GM-R700 User’s Manual
GM-R700
GPS Receiver User’s Manual
EverMore Technology Inc.
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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GM-R700 User’s Manual
Manual Revision History
Revision
Issue 1.0
Issue 2.0
Date
May 2005
June 2005
Update Summary
Initial release
Modify outline
© EverMore Technology Inc. All rights reserved.
Not to be reproduced in whole or part for any purpose without written permission of EverMore Technology Inc.
Information provided by EverMore Technology Inc. is believed to be accurate and reliable. However, no
responsibility is assumed by EverMore Technology Inc. for its use. EverMore Technology Inc. reserves the right to
change specification at any time without notice.
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Contents
1. INTRODUCTION ............................................................................................... 5
1.1 Overview ............................................................................................................................. 5
1.2 Features ............................................................................................................................... 6
1.3 Applications......................................................................................................................... 6
1.4 Start-up Modes ................................................................................................................... 7
2. TECHNICAL SPECIFICATIONS ................................................................... 8
2.1 Electrical Characteristics .................................................................................................. 8
2.2 Environmental Characteristics ......................................................................................... 9
2.3 Physical Characteristics..................................................................................................... 9
3. HARDWARE INTERFACE ........................................................................... 10
3.1 GM-R700 PS/2 Female Connector (standard type) ...................................................... 10
3.2 GM-R700 Female PS/2 Connector Interface ................................................................. 11
3.3 GM-R700 Accessories ...................................................................................................... 12
3.3.1 DB9 9 Pins Female and PS/2 Male Connector .................................................................. 12
3.3.2 USB Connector .............................................................................................................. 13
3.4 GM-R700 Dimensions ...................................................................................................... 14
3.5 GM-R700 Appearance Diagram ..................................................................................... 14
4 GM-R700 USB DRIVER INSTALLATION .................................................. 15
5. OPERATION AND TEST .............................................................................. 16
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6. SOFTWARE SPECIFICATION .................................................................... 17
6.1 GM-R700 NMEA Protocol .............................................................................................. 17
6.2 General NMEA Format ................................................................................................... 17
6.3 $GPGGA ........................................................................................................................... 18
6.4 $GPGLL............................................................................................................................ 19
6.5 $GPGSA ............................................................................................................................ 19
6.6 $GPGSV ............................................................................................................................ 20
6.7 $GPRMC........................................................................................................................... 21
6.8 $GPVTG............................................................................................................................ 21
6.9 $GPZDA............................................................................................................................ 22
7. LIMITED WARRANTY ................................................................................... 22
8. ORDERING INFORMATION ........................................................................ 23
8.1 Standard Type Cable (Female PS/2)............................................................................... 23
8.2 Optional Types Cable....................................................................................................... 24
8.2.1 Male PS/2 Cable ............................................................................................................. 24
8.2.2 SP6P Cable .................................................................................................................... 25
8.2.3 RS-232 Cable (DB9 9 Pins Female + PS/2 Male) .............................................................. 26
8.2.4 USB Cable (With USB Bridge Controller IC) ................................................................... 27
8.3 Car Charger List .............................................................................................................. 28
9. SERIES PRODUCTS INFORMATION ....................................................... 29
10. APPENDIX ..................................................................................................... 29
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1. Introduction
1.1 Overview
EverMore series GPS module GM-R700 is a high sensitivity ultra low power consumption cost
efficient, compact size; plug & play GPS module board designed for a broad spectrum of OEM system
applications. This product is based on the proven technology found in 16 channel GPS receivers and
NEMERIX chipset solution. The GPS module receiver will track up to 16 satellites at a time while
providing fast time-to-first-fix and 1Hz navigation updates. It is far reaching capability meets the
sensitivity & accuracy requirements of car navigation as well as other location-based applications,
such as AVL system. Handheld navigator, PDA, pocket PC, or any battery operated navigation system.
The GM-R700 design utilizes the latest surface mount technology and high level circuit
integration to achieve superior performance while minimizing dimension and power consumption. This
hardware capability combined with software intelligence makes the board easy to be integrated and
used in all kinds of navigation applications or products. The module communicates with application
system via RS-232 level with NMEA0183 protocol.
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1.2 Features
The GM-R700 GPS engine board offers following features:
Built-in high performance NEMERIX chipset.
Average Cold Start in 50 seconds.
Ultra low power consumption.
16 channels “All-in-View” tracking.
Support standard NMEA-0183 V3.0
Multi-path mitigation hardware
Optimum clock drift adjustment
Built-in patch antenna
On-board rechargeable battery sustained real-time clock and memory for fast satellite
acquisition during power-up
Compact board Size GM-R700 51mm x 42.5mm x 17.3mm (2.01”x1.67”x0.68”)
for easy integration into hand-held device.
1.3 Applications
GM-R700 engine board receiver is a high performance, ultra low power consumption, plug &play
product. These applications are as follow.
Car navigation system for portable device and car device
Wrist watch
Solar operated device
Marine Navigation
Fleet management
AVL and location-based services
Radar detector with GPS function
Hand-held device for personal positioning and navigation
Ideal for PDA, pocket PC and other computing devices at GPS application
Asset tracking
Timing reference
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1.4 Start-up Modes
Definitions
DESCRIPTION
Cold Start
The Cold Start takes the longest startup time among EMT GPS receivers. In
this scenario, the receiver has no acknowledgment on the last position, time,
and satellite constellation. The receiver is initiated to search blindly for satellite
signals in the cold start mode.
Another situation is that when no backup battery is connected, the GPS
receiver will be in the cold start mode and there is no data stored in SRAM.
Execute cold start of the test tool when first use. By this way can speed up
position fix time.
Warm Start
In this scenario, the receiver was off less than one week but more than 2-hour
time.
The receiver knows its last position, time and almanac because it has a
backup battery to keep current almanac, position and time stored in SRAM.
In the warm start mode, the receiver can quickly acquire satellites and get a
position fix faster than it does in the cold start mode.
Hot Start
In this scenario, the receiver was off less than 2-hour time. With the back up
battery connected and the current almanac, position, time and ephemeris
stored in SRAM, the receiver applies its last ephemeris data to calculate and
get a position fix.
In the reacquisition mode, the receiver takes time to lock on satellites if
Reacquisition buildings or obstacles are blocking the signals for a short while.
This is very common in urban areas, but please be noted that reacquisition
time has nothing to do with the time-to-first-fix (TTFF).
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2. Technical Specifications
2.1 Electrical Characteristics
2.1.1 General
Frequency
L1, 1575.42 MHz
C/A code
1.023 MHz chip rate
Channels
16
2.1.2 Sensitivity
Tracking
-152dBm type
2.1.3 Accuracy
Position
3-25 meters CEP (90%) horizontal, SA off.
Velocity
0.1 meters/second
Time
±100 ns synchronized to GPS time
2.1.4 Datum
Default
WGS-84
Other
Support different datum by request
2.1.5 Acquisition Rate (Open sky, stationary requirements)
Hot start
7 sec, average
Warm start
38 sec, average
Cold start
50 sec, average
2.1.6 Dynamic Conditions
Altitude
18,000 meters max
Horizontal Velocity
300 kilometers/hour max
Vertical Velocity
36 kilometers/hour max
Acceleration
2g, max
Jerk
4 meters/second3, max
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2.1.7 Power
Main power input
5V ± 0.5Vp-p DC input.
Supply Current
Typical 33 mA
2.1.8 Serial Port
Electrical interface
one full duplex serial communication, RS-232 interface
Protocol message
NMEA-0183, version 3.0
Default NMEA
GGA, GSA, GSV, RMC and VTG. 9600 baud rate,
8 bits data, 1 start, 1 stop, no parity.
(Option baud rate: 4800,19200, 38400)
2.2 Environmental Characteristics
Operating temperature range
-40 ℃ to +80 ℃
Storage temperature range
-50 ℃ to +90 ℃
2.3 Physical Characteristics
Dimension:
51mm x 42.5mm x 17.3mm (2.01”x1.67”x0.68”)
Weight:
78g (2.75oz)
Interface connector:
PS/2 female connector
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3. Hardware Interface
3.1 GM-R700 PS/2 Female Connector (standard type)
PS/2 female connector (standard type)
GM-R700 Real Picture
PS/2 Female Connector Pin Assignment
Pin
1
2
3
4
5
6
Function
VCC
GND
RX
RXD
TXD
TX
3 RX
Input/Output
Power Supply
Level
5V
Input
Input
Output
Output
12V, RS232
3.3V, LVTTL
3.3V, LVTTL
12V, RS232
5 TXD
1 VCC
PS/2 (Female)
2 GND
at the GM-R700
4 RXD
6 TX
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3.2 GM-R700 Female PS/2 Connector Interface
Extension Male PS/2 Connector
GM-R700
USB, Link to PC or Notebook
GPS
1M
Extension Male PS/2 Connector
2M
1M
RS232, Link to PC or Notebook
Standard Female PS/2 Connector
Male PS/2
GM-R700 Link to Host Device Diagram
GM-R700
DC12V
GPS
PDA
Car
Charger
Transition
Connecter
Female PS/2
Connecter
GM-R700 Link to PDA Diagram
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3.3 GM-R700 Accessories
3.3.1 DB9 9 Pins Female and PS/2 Male Connector
DB9 Connector (Female)
Pin
1
2
3
4
5
6
7
8
9
Function
NC
TX
RX
NC
GND
NC
NC
NC
NC
9
5
Input/Output
Level
Output
Input
RS232
RS232
Ground
0V
3
DB9
5
1
RS232
PS/2 (Male)
(Female)
2
6
1
4
6
Connector Pin Assignment
PS/2 Connector (Male)
Pin
1
2
Function
NC
NC
Pin
3
4
Function
GND
VCC
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Pin
5
6
Function
NC
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3.3.2 USB Connector
Pin
1
2
3
4
Function
VCC, 5V
DD+
GND
Color
Red
White
Green
Black
GND
USB Connector
Pin
4
D+
D-
VCC
3
2
1
Pin 1
Connector Pin Assignment
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3.4 GM-R700 Dimensions
Length 51
Unit: mm
Diameter
Wide
5.8
42.5
41.25
Top View
17.3
Height
Lateral View
3.5 GM-R700 Appearance Diagram
GPS Receiver
Patch
Ant
Length: 2M
PS/2 (Female)
GM-R700
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4 GM-R700 USB Driver Installation
Following is the brief indication of USB driver installation. We enclose a CD for detailed USB driver
installation “GPS USB Driver Setup.pdf ” with products.
Step 1: Copy entire USB driver folder from CD to hard disk
Step 2: Double click the “ Setup.exe ” icon
Step 3: Press “Install” button
Step 4: Press “OK” button
Step 5: Plug-in GPS to PC USB port
Step 6: Check enables COM port number
Step 7: To test GM-R700 by testing tool
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5. Operation and Test
The customers can change the data protocol and communication data baud rate for your application
using these tools. The software and manual are available for download from website.
Below list GM-R700 software tools
For example double click 700_SeriesGPSTest.exe to test GM-R700
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6. Software Specification
6.1 GM-R700 NMEA Protocol
The GM-R700 software is capable of supporting the following NMEA message formats
NMEA Message
Prefix
$GPGGA(1)*
$GPGLL
$GPGSA(3)*
$GPGSV(3)*
$GPRMC(1)*
$GPVTG(1)*
$GPZDA
Format
Direction
GPS fix data.
Geographic position Latitude / Longitude.
GNSS DOP and actives satellites
Satellites in view.
Recommended minimum specific GNSS data.
Velocity and track over ground.
Date and time.
Out
Out
Out
Out
Out
Out
Out
*: (1): 1sec output 1msg , (3): 3sec output 1msg , 9600 baud rate (Standard output)
6.2 General NMEA Format
The general NMEA format consists of an ASCII string commencing with a ‘$’ character and
terminating with a <CR><LF> sequence. NMEA standard messages commence with ‘GP’ then a
3-letter message identifier. The message header is followed by a comma delimited list of fields
optionally terminated with a checksum consisting of an asterix ‘*’ and a 2 digit hex value representing
the checksum. There is no comma preceding the checksum field. When present, the checksum is
calculated as a bitwise exclusive of the characters between the ‘$’ and ‘*’. As an ASCII representation,
the number of digits in each number will vary depending on the number and precision, hence the
record length will vary. Certain fields may be omitted if they are not used, in which case the field
position is reserved using commas to ensure correct interpretation of subsequent fields.
The tables below indicate the maximum and minimum widths of the fields to allow for buffer size
allocation.
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6.3 $GPGGA
This message transfers global positioning system fix data. The $GPGGA message structure is shown
below:
Field
Message
ID
UTC Time
Latitude
N/S
Indicator
Longitude
E/W
indicator
Position Fix
Indictor
Satellites
Used
HDOP
MSL
Altitude
Units
Geoid
Separation
Units
Age of
Differential
Corrections
Diff
Reference
Corrections
Checksum
Message
terminator
Format
Min
chars
Max
chars
Notes
$GPGGA
6
6
GGA protocol header.
hhmmss.sss
float
char
2,2,2.3
3,2.4
1
2,2,2.3
3,2.4
1
Fix time to 1ms accuracy.
Degrees * 100 + minutes.
N=north or S=south
float
Char
3,2.4
1
3,2.4
1
Degree * 100 + minutes.
E=east or W=west
Int
1
1
Int
2
2
0: Fix not available or invalid.
1: GPS SPS mode. Fix available.
Number of satellites used to calculate fix.
Float
Float
1.1
1.1
3.1
5.1
Horizontal Dilution of Precision.
Altitude above mean seal level
Char
Int
1
(0) 1
1
4
M Stands for “meters”.
Separation from Geoids can be blank.
Char
int
1
(0) 1
1
5
M Stands for “meters”.
Age in seconds Blank (Null) fields when DGPS
is not used.
int
4
4
0000.
*xx
<CR> <LF>
(0) 3
2
3
2
2 digits.
ASCII 13, ASCII 10.
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6.4 $GPGLL
This message transfers Geographic position, Latitude, Longitude, and time. The $GPGLL message
structure is shown below:
Field
Format
Min
chars
Max
chars
Message ID
Latitude
N/S Indicator
Longitude
E/W indicator
UTC Time
Status
$GPGLL
Float
Char
Float
Character
hhmmss.sss
Char
6
1,2.1
1
1,2.1
1
1,2,2.1
1
6
3,2.4
1
3,2.4
1
2,2,2.3
1
Mode Indicator
Checksum
Message terminator
Char
*xx
<CR><LF>
1
(0) 3
2
1
3
2
Notes
GLL protocol header.
Degree * 100 + minutes.
N=north or S=south.
Degree * 100 + minutes.
E=east or W=west.
Fix time to 1ms accuracy.
A Data Valid.
V Data invalid.
A Autonomous
2 digits.
ASCII 13, ASCII 10.
6.5 $GPGSA
This message transfers DOP and active satellites information. The $GPGSA message structure is
shown below:
Field
Format
Min
chars
Max
chars
Message ID
Mode
$GPGSA
Char
6
1
6
1
Mode
Int
1
1
Satellites Used
Satellites Used
…
Satellites Used
PDOP
HDOP
VDOP
Checksum
Message
terminator
Int
Int
.
Int
Float
Float
Float
*xx
<CR> <LF>
2
2
..
2
1.1
1.1
1.1
0
2
2
2
..
2
3.1
3.1
3.1
3
2
Notes
GSA protocol header.
M Manual, forced to operate in
selected mode.
A Automatic switching between
modes.
1 .Fix not available.
2 2D position fix.
3 3D position fix.
SV on channel 1.
SV on channel 2.
..
SV on channel 12.
2 digits
ASCII 13, ASCII 10
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6.6 $GPGSV
This message transfers information about satellites in view. The $GPGSV message structure is shown
below. Each record contains the information for up to 4 channels, allowing up to 12 satellites in view. In
the final record of the sequence the unused channel fields are left blank with commas to indicate that a
field has been omitted.
Field
Format
Min
chars
Max
chars
Message ID
Number of
messages
Message number
$GPGSV
Int
6
1
6
1
Int
1
1
Satellites in view
Satellite Id
Elevation
Azimuth
SNR
Int
Int
Int
Int
Int
1
2
1
1
(0) 1
2
2
3
3
2
Satellite Id
Elevation
Azimuth
SNR
Int
Int
Int
Int
2
1
1
(0) 1
2
3
3
2
Satellite Id
Elevation
Azimuth
SNR
Int
Int
Int
Int
2
1
1
(0) 1
2
3
3
2
Satellite Id
Elevation
Azimuth
SNR
Int
Int
Int
Int
2
1
1
(0) 1
2
3
3
2
Checksum
Message
terminator
*xx
<CR> <LF>
(0) 3
2
3
2
Notes
GSA protocol header.
Number of messages in the message
sequence from 1 to 3.
Sequence number of this message in
current sequence, form 1 to 3.
Number of satellites currently in view.
Satellite vehicle 1.
Elevation of satellite in degrees.
Azimuth of satellite in degrees.
Signal to noise ration in dBHz, null if the sv
is not in tracking.
Satellite vehicle 2.
Elevation of satellite in degrees.
Azimuth of satellite in degrees.
Signal to noise ration in dBHz, null if the sv
is not in tracking.
Satellite vehicle 3.
Elevation of satellite in degrees.
Azimuth of satellite in degrees.
Signal to noise ration in dBHz, null if the sv
is not in tracking.
Satellite vehicle 4.
Elevation of satellite in degrees.
Azimuth of satellite in degrees.
Signal to noise ration in dBHz, null if the sv
is not in tracking.
2 digits.
ASCII 13, ASCII 10.
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6.7 $GPRMC
This message transfers recommended minimum specific GNSS data. The $GPRMC message format
is shown below.
Field
Format
Min
chars
Max
chars
Notes
Message ID
UTC Time
Status
$GPRMC
hhmmss.sss
char
6
1,2,2.1
1
6
2,2,2.3
1
Latitude
N/S Indicator
Longitude
E/W indicator
Speed over
ground
Course over
ground
Date
Magnetic variation
E/W indicator
Mode
Checksum
Message
terminator
Float
Char
Float
Char
Float
1,2.1
1
1,2.1
1
1,1
3,2.4
1
3,2.4
1
5.3
RMC protocol header.
Fix time to 1ms accuracy.
A Data Valid.
V Data invalid.
Degrees * 100 + minutes.
N=north or S=south.
Degrees * 100 + minutes.
E=east or W=west.
Speed over ground in knots.
Float
1.1
3.2
Course over ground in degrees.
ddmmyy
Blank
Blank
Char
*xx
<CR> <LF>
2,2,2
(0)
(0)
1
(0) 3
2
2,2,2
(0)
(0)
1
3
2
Current date.
Not used.
Not used.
A Autonomous
2 digits.
ASCII 13, ASCII 10.
6.8 $GPVTG
This message transfers Velocity, course over ground, and ground speed. The $GPVTG message
format is shown below.
Field
Message ID
Course (true)
Reference
Course
(magnetic)
Reference
Speed
Units
Speed
units
Mode
Checksum
Message
terminator
Format
Min
chars
Max
chars
Notes
$GPVTG
Float
Char
Float
6
1.1
1
1.1
6
3.2
1
3.2
VTG protocol header.
Measured heading in degrees.
T = true heading.
Measured heading (blank).
Char
Float
Char
Float
Char
Char
*xx
<CR>
<LF>
1
1.1
1
1.1
1
1
(0) 3
2
1
4.2
1
4.2
1
1
3
2
M = magnetic heading.
Speed in knots.
N = knots.
Speed
K = Km/h.
A Autonomous
2 digits.
ASCII 13, ASCII 10.
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6.9 $GPZDA
This message transfers UTC Time and Date. Since the latency of preparing and transferring the
message is variable, and the time does not refer to a particular position fix, the second precision is
reduced to 2 decimal places. The $GPZGA message format is shown below.
Field
Format
Min
chars
Max
chars
Notes
Message ID
UTC time
UTC day
UTC month
UTC Year
Local zone hours
Local zone
minutes
Checksum
Message
terminator
$GPZDA
hhmmss
.ss
6
2,2,2.2
2
2
4
(-)2
2
6
2,2,2.2
2
2
4
(-)2
2
ZDA protocol header.
00000000.00 to 235959.99
01 to 31, day of month.
01 to 12.
1989-9999.
Offset of local time zone (-13) to 13.
(0) 3
2
3
2
2 digits.
ASCII 13, ASCII 10.
dd
mm
yyyy
Int
Unsigned
*xx
<CR>
<LF>
7. Limited Warranty
The GM-R700 is warranted to be free from defects in material and functions for one year from the
date of purchase. Any failure of this product within this period under normal conditions will be replaced
at no charge to the customers
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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GM-R700 User’s Manual
8. Ordering Information
8.1 Standard Type Cable (Female PS/2)
PS/2 Female Connector Pin Assignment
Pin
1
2
3
4
5
6
Function
VCC
GND
RX
RXD
TXD
TX
3 RX
Input/Output
Power Supply
Level
5V
Input
Input
Output
Output
12V, RS232
3.3V, LVTTL
3.3V, LVTTL
12V, RS232
5 TXD
1 VCC
PS/2 (Female)
2 GND
at the GM-R700
4 RXD
6 TX
Female PS/2 Connectors Pin Assignment
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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GM-R700 User’s Manual
8.2 Optional Types Cable
8.2.1 Male PS/2 Cable
For all kind definition
PS/2 Connector (Male)
Pin
1
2
3
4
5
6
Function
GND
VCC
RXD
RX
TX
TXD
3 NC
Input/Output
Ground
Power Supply
Input
Input
Output
Output
Level
0V
5V
3.3V, LVTTL
RS232
RS232
3.3V, LVTTL
5 TX
1 GND
PS/2 (Male)
2 VCC
4 RX
6 NC
Male PS/2 Connectors Pin Assignment
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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GM-R700 User’s Manual
8.2.2 SP6P Cable
For all kind definition
SP6P Connector (Female)
Pin
1
2
3
4
5
6
Color
Yellow
Red
White
Black
Green
Blue
Function
TXD
VCC
RX
GND
TX
RXD
5 TX
Input/Output
Output
Power Supply
Input
Level
3.3V, LVTTL
5V
12V, RS232
0V, Ground
12V, RS232
3.3V, LVTTL
Output
Input
1 TXD
4 GND
6 RXD
Super Mini Din
(Female)
at the GM-R700
3 RX
2 VCC
Connectors Pin Assignment
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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GM-R700 User’s Manual
8.2.3 RS-232 Cable (DB9 9 Pins Female + PS/2 Male)
For all kind definition
DB9 Connector (Female)
Pin
1
2
3
4
5
6
7
8
9
Function
NC
TX
RX
NC
GND
NC
NC
NC
NC
9
5
Input/Output
Level
Output
Input
RS232
RS232
Ground
0V
3
DB9
5
1
RS232
PS/2 (Male)
(Female)
2
6
1
4
6
Connector Pin Assignment
PS/2 Connector (Male)
Pin
1
2
Function
NC
NC
Pin
3
4
Function
GND
VCC
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
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Pin
5
6
Function
NC
NC
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GM-R700 User’s Manual
8.2.4 USB Cable (With USB Bridge Controller IC)
Pin
1
2
3
4
Function
VCC, 5V
DD+
GND
Color
Red
White
Green
Black
GND
USB Connector
Pin
4
D+
D-
VCC
3
2
1
Pin 1
Connector Pin Assignment
EverMore Technology Inc.
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GM-R700 User’s Manual
8.3 Car Charger List
Input voltage: DC12V~24V, Output: 5V/2A
ITEM
Description
1
Car charger for ACER N20
2
Car charger for ACER S60
3
Car charger for ASUS A600
4
Car charger for ASUS A620 / A620BT
5
Car charger for CASIO E115
6
Car charger for CASIO E125/EM500
7
Car charger for CASIO E200
8
Car charger for DELL AXIM X3
9
Car charger for DELL AXIM X5
10
Car charger for Eten P300 / M500
11
Car charger for HP Jonada
12
Car charger for IPAQ iPAQ 38xx/39xx/22xx/4x/5x/Rx/RZ/Hx serial
13
Car charger for IPAQ 36XX/37XX
14
Car charger for Mitac Mio 338/528/558
15
Car charger for NEC
16
Car charger for PALM 500/505/T3
17
Car charger for PALM Vx
18
Car charger for Siemens Loox
19
Car charger for SONY Nxx Series
20
Car charger for SONY Txx
21
Car charger for Toshiba E330/E740
22
Car charger for Toshiba E400
23
Car charger for Toshiba E570
24
Car charger for Toshiba E800
25
Car charger for XDA/T-Mobile MDA
26
Car charger for XDA-II/T-Mobile MDA
27
Car charger for Yakumo Delta 300
28
Car charger for Yakumo Omnikron
29
Car charger for Anex TEK SP230
30
Car charger for Acer N30/N35/N50
31
Car charger for Dell Axim X50V/X50
32
Car charger for ASUS A716 / A730 / A730W / P505
33
Car charger for Palm T5 / Treo 650/Tungsten E2
EverMore Technology Inc.
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GM-R700 User’s Manual
9. Series Products Information
300 Series for Evermore BBP1202 Chipset:
1: GM-307
(USB G-Mouse)
500 Series for Evermore BBP1202 Chipset:
1: GM-M500
(G-Mouse Module)
2: BT-R500
(Bluetooth GPS)
3: GM-R500
(G-MOUSE)
4: CF-R500
(CF Card GPS)
5: GM-R500-DL
(Data logger)
6: GM-R507
(USB G-Mouse)
7: CM-M500
(GPS Module)
8: DL-200
(Data logger)
600 Series for Himark AR2010 Chipset:
1: CM-M600B
(GPS Module)
700 Series for Nemerix NJ1030 Chipset:
1: EB-N700
(Engine Board, with patch antenna)
2: EB-N701
(Engine Board, without patch antenna)
3: BT-R700
(Bluetooth GPS Type I)
4: BT-R750
(Bluetooth GPS Type II)
5: GM-R700
(G-Mouse)
10. Appendix
EverMore Website
Welcome to EverMore website at http://www.emt.com.tw or
http://www.globalsources.com/gpsevermore.co for updated product information and drivers download.
EverMore Technology Inc.
2F, No.7, R&D Road 1, Science-Based Industrial Park, Hsinchu, Taiwan, 300, R.O.C.
29
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