Case Communications 8000 Series Installation guide

Series 8000 Super Card
Installation Guide
© Case Communications Ltd 1996
X870-300451 Issue 2
0-1
Unit 15, Riverside Business Centre, Victoria Street, High Wycombe, Bucks HP11 2LT
Web: www.casecomms.com
Email: sales@casecomms.com
Tel (UK): 08700 263 740
Tel (International): +44 (0) 1494 833 740
Fax (UK): 08700 263 741
Fax (International): +44 (0) 1494 833 741
Rev.2
STATUTORY NOTICES
APPROVED for connection to
telecommunication systems specified
in the instructions for use subject to
the conditions set out in them.
NS/1282/1/L/601989
NS/1282/1/L/601988
UK PSS AND KILOSTREAM
For connection to UK PSS and KiloStream services, see Appendix D.
LITHIUM BATTERY
The lithium used in the battery of this unit will react violently with water and most gases. Discharged
batteries must not be crushed, incinerated or disposed of in the normal waste. Used batteries should be
collected and disposed of in an approved land fill. The manufacturer and your local waste authority will
provide more detailed information about their disposal.
Accidental charging and short circuiting of the battery may cause overheating and possible rupture.
Replace only with the same or equivalent type recommended by the equipment supplier.
BATTERIE LITHIUM
Attention: Il y a danger d'explosion s'il y a remplacement incorrect de la batterie. Remplacer uniquement
avec une batterie du même type ou d'un type recommandé par le constructeur. Mettre au rébut les
batteries usagées conformément aux instructions du fabricant.
EMC WARNING
The Electro-Magnetic Compatibility (EMC) performance of this product is maintained through the use of
screened cables as specified in Appendix C.
The use of alternative cables may compromise this performance, for which the user will
be required to correct at his own expense.
Case Communications Limited has made all reasonable efforts to ensure the accuracy of the content of this document but the
information contained herein does not constitute a warranty of performance of the equipment and/or software described and no
specifications given form part of any contract. This document does not constitute a licence to use or copy any software described
herein and any such software must only be used in accordance with the terms of the licence supplied therewith.
Case Communications Limited reserves the right to make alterations to the equipment and software described without notice and
assumes no liability for any loss or damage caused as a result of use of this document whether because of out of date or inaccurate
information or otherwise.
Product and manufacturers' names referred to in this document are used for identification purposes only and Case Communications
Limited acknowledges the intellectual property rights of their respective owners in the same.
This document is the copyright of Case Communications Limited and may not be reproduced, copied or stored in any computerised
retrieval system by any means whatsoever without the express written permission of Case Communications Limited.
Published by Case CommunicationsTechnical Publications Department
X870-300451 Issue 2
0-2
Rev.1
Preface
This guide provides information for network controllers to
install Series 8000 Super Cards in the 8210 and 8310 Basic
Units and the 8325 Compact PSE.
These cards will normally be installed by Case engineers.
This guide is provided to users for background information,
and to assist their Case-trained engineers to install
additional cards.
It is assumed that the person installing the Super Card is
familiar with the installation and configuration of the
8210, 8310 and 8325 units.
X870-300451 Issue 2
0-3
Rev.0
MORE STATUTORY NOTICES
Case Communications Ltd declare that this product conforms with the protection requirements of
Council Directive 89/336/EEC on the approximation of the laws of the member states relating to
electromagnetic protection.
All PCB assemblies contain Electrostatic Sensitive Devices (ESDs) which may be permanently
damaged if incorrectly handled. This equipment must be handled in accordance with BS5783
code of practice for the handling of electrostatic sensitive devices
X870-300451 Issue 2
0-4
Rev.1
Contents
1
1.1
1.2
1.3
The Series 8000 Super Card
Introduction
Physical Description
PIMs
1-1
1-1
1-2
1-3
2
2.1
2.2
2.3
2.4
2.5
2.6
Installation
Installing the Super Card
2.1.1
Use of Screened Cables
2.1.2
Pin 1 (Frame Ground) to Signal Ground
Installing the PIMs on the Super Card
Indicators
Other Equipment
Public Digital Services
Power-Up Diagnostics
2-1
2-1
2-1
2-2
2-3
2-4
2-5
2-6
2-7
3
3.1
3.2
Logging On
Locally
From X.25
3-1
3-1
3-2
Appendices
A
Specification Summary
A-1
B
Interface Specifications
B-1
C
Cables
C-1
D
D.1
D.2
D.3
D.4
UK PSS and KiloStream
General
NET1 Considerations
NTU Pin Assignments
Cable Pinouts
D-1
D-1
D-3
D-4
D-6
X870-300451 Issue 2
0-5
Rev.0
Figures
1-1
1-2
Super Card
Super Card Rear Panel
1-2
1-2
C-1
C-2
C-3
C-4
C-5
C-6
C-7
C-8
C-9
V.24 DCE Cables X890-403111 and X890-408611
V.24 DTE Cables X890-403011 and X890-408711
V.54 DCE Cable X890-406311
X.21 Cables X890-401011 and X890-408811
V.35 DCE Cables X890-403411 and X890-409411
V.35 DTE Cables X890-403311 and X890-409511
V.36 DCE Cables X890-406611 and X890-409011
V.36 DTE Cables X890-406711 and X890-409111
V.24 to DIN 'Alarm & Diagnostic' Cable X870-401511
C-3
C-4
C-5
C-6
C-7
C-8
C-9
C-10
C-11
D-1
D-2
D-3
D-4
V.24 PSS/KiloStream Cable Part Number X818-401211
X.21 PSS/KiloStream Cable Part Number X890-408411
V.35 PSS/KiloStream Cable Part Number X818-401311
V.36 PSS/KiloStream Cable Part Number X890-406611
D-6
D-7
D-8
D-9
Tables
1-1
PIM Types
1-3
2-1
Power-Up Error Codes
2-7
C-1
C-2
C-3
C-4
C-5
C-6
V.24 Cables
X.21 Cables
V.35 Cables
V.36 Cables
UK PSS/KiloStream NTU Cables
Diagnostic/Manager Port
C-1
C-1
C-2
C-2
C-2
C-2
D-1
D-2
D-3
D-4
D-5
Permissible UK PSS/KiloStream Connections
V.24 Interface Pin Assignments
X.21 Interface Pin Assignments
V.35 Interface Pin Assignments
V.36 Interface Pin Assignments
D-1
D-4
D-4
D-5
D-5
X870-300451 Issue 2
0-6
Rev.1
1
The Series 8000 Super Card
1.1 Introduction
The Series 8000 Super Card is a multi-purpose processor that plugs into
the Cray 8210 and 8310 Basic Units or the 8325 Compact PSE.
The card is fitted with 8295 multi-protocol software.
X870-300451 Issue 2
1-1
Rev.0
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PORT 5
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X870-300451 Issue 2
PORT 3SUPER XSALPORT 2
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PORT 1
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DIN
Connectors
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SAFETY WARNING - See instructions for use
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1.2 Physical Description
The Super Card, part number X870-603411, is illustrated in Figure 1-1.
Diagnostic/Manager Port
0
1
PIM
Ports
4
5
Figure 1-1 Super Card
The front of the card has two 96-way DIN connectors that fit into the
motherboard in the 8210/8310/8325 chassis. (Unused card positions on the
8210/8310/8325 are fitted with blanking plates, part number X870900003.)
The rear of the card has provision for mounting three Physical Interface
Modules (PIMs), each of which carries two port connectors and associated
interface circuitry. (Unused PIM positions are fitted with blanking covers
part number X890-904503.) Any combination of currently available PIMs
may be utilised. These connectors are accessible from the back of the
8310/8325 unit and provide connections to computers, terminals, etc.
Figure 1-2 shows a Super Card rear panel with three PIMs. The PIM
positions are X, Y and Z, and port numbers 0-5, from right to left.
X
Figure 1-2 Super Card Rear Panel
There is an 8-pin diagnostic/manager port at the right of the card.
Real-time status information is presented on the 8310/8325 unit's LCD
display panel or 8210 LED displays.
Rev.0
1.3 PIMs
As described in Section 1.2, each Super Card can carry up to three PIMs,
each of which provides the interface circuitry and physical connectors for
two ports.
A list of available PIM types is given in Table 1-1.
PIM TYPE
INTERFACE
CONNECTOR TYPE
PIM 1
V.24 DTE
2 x 25-way D-type male
PIM 2
X.21/V.36 DTE
2 x 15-way D-type male
PIM 3
V.35 DTE
2 x 15-way D-type male
PIM 4
X.21/V.36 DCE
2 x 15-way D-type female
PIM 5
V.24 DCE
2 x 25-way D-type female
PIM 6
X.21 DTE/DCE
1 x 15-way D-type male
1 x 15-way D-type female
PIM 7
X.21 DTE/V.24 DTE
1 x 15-way D-type male
1 x 25-way D-type female
Table 1-1 PIM Types
Instructions for installing PIMs onto a Super Card are given in Chapter 2.
X870-300451 Issue 2
1-3
Rev.0
X870-300451 Issue 2
1-4
Rev.0
2
Installation
This equipment may only be installed by engineers who are qualified to do
so.
2.1 Installing the Super Card
The rear of the 8210/8310/8325 unit may contain up to four blanking
plates. To install a card:
1. It is not necessary to remove power to install a card (they are designed to
be 'live' inserted).
2. Undo the two screws securing a blanking plate to the chassis and
remove. (Store the plate for future use.)
3. Gently slide in the card, the 96-way connectors facing in, by aligning the
edges with the two plastic guides in the unit. When the card is almost
fully in the unit, give a firm push with your thumbs, so that the
connectors plug firmly into the motherboard in the unit.
4. Secure the card to the chassis using the two fixing screws.
Note that each slot must be occupied by either a card or a blanking plate:
see Statutory Notice in the Basic Unit Installation Guides.
2.1.1 Use of Screened Cables
The use of the specified screened cables is mandatory if Electro-Magnetic
Compatibility (EMC) performance is not to be compromised. Refer to
Statutory Notices.
Not all Cray specified cables that connect to conventional D-type
connectors on this product are screened. Where screened cables are
specified, it is the users responsibility to ensure that any connecting cable
is suitably screened to maintain the EMC performance.
X870-300451 Issue 2
2-1
Rev.0
2.1.2 Pin 1 (Frame Ground) to Signal Ground
Where D-type connectors are provided on the rear panel(s) for V.24 and
X.21 interfaces, Pin 1 (Frame Ground) is connected to Signal ground
through the use of a shorting link (0R resistor). However Pin 1 is not
normally connected in Cray specified cables. If you are using alternative
cables you should seek expert advice, to avoid problems caused by earthloops created through connections to Pin 1.
Where it is not possible to isolate this connection at any other point in the
system, you may remove the relevant resistors. Identify the appropriate
port(s) and determine what type of interface card is fitted:
PIM-1, X890-605611, V.24 DTE, 25-way D-types
PIM-2, X890-605711, X.21 DTE, 15-way D-types
PIM-3, X890-605811, V.35 DTE, 25-way D-types
PIM-4, X890-605911, X.21 DCE, 15-way D-types
R1 & R3
R1 & R3
No Facility
R1 & R3
PIM-5, X890-607311, V.24 DTE, 25-way D-types
PIM-6, X890-607211, X.21 DTE/DCE, 15-way
D-types
PIM-7, X890-607111, V.24 DTE/X.21 DTE,
25/15-way D-types
R1 & R3
X870-300451 Issue 2
2-2
R4 & R6
R2 & R7
Rev.0
2.2 Installing the PIMs on the Super Card
Each Super Card carries up to three PIMs which offer a choice of physical
interface in groups of two ports. The following procedures should be
followed to initially install or change the required PIMs. They assume that
the Super Card is viewed with the circuitry uppermost and its rear panel
metalwork nearmost.
Caution: Ensure that the Super Card and PIM are suitably protected from
static discharge during these procedures. The earthing point on the rear of
the 8210/8310/8325 chassis may be used to attach suitable wrist straps etc.
To install a PIM:
1. a) Remove the jacking posts from the 25-way D-type connectors, or
b) Remove the four fixing screws from the metalwork around the 15way D-type connectors.
2. a) Remove the existing PIM blanking cover, or
b) Gently but firmly lever the existing PIM up so that the plastic pillars
disengage from the PIM PCB, allowing the PIM to be removed from
the socket strips on the Super Card.
3.
Carefully locate the PIM, solder-side up, with its interface connectors
positioned through the holes in the Super Card metalwork.
4.
Engage the header strips of the PIMs with the socket strips on the
Super Card.
5.
Check that all pins are correctly located, and gently but firmly press
the PIM down so that the plastic pillars locate in the smaller holes of
the PIM PCB.
6.
Secure the PIM to the Super Card rear metalwork using either the
jacking posts or fixing screws removed at stage 1.
To remove a PIM:
1.
Carry out operation 1 above.
2.
Carry out operation 2 b) above.
3.
Replace the PIM with a PIM blanking cover (part number X890904503), secured with four fixing screws.
X870-300451 Issue 2
2-3
Rev.0
2.3 Indicators
When the 8210/8310/8325 unit is powered up, a number of indications are
displayed on the front display.
For the 8310/8325:
The green LED below the Enter button indicates that power is on.
The status of each card is given on the LCD display. Each slot is numbered
between 1 and 5 and has three indicators:
f
*
r
Fault
Ready 2
Ready 1
If the letter S appears before the f, * and r indicators, it indicates that the
card installed is a Super Card.
For the Super Card:
The indicators have the following meaning:
Sf
ON:
FLASHING:
OFF:
Power-up tests in progress
Hardware failure
Normal
S*
OFF:
FLASHING:
ON:
Normal
Diagnostic test failure
Diagnostic test failure
Sr
ON:
FLASHING:
OFF:
Link A (port 0) 'up'
Link A (port 0) 'down'
No power to the card
The power-up tests are described in Section 2.6. To interpret diagnostic
failures refer to Table 2-1.
For the 8210:
The green LED (leftmost on the bottom row) indicates that power is on.
The status of each card is reflected by the two rows of LEDs (the bottom row
of LEDs reflects the status of the bottom card and likewise the top row for
the top card):
Red
Yellow
Green
Fault
Ready 2
Ready 1
X870-300451 Issue 2
2-4
Rev.0
2.4 Other Equipment
Check interfaces between the Super Card and all other equipment which is
to be connected (modems, computers, terminals) to ensure compatibility of
data and control lines. Any changes necessary must be made in the
interconnecting cables.
If the Super Card is being installed in an 8325, it is necessary to have at
least one interconnection between the Super Card and an X.25 SAC port
somewhere in the 8325. If there is one such connection it should be to the
Super Card's composite port (port 0).
The type of cable to be used depends on the type of PIM; however, use of
V.24 for this purpose is not recommended as it limits the data rate to 19.2
kbps.
X870-300451 Issue 2
2-5
Rev.0
2.5 Public Digital Services
For connection to UK public digital services network termination units
(NTUs), please refer to Appendix D, which gives the required statutory and
technical information on permissible interfaces, pin-outs and cabling.
For information concerning any statutory requirements for connections to
public digital services in countries other than the UK please contact your
distributor or Cray Communications Customer Services.
X870-300451 Issue 2
2-6
Rev.0
2.6 Power-Up Diagnostics
The power-up diagnostics provide a quick self-test facility for the Super
Card. They are executed following a hardware reset. The power-up
diagnostics test, briefly, all of the major hardware components to give
confidence that the card is working correctly.
The tests are run in the order that they are described below, and if all is
well control is passed to the application software. If any tests fail however,
the LCDs will display an error code for around 20 seconds whereupon the
card will restart and retest. Table 2-1 gives the error code meanings.
LED/LCD DISPLAY
MEANING
RED
f
YELLOW
*
GREEN
r
On
On
On
Off
On
Off
CPU not running
Testing in progress
Flash
Flash
Flash
Flash
Flash
Flash
Flash
Flash
Off
Off
Fast Flash
Off
Fast Flash
On
Flash
Flash
Flash
Off
Flash
On
On
Flash
Fast Flash
On
EPROM checksum failure
BRAM failure
SCC failure
DRAM failure
PTM failure
IUSC failure
XILINX failure
Application CSUM failure
Fast Flash
Fast Flash
Fast Flash
Exception fault
Off
Off
On/Flash
Software OK
Table 2-1 Power-Up Error Codes
Display Test
All three characters f, * and r (Red, Yellow and Green LEDs, on 8210)are
turned ON and OFF alternately in a walking pattern for around 5 seconds.
At the end of the test only the f (Red LED) character will remain ON,
indicating further testing is in progress.
X870-300451 Issue 2
2-7
Rev.0
EPROM Checksum Test
To ensure that the correct EPROMs are fitted, and also that they have been
programmed correctly, an auto-sizing, Add and XOR checksum test is
performed.
Action/Possible faults
Check that the correct EPROMs are fitted, and are in the correct
positions and orientation.
Check for bent pins on all IC legs on the EPROMs.
Application PROM Test
To ensure that the correct application EPROMs are fitted, an ADD and
XOR checksum test is performed. In addition a blank or missing device is
also checked for.
Action/Possible faults
Check that the Application EPROMs are actually fitted.
Check that they are the correct EPROMS, in the correct locations, and
in the correct orientation.
Check that there are no bent pins.
DRAM Test
A simple read/write access test to every location in the DRAM is
performed. The data 55AA is written to each location, read back and
compared. This is then repeated with the data inverted. This process is
repeated for every location. After each location has been tested, its address
is written and a check is performed to ensure that each location is unique.
Action/Possible faults
Faulty DRAM or associated circuitry.
BRAM Test
A simple, non-destructive read/write test of every location in the BRAM is
performed. A test pattern of 55AA is written to each location and then
X870-300451 Issue 2
2-8
Rev.0
read back and compared. This process is repeated with the data inverted.
This is then repeated for each location.
Action/Possible faults
Check that the BRAM shorting link is in the correct position.
Faulty BRAM circuitry.
IUSCC Test
This test checks that each IUSCC may be accessed, and that read and write
cycles operate correctly.
Action/Possible faults
Faulty IUSCC or associated circuitry.
PTM Test
A simple read/write access test. The device is initialised and then the data
55AAAA55 is written to the counter register. It is read back and compared
before the process is repeated with the data inverted.
Action/Possible faults
Faulty PTM or associated circuitry.
SCC Test
A simple read/write access test. The data 55 is written to the counter low
byte register. It is read back and compared before being inverted and the
process repeated.
Action/Possible faults
Faulty SCC or associated circuitry.
Exception Fault
It is possible that faulty hardware may generate invalid exceptions and
terminate proceedings with an exception error display.
X870-300451 Issue 2
2-9
Rev.0
Action/Possible faults
Check that all socketed devices are in the correct location and
orientation, and that there are no bent pins.
X870-300451 Issue 2
2-10
Rev.0
3
Logging On
You can control the Super Card either from a local terminal, or over the
X.25 network.
3.1 Locally
A VT100 compatible terminal is required, which is referred to as the
'manager terminal'. It must have the following attributes:
speed:
data bits:
parity:
stop bits:
1200, 2400, 4800, 9600 or 19k2 bps
8
none
1
1. Connect the manager terminal to the Super Card diagnostic/manager
port with cable X870-401511 (see Appendix C for details).
2. Enter <CR>. A prompt message will be displayed. Type 99L and enter
<CR>. A screen will be displayed.
3. At the password prompt, enter <PF1>. The 8295 top level menu will be
displayed.
X870-300451 Issue 2
3-1
Rev.0
3.2 From X.25
The 'manager' of a Super Card may be accessed remotely from an X.25
triple-X PAD. If the X.3 parameters of the remote PAD are configurable
then the following values are recommended:
Parameter 2:
Parameter 3:
Parameter 4:
0 (echo off)
2 (packet forwarding on CR)
4 (packet forwarding on timeout)
1. Make a call using an X.121 address that matches the remote manager
address. The default subaddress is 99.
2. A welcome screen will be displayed and prompt for a password. Enter
the correct password followed by <PF1>. The top-level menu will be
displayed.
3. If the password is incorrectly entered three times, or it takes longer than
a minute to enter it, then the call will be automatically cleared.
Refer to the relevant user guide for configuration information.
X870-300451 Issue 2
3-2
Rev.0
Appendix A
Specification Summary
Power Supply
Obtained from 8210/8310/8325 unit
Power Consumption
10 watts
Environment
Ambient Temperature
Operating: +5°C to +40°C
Storage:
–25°C to +55°C
Relative Humidity
5% to 95% non-condensing
Altitude
Up to 3000m
X870-300451 Issue 2
A-1
Rev.1
X870-300451 Issue 2
A-2
Rev.0
Appendix B
Interface Specifications
PIM1
Synchronous V24/RS-232-D DTE
Part Number
Interfaces
Controls In
Controls Out
Clocks
Clocking Speeds
X890-605611
2 × 25-way D-type plug (male) DTE
CTS, RI, DCD, DSR
DRS, BO, RTS, DTR
RxC, TxC, XTxC
Up to 19200 baud
Pin
Signal
Description
1
2
3
4
5
6
7
9
15
17
20
22
23
24
25
FG
TxD
RxD
RTS
CTS
DSR
GND
DCD
TxC
RxC
DTR
RI
DRS
XTxC
BO
Frame Ground
Transmit Data
Receive Data
Request To Send
Clear To Send
Data Set Ready
Signal Ground
Data Carrier Detect
Transmitter Clock
Receiver Clock
Data Terminal Ready
Ring Indicator
Data Rate Select
Transmitter Clock, DTE source
Busy Out
X870-300451 Issue 2
B-1
Rev.0
PIM2
Synchronous X.21 DTE
Part Number
Interfaces
Controls In
Controls Out
Clock
Clock Source
Clocking Speeds
X890-605711
2 × 15-way D-type plug (male) DTE
Indication
Control
Signal Element Timing 'S'
External
Up to 256000 baud
PIM2
Synchronous V.36 DTE
Part Number
Interfaces
Controls In
Controls Out
Clocks
Clocking Speeds
X890-605711
2 × 15-way D-type plug (male) DTE
DCD
RTS, DTR*
RxC, TxC
Up to 256000 baud
Pin
X.21 Signal
Description
V.36 Equivalent Signals*
1
2
3
4
5
6
8
9
10
11
12
13
FG
T(A)
C(A)
R(A)
I(A)
S(A)
G
T(B)
C(B)
R(B)
I(B)
S(B)
Frame Ground
Transmit Data+
Control+
Receive Data+
Indication+
Clock+
Signal Ground
Transmit Data –
Control –
Receive Data –
Indication –
Clock –
–
TxD(A)
RTS(A), DTR(A)
RxD(A)
DCD(A)
RxC(A), TxC(A)
SGND
TxD(B)
RTS(B), DTR(B)
RxD(B)
DCD(B)
RxC(B), TxC(B)
* using V.36 DCE cable of Figure C-7.
X870-300451 Issue 2
B-2
Rev.0
PIM3
Synchronous V.35 DTE
Part Number
Interfaces
Controls In
Controls Out
Clocks
Clocking Speeds
X890-605811
2 × 15-way D-type plug (male) DTE
CTS, DCD
RTS
RxC, TxC, XTxC
Up to 256000 baud
Pin
Signal
Description
1
2
3
4
5
6
7
8
9
11
12
13
14
15
DCD
TxD(A)
RTS
RxD(A)
RxC(A)
TxC(A)
XTxC(A)
GND
TxD(B)
RxD(B)
RxC(B)
TxC(B)
XTxC(B)
CTS
Data Carrier Detect
Transmit Data+
Request To Send
Receive Data+
Receive Clock+
Trasmit Clock+
Transmit Clock+ (DTE source)
Signal Ground
Transmit Data –
Receive Data –
Receive Clock –
Transmit Clock –
Transmit Clock – (DTE source)
Clear To Send
X870-300451 Issue 2
B-3
Rev.0
PIM4
Synchronous X.21 DCE
Part Number
Interfaces
Controls In
Controls Out
Clock
Clock Source
Clocking Speeds
X890-605911
2 × 15-way D-type plug (female) DCE
Control
Indication
Signal Element Timing 'S'
Internal
2400, 4800, 7200, 9600, 19200, 48000,
64000, 128000 and 256000 baud
PIM4
Synchronous V.36 DCE
Part Number
Interfaces
Controls In
Controls Out
Clocks
Clocking Speeds
X890-605911
2 × 15-way D-type plug (female) DCE
RTS
DCD
RxC, TxC
2400, 4800, 7200, 9600, 19200, 48000,
64000, 128000 and 256000 baud
Pin
Signal
Description
V.36 Equivalent Signals*
1
2
3
4
5
6
8
9
10
11
12
13
FG
T(A)
C(A)
R(A)
I(A)
S(A)
G
T(B)
C(B)
R(B)
I(B)
S(B)
Frame Ground
Transmit Data+
Control+
Receive Data+
Indication+
Clock+
Signal Ground
Transmit Data –
Control –
Receive Data –
Indication –
Clock –
–
TxD(A)
RTS(A)
RxD(A)
DCD(A)
RxC(A), TxC(A)
SGND
TxD(B)
RTS(B)
RxD(B)
DCD(B)
RxC(B), TxC(B)
* using V.36 DTE cable of Figure C-8.
X870-300451 Issue 2
B-4
Rev.0
PIM5
Synchronous V.24/RS-232-D DCE
Part Number
Interfaces
Controls Out
Controls In
Clocks
Clocking Speeds
X890-607311
2 × 25-way D-type plug (female) DCE
CTS, RI, DCD, DSR
DRS, BO, RTS, DTR
RxC, TxC, XTxC
Up to 19200 baud
Pin
Signal
Description
1
2
3
4
5
6
7
9
15
17
20
22
23
24
25
FG
TxD
RxD
RTS
CTS
DSR
GND
DCD
TxC
RxC
DTR
RI
DRS
XTxC
BO
Frame Ground
Transmit Data
Receive Data
Request To Send
Clear To Send
Data Set Ready
Signal Ground
Data Carrier Detect
Transmitter Clock
Receiver Clock
Data Terminal Ready
Ring Indicator
Data Rate Select
Transmitter Clock, DTE source
Busy Out
X870-300451 Issue 2
B-5
Rev.0
PIM6 port a
Synchronous X.21 DTE
Part Number
Interface
Controls In
Controls Out
Clock
Clock Source
Clocking Speeds
X890-607211
15-way D-type plug (male) DTE
Indication
Control
Signal Element Timing 'S'
External
Up to 256000 baud
Pin
X.21 Signal
Description
1
2
3
4
5
6
8
9
10
11
12
13
FG
T(A)
C(A)
R(A)
I(A)
S(A)
G
T(B)
C(B)
R(B)
I(B)
S(B)
Frame Ground
Transmit Data+
Control+
Receive Data+
Indication+
Clock+
Signal Ground
Transmit Data –
Control –
Receive Data –
Indication –
Clock –
X870-300451 Issue 2
B-6
Rev.0
PIM6 port b
Synchronous X.21 DCE
Part Number
Interface
Controls In
Controls Out
Clock
Clock Source
Clocking Speeds
X890-607211
15-way D-type plug (female) DCE
Control
Indication
Signal Element Timing 'S'
Internal
2400, 4800, 7200, 9600, 19200, 48000,
64000, 128000 and 256000 baud
Pin
Signal
Description
1
2
3
4
5
6
8
9
10
11
12
13
FG
T(A)
C(A)
R(A)
I(A)
S(A)
G
T(B)
C(B)
R(B)
I(B)
S(B)
Frame Ground
Transmit Data+
Control+
Receive Data+
Indication+
Clock+
Signal Ground
Transmit Data –
Control –
Receive Data –
Indication –
Clock –
X870-300451 Issue 2
B-7
Rev.0
PIM7 port a
Synchronous X.21 DTE
Part Number
Interface
Controls In
Controls Out
Clock
Clock Source
Clocking Speeds
X890-607111
15-way D-type plug (male) DTE
Indication
Control
Signal Element Timing 'S'
External, Internal
Internal: 2400, 4800, 7200, 9600, 19200,
48000, 64000, 128000 and 256000
External: up to 256000
Pin
X.21 Signal
Description
1
2
3
4
5
7
6
8
9
10
11
12
13
14
FG
T(A)
C(A)
R(A)
I(A)
CLK(A)
S(A)
G
T(B)
C(B)
R(B)
I(B)
S(B)
CLK(B)
Frame Ground
Transmit Data+
Control+
Receive Data+
Indication+
Clock Out+
Clock+
Signal Ground
Transmit Data –
Control –
Receive Data –
Indication –
Clock –
ClockOut –
X870-300451 Issue 2
B-8
Rev.0
PIM7 port b
Synchronous V.24/RS-232-D DTE
Part Number
Interface
Controls In
Controls Out
Clocks
Clocking Speeds
X890-607111
25-way D-type plug (male) DTE
CTS, RI, DCD, DSR
DRS, BO, RTS, DTR
RxC, TxC, XTxC
Up to 19200 baud
Pin
Signal
Description
1
2
3
4
5
6
7
9
15
17
20
22
23
24
25
FG
TxD
RxD
RTS
CTS
DSR
GND
DCD
TxC
RxC
DTR
RI
DRS
XTxC
BO
Frame Ground
Transmit Data
Receive Data
Request To Send
Clear To Send
Data Set Ready
Signal Ground
Data Carrier Detect
Transmitter Clock
Receiver Clock
Data Terminal Ready
Ring Indicator
Data Rate Select
Transmitter Clock, DTE source
Busy Out
X870-300451 Issue 2
B-9
Rev.1
X870-300451 Issue 2
B-10
Rev.0
Appendix C
Cables
This appendix gives the part number and pinout for all available standard
cables.
PIM
TYPE
PIM
REMOTE
INTERFACE INTERFACE LENGTH
TYPE
TYPE
PART
NUMBER
PINOUT
DIAGRAM
PIM1/7
DTE
DCE
3M
X890-403111
C-1
PIM1/7
DTE
DCE
5M
X890-408611
C-1
PIM1/7
PIM1/7
DTE
DTE
DTE
DTE
3M
5M
X890-403011
X890-408711
C-2
C-2
Refer to the Series 8000 Xpress PSE User Guide for V.54 cable applications.
Table C-1 V.24 Cables
PIM
TYPE
PIM
REMOTE
INTERFACE INTERFACE LENGTH
TYPE
TYPE
PIM2/6/7
PIM2/6/7
PIM2/6/7
PIM2/6/7
PART
NUMBER
PINOUT
DIAGRAM
DTE
DCE
3M
X890-401011
C-4
DTE
DCE
DCE
DCE
DTE
DTE
5M
3M
5M
X890-408811
X890-401011
X890-408811
C-4
C-4
C-4
Note that X.21 DTE and DCE cables are identical. To change a port from a DCE
connection to a DTE connection, replace the PIM2 with a PIM4, or use an alternative
port on PIM6.
Table C-2 X.21 Cables
X870-300451 Issue 2
C-1
Rev.0
PIM
TYPE
PIM
REMOTE
INTERFACE INTERFACE LENGTH
TYPE
TYPE
PART
NUMBER
PINOUT
DIAGRAM
PIM3
DTE
DCE
3M
X890-403411
C-5
PIM3
PIM3
DTE
DTE
DCE
DTE
5M
3M
X890-409411
X890-403311
C-5
C-6
PIM3
DTE
DTE
5M
X890-409511
C-6
Table C-3 V.35 Cables
PIM
TYPE
PIM
REMOTE
INTERFACE INTERFACE LENGTH
TYPE
TYPE
PART
NUMBER
PINOUT
DIAGRAM
PIM2/6/7
PIM2/6/7
DTE
DTE
DCE
DCE
3M
5M
X890-406611
X890-409011
C-7
C-7
PIM2/6/7
PIM2/6/7
DCE
DCE
DTE
DTE
3M
5M
X890-406711
X890-409111
C-8
C-8
Table C-4 V.36 Cables
PIM
TYPE
PIM
REMOTE
INTERFACE INTERFACE LENGTH
TYPE
TYPE
PART
NUMBER
PINOUT
DIAGRAM
PIM1/7
PIM2/6/7
V.24 DTE
X.21 DTE
V.24 NTU
X.21 NTU
5M
5M
X818-401211
X890-408411
D-1
D-2
PIM3
V.35 DTE
V.35 NTU
5M
X818-401311
D-3
Refer to Appendix D for cable pinout diagrams.
Table C-5 UK PSS/KiloStream NTU Cables
INTERFACE
TYPE
8-way DIN
REMOTE
INTERFACE
TYPE
LENGTH
PART
NUMBER
PINOUT
DIAGRAM
DTE
0.7M
X870-401511
C-9
Table C-6 Diagnostic/Manager Port
X870-300451 Issue 2
C-2
Rev.0
TxD
RxD
RTS
CTS
DSR
SG
DCD
PIM
TxC
RxC
DTR
RI
XTxC
BO
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
TxD
RxD
RTS
CTS
DSR
SG
DCD
TxC
RxC
DTR
RI
XTxC
BO
25-Way D-Type
Plug
25-Way D-Type
Socket
Figure C-1 V.24 DCE Cables X890-403111 and X890-408611
X870-300451 Issue 2
C-3
Rev.0
TxD
RxD
RTS
CTS
DSR
SG
DCD
PIM
TxC
RxC
DTR
RI
XTxC
BO
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
•
•
•
•
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
TxD
RxD
RTS
CTS
DSR
SG
DCD
TxC
RxC
DTR
RI
XTxC
BO
25-Way D-Type
Socket
25-Way D-Type
Socket
Figure C-2 V.24 DTE Cables X890-403011 and X890-408711
X870-300451 Issue 2
C-4
Rev.0
TxD
RxD
RTS
CTS
DSR
SG
DCD
PIM
TxC
RxC
DTR
RI
DRS
XTxC
BO
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
TxD
RxD
RTS
CTS
DSR
SG
DCD
TxC
RxC
DTR
XTxC
BO
25-Way D-Type
Plug
25-Way D-Type
Socket
Figure C-3 V.54 DCE Cable X890-406311
X870-300451 Issue 2
C-5
Rev.0
15-Way D-Type
Socket
X870-300451 Issue 2
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PIM
3
C(B)
10
S(A)
6
S(B)
13
T(A)
2
T(B)
9
R(A)
4
R(B)
11
I(A)
5
I(B)
12
SGND
8
3
10
6
13
2
9
4
11
5
12
8
15-Way D-Type
Plug
C-6
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C(A)
C(A)
C(B)
S(A)
S(B)
T(A)
T(B)
R(A)
R(B)
I(A)
I(B)
SGND
Figure C-4 X.21 Cables X890-401011 and X890-408811
Rev.0
TxCE(B) 14
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PIM
X870-300451 Issue 2
6
TxC(B)
13
RxC(A)
5
RxC(B)
12
RXD(A)
4
RXD(B)
11
TXD(A)
2
TXD(B)
9
SGND
8
RTS
3
CTS
15
DCD
1
TxCE(A)
7
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TxC(A)
Y
15-Way D-Type
Socket
C-7
TxC(A)
AA TxC(B)
V
RxC(A)
X
RxC(B)
R
RXD(A)
T
RXD(B)
P
TXD(A)
S
TXD(B)
B
SGND
C
RTS
H
DTR
D
CTS
F
DCD
U
TxCE(A)
W
TxCE(B)
MRAC
Plug
Figure C-5 V.35 DCE Cables X890-403411 and X890-409411
Rev.0
TxCE(A)
TxCE(B) 14
X870-300451 Issue 2
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PIM
5
CLK(B)
12
6
13
RxD(A)
4
RxD(B)
11
TxD(A)
2
TxD(B)
9
SGND
8
RTS
3
CTS
15
DCD
1
7
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CLK(A)
15-Way D-Type
Socket
C-8
U
TxCE(A)
W
TxCE(B)
P
TxD(A)
S
TxD(B)
R
RxD(A)
T
RxD(B)
B
SGND
F
DCD
E
DSR
H
DTR
C
RTS
D
CTS
V
RxC(A)
Y
TxC(A)
X
RxC(B)
AA TxC(B)
MRAC
Socket
Figure C-6 V.35 DTE Cables X890-403311 and X890-409511
Rev.0
RxD(A)
DCD(A)
DCD(B) 12
X870-300451 Issue 2
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PIM
2
TxD(B)
9
RTS(A)
3
RTS(B)
10
4
RXD(B) 11
5
TxC(A)
6
TxC(B)
13
RxC(A)
7
RxC(B)
14
SGND
8
4
22 TxD(B)
7
25 RTS(B)
12 DTR(A)
30 DTR(B)
6
24 RxD(B)
13 DCD(A)
31 DCD(B)
5
23 TxC(B)
8
26 RxC(B)
19 SGND
37
15-Way D-Type
Socket
C-9
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aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
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TxD(A)
TxD(A)
RTS(A)
RxD(A)
TxC(A)
RxC(A)
37-Way D-Type
Plug
Figure C-7 V.36 DCE Cables X890-406611 and X890-409011
Rev.0
DCD(B) 12
SGND
X870-300451 Issue 2
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PIM
2
TxD(B)
9
RTS(A)
3
RTS(B)
10
RxD(A)
4
RxD(B)
11
DCD(A)
5
TxC(A)
6
TxC(B)
13
8
4
22 TxD(B)
7
25 RTS(B)
6
24 RxD(B)
13 DCD(A)
31 DCD(B)
5
23 TxC(B)
8
26 RxC(B)
19 SGND
37
15-Way D-Type
Plug
C-10
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aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
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TxD(A)
TxD(A)
RTS(A)
RxD(A)
TxC(A)
RxC(A)
37-Way D-Type
Socket
Figure C-8 V.36 DTE Cables X890-406711 and X890-409111
Rev.0
8-Way DIN-Type
Plug
X870-300451 Issue 2
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PROT GND
TxD
RxD
Relay +
Relay +
Relay –
SGND
Relay –
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aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
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1
2
3
4
5
6
7
8
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
C-11
PROT GND
TxD
RxD
SGND
Relay +
Relay –
25-Way D-Type
Socket
Figure C-9 V.24 to DIN 'Alarm & Diagnostic' Cable X870-401511
Rev.0
X870-300451 Issue 2
C-12
Rev.0
Appendix D
UK PSS and KiloStream
D.1 General
Ports labelled ''SAFETY WARNING See Instructions For Use'' do not
provide isolation sufficient to satisfy the requirements of the relevant parts
of BS 6301. Apparatus connected to these ports must itself either be
approved to the relevant parts of BS 6301 or have previously been
evaluated against British Telecom (Post Office) Technical Guide 2 or 26
and been granted permission for attachment. Other usage will
invalidate any approval given to this apparatus.
In order to meet the safety requirements of our PSS/KiloStream approval it
is important to make sure that the equipment is correctly installed and
maintained.
When delivered from the factory for use in the UK the physical interfaces
of ports which can be connected to PSS and KiloStream are given in Table
D-1. Note that PIM4 and PIM5 ports are prohibited from
connection.
PIM
TYPE
LINE
SPEED
CONNECTOR
TYPE
CABLE
PART
NUMBER
V.24
1, 7
19200 bps
X818-401211
X.21
2, 6, 7
64 kbps
V.35
3
64 kbps
V.36
2, 6, 7
64 kbps
2 × 25-way
D-type male (DTE)
2 × 15-way
D-type male (DTE)
2 × 15-way
D-type male (DTE)
15-way to 37-way
D-type male (DTE)
INTERFACE
TYPE
X890-408411
X818-401311
X890-406611
Table D-1 Permissible UK PSS/KiloStream Connections
Connection to PSS and KiloStream NTUs must be made with the cables
specified in Table D-1, and they must be installed by a competent engineer.
X870-300451 Issue 2
D-1
Rev.1
If any connections on a Super Card are connected to PSS or KiloStream
then all other connections on that Super Card must be to apparatus that
has either been approved to the relevant parts of BS 6301 or has previously
been evaluated against British Telecom (Post Office) Technical Guide 2 or
26 and been granted permission for attachment. Other usage will
invalidate any approval given to this apparatus. If there is any doubt
as to the suitability of the equipment, then the advice of a competent
engineer should be sought.
X870-300451 Issue 2
D-2
Rev.0
D.2 NET1 Considerations
The X.21 interfaces on Super Card do not provide 'DTE Uncontrolled NOT
READY'.
V.24, X.21 and V.35 interfaces are approved for direct connection to digital
networks using the cables specified in Table D-1.
The V.24 interfaces are for connection to PTO Service Category 1.
The V.35 interfaces are for connection to PTO Service Category 2.
The V.24 interface can only operate up to 9k6 bps for PSS connection, but
up to 19k2 bps for KiloStream connection.
X870-300451 Issue 2
D-3
Rev.1
D.3 NTU Pin Assignments
Tables D-2 to D-4 show the V.24, X.21 and V.35 interface pin assignments
presented to a PSS/KiloStream NTU at the NTU end of the cables specified
in Table D-1. For the pinouts at the PIM end of the cables refer to
Appendix B.
PIN NO.
2
3
4
5
6
7
8
15
17
20
DIRECTION
Output
Input
Output
Input
Input
–
Input
Input
Input
Output
ASSIGNMENT
Transmit Data (TxD)
Receive Data (RxD)
Request To Send (RTS)
Clear To Send (CTS)
Data Set Ready (DSR)
Signal Ground (SGND)
Data Carrier Detect (DCD)
Transmit Clock (TxC)
Receive Clock (RxC)
Data Terminal Ready (DTR)
Table D-2 V.24 Interface Pin Assignments
(At NTU End of Cable X818-401211)
PIN NO.
3
10
6
13
2
9
4
11
5
12
8
DIRECTION
Output
Output
Input
Input
Output
Output
Input
Input
Input
Input
–
ASSIGNMENT
Control (CA)
Control (CB)
Signal Element Timing (SA)
Signal Element TIming (SB)
Transmit Data (TA)
Transmit Data (TB)
Receive Data (RA)
Receive Data (RB)
Indication (IA)
Indication (IB)
Signal Ground (G)
Table D-3 X.21 Interface Pin Assignments
(At NTU End of Cable X890-408411)
X870-300451 Issue 2
D-4
Rev.0
PIN NO.
DIRECTION
ASSIGNMENT
Input
Input
Input
Input
Input
Input
Output
Output
Y
AA
V
X
R
T
P
S
B
C/H
D
F
Transmit Clock (TxCA)
Transmit Clock (TxCB)
Receive Clock (RxCA)
Receive Clock (RxCB)
Receive Data (RxDA)
Receive Data (RxDB)
Transmit Data (TxDA)
Transmit Data (TxDB)
Signal Ground
Request To Send (RTS)
Ready for Sending (RFS)
Data Carrier Detect (DCD)
–
Output
Input
Input
Table D-4 V.35 Interface Pin Assignments
(At NTU End of Cable X818-401311)
PIN NO.
4
22
7
25
12
30
6
24
13
31
5
23
8
26
19
37
DIRECTION
Output
Output
Output
Output
Output
Output
Input
Input
Input
Input
Input
Input
Input
Input
–
–
ASSIGNMENT
TxD (A)
TxD (B)
RTS (A)
RTS (B)
DTR (A)
DTR (B)
RxD (A)
RxD (B)
DCD (A)
DCD (B)
TxC (A)
TxC (B)
RxC (A)
RxC (B)
SGND
SGND
Table D-5 V.36 Interface Pin Assignments
(At NTU End of Cable X890-406611)
X870-300451 Issue 2
D-5
Rev.1
D.4 Cable Pinouts
Figures D-1 to D-3 give the pinouts of the three PSS/KiloStream cables
listed in Table D-1.
TxD
RxD
RTS
CTS
DSR
SGND
DCD
PIM
TxC
RxC
DTR
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
TxD
RxD
RTS
CTS
DSR
SGND
DCD
NTU
TxC
RxC
DTR
25-Way D-Type
M3 Plug
25-Way D-Type
Socket (tooled)
Figure D-1 V.24 PSS/KiloStream Cable Part Number X818-401211
X870-300451 Issue 2
D-6
Rev.0
C(B)
S(A)
S(B)
T(A)
PIM
T(B)
R(A)
R(B)
I(A)
I(B)
SGND
15-Way D-Type
Socket
X870-300451 Issue 2
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C(A)
10
6
13
2
9
4
11
5
12
8
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3
D-7
3
C(A)
10
C(B)
6
S(A)
13
S(B)
2
T(A)
9
T(B)
4
R(A)
11
R(B)
5
I(A)
12
I(B)
8
NTU
SGND
15-Way D-Type
Plug
Figure D-2 X.21 PSS/KiloStream Cable Part Number X890-408411
Rev.0
15-Way D-Type
Socket (tooled)
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PIM
X870-300451 Issue 2
6
TxC(B)
13
RxC(A)
5
RxC(B)
12
RxD(A)
4
RxD(B)
11
TxD(A)
2
TxD(B)
9
SGND
8
RTS
3
CTS
15
DCD
1
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TxC(A)
Y
D-8
TxC(A)
AA TxC(B)
V
RxC(A)
X
RxC(B)
R
RxD(A)
T
RxD(B)
P
TxD(A)
S
TxD(B)
B
SGND
C
RTS
H
DTR
D
RFS
F
DCD
NTU
MRAC
Plug
Figure D-3 V.35 PSS/KiloStream Cable Part Number X818-401311
Rev.0
RxD(A)
DCD(A)
DCD(B) 12
X870-300451 Issue 2
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PIM
2
TxD(B)
9
RTS(A)
3
RTS(B)
10
4
RXD(B) 11
5
TxC(A)
6
TxC(B)
13
RxC(A)
7
RxC(B)
14
SGND
8
4
22 TxD(B)
7
25 RTS(B)
12 DTR(A)
30 DTR(B)
6
24 RxD(B)
13 DCD(A)
31 DCD(B)
5
23 TxC(B)
8
26 RxC(B)
19 SGND
37
15-Way D-Type
Socket
D-9
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aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa
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TxD(A)
TxD(A)
RTS(A)
RxD(A)
TxC(A)
RxC(A)
37-Way D-Type
Plug
Figure D-4 V.36 PSS/KiloStream Cable Part Number X890-406611
Rev.0
X870-300451 Issue 2
D-10
Rev.0