDIOIN3R
CVBS3/Y3
70
69
68
C2/C3
AUDOUTLSL
67
66
65
AUDOUTLSR
AUDOUTHPL
AUDOUTHPR
CVBSO/PIP
E_14490_063.eps
240505
Figure 9-8 Internal block diagram and pin configuration
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EN 88 9.
http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.11.2 Diagram B19, Type T6TU5XB (IC7M00, Columbus)
Figure 1 Package outline (top view)
A
B
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
WEB/
DAVB
UVA0
/Di0
UVA2
/Di2
UVA4
/Di4
UVA6
/Di6
UVA8
/Di8
SEL656 TST1 YA2 YA4 YA6 YA8 VA HREF SDA
YB8 VSS
UVA1
/Di1
UVA3
/Di3
UVA5
/Di5
UVA7
/Di7
YA 0
/Di9
BISTEN YA1 YA3 YA5 YA7
WEA/
DAVA
VSS SCL
C
YB7 YB6 VSS VDDS VSS VSS VDDC VDDC VSS VSS VDDC VDDS VSS SNDA SNRST
C
D
YB5 YB4 VDDC N.C.
VSS SNCL TCK
D
VDDC TMS TDO
A
B
E E
YB3 YB2 VSS
F
TST2 YB1 VSS
G
CLKASB
H
CLKASA
YB0
/Do9
UVB8/
Do8
VDDS
TST3
J
K
L
UVB7
/Do7
UVB5
/Do5
UVB3
/Do3
UVB6/
Do6
UVB4/
Do4
UVB2
/Do2
VSS
VDDC
VSS
M UVB1
/Do1
UVB0
/Do0
VDDS
COLUMBUS
TOP-VIEW
PPA Version 2.7
VSS
VDDS
VDDC
VSS
VSS
VDDS
VSS
TRST TDI
A0ICC RESET
CLK
EXT
CLK
CASN
DQM
DQ14
CLKSEL
WEN
RASN
DQ16
DQ15
F
G
H
J
K
L
M
N
AVD N.C.
VDDS VSS VSS VDDC VSS VDDS VDDC VSS VDDS VSS VSS VDDS DQ13
N
P
AVS VSS A7 A9 A2 A0 A11 DQ7 DQ6 DQ4 DQ3 DQ1 VDDS VSS DQ12
P
R
A4 A5 A6 A8 A3 A1 A10 DQ8 VSS DQ5 VSS DQ2 DQ9 DQ10 DQ11
R
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15
E_14600_059.eps
200804
Figure 9-9 Pin configuration
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Circuit Descriptions, Abbreviation List, and IC Data Sheets LC4.9A AA
9.11.3 Diagram B7+B8+B9, Type GM1501 (IC7401, Genesis)
9.
EN 89
Block Diagram
2-wire
Serial I/F JTAG GPIO
Parallel
ROM
IF/external micro
14.318 MHz
Crystal
Reference
DVI-Compliant
Input
DDC2Bi
DVI
Analog RGB
Input
DDC2Bi analog
8/16/24 bit video
(4:4:4/4:2:2/
CCIR656)
8/16 bit video
4:2:2/CCIR656
Interface
Clock
Generation
Ultra-Reliable
DVI Rx
Triple ADC and PLL
Test Pattern
Generator
X186
Microcontroller
Internal
RAM
Image
Capture and
Measure ment
External
ROM I/F
Internal
ROM
Infra-red Rx
Ba
Low ndwid th
A DC
Pulse Width
Modulator
Graphics
Shrink
Filter
Frame
Store
Control
Display
Timing
Generator
Graphics
Zoom
Filter
OSD
Controller
Color Table
RAMs
Output
Blender
RealColor
TM
TTL/
LVDS
Tx
Panel Data
/Control
Image
Capture and
Measure ment
Video
Shrink
Filter
Motion
Adapt.
3:2/2:2 detection
Video
Zoom
Filter
DDR SDRAM
I/F
Pin Configuration
A
NC ADC_3.3
ADC_1.8
ADC_1.8
ADC_DGND RXC+ DVI_GND RX0+
B BLUEBLUE+ ADC_3.3
ADC_DGND DVI_GND
C
GREENGREEN+ SOG ADC_AGND
D REDRED+ ADC_3.3 ADC_AGND
E
F
G
H
J
K
ADC_AGNDADC_AGND ADC_3.3 ADC_AGND
NC
VDDA33_
FPLL
VDDD33_
SDDS
VDDD33_
DDDS
RESETn
VDDD33_
PLL
VSSD33_
PLL
VSSA33_
SDDS
VSSA33_
DDDS
ACS_
RSET_HD
VSSA33_
RPLL
TCLK
VDDA33_
SDDS
VDDA33_
DDDS
NC
VDDA33_
RPLL
XTAL
VSSA33_
FPLL
VSSD33_
SDDS
VSSD33_
DDDS
L OCM_INT2 OCM_INT1 AVSYNC AHSYNC
M
OCM_UDO OCM_UDI
N VGA_SDA VGA_SCL
IR0
DVI_SDA
IR1
DVI_SCL
NC
NC
RXCDVI_GND RX0-
DVI_3.3
DVI_GND DVI_3.3
DVI_1.8
DVI_GND DVI_1.8
RX1+
RX1-
DVI_3.3
DVI_1.8
RX2+
RX2-
DVI_GND LBADC_IN3 D_GND
REXT LBADC_IN2 D_GND
DVI_3.3
DVI_1.8
DVI_3.3
LBADC_IN1 LBADC_33
DVI_GND
LBADC_
RETURN
LBADC_GND
CORE_1.8 CORE_1.8
D_GND
D_GND CORE_1.8
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
P OCM_CS1n OCM_CS2n MSTR_SDA MSTR_SCL
R ROM_CSn OCM_REn OCM_WEn EXTCLK
T
U
V
W
OCMADDR
17
OCMADDR
18
OCMADDR
19
OCM_CS0n
OCMADDR
13
OCMADDR
14
OCMADDR
15
OCMADDR
16
OCMADDR
9
OCMADDR
10
OCMADDR
11
OCMADDR
12
OCMADDR
6
OCMADDR
7
OCMADDR
8
IO_3.3
Y
OCMADDR
3
OCMADDR
4
OCMADDR
5
AA OCMADDR
0
OCMADDR
1
OCMADDR
2
IO_3.3
IO_3.3
AB
OCMDATA13 OCMDATA14 OCMDATA15 IO_3.3
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND
D_GND CORE_1.8
D_GND
CORE_1.8 CORE_1.8
D_GND
D_GND
D_GND
D_GND
D_GND
AC OCMDATA10 OCMDATA11 OCMDATA12 IO_3.3
GPIO_G09_ B2
( DEGRN0 )
IO_3.3
DCLK IO_3.3
GPIO_G07_ B2
( DERED4 )
IO_3.3
SHIELD[1]
(DEGRN3)
LVDSB_3.3
LVDSB_GND
AD OCMDATA9OCMDATA6OCMDATA3OCMDATA0 GPIO_G09_ B3 GPIO_G08_ B0
( DEGRN1 ) ( DORED0 )
DEN GPIO_G08_ B5 GPIO_G07_ B3 GPIO_G07_ B6
( DOBLU1 ) ( DERED5 ) ( DERED8 )
SHIELD[2]
(DEGRN4)
LVDSB_3.3 LVDSB_3.3
AE OCMDATA8OCMDATA5OCMDATA2 GPIO_G09_ B0 GPIO_G09_ B4 GPIO_G08_ B1 GPIO_G08_ B3
( DERED0 ) ( DEBLU0 ) ( DORED1 ) ( DOGRN1 )
GPIO_G07_ B0 GPIO_G07_ B4 GPIO_G07_ B7
( DERED2 ) ( DERED6 ) ( DERED9 )
AF OCMDATA7OCMDATA4OCMDATA1 GPIO_G09_ B1 GPIO_G09_ B5 GPIO_G08_ B2 GPIO_G08_ B4
( DERED1 ) ( DEBLU1 ) ( DOGRN0 ) ( DOBLU0 )
GPIO_G07_ B1 GPIO_G07_ B5
( DERED3 ) ( DERED7 )
SHIELD[0]
(DEGRN2)
SHIELD[3]
(DEGRN5)
B3+
(DEGRN6)
BC+
(DEGRN8)
B3-
(DEGRN7)
SHIELD[4]
(DEBLU2)
BC-
(DEGRN9)
1 2 3 4 5 6 7 8 9 10 11 12 13
E_14490_099.eps
241204
Figure 9-10 Internal block diagram and pin configuration
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EN 90 9.
http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Circuit Descriptions, Abbreviation List, and IC Data Sheets
9.11.4 Diagram B12, Type S9993CT (IC7D03, HDMI Panellink), Reserved
Block Diagram
RESET#
DSDA
DSCL
I
2
C
Slave
Registers
----------------
Configuration
Logic Block
I
2
C
Slave
R_EXT
HDCP
Keys
EEPROM
HDCP
Decryption
Engine
XOR
Mask
Mode
Control
RXC±
RX0±
RX1±
RX2±
PanelLink
TMDS
TM
Digital
Core
control signals control signals
Aux Data
Logic
Block
Audio
Data
Decode
Logic
Block
MCLK
Gen
Video
Color
Space
Converter
Up/Down
Sampling
30
24
Video
DAC
CSDA
CSCL
MCLKOUT
MCLKIN
SCK
WS
SD0
SPDIF
DE
HSYNC
VSYNC
ODCK
Q[23:0]
AnGY
AnRPr
AnBPb
Pin Configuration
Q13
Q12
Q11
Q10
Q9
OVCC
OGND
Q8
Q7
Q6
Q5
Q4
Q3
VCC
GND
OGND
OVCC
Q2
Q1
Q0
INT
RESET#
RSVDL
CSCL
CSDA
51
56
57
58
59
60
61
62
63
52
53
54
55
64
65
66
67
68
69
70
71
72
73
74
75
SiI 9993
100-Pin
TQFP
(Top View)
25
20
19
18
17
16
15
14
13
24
23
22
21
12
11
10
9
8
7
6
5
4
3
2
1
N/C
PLLIN
PVCC2
PGND2
OVCC
RSVDO
RSVDO
RSVDL
VCC
GND
AnBPb
DACVCCB
DACGNDB
AnGY
DACVCCG
DACGNDG
RSET
COMP
AnRPr
DACVCCR
DACGNDR
N/C
N/C
DACGND
DACVCC
E_14620_149.eps
170305
Figure 9-11 Internal block diagram and pin configuration
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Spare Parts List LC4.9A AA
10. Spare Parts List
10.
EN 91
Various
1014
1116
8101
8136
8735
8736
3104 328 39561 Side control LC04SD2
3104 328 40501 Side I/O Assy LC04SD2
3104 311 10751 Cable 3P/1K7/3P
3104 311 10733 Cable 11P/1K/11P
3104 311 10601 Cable 2P3/1400/POSI
3104 311 10591 Cable 2P3/1000/POSI b
5213
5214 g
2101
2102
2103
2104
2105
2106
2107
2109
2113
2203
2206
2207
Various
1P01
1P02
1P03
1P04
1P05
1P07
8321
1J07 h
1J08 h
1K00
1K02
1K04
1N01
1N02
1N05
1801
1F00
1F01
1G01
1G02
1J00
1J01
1J04
1062
1062 h
1101
1102
1104
1106
1107
1202
2422 549 00148 Socket 3p m
2422 549 00151 Socket 3p m
2422 025 18749 Connector 3p m
3139 147 19801 Tuner UV1318S/A IH -3
2422 549 44372 SAW 38.9MHz K3953L
2422 549 44369 SAW 38.9MHz K9656L
2422 025 18749 Connector 3p m
2422 543 01414 Xtal 24.576MHz
2422 543 01133 Xtal 14.32MHz 20pF
2422 033 00515 Socket DVI-I 29p f
2422 026 05703 Socket 1P f
2422 025 18959 Socket 21P f shd
2422 025 18959 Socket 21P f shd
2422 025 10771 Connector 10p m
2422 025 10655 Connector 11p m
2422 025 10769 Connector 9p m
2422 086 11081 Fuse T3A 125V
2422 086 11105 Fuse F630mA 50V
2422 025 08149 Connector 6p m
2422 025 10768 Connector 3p m
2422 025 10655 Connector 11p m
2422 025 17274 Connector 10p m
2422 025 18779 Connector 4P m
2722 171 08825 Xtal 14.31818Mhz 15pF
2422 549 45325 Bead 67
Ω at 100MHz
2422 549 45325 Bead 67
Ω at 100MHz
2422 549 45325 Bead 67
Ω at 100MHz
2422 549 45325 Bead 67
Ω at 100MHz
2422 549 45325 Bead 67
Ω at 100MHz
2422 025 18427 Connector 31p f
3104 311 08731 Cable POSI/100/POSI
2270
2271
2272
2273
2274
2277
2280
2281
2285 h
2286
2289 h
2290 h
2291 h
2449
2501
2502
2260
2262
2263
2264
2265
2266
2267
2269
2252
2253
2254
2255
2256
2257
2258
2259
2241
2242
2243
2244
2245
2246
2250
2251
2233
2234
2235
2236
2237
2238
2239
2240
2223
2225
2226
2227
2228
2230
2231
2232
2208
2209
2210
2211
2214
2216
2218
2221
2604
2605
2608
2609
2610
2611
2612
2614
2503
2504
2505
2506
2507
2508
2509
2603
2615
2618
2704
2706
2709
2710
2711
2713
2714
Set Level
Various
1004
1004 h
1012
8102
8102
8103
8103
8120 h
8146
8150
8150
8152 h
8900 h
8204 000 78181 PDP S42SD-YD07
9322 224 88682 PDP PDP42V7A062
3104 328 39571 LED panel LC04SD2
3104 311 03601 Cable 7p/400/7p
3104 311 07241 Cable 7P/1000/7P
3104 311 06511 Cable 10p/280/10p
3104 311 07391 Cable 10P/220/10P
3104 311 07421 Cable 6P/680/6P
3104 311 08621 Cable 11P/220/11P
3104 311 08831 Cable 31P/300/31P
3104 311 10493 Cable 31P/220/31P
3104 311 09921 Cable 9P/680/9P
3104 311 07911 Cable ring/180/ring
Set Level
2441 257 30020 Loudspeaker 8
Ω 10W
2441 257 30020 Loudspeaker 8
Ω 10W
Small Signal Board [B]
4822 124 12095 100
µF 20% 16V
5322 126 11583 10nF 10% 50V 0603
5322 126 11583 10nF 10% 50V 0603
4822 122 33761 22pF 5% 50V
4822 122 33761 22pF 5% 50V
5322 126 11583 10nF 10% 50V 0603
3198 024 44730 47nF 50V 0603
5322 124 41945 22
µF 20% 35V
4822 124 12095 100
µF 20% 16V
4822 124 23002 10
µF 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
2020 552 96718 220nF 10% 6.3V 0402
4822 124 12084 1
µF 20% 50V
4822 124 23002 10
µF 16V
2020 552 96718 220nF 10% 6.3V 0402
2020 552 96628 10nF 10% 16V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
2238 869 15101 100pF 5% 50V 0402
2020 552 96618 1nF 10% 50V 0402
3198 035 03320 3.3nF 5% 50V 0402
2020 552 96618 1nF 10% 50V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96718 220nF 10% 6.3V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 23002 10
µF 16V
2020 552 96718 220nF 10% 6.3V 0402
2020 552 96718 220nF 10% 6.3V 0402
4822 126 14076 220nF +80/-20% 25V
2020 552 96718 220nF 10% 6.3V 0402
2020 552 96718 220nF 10% 6.3V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96718 220nF 10% 6.3V 0402
2020 552 96718 220nF 10% 6.3V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 23002 10
µF 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96656 10
µF 20% 25V 1210
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 23002 10
µF 16V
3198 035 71040 100nF 10% 16V 0402
2020 552 96637 10
µF 10% 6.3V 0805
3198 035 71040 100nF 10% 16V 0402
2020 552 96637 10
µF 10% 6.3V 0805
4822 124 12082 10
µF 20% 50V
3198 035 26820 6.8nF 10% 16V 0402
3198 017 44740 470nF 10V 0603
3198 017 41050 1
µF 10V 0603
3198 035 71040 100nF 10% 16V 0402
2020 552 96718 220nF 10% 6.3V 0402
2020 012 00003 470
µF 16V 20% SMD
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
2020 552 96718 220nF 10% 6.3V 0402
3198 017 31540 150nF 10V 0603
3198 035 71040 100nF 10% 16V 0402
2020 552 00027 4.7
µF 2% 6.3V 0603
2020 552 00027 4.7
µF 2% 6.3V 0603
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 051 30151 150
Ω 5% 0.062W
2222 240 59872 4.7
µF 5% 10V 0805
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 03310 330pF 5% 50V 0402
3198 035 04710 470pF 50V 0402
2238 869 15829 82pF 5% 50V 0402
2238 869 15829 82pF 5% 50V 0402
2020 552 96834 1
µF 20% 6.3V 0402
3198 035 04710 470pF 50V 0402
2020 552 96834 1
µF 20% 6.3V 0402
2020 552 96834 1
µF 20% 6.3V 0402
3198 035 04710 470pF 50V 0402
2020 552 96834 1
µF 20% 6.3V 0402
4822 124 12095 100
µF 20% 16V
3198 017 41050 1
µF 10V 0603
3198 035 71040 100nF 10% 16V 0402
2020 012 00003 470
µF 16V 20% SMD
2020 012 00003 470
µF 16V 20% SMD
4822 124 23002 10
µF 16V
4822 124 23002 10
µF 16V
4822 124 80151 47
µF 16V
2020 552 96656 10
µF 20% 25V 1210
2020 552 96656 10
µF 20% 25V 1210
2020 012 00028 470
µF 20% 16V
3198 035 02210 220pF 5% 50V 0402
家电维修资料网,免费下载各种维修资料
2020 552 96455 22nF 10% 16V 0402
2020 012 00028 470
µF 20% 16V
2020 552 96656 10
µF 20% 25V 1210
2020 012 00003 470
µF 16V 20% SMD
3198 035 02210 220pF 5% 50V 0402
2238 787 16641 22nF 10% 16V 0402
3198 035 04710 470pF 50V 0402
2022 031 00308 22
µF 20% 35V
2020 012 00003 470
µF 16V 20% SMD
4822 124 80151 47
µF 16V
4822 124 80151 47
µF 16V
4822 126 13879 220nF +80-20% 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
2020 012 00003 470
µF 16V 20% SMD
3198 035 14720 4.7nF 5% 25V 0402
3198 035 04710 470pF 50V 0402
2020 012 00003 470
µF 16V 20% SMD
2020 012 00003 470
µF 16V 20% SMD
2020 552 96671 1
µF 10% 25V
4822 124 23237 22
µF 6.3V
2020 021 91557 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
5322 124 41945 22
µF 20% 35V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 126 14519 22pF 5% 50V 0402
4822 126 14519 22pF 5% 50V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96618 1nF 10% 50V 0402
2020 021 00046 470
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
4822 124 80151 47
µF 16V
2020 021 91557 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 021 91557 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 80151 47
µF 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 80151 47
µF 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
5322 124 41945 22
µF 20% 35V
2911
2912
2913
2914
2915
2916
2917
2918
2903
2904
2905
2906
2907
2908
2909
2910
2820
2821
2822
2823
2824
2900
2901
2902
2812
2813
2814
2815
2816
2817
2818
2819
2804
2805
2806
2807
2808
2809
2810
2811
2757
2758
2761
2762
2800
2801
2802
2803
2737
2738
2739
2741
2750
2753
2755
2756
2715
2716
2730
2731
2733
2734
2735
2736
2927
2928
2929
2930
2931
2932
2933
2934
2919
2920
2921
2922
2923
2924
2925
2926
2935
2936
2937
2938
2939
2940
2941
2942
2945
EN 92
2E15
2E16
2E17
2E18
2E19
2E20
2E21
2E22
2E07
2E08
2E09
2E10
2E11
2E12
2E13
2E14
2C03
2E00
2E01
2E02
2E03
2E04
2E05
2E06
2B14
2B15
2B16
2B17
2B18
2C00
2C01
2C02
2B06
2B07
2B08
2B09
2B10
2B11
2B12
2B13
2A02
2A12
2A13
2B01
2B02
2B03
2B04
2B05
2954
2955
2956
2957
2958
2959
2A00
2A01
2946
2947
2948
2949
2950
2951
2952
2953
2F08
2F09
2F10
2F11
2F12
2F13
2F14
2F15
2F16
2G05
2G06
2G07
2G08
2G09
2E31
2E32
2E33
2E34
2E35
2E36
2F04
2F07
2E23
2E24
2E25
2E26
2E27
2E28
2E29
2E30
10.
http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA Spare Parts List
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
5322 124 41945 22
µF 20% 35V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
5322 124 41945 22
µF 20% 35V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2238 586 59812 100nF 20% 50V 0603
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 96628 10nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 80151 47
µF 16V
4822 124 11131 47
µF 6.3V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
5322 124 41945 22
µF 20% 35V
3198 035 71040 100nF 10% 16V 0402
4822 124 23002 10
µF 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
3198 035 71040 100nF 10% 16V 0402
2020 552 96834 1
µF 20% 6.3V 0402
2020 552 96834 1
µF 20% 6.3V 0402
2020 552 96834 1
µF 20% 6.3V 0402
4822 126 14324 33pF 5% 50V 0402
2020 552 00005 4.7
µF 10% 6.3V 0603
4822 126 14324 33pF 5% 50V 0402
2020 552 00005 4.7
µF 10% 6.3V 0603
4822 126 14324 33pF 5% 50V 0402
2020 552 00005 4.7
µF 10% 6.3V 0603
3198 017 41050 1
µF 10V 0603
4822 126 14324 33pF 5% 50V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 11131 47
µF 6.3V
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
3198 035 71040 100nF 10% 16V 0402
2020 552 94427 100pF 5% 50V
2238 586 59812 100nF 20% 50V 0603
4822 126 14241 330pF 0603 50V
4822 126 14241 330pF 0603 50V
2020 552 94427 100pF 5% 50V
4822 126 14241 330pF 0603 50V
4822 126 14241 330pF 0603 50V
4822 126 14508 180pF 5% 50V 0603
4822 126 14508 180pF 5% 50V 0603
2020 552 00035 2.2
µF 6.3V 10% 0603
2020 552 00035 2.2
µF 6.3V 10% 0603
4822 126 14241 330pF 0603 50V
4822 126 14508 180pF 5% 50V 0603
4822 124 23002 10
µF 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
4822 126 14241 330pF 0603 50V
2M08
2M09
2M10
2M11
2M12
2M13
2M14
2P18
2P19
2P20
2P21
2P22
2P23
2P24
2P25
2P10
2P11
2P12
2P13
2P14
2P15
2P16
2P17
2P02
2P03
2P04
2P05
2P06
2P07
2P08
2P09
2N10
2N11
2N12
2N13
2N14
2N15
2N16
2P01
2P34
2P35
2P36
2P37
2P38
2P39
2P40
2P41
2P26
2P27
2P28
2P29
2P30
2P31
2P32
2P33
2P42
2P43
2P44
2P45
2N02
2N03
2N04
2N05
2N06
2N07
2N08
2N09
2M31
2M32
2M56
2M65
2M66
2M67
2M68
2N01
2M23
2M24
2M25
2M26
2M27
2M28
2M29
2M30
2M15
2M16
2M17
2M18
2M19
2M20
2M21
2M22
4822 126 14508 180pF 5% 50V 0603
4822 124 23002 10
µF 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
4822 126 14241 330pF 0603 50V
4822 126 14508 180pF 5% 50V 0603
4822 124 23002 10
µF 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
4822 126 14241 330pF 0603 50V
4822 126 14508 180pF 5% 50V 0603
4822 124 23002 10
µF 16V
2020 552 00035 2.2
µF 6.3V 10% 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2238 586 59812 100nF 20% 50V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 00005 4.7
µF 10% 6.3V 0603
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2020 552 96618 1nF 10% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 96637 10
µF 10% 6.3V 0805
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96637 10
µF 10% 6.3V 0805
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 74730 47nF 5% 16V 0402
3198 035 74730 47nF 5% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96637 10
µF 10% 6.3V 0805
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96718 220nF 10% 6.3V 0402
4822 124 23002 10
µF 16V
4822 124 23002 10
µF 16V
4822 124 23002 10
µF 16V
4822 124 23002 10
µF 16V
4822 124 12095 100
µF 20% 16V
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 126 14524 68pF 5% 50V 0402
2238 869 15829 82pF 5% 50V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2L22
2L23
2L24
2L26
2L27
2L28
2L29
2L30
2L31
2L32
2L33
2L34
2L37
2L39
2M00
2M01
2M02
2M03
2M04
2M05
2M06
2M07
2K27
2K28
2L02
2L03
2L04
2L05
2L06
2L07
2L08
2L09
2K19
2K20
2K21
2K22
2K23
2K24
2K25
2K26
2K10
2K11
2K12
2K13
2K14
2K16
2K17
2K18
2K01
2K02
2K03
2K04
2K05
2K06
2K07
2K08
2J26
2J27
2J28
2J29
2J30
2J31
2J35
2K00
2J02
2J03
2J17
2J18
2J19
2J21
2J22
2J23
2G23
2G24
2G25
2G26
2G28
2G47
2G55
2G56
2G10
2G11
2G12
2G18
2G19
2G20
2G21
2G22
2L10
2L11
2L13
2L17
2L20
2L21
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
4822 124 12095 100
µF 20% 16V
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 96834 1
µF 20% 6.3V 0402
2020 552 96618 1nF 10% 50V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2238 869 15101 100pF 5% 50V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
4822 124 12095 100
µF 20% 16V
3198 035 71040 100nF 10% 16V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
2020 552 00035 2.2
µF 6.3V 10% 0603
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2020 552 00035 2.2
µF 6.3V 10% 0603
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
3198 035 71040 100nF 10% 16V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
2238 869 15109 10pF 5% 50V 0402
家电维修资料网,免费下载各种维修资料
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3458 http://www.jdwxwz.com/?fromuser=乖乖狗
Spare Parts List LC4.9A AA 10.
EN 93
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 051 30103 10k
Ω 5% 0.062W
4822 117 13548 1k
Ω 5% 0402
4822 051 30682 6.8
Ω 5% 0.062W
4822 051 30222 2.2k
Ω 5% 0.062W
4822 051 30222 2.2k
Ω 5% 0.062W
4822 051 30223 22k
Ω 5% 0.062W
4822 051 30183 18k
Ω 5% 0.062W
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 06810 680
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 06810 680
Ω 5% 0.01W 0402
3198 031 02710 270
Ω 5% 0.1W 0402
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13548 1k
Ω 5% 0402
4822 117 11297 100k
Ω 5% 0.1W
4822 117 13545 100
Ω 1% 0402
3198 031 04730 47
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 01090 10
Ω 5% 0.01W 0402
3198 031 04720 4.7k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
3198 031 03320 3.3k
Ω 5% 0402
3198 031 03320 3.3k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
2322 704 61002 1k
Ω 1%
4822 117 13545 100
Ω 1% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 04720 4.7k
Ω 5% 0402
3198 031 02240 220k
Ω 5% 0.1W 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13601 22k
Ω 5% 0402
2322 702 70398 3.9
Ω 5% 0603
4822 117 13601 22k
Ω 5% 0402
2322 702 70398 3.9
Ω 5% 0603
3198 031 05620 5.6k
Ω 5% 0.01W 0402
3198 031 05620 5.6k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
3198 031 03910 390
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 07590 75
Ω 5% 0402
3198 031 01520 1.2k
Ω 5% 0.01W 0402
4822 117 11151 1
Ω 5%
3198 031 03930 39k
Ω 5% 0402
4822 117 13605 Jumper 0402
4822 117 13545 100
Ω 1% 0402
3198 031 01230 12k
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
4822 117 11297 100k
Ω 5% 0.1W
4822 117 13548 1k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3814
3815
3816
3817
3818
3820
3822
3824
3806
3807
3808
3809
3810
3811
3812
3813
3759
3761
3800
3801
3802
3803
3804
3805
3741
3742
3743
3750
3751
3752
3753
3754
3713
3716
3732
3733
3734
3735
3736
3740
3629
3630
3631
3632
3633
3708
3709
3712
3610
3611
3612
3616
3617
3619
3620
3628
3459
3461
3462
3501
3502
3604
3605
3609
3900
3901
3902
3903
3904
3A00
3A01
3A07
3A08
3A10
3A11
3A13
3A14
3B01
3834
3835
3836
3837
3838
3839
3840
3841
3825
3826
3827
3828
3829
3831
3832
3833
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13543 470
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
4822 117 13601 22k
Ω 5% 0402
4822 117 13601 22k
Ω 5% 0402
4822 117 13601 22k
Ω 5% 0402
4822 117 11297 100k
Ω 5% 0.1W
4822 117 11297 100k
Ω 5% 0.1W
4822 117 13601 22k
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13601 22k
Ω 5% 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
2322 705 70569 56
Ω 5% 0402
2322 705 70569 56
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 06820 6.8k
Ω 5% 0.01W 0402
5322 117 13031 5.6k
Ω 1% 0.063W 0603
2322 704 63302 3.3k
Ω 1% 0603
3198 031 04720 4.7k
Ω 5% 0402
2322 704 61002 1k
Ω 1%
2322 704 63302 3.3k
Ω 1% 0603
4822 117 13602 2.2k
Ω 5% 0.01W 0402
4822 117 13548 1k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
3198 031 01520 1.2k
Ω 5% 0.01W 0402
3198 031 01520 1.2k
Ω 5% 0.01W 0402
3198 031 01530 15k
Ω 5% 0.01W 0402
4822 117 13601 22k
Ω 5% 0402
4822 117 13601 22k
Ω 5% 0402
3198 021 31080 1
Ω 5% 0603
3198 021 31080 1
Ω 5% 0603
2322 704 61002 1k
Ω 1%
2322 704 63302 3.3k
Ω 1% 0603
3198 031 01230 12k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
3198 031 02290 22
Ω 5% 0.1W 0402
3198 031 02290 22
Ω 5% 0.1W 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
3198 031 03320 3.3k
Ω 5% 0402
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 01090 10
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 03320 3.3k
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 06890 68
Ω 5% 0402
3198 031 06890 68
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 12706 10k
Ω 1% 0.063W 0603
4822 117 12706 10k
Ω 1% 0.063W 0603
2322 704 61501 150
Ω 1% 0603
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13548 1k
Ω 5% 0402
3198 031 11030 4 x 10k
Ω 5% 1206
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
3198 031 11030 4 x 10k
Ω 5% 1206
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
2322 705 70569 56
Ω 5% 0402
2322 705 70569 56
Ω 5% 0402
2322 705 70569 56
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13597 330
Ω 5% 0402 0.01W
4822 117 13597 330
Ω 5% 0402 0.01W
2322 705 70569 56
Ω 5% 0402
2322 705 70569 56
Ω 5% 0402
2322 705 70569 56
Ω 5% 0402
4822 117 13632 100k
Ω 1% 0603 0.62W
3198 031 08210 820
Ω 5% 0.5W
4822 117 13543 470
Ω 5% 0402
2322 705 70399 39
Ω 5% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
2322 705 70399 39
Ω 5% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
2322 705 70399 39
Ω 5% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 02290 22
Ω 5% 0.1W 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
3198 031 04730 47
Ω 5% 0402
4822 051 30759 75
Ω 5% 0.062W
4822 051 30759 75
Ω 5% 0.062W
3198 021 31080 1
Ω 5% 0603
4822 051 30759 75
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
3198 021 31080 1
Ω 5% 0603
4822 051 30101 100
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 051 30151 150
Ω 5% 0.062W
4822 051 30103 10k Ω 5% 0.062W
4822 117 12891 220k
Ω 1%
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30151 150
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 117 12891 220k
Ω 1%
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30151 150
Ω 5% 0.062W
2122 118 06408 91
Ω 5% 0603
2122 118 06408 91
Ω 5% 0603
2122 118 06408 91
Ω 5% 0603
家电维修资料网,免费下载各种维修资料
3F20
3F21
3F22
3F23
3F24
3F25
3F26
3F27
3F28
3F29
3G00
3G01
3G02
3G03
3G04
3G05
3G06
3G07
3G08
3G12
3G13
3G14
3E45
3E49
3E50
3E51
3E52
3E53
3E54
3E55
3F00
3F09
3E36
3E37
3E38
3E39
3E41
3E42
3E43
3E44
3E28
3E29
3E30
3E31
3E32
3E33
3E34
3E35
3E20
3E21
3E22
3E23
3E24
3E25
3E26
3E27
3E12
3E13
3E14
3E15
3E16
3E17
3E18
3E19
3E01
3E02
3E06
3E07
3E08
3E09
3E10
3E11
3C07
3C08
3C09
3C10
3C16
3C17
3C18
3E00
3B02
3B03
3C00
3C01
3C02
3C04
3C05
3C06
3F10
3F11
3F16
3F17
3F18
3F19
3L20
3L21
3L22
3L24
3L25
3L26
3L27
3L28
3L05
3L06
3L10
3L11
3L12
3L16
3L17
3L19
3K06
3K07
3K09
3K11
3K12
3K13
3L00
3L04
3G96
3G99
3J05
3K00
3K01
3K02
3K03
3K05
3G51
3G52
3G53
3G54
3G57
3G58
3G59
3G60
3G41
3G42
3G43
3G44
3G45
3G46
3G47
3G48
3G31
3G32
3G33
3G34
3G37
3G38
3G39
3G40
3G15
3G16
3G17
3G26
3G27
3G28
3G29
3G30
3M11
3M13
3M14
3M15
3M16
3M26
3M27
3M50
3M51
3M52
3M53
3M54
3M55
3M56
3M01
3M02
3M03
3M04
3M06
3M07
3M08
3M09
3L30
3L31
3L32
3L33
3L34
3L35
3L36
3L37
EN 94 10.
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LC4.9A AA Spare Parts List
4822 051 30101 100
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 051 30273 27k
Ω 5% 0.062W
4822 051 30682 6.8
Ω 5% 0.062W
4822 051 30759 75
Ω 5% 0.062W
4822 051 30331 330
Ω 5% 0.062W
4822 051 30689 68
Ω 5% 0.063W 0603
4822 051 30759 75
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30151 150
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 117 12891 220k
Ω 1%
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30151 150
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 117 12891 220k
Ω 1%
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30759 75
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 051 30273 27k
Ω 5% 0.062W
4822 051 30682 6.8
Ω 5% 0.062W
4822 051 30689 68
Ω 5% 0.063W 0603
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30759 75
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
3198 031 06890 68
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 01530 15k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 01530 15k
Ω 5% 0.01W 0402
2322 705 70399 39
Ω 5% 0402
2322 705 70399 39
Ω 5% 0402
3198 031 06890 68
Ω 5% 0402
3198 031 06890 68
Ω 5% 0402
3198 031 06890 68
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13605 Jumper 0402
3198 031 01510 150
Ω 5% 0.01W 0402
4822 117 13605 Jumper 0402
4822 117 13597 330
Ω 5% 0402 0.01W
3198 031 01510 150
Ω 5% 0.01W 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13605 Jumper 0402
3198 031 01510 150
Ω 5% 0.01W 0402
3198 031 01510 150
Ω 5% 0.01W 0402
3198 031 01510 150
Ω 5% 0.01W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
3198 031 02290 22
Ω 5% 0.1W 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13602 2.2k
Ω 5% 0.01W 0402
4822 117 13596 220
Ω 5% 0.01W 0402
4822 117 13605 Jumper 0402
4822 117 13596 220
Ω 5% 0.01W 0402
3198 031 03320 3.3k
Ω 5% 0402
3198 031 03320 3.3k
Ω 5% 0402
2350 035 10689 4 x 68
Ω 5%
2350 035 10689 4 x 68
Ω 5%
2350 035 10689 4 x 68
Ω 5%
2350 035 10689 4 x 68
Ω 5%
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
2350 035 10229 4 x 22
Ω 5% 1206
3198 031 04720 4.7k
Ω 5% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13548 1k
Ω 5% 0402
3198 031 03320 3.3k
Ω 5% 0402
4822 117 13605 Jumper 0402
3198 031 02290 22
Ω 5% 0.1W 0402
3198 031 02290 22
Ω 5% 0.1W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 051 30333 33k
Ω 5% 0.062W
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13548 1k
Ω 5% 0402
4822 117 13603 33k
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 051 30181 180
Ω 5% 0.062W
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13545 100
Ω 1% 0402
3198 031 04720 4.7k
Ω 5% 0402
4822 117 13546 47
Ω 5% 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13605 Jumper 0402
4822 117 13545 100
Ω 1% 0402
4822 117 13605 Jumper 0402
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4M08
4M09
4M10
4M16
4M17
4N01
4N02
4N03
4N04
4N05
4N06
4N07
4N08
4N09
4N10
4N11
4N12
4N13
4N14
4N15
4N16
4N17
4441
4501
4502
4504
4511
4801
4A04
4J01
4K04
4K05
3P04
3P05
3P05
3S00
3S03
4211
4212
4440
3N33
3N34
3N35
3N46
3N47
3P01
3P03
3P04
3N25
3N26
3N27
3N28
3N29
3N30
3N31
3N32
3N17
3N18
3N19
3N20
3N21
3N22
3N23
3N24
3N09
3N10
3N11
3N12
3N13
3N14
3N15
3N16
3N01
3N02
3N03
3N04
3N05
3N06
3N07
3N08
3M57
3M58
3M59
3M78
3M79
3M87
3M89
3M90
4L02
4M00
4M01
4M02
4M03
4M05
4N18
4N19
4N20
4N21
4N22
4P07 b
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
3198 018 33970 0.39
µF 10% 0805
4822 157 71334 0.68
µH 5% 1008
4822 051 30101 100
Ω 5% 0.062W
4822 051 30101 100
Ω 5% 0.062W
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
2422 549 42896 Bead 120
Ω 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
2422 549 42896 Bead 120
Ω 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
2422 536 00667 1000
µF 20% 7032
4822 157 11716 Bead 30
Ω at 100MHz
2422 549 45333 Bead 120
Ω 100MHz
3198 018 31080 1
µF 10% 0805
4822 157 63635 10
µF 20% 1206
2422 535 94134 10
µH 20% 0805
2422 536 00339 33
µ 20%
2422 535 94995 10
µF 20% 10145
2422 535 94134 10
µH 20% 0805
2422 536 00689 220
µF 20%
2422 536 00667 1000
µF 20% 7032
2422 535 94134 10
µH 20% 0805
2422 549 45333 Bead 120
Ω 100MHz
2422 535 94134 10
µH 20% 0805
2422 536 00689 220
µF 20%
2422 535 94134 10
µH 20% 0805
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 42896 Bead 120
Ω 100MHz
2422 549 42896 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
2422 549 45333 Bead 120
Ω 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
4822 157 11716 Bead 30
Ω at 100MHz
5J01
5J02
5J03
5J04
5L00
5L01
5L02
5M00
5E01
5E02
5E03
5F00
5F01
5F02
5F03
5G02
5907
5908
5909
5910
5911
5A00
5C00
5E00
5754
5900
5901
5902
5903
5904
5905
5906
5N04
5N05
5P01
5P02
5P03
5P04
5P05
5P06
5M01
5M02
5M03
5M04
5M05
5N01
5N02
5N03
5713
5730
5733
5735
5737
5738
5752
5753
5213
5214
5216
5218 h
5501
5704
5709
5712
5205
5206
5207
5208
5209
5210
5211
5212
5101
5103
5107
5108
5201
5202
5203
5204
家电维修资料网,免费下载各种维修资料
http://www.jdwxwz.com/?fromuser=乖乖狗
Spare Parts List LC4.9A AA 10.
EN 95 ce
7A00
7A02
7A03
7B01
7C00
7C01
7C02
7E00
7741
7742
7752
7756
7758
7801
7900
7901
7E01
7E02
7E03
7E04
7E05
7F03
7G03
7G05
7G10
7604
7605
7606
7708
7710
7730
7735
7738
7502
7503
7504
7505
7506
7601
7602
7603
7101
7201
7202
7206
7207
7208
7209
7210
7214
7215
7216
7217
7219 h
7430
7436
7501 d
6751
6E01
6E03
6F00
6F01
6G03
6G04
6G05
6G06
6G07
6G08
6G09
6G10
6N01
6601
6708
6709
6712
6733
6735
6736
6740
6101
6102
6103
6104
6204
6205
6430
6431
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11397 BAS316
4822 130 11525 1SS356
4822 130 80622 BAT54
4822 130 80622 BAT54
9340 548 42115 PDZ2.4B
9965 000 20150 1N4148WS SOD-323
4822 130 10838 UDZ3.3B
3198 010 10720 SS24
9322 128 70685 SMSS14
3198 010 10730 SS36
9322 128 70685 SMSS14
5322 130 34337 BAV99
9340 548 71115 PDZ33B
4822 130 10837 UDZS8.2B
9322 128 70685 SMSS14
9322 102 64685 UDZ2.7B
9322 102 64685 UDZ2.7B
4822 130 11397 BAS316
4822 130 11397 BAS316
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
4822 130 11416 PDZ6.8B
9322 085 77685 TLMG3100
3198 010 42310 BC847BW
9340 550 49115 PUMH7
9340 550 49115 PUMH7
4822 130 60373 BC856B
9322 214 45668 M24C16-WMN6P
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
9339 693 90135 BCP69-25
9339 693 90135 BCP69-25
9340 425 20115 BC847BS
9352 780 22557 TDA15021H/N1B91
4822 209 60792 74HC4053D
4822 130 11155 PDTC114ET
9352 607 39118 74LVC14APW
9322 199 16668 M74HC590T
9322 201 05671 CY62256LL-70ZC
9322 199 16668 M74HC590T
3198 010 42310 BC847BW
9351 870 00118 74HC573PW
9351 870 00118 74HC573PW
9322 183 05668 TS482ID
9351 742 70118 74HC08PW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
9340 310 50215 PDTA143ET
9340 425 20115 BC847BS
9322 139 16668 LF33CPT
9322 202 34668 L5973D
9322 191 07668 IC SM L5970D
4822 130 42804 BC817-25
9322 163 24668 L78M08CDT
3198 010 42310 BC847BW
3198 010 42310 BC847BW
5322 209 90529 MC34063AD
4822 130 11155 PDTC114ET
9322 212 14668 SI4423DY
9322 219 57671 GM1501H-LF-BD
9322 142 88668 LF25CDT
9322 189 19668 LD1086D2T18
9352 759 98118 PCA9515ADP
3198 010 42310 BC847BW
3198 010 42310 BC847BW
9322 214 42671 K4D263238F-QC50
9322 205 12671 MX29LV040QC-70G
9322 206 23668 M24C32-WMN6P
9322 215 39685 PST596JN
9322 195 23668 ADG733BRU
9322 199 80668 SM5301BS-G
9322 199 56668 ADG781BCP
4822 209 60792 74HC4053D
9352 607 39118 74LVC14APW
9352 607 39118 74LVC14APW
9322 206 24668 M24C02-WMN6P
3198 010 42310 BC847BW
3198 010 42310 BC847BW
4822 209 60792 74HC4053D
7M01
7M03
7N01
7N02
7N03
7N04
7P01
7P02
7L01
7L02
7L03
7L04
7L05
7L06
7L07
7M00
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
9322 212 77672 MST9883C-LF-110
4822 209 17398 LD1117DT33
9965 000 04199 BSN20
9965 000 04199 BSN20
9322 204 76671 T6TU5XBG-0001
9322 206 19672 MSM56V16160F-7T3-FG
9322 170 14668 LF15ABDT
9322 210 01668 EPCS4SI8N
9322 217 35671 EP1C12F256C8N
9340 425 20115 BC847BS
9322 210 59668 THC63LVDF84B
9322 170 14668 LF15ABDT
9322 201 03668 THC63LVDM83R
PDP Audio [C]
Various
1735
1736
1M02
1M06
1M52 g
2732
2736
2737
2739
2741
2743
2744
2745
2719
2720
2721
2722
2723
2726
2727
2731
2710
2711
2712
2713
2715
2716
2717
2718
2700
2701
2703
2704
2705
2706
2707
2709
2746
2747
2748
2749
2751
2754
2770
2776
2780
2789
2791
4822 267 10918 Connector 3p
2422 025 10768 Connector 3p m
4822 267 10618 Connector 7p
2422 025 11244 Connector 7p m
2422 025 10769 Connector 9p m
4822 126 14247 1.5nF 50V 0603
4822 126 14249 560pF 10% 50V 0603
2020 552 96683 220nF 10% 50V
4822 124 11767 470
µF 20% 25V
4822 126 14249 560pF 10% 50V 0603
5322 126 11579 3.3nF 10% 63V
2222 580 15649 100nF 10% 50V 0805
2020 552 96683 220nF 10% 50V
2020 552 96683 220nF 10% 50V
2022 552 05679 1
µF 10% 16V 0805
4822 126 14583 470nF 10% 16V 0805
4822 126 13193 4.7nF 10% 63V
4822 121 51252 470nF 5% 63V
3198 017 31530 15nF 20% 50V 0603
2022 552 05679 1
µF 10% 16V 0805
2222 580 15649 100nF 10% 50V 0805
4822 126 14583 470nF 10% 16V 0805
2020 021 91431 22
µF 20% 100V
2222 580 15649 100nF 10% 50V 0805
4822 126 14583 470nF 10% 16V 0805
2022 552 05679 1
µF 10% 16V 0805
4822 126 13193 4.7nF 10% 63V
4822 126 14249 560pF 10% 50V 0603
4822 126 14249 560pF 10% 50V 0603
4822 126 14583 470nF 10% 16V 0805
4822 121 51252 470nF 5% 63V
3198 017 31530 15nF 20% 50V 0603
2222 580 15649 100nF 10% 50V 0805
4822 126 13883 220pF 5% 50V
3198 016 31020 1nF 25V 0603
2222 580 15649 100nF 10% 50V 0805
2020 552 96683 220nF 10% 50V
4822 124 11767 470
µF 20% 25V
2022 552 05679 1
µF 10% 16V 0805
4822 126 14247 1.5nF 50V 0603
5322 126 11579 3.3nF 10% 63V
4822 124 40433 47
µF 20% 25V
2020 021 91431 22
µF 20% 100V
3198 017 41050 1
µF 10V 0603
2020 021 91431 22
µF 20% 100V
4822 126 14583 470nF 10% 16V 0805
4822 126 14583 470nF 10% 16V 0805
4822 126 13879 220nF +80-20% 16V
3764
3765
3777
3778
3999
9710
9711
9712
3732
3733
3734
3735
3736
3737
3738
3760
3724
3725
3726
3727
3728
3729
3730
3731
3716
3717
3718
3719
3720
3721
3722
3723
9763
9764
9765
9766
9768
9770
9790
9795
9713
9748
9757
9758
9759
9760
9761
9762
9796
9806
9807
9808 b
5700
5701
5702
5705
5708 d
6700
6702
6703 ce
4822 117 13632 100k
Ω 1% 0603 0.62W
4822 051 30222 2.2k
Ω 5% 0.062W
4822 051 30561 560
Ω 5% 0.062W
4822 051 30124 120k
Ω 5% 0.062W
4822 051 30479 47
Ω 5% 0.062W
4822 051 30471 47
Ω 5% 0.062W
4822 051 30124 120k
Ω 5% 0.062W
4822 051 30471 47
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 051 30153 15k
Ω 5% 0.062W
4822 051 30103 10k
Ω 5% 0.062W
4822 051 30153 15k
Ω 5% 0.062W
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 051 30223 22k
Ω 5% 0.062W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30223 22k
Ω 5% 0.062W
4822 051 30562 5.6k
Ω 5% 0.063W 0603
4822 051 30223 22k
Ω 5% 0.062W
4822 117 12889 270k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 12925 47k
Ω 1% 0.063W 0603
4822 117 13632 100k
Ω 1% 0603 0.62W
4822 051 30223 22k
Ω 5% 0.062W
4822 117 13632 100k
Ω 1% 0603 0.62W
4822 117 13632 100k
Ω 1% 0603 0.62W
4822 051 30102 1k
Ω 5% 0.062W
4822 051 30479 47
Ω 5% 0.062W
4822 051 30472 4.7
Ω 5% 0.062W
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
4822 051 20008 Jumper 0805
2422 536 00942 33
µH 20%
4822 157 11716 Bead 30
Ω at 100MHz
2422 536 00942 33
µH 20%
4822 157 11411 Bead 80
Ω at 100MHz
4822 157 11411 Bead 80
Ω at 100MHz
4822 130 11522 UDZ15B
9322 150 18685 BZX384-C47
4822 130 10838 UDZ3.3B
f
3708
3709
3710
3711
3712
3713
3714
3715
3700
3701
3702
3703
3704
3705
3706
3707
4822 051 30561 560
Ω 5% 0.062W
4822 051 30479 47
Ω 5% 0.062W
3198 021 38220 8.2k
Ω 5% 0.062W 0603
3198 021 38220 8.2k
Ω 5% 0.062W 0603
4822 117 13632 100k
Ω 1% 0603 0.62W
4822 051 30222 2.2k
Ω 5% 0.062W
4822 051 30682 6.8
Ω 5% 0.062W
4822 051 30393 39k
Ω 5% 0.062W
4822 051 30479 47
Ω 5% 0.062W
4822 051 30272 2.7k
Ω 5% 0.062W
4822 051 30393 39k
Ω 5% 0.062W
2322 762 60568 5.6
Ω 5% 5% 2512
4822 051 30272 2.7k
Ω 5% 0.062W
4822 051 30332 3.3
Ω 5% 0.062W
4822 051 30682 6.8
Ω 5% 0.062W
2322 762 60568 5.6
Ω 5% 5% 2512
7700
7701
7702
7705
7706
7707
7708
7709
7710
7711
7712
7713
9322 202 89668 LM393P
9352 729 65112 TDA8925ST/N1
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42320 BC857BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
3198 010 42320 BC857BW
3198 010 42310 BC847BW
3198 010 42310 BC847BW
LED Panel [J]
Various
0345
1040
2422 025 18741 Connector 6p m
9322 206 81667 TSOP34836YA1
家电维修资料网,免费下载各种维修资料
EN 96 10.
http://www.jdwxwz.com/?fromuser=乖乖狗
LC4.9A AA g
2040 f
9062
9066
9070
9081
9082
9111
9112
9115
9122
3040
3051
3061
3063
3078
9012
9041
9042 d
6051
6060
6070 ce
7051
7052
7062
4822 124 12095 100
µF 20% 16V
4822 117 13597 330
Ω 5% 0402 0.01W
4822 051 30221 220
Ω 5% 0.062W
4822 051 30221 220
Ω 5% 0.062W
4822 117 13606 10k
Ω 5% 0.01W 0402
3198 031 02250 2.2M
Ω 5% 0.1W 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13606 10k
Ω 5% 0.01W 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
4822 117 13605 Jumper 0402
9322 218 97685 SML-310VTK
9322 134 46685 SML-310MT
9322 140 63685 TEMD5000
3198 010 42310 BC847BW
3198 010 42310 BC847BW
4822 130 60373 BC856B
Spare Parts List
家电维修资料网,免费下载各种维修资料
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Revision List LC4.9A AA
11. Revision List
Manual xxxx xxx xxxx.0
• First release.
11.
EN 97
家电维修资料网,免费下载各种维修资料
Downloaden
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