Dxc5k en in a22 Installation
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Installation DXC5K/EN IN/A22DXC 5000
INSTALLATION
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DXC 5000 Page 1/34
CONTENTS
1. SITE SELECTION 52. MECHANICAL INSTALLATION 63. ELECTRICAL INSTALLATION 73.1 Front Views 73.2 Connector pin definition and connection 124. CONFIGURATION SETTING 304.1 Software configuration setting 304.2 Replacement of Plug-in Card 30
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MODIFICATIONS PAGE
Version DATE COMMENTS
A 01/10/2004 ORIGINAL ISSUE
B 01/03/2005 Add Mini Quad E1, 64k G.703 and G.SHDSL boards
A22 15/05/07 Update
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Page 4/34 DXC 5000
CAUTION: ONLY QUALIFIED SERVICE PERSONNEL SHALL INSTALL AND
MAINTAIN THE SYSTEM.THIS EQUIPMENT MUST BE CONNECTED TO AN EARTH SOCKET-OUTLET, WHICH HAS A PERMANENT CONNECTION TO PROTECTIVEEARTH WITH A CROSS-SECTIONAL AREA OF NOT LESS THAN2.5 MM
2.
ENSURE PROTECTIVE EARTHING CONNECTED BEFORE INSTALL/UNINSTALL TELEPHONE WIRES.NEVER INSTALL TELEPHONE WIRING DURING A LIGHTNING STORM.NEVER INSTALL TELEPHONE JACKS IN WET LOCATIONS UNLESS THEJACK IS SPECIFICALLY DESIGNED FOR WET LOCATIONS.NEVER TOUCH UNINSULATED TELEPHONE WIRES OR TERMINALSUNLESS THE TELEPHONE LINE HAS BEEN DISCONNECTED AT THENETWORK INTERFACE.USE CAUTION WHEN INSTALLING OR MODIFYING TELEPHONE LINES.
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1. SITE SELECTION
The following list indicates a site selection guideline. User need to follow this guideline toselect a proper installation site.
Location of the Rack should be part of the central office equipment layout design.
Considerations should be given to entrance cable routing and -48 Vdc power.
The installation site should have -48 Vdc power. An optional AC/DC power convertercan be used. Use Only with Class 2 power source, -48 Vdc, 100 watts.
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3. ELECTRICAL INSTALLATION
3.1 Front Views
Central office -48 Vdc power is wired to terminal blocks in the front of the DXC 5000, shownin Figure 2-1. Central office alarm system is wired to the Alarm Relay terminal blocks. For
connection to the CONSOLE/SLIP (button down/ button up) connector for maintenance andadministration, a CONSOLE/SLIP port with DB9 connector is located on the front panel, seealso Figure 2-1. The RJ45 connector is for an Ethernet connection. For direct modem or VT-100 terminal connection, use a null modem cable to connect the CONSOLE/SLIP port on thefront panel.
When DXC 5000 is plugged with two CPU cards, both of these two CPU cards can beprimary (master) or redundant (slave) which only depends on which CPU card completesboot up first after powering on the main unit. User can tell which CPU card is primary orredundant from the status of CPU card's ACTIVE led. If ACTIVE led is flashing green, theCPU card is primary. When one CPU fails, the other becomes master and remains mastereven when the failed is replaced.
D0328ENb
CONSOLESLIP
CONSOLE/SLIP
9600,N,8,1
ETHERNET
LCD
INTERFACE
ALARM
ACTIVE
POWER
EXT.CLOCK
TIP
RING
NC
NO
COM
NC
NO
COM
MINORALARM
MAJORALARM
SYNC/TEST
LOF
BPV
RAI/AIS
ACO
A B C D
CPU
1 111098765432 12CPU-1 CPU-2POWER
E1/T1E1/T1
E1/T1
C
PU
1
E1/T1
C
PU
2
Main Access DCS-Mux Shelf - Front Side
Main Access DCS-Mux Shelf - Rear Side
E1/T1(C)E1/T1(D)
E1/T1(A) E1/T1(B)
FAN TRAY FAN TRAY
GND-V+V ALIMDC 48V
-V+V ALIMDC 48V
FIGURE 1: PANEL VIEWS - MAIN SHELF AND CPU
When these plug-in modules, two CPU cards, four mini Quad E1 cards, ten G.shdsl cards,and one 100W UM5813 power module, are plugged into a DXC 5000, one more 100WUM5813 power module should be added to plug into the DXC 5000.
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Page 8/34 DXC 5000
FIGURE 2: PANEL VIEWS - POWER MODULE AND PLUG-IN CARDS (FOR 1/2 SLOT)
The re-sync time for repluging any voice card into DXC 5000 shelf is about 1 minute.
RIMG
(L1,L2) (L1,GND)
600900
L8
L7
L6
L5
L4
L3
L2
L1
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
L12
L11
L10
L9
MAG
METERING PLS
12K 16K
600900
L8
L7
L6
L5
L4
L3
L2
L1
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
L12
L11
L10
L9
FXS
METERING PLS
12K 16K
600900
L8
L7
L6
L5
L4
L3
L2
L1
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
L12
L11
L10
L9
FXO
E&M
TEST
SIDEA B
WIRE2 4
OHM600 900
TYPE1 2
3 4
5 SET BYDIP
L8
L7
L6
L5
L4
L3
L2
L1
U6
U5
U4
U3
U2
U1
U6
U5
U4
U3
U2
U1
U12
U11
U10
U9
U8
U7
6-channel
DTU
10-channel
DTU
12-channel
MAG
12-channel
FXS
12-channel
FXO
8-channel
2W/4W E&M
MODE
PORT 4
QUAD
T1
PORT 3
SYNC/ALM
PORT 2
PORT 1
SYNC/ALM
Quad E1
PORT 4
QUAD
E1
PORT 3
SYNC/ALM
PORT 2
PORT 1
SYNC/ALM
Quad E1
D0330ENb
FIGURE 3: PANEL VIEWS - PLUG-IN CARDS (FOR SINGLE SLOT)
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24-channel
MAG
METERING PLS
16K
600900
METERING PLS
12K 16K
600900
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
FXS
12K
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
FXS
RING
L
EF
T
R
I
G
HT
12
12
TIP
1
1
24-channel
FXS
24-channel
FXO
METERING PLS
16K
600900
METERING PLS
12K 16K
600900
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
FXO
12K
A-law
U-law
3 9
2 8
1 7
6 12
5 11
4 10
FXO
RING TIP
L
EF
T
R
I
G
HT
1
112
12
L1,GND
MAGMAG
RING TIP
L
EF
T
RI
G
H
T
1
112
12
L1,L2L1,L2
3 9
2 8
1 7
6 12
5 11
4 10
A-lawU-law
3 9
2 8
1 7
6 12
5 11
4 10
A-lawU-law
L1,GND
D0522ENa
FIGURE 4: PANEL VIEWS - PLUG-IN CARDS (FOR DUAL SLOT)
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Page 10/34 DXC 5000
FIGURE 5: PANEL VIEWS - PLUG-IN CARDS (FOR SINGLE SLOT)
3
2
1
H2
H3
H1
V.35-5
5 6
V.35-3
3 4
V.35-1
1 2
V.35-6
V.35-4
V.35-2
A
RS232-5
5
RS232-3
3 4
RS232-1
1 2
RS232-4
RS232-2
RS232-X.50MUX
5-channel
RS232 with X.50 subrate
6-channel
V.35
3-channel
MDSL
D0524ENa
FIGURE 6: PANEL VIEWS - PLUG-IN CARDS (FOR DUAL SLOT)
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5 6
3 4
1 2
V.36
/RS449/EIA530-6
A
6-channelV.36/RS449/EIA530
V.36/RS449/EIA530-6
V.3
6/RS449/EIA530-6
V.36/RS449/EIA530-6
V.36/RS449/EIA530-6
V.36/RS449/EIA530-6
X.21-6
5 6
X.21-6
3 4
X.21-6
1 2
X.21-6
X.21-6
X.21-6
A
6-channelX.21
D0525ENa
FIGURE 7: PANEL VIEWS - PLUG-IN CARDS (FOR DUAL SLOT)
D0332ENa
Y-BOX
TM
B-TXLINE-TXA-TX
B-RXLINE-RXA-RX
4 4B-TXLINE-TXA-TX
B-RXLINE-RXA-RX
3 3B-TXLINE-TXA-TX
B-RXLINE-RXA-RX
2 2B-TXLINE-TXA-TX
B-RXLINE-RXA-RX
1 1
FIGURE 8: PANEL VIEWS Y-BOX BNC (75 OHM)
D0333ENa
A
A
B
B
LINE 9
LINE 1
A
A
B
B
LINE 10
LINE 2
A
A
B
B
LINE 11
LINE 3
A
A
B
B
LINE 12
LINE 4
A
A
B
B
LINE 13
LINE 5
A
A
B
B
LINE 14
LINE 6
A
A
B
B
LINE 15
LINE 7
A
A
B
B
LINE 16
LINE 8
Y-BOX
TM
FIGURE 9: PANEL VIEWS Y-BOX RJ48C (120 OHM)
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Page 12/34 DXC 5000
3.2 Connector pin definition and connection
Pin Number Signal Description
1 -V -DC 48 Volts
2 +V +DC Return
3 Chassis Ground
TABLE 1: POWER CONNECTOR FOR MAIN UNIT
Pin Number Signal Description
1 NC Fuse Relay - Normally Close
2 C Fuse Relay - Common
3 NO Fuse Relay - Normally Open
4 NC Alarm Relay Normally Close
5 C Alarm Relay Common
6 NO Alarm Relay Normally Open
TABLE 2: ALARM RELAY CONNECTOR
The console port is configured as a DCE device with a DB-9 female connector. Pindefinitions and pin connections are listed in Table 2-4 below.
Pin Number Signal Source
1 Data Carrier Detect To DTE
2 Receive Data To DTE
3 Transmit Data From DTE
4 Unassigned
5 Signal Ground
6 Data Set Ready To DTE
7 Unassigned
8 Clear to send To DTE
9 Unassigned
TABLE 3: CONSOLE PORT
SLIP port can be connected via RS232 interface. Pin definition is listed in Table 2-5.
Pin Number Signal Source
1 Data Carrier Detect From DCE
2 Receive Data From DCE
3 Transmit Data To DTE
4 Data Terminal Ready To DTE
5 Signal Ground
TABLE 4: SLIP PORT (9 PIN)
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Ethernet port can be connected via Ethernet 10-Base-T interface. Pin definition is listed inTable 2-6.
Pin Number Signal Description
1 TPTX+ TP Driver Output
2 TPTX-
3 TPRX+ TP Receive Input
6 TPRX-
TABLE 5: ETHERNET PORT
Pin Number Signal
1 R TIP
2 R RING
4 T TIP
5 T RING
7 Chassis Ground/ Unassigned
8 Chassis Ground/ Unassigned
TABLE 6: E1 BNC/ RJ 45 AND T1 PORT
Normally the choice for the E1 connector, balanced 120 ohm or unbalanced BNC 75 ohm, isinstalled at the factory according to the customer order. Users can change this choice byopening the case and changing the jumper pins as indicated in the Table 2-8.
D0334ENa
120 ohm E1 Card
JUM5 JUM6
JUM1
JUM2
JUM4
JUM3
JUM5 JUM6
JUM1
JUM2
JUM4
JUM3
75 ohmJ
UM8
JUM8
JUM9 JUM9JUM10 JUM10
OPEN, OFF CLOSE, ON
FIGURE 10: JUMPER LOCATIONS FOR E1 CARD
NOTE 1: For 75 ohm E1 card, jumper 9 can be OPEN or ON. If the jumper 9 isOPEN, BNC connector is set to Unassigned. If the jumper 9 is ON,BNC connector is set to Chassis Ground.
NOTE 2 : For 120 ohm E1 card, jumper 9 can be OPEN or ON. If the jumper 9 isOPEN, port 7 and port 8 of BNC connector is set to Unassigned. If thejumper 9 is ON, port 7 and port 8 of BNC connector is set to ChassisGround.
NOTE 3 : BNC is open if jumper 10 is opened, BNC is grounded if jumper 10 isclosed.
NOTE 4: When BNC connector is selected, the user has the option ofgrounding the received BNC shield by installing a jumper clip on thejumper location. This is usually not necessary, but if you have anynoise on your device it can often be filtered out by using thisgrounding process.
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Page 14/34 DXC 5000
The two RJ45 jacks are wired as follows:
Pin Number Signal Signal Direction
1 Transmit Data + Output from DXC 5000
2 Transmit Data - Output from DXC 5000
3 Receive Data + Input to DXC 5000
4 No Connection
5 No Connection
6 Receive Data - Input to DXC 5000
7 No Connection
8 No Connection
TABLE 7: RJ-45 FOR 10M AND 10/100M PIN ASSIGNMENT
For each of the U-interface ports, U-PORTs, connection to the line is by RJ48C connector.
The pin definition is listed in Table 2-9.
Pin Number Signal
4 TIP
5 RING
TABLE 8: U- PORT U-INTERFACE RJ48C TERMINALS
Pin Number Signal Signal Description
1 Unassigned
2 Unassigned
3 Unassigned
4 Loop 1 Tip Tip
5 Loop1 Ring Ring
6 Unassigned
7 Chassis Ground/ Unassigned
8 Chassis Ground/ Unassigned
TABLE 9: LINE HDSL CONNECTOR
Pin Number Signal Signal Description1 Pair 1-A
2 Pair 1-B
3 Pair 2-A
4 Pair 2-B
5 Pair 3-A
6 Pair 3-B
7 Pair 4-A
8 Pair 4-B
TABLE 10: RJ45 PIN ASSIGNMENT - N1 & N2 OF DRY CONTACT I/O CARD
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Pin Number Signal Signal Description
1 U-NO U1 to U8 Normal Open
2 U-COM U1 to U8 GND
3 U-NC U1 to U8 Normal Close
TABLE 11: SCREW TYPE CONNECTOR PIN ASSIGNMENT - DRY CONTACT I/O CARD
Pin Number Pin Color Pin Name
8 Brown SG
7 White/ Brown E
6 Green TIP1
5 White/ Blue TIP
4 Blue RING
3 White/ Green RING1
2 Orange M
1 White/ Orange SB
TABLE 12: RJ45 PIN ASSIGNMENT - E&M CARD
D0335ENa
Amber LED
Green LED
PIN 8
PIN 7
PIN 6
PIN 5
PIN 4
PIN 3
PIN 2PIN 1
FIGURE 11: RJ45 CONNECTOR - E&M CARD
D0336ENa
Slide Switch
for A SIDE
FIGURE 12: SIDE SWITCH FOR A SIDE - E&M CARD
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D0337ENa
Slide Switch
for B SIDE
FIGURE 13: SIDE SWITCH FOR B SIDE - E&M CARD
A Side B Side
E (TX bit) M (RX bit) M (TX bit) E (RX bit)Mode Status
A B C D A B C D A B C D A B C D
Idle - on hook 0 0 0 1 0 * * * 0 0 0 1 0 * * *ETSI Normal
Active - off hook 1 1 0 1 1 1 * * 1 1 0 1 1 1 * *
Idle - on hook 1 1 0 1 1 * * * 1 1 0 1 1 * * *ETSI Revert
Active - off hook 0 0 0 1 0 0 * * 0 0 0 1 0 0 * *
Idle - on hook 0 0 0 0 0 * * * 0 0 0 0 0 * * *ANSI Normal
Active - off hook 1 1 1 1 1 1 * * 1 1 1 1 1 1 * *
Idle - on hook 1 1 1 1 1 * * * 1 1 1 1 1 * * *ANSI Revert
Active - off hook 0 0 0 0 0 0 * * 0 0 0 0 0 0 * *
TABLE 13: SIGNALING BITS - E&M CARD
NOTE: For version V2.02.01 or over
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E&M CardLEDs
J28
Top Side
New Version
Old
Versio
n
ETSI Mode
ETSI+Revert Mode
ANSI Mode
ANSI+REVERT
J28
without JUMP
with JUMP
J28
J28
J28
J28
J28
Revert Mode
J28
ANSI Mode
J28
ANSI+REVERT
Note: for BOM version C04-C7or lower
Note: for BOM version C04-C7or higher
D0530ENa
FIGURE 14: SHORT LINE AND JUMPER SETTING FOR EM CARD SIGNALLING BIT MODE
2 Wire 4 WirePin No. Pin Name
A, B Side A Side B Side
4, 5 Ring, Tip Transmit, Receive Transmit Receive
3, 6 Ring1, Tip1 Receive Transmit
TABLE 14: VOICE CHANNEL DIRECTION - E&M CARD
Signaling Direction A Side B Side
A to B B to A E lead M lead M lead E lead
ON HOOK ON HOOK OPEN OPEN OPEN OPEN
ON HOOK OFF HOOK GROUND OPEN OPEN CLOSE
OFF HOOK ON HOOK OPEN CLOSE GROUND OPEN
OFF HOOK OFF HOOK GROUND CLOSE GROUND CLOSE
TABLE 15: E&M SIGNALING CHANNEL DIRECTION
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Pin Number Line Color Description
1 Unassigned
2 Unassigned
3 Red Ring lead
4 Green Tip lead
5 Unassigned
6 Unassigned
TABLE 16: RJ11 CONNECTOR PIN ASSIGNMENT - FXS/ FXO CARD
FIGURE 15: RJ11 CONNECTOR - FXS, FXO, AND MAG CARDS
Ring Generation & RingDetector
Pin Number Line Color DescriptionL1 & L2 L1 & GND
1 White Unassigned
2 Black Unassigned
3 Red L2 Line 9
4 Green L1 Line 9 9
5 Yellow GND Line 9
6 Blue Unassigned
TABLE 17: RJ11 CONNECTOR PIN ASSIGNMENT - MAG CARD
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RJ21X PIN
(t(teleco 50 PIN)
RJ21X PIN
(t (teleco 50PIN)
LEFT Card
Line No
Ring T Tip
RIGHT Card
Line No
Ring Tip
Line 1 1 26 Line 1 13 38
Line 2 2 27 Line 2 14 39
Line 3 3 28 Line 3 15 40
Line 4 4 29 Line 4 16 41
Line 5 5 30 Line 5 17 42
Line 6 6 31 Line 6 18 43
Line 7 7 32 Line 7 19 44
Line 8 8 33 Line 8 20 45
Line 9 9 34 Line 9 21 46
Line 10 10 35 Line 10 22 47
Line 11 11 36 Line 11 23 48
Line 12 12 37 Line 12 24 49
TABLE 18: RJ21X CONNECTOR PIN ASSIGNMENT 24 FXS/ FXO CARD
RJ21X PIN
(t(teleco 50 PIN)
RJ21X PIN
(t(teleco 50PIN)
LEFT Card
Line No
L2 T L1
RIGHT Card
Line No
L2 L1
Line 1 1 26 Line 1 13 38
Line 2 2 27 Line 2 14 39
Line 3 3 28 Line 3 15 40
Line 4 4 29 Line 4 16 41
Line 5 5 30 Line 5 17 42
Line 6 6 31 Line 6 18 43
Line 7 7 32 Line 7 19 44
Line 8 8 33 Line 8 20 45
Line 9 9 34 Line 9 21 46
Line 10 10 35 Line 10 22 47
Line 11 11 36 Line 11 23 48
Line 12 12 37 Line 12 24 49
TABLE 19: RJ21X CONNECTOR PIN ASSIGNMENT 24 MAG CARD
NOTE: Module of w/L1, L2 and w/L1, GND cannot use for 24-MAG Card. Itcan use Module of w/L1, L2 or w/L1, GND only. (refer to -orderinginformation).
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PIN 50
TIPRing
PIN 26PIN 1
PIN 25
(L2) (L1)
D0532ENa
FIGURE 16: RJ21X CONNECTOR - FXS, FXO, AND MAG CARDS
FXS/FXS-P
PLAR OFF PLAR ON
FXS/FXS-P FXS FXS-P
TX RX TX RX
A B C D A B C D A B C D A B C D A B C D A B C D
On hook 0 1 0 1 0 1 0 1 0 1 0 1
Off hook 1 1 0 1 1 1 1 1 1 1 0 1
No ring 1 * * * 0 * * * 1 * * *
Ring on 0 0 * * 1 1 1 1 0 0 * *
Battery Reverse 0 1 0 0
Metering Pulse 0 1 0 0
Tip lead open 1 1 1 1
Ring lead GND 0 0 0 1
OOS-Alarm * * * * * * * * * * * *
TABLE 20: SIGNALING BITS (DEFAULT SETTING) - FXS CARD
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FXO
TX RX
A B C D A B C D
On hook 0 * * *
Off hook 1 1 * *
No ring 0 1 0 1
Ring On 0 0 0 1
Battery Reverse 0 1 0 0
Metering Pulse 0 1 0 0
Tip Lead open 1 1 1 1
Ring lead GND 0 0 0 1
OOS-Alarm * * * *
TABLE 21: SIGNALING BITS (DEFAULT SETTING) -FXO CARD
For H/W Version F:
FIGURE 17: JUMPER SETTING FOR FXS RINGING VOLTAGE
NOTE : R89, jumper 9, and R50 cannot be set up at the same time.
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R89 R50
Vrms 84 83 82 81 80 79 78 75 74 73 72 71 70 68 60 55 50 42 40 39
Resister
(ohm)
20
K
36
K
66
K
86
K
150
K
500
K
1
M
4
M
3.2
M
2.8
M
2.6
M
2.2
M
1.8
M
1.2
M
500
K
360
K
200
K
100
K
68
K
20
K
TABLE 22: RINGING VOLTAGE RESISTER FOR H/W VERSION F
For H/W Version H or over:
J9
Ring (VAC)
JP1
MP GS
FXS Card
PLAR(bit)
R50 R107
JP2
J9
For Ring 78 Vrms (default)
For Ring 64 Vrms (select R50)
For Ring 85 Vrms (select R107)
J9
J9# J9 Jumper setting for Ring Voltage
JP1
JP1
# JP1 Jumper setting for PLAR
JP2
JP2
JP2
(add Ground Start and Metering Pulse Function)
(only add Metering Pulse Function)
JP2 (only add Ground Start Function)
# JP2 Jumper setting for Ground Start and Metering
Pulse Function
For FXS PLAR ABCD bit to fixed 1111
For FXS-P or FXS-GMP PLAR bit (=OFF HOOK) programmable
D0534ENa
For FXS Model (normal model)
For FXS-GM Model
For FXS-M Model
For FXS-G Model
FIGURE 18: JUMPER SETTING FOR FXS, MODEL AND PLAR BIT RINGING VOLTAGE(H/W VERSION H OR OVER)
NOTE 1 : J9 85Vrms and J9 64Vrms cannot do setting at the same time.
NOTE 2: J9, JP1 and JP2 can do function setting at the same time.
R107 R50
Vrms 85 84 83 82 81 80 79 78 75 74 73 72 71 70 68 64 60 55 50 42 40 39
Resister
(ohm)
10
K
20
K
36
K
66
K
86
K
150
K
500
K
1
M
4
M
3.2
M
2.8
M
2.6
M
2.2
M
1.8
M
1.2
M
620
K
500
K
360
K
200
K
100
K
68
K
20
K
TABLE 23: RINGING VOLTAGE RESISTER FOR H/W VERSION H OR OVER
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PLAR ON PLAR OFF
Tx Rx Tx Rx
A B C D A B C D A B C D A B C D
Normal 0 1 0 1 0 1 0 1
L1 & L2 Ring Detector 1 1 1 1 1 1 1 0
L1 & L2 Ring Generation 1 1 1 1 1 1 1 0
L1 & GND Ring Detector 1 1 0 1 1 1 0 0
L1 & GND Ring Generation 1 1 0 1 1 1 0 0
TABLE 24: SIGNALING BITS - MAGNETO CARD
The following 3 tables indicate using Magneto card PLAR mode setting for communicaitonsbetween a Magneto telephone and a regular telephone.
Status Phone in Local Site Phone in Remote Site
RingingTurn the crank or push the button ofthe Magneto phone
No action
Stop the ring and start tospeak
Stop turnning the crank or releasethe button of the Magneto phone
No action
TABLE 25: MAGNETO TO MAGNETO SPEAK
Status Phone in Local Site Phone in Remote Site
Ringing Turn the crank or push and releasethe button of the Magneto phone
No action
Turn the crank again or push andrelease the button of the Magnetophone
No action
Stop the ring to speak
No actionTurn the crank or pushand release the buttonof the Magneto phone
End speaking No action
Turn the crank again orpush and release thebutton of the Magneto
phone
TABLE 26: MAGNETO (PLAR) TO MAGNETO (PLAR) SPEAK
c Make a call from Magneto Phone to FXS Phone
Status Magneto Phone FXS Phone
RingingTurn the crank or push and releasethe button of the Magneto phone
Stop the ring to speak Off hook
End speaking On hook
TABLE 27: MAGNETO (PLAR) TO FXS (PLAR) SPEAK
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d Make a call from FXS Phone to Magneto Phone
Status Magneto Phone FXS Phone
Ringing Off hook
Stop the ring to speakTurn the crank or push and release
the button of the Magneto phone
End speaking On hook
TABLE 28: FXS (PLAR) TO MAGNETO ( (PLAR) SPEAK
FIGURE 19: JUMPER LOCATION FOR QUAD E1/ T1 INTERFACE
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Jumper RJ BNC GND 120 75 100 E1 T1 CircuitProtection
9 2, 3 ON 1, 2 ON
10 2, 3 ON 1, 2 ON
12 2, 3 ON 1, 2 ON
14 2, 3 ON 1, 2 ON
15 ON
5 ON OFF
6 ON OFF
7 ON OFF
58 OFF ON
For
Port 4
59 OFF ON
22 2, 3 ON 1, 2 ON
23 2, 3 ON 1, 2 ON
25 2, 3 ON 1, 2 ON27 2, 3 ON 1, 2 ON
28 ON
18 ON OFF
19 ON OFF
20 ON OFF
60 OFF ON
For
Port 3
61 OFF ON
35 2, 3 ON 1, 2 ON
36 2, 3 ON 1, 2 ON
38 2, 3 ON 1, 2 ON
40 2, 3 ON 1, 2 ON
41 ON
31 ON OFF
32 ON OFF
33 ON OFF
62 OFF ON
For
Port 2
63 OFF ON
48 2, 3 ON 1, 2 ON
49 2, 3 ON 1, 2 ON51 2, 3 ON 1, 2 ON
53 2, 3 ON 1, 2 ON
54 ON
44 ON OFF
45 ON OFF
46 ON OFF
64 OFF ON
For
Port 1
65 OFF ON
For Bank
Change 57 When jumper 57 is on, bank will be changed after rebooting the system.
TABLE 29: JUMPER SETTING FOR QUAD E1/ T1 INTERFACE
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Pin Number Signal Source
1 Cable Shield
2 Transmit Data DTE
3 Receive Data DCE
4 Request To Send DTE
5 Clear To Send DCE
6 Data Set Ready DCE
7 Signal Ground
8 Data Carrier Detect DCE
9 Receive Clock Return DCE
10 Unassigned
11 External Clock Return DTE12 Transmit Clock Return DCE
13 Unassigned
14 Transmit Data Return DTE
15 Transmit Clock DCE
16 Receive Data Return DCE
17 Receive Clock DCE
18 Local Loopback DTE
19 Unassigned
20 Data Terminal Ready DTE
21 Remote Loopback DTE
22 Unassigned
23 Unassigned
24 External Clock DTE
25 Test Mode DCE
TABLE 30: V.35/DB25 DTE PORT PIN DEFINITION
Pin Number Signal Source
1 Cable Shield
2 Transmit Data DTE
3 Receive Data DCE
4 Request To Send DTE
5 Clear To Send DCE
6 Data Set Ready DCE
7 Signal Ground
8 Data Carrier Detect DCE
9 Receive Clock Return DCE
10 Data Carrier Detect Return DCE
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Pin Number Signal Source
11 External Clock Return DTE
12 Transmit Clock Return DCE
13 Clear To Send Return DCE
14 Transmit Data Return DTE
15 Transmit Clock DCE
16 Receive Data Return DCE
17 Receive Clock DCE
18 Local Loopback DTE
19 Request To Send Return DTE
20 Data Terminal Ready DTE
21 Remote Loopback DTE
22 Data Set Ready Return DCE
23 Data Terminal Ready Return DTE
24 External Clock DTE
25 Test Mode DCE
TABLE 31: V.36/ EIA530/ DB25 DTE PORT PIN DEFINITION
Pin Number Signal Source
1 Cable Shield
2 Transmit Data DTE
3 Control DTE
4 Receive Data DCE
5 Indication DCE
6 Signal Timing DCE
7 External Clock DTE
8 Signal Ground
9 Transmit Data Return DTE
10 Control Return DTE
11 Receive Data Return DCE
12 Indication Return DCE
13 Signal Timing Return DCE
14 External Clock Return DTE
15 Unassigned
TABLE 32: X.21/V.11 AND DB15 DTE PORT PIN DEFINITION
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Pin Number Signal Source
1 Cable Shield
2 Transmit Data DTE
3 Receive Data DCE
4 Request To Send DTE
5 Clear To Send DCE
6 Data Set Ready DCE
7 Signal Ground
8 Data Carrier Detect DCE
9 Unassigned
10 Unassigned
11 Unassigned
12 Unassigned
13 Unassigned
14 Unassigned
15 Transmit Clock DCE
16 Unassigned
17 Receive Clock DCE
18 Local Loopback DTE
19 Unassigned
20 Data Terminal Ready DTE21 Remote Loopback DTE
22 Unassigned
23 Unassigned
24 External Clock DTE
25 Test Mode DCE
TABLE 33: RS232/DB25 DTE PORT PIN DEFINITION
Pin Number Signal Source
1 Transmit Data TIP_Port 1
2 Receive Data TIP_Port 1
3 Unassigned
4 Transmit Data TIP_Port 2
5 Receive Data TIP_Port 2
6 Unassigned
7 Transmit Data TIP_Port 3
8 Receive Data TIP_Port 3
9 Unassigned10 Transmit Data TIP_Port 4
11 Receive Data TIP_Port 4
12 Unassigned
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Pin Number Signal Source
13 Unassigned
14 Transmit Data RING_Port 1
15 Receive Data RING_Port 1
16 Unassigned
17 Transmit Data RING_Port 2
18 Receive Data RING_Port 2
19 Unassigned
20 Transmit Data RING_Port 3
21 Receive Data RING_Port 3
22 Unassigned
23 Transmit Data RING_Port 4
24 Receive Data RING_Port 4
25 Unassigned
TABLE 34: DB25 MINI QUAD E1 PIN DEFINITION
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4. CONFIGURATION SETTING
4.1 Software configuration setting
There are three system configurations:
Factory default
Current working
User stored
Factory default configurations are not changeable. Each DXC 5000 is shipped with all threeconfigurations set to the factory default configuration.
The current working configuration, which can be saved into nonvolatile memory as a user-stored configuration, can be changed at any time. When the system is reset, the previousconfiguration will be retrieved as the current working configuration. The user-storedconfiguration can be retrieved at any time. User can retrieve the user-stored configuration tooverwrite the current working configuration.
4.2 Replacement of Plug-in Card
When a plug-in card is removed and replaced with a card of a different type, defaultconfiguration is assigned to the new card. The user must set the configuration for eachchange of card type. If the same type card is inserted, depending on card type, then thefollowing happens:
For E1, T1, and DTE plug-in cards, the previous configuration is automaticallydownloaded.
For Router plug-in card, the factory default configuration is assigned to the new card.
For E1/ T1 ATM Frame Relay plug-in card, (a) The port configuration for E1 or T1 is
automatically downloaded, (b) The Frame Relay management setup is factory defaultconfiguration.
Console Port Fixed
Baud Rate 9600
Data Bit 8
Stop Bit 1
Parity Bit NONE
XON-XOFF OFF
Interface TERMINAL
SNMP OFF
E1 Line Item Default
Line Frame FAS
Line Code HDB3
Interface Card setting
Line FDL OFF
FDL Sa-bit Sa4
Line AIS OFF
Line RAI ON
Line CRC ON
Idle Code 0Xd5
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T1 Line Item Default
Line Frame ESF
Line Code B8ZS
Interface Long Haul
Line LBO 0dB
Line EQU 0-133 ft
Line AIS OFF
Line YEL ON
Line Inband OFF
Idle Code 0xFF
HDSL Items Default
XDSL MODE MasterCLOCK SOURCE Internal
LINE RATE 768k bps
LINE CODE 2B1Q
DTE (V.35/ V.36/ EIA530/X.21/V.11) Item
Default
RATE 64K
CLOCK Normal
DATA Normal
RTS Activate
TTM Off
V.54 Off
INTERFACE
(Depend on which DTE cardis plugged into the shelf)
V.35,
V.36,
EIA530/RS449,
X.21/V.11
DTE (X.50) Item DefaultX50 MUX NO_MUX
SYNC MODE SYNC
RATE 1.2K
PHASE Fixed
4.8K SEL Fixed
CLOCK Normal
DATA Normal
RTS Permanent
TTM Off
INTERFACE RS-232
WARNING No
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U-PORT Line Item (Allports)
Default
Channel B1
Speed 64 Kbps
ATM FR T1 Line Items Default
Frame Format Mode ESF
Line Code Mode B8ZS
Line Build Out 0 dB
Yellow Alarm ON
Alarm Indication Signal FRAMED
Interface LONG HAUL
ATM FR E1 Line Items Default
Frame Format Mode ON
Line Code Mode HDB3
CRC ON
RAI ON
Alarm Indication Signal FRAMED
CAS OFF
FDL OFFSa_bit Sa4
Interface 120 Ohm (Hardware)
Router Setup Default
Net_Address 000.000.000.000
Netmask 000.000.000.000
Gateway_Address 000.000.000.000
NI_Address 000.000.000.000
Metric 01
E&M Card Default Configuration
Item Option/ Range Default
Side A Side, B Side Depending onside switchsetting
Impedance 600 ohm, 900 ohm 600 ohm
Signaling Type1, Type 2, Type 3, Type 4,and Type 5 or Tx only
Type 5
Tx Gain -10 to +7 dB 0 dB
Rx Gain -10 to +14 dB 0 dB
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FXS Card Default Configuration
Item Option/ Range Default
A/ Law A Law, Law A Law
Impedance 600 ohm, 900 ohm 600 ohm
Tx Gain -21 to +10 dB -3 dB
Rx Gain -21 to +10 dB -3 dB
PLAR RingCadence
2" on 4" off, 1" on 2" off 2" on 4" off
Ring Frequency 16.7, 20, 25, 50 Hz 20 Hz
Metering Pulse On, Off Off
Metering PulseFrequency
12 KHz, 16 KHz 16 KHz
Metering Level 1Vrms, 2.4Vrms 2.4Vrms
PLAR On, Off Off
FXO Card Default Configuration
Item Option/ Range Default
A/ Law A Law, Law A Law
Impedance 600 ohm, 900 ohm 600 ohm
Tx Gain -21 to +10 dB -3 dB
Rx Gain -21 to +10 dB -3 dB
Trunk Condition On hook, Off hook On hook
Line Polarity Normal, Reverse Normal
Metering PulseFrequency
12 KHz, 16 KHz 16 KHz
Metering PulseDetect Mode
Normal, Packet Normal
Metering PulseDecode Level
-19 to -47 dBm -27 dBm
Magneto Card Default Configuration
Item Option/ Range Default
Ring Mode Ring across L1 & L2 and L1 &GND
A/ Law A Law, Law A Law
Impedance 600 ohm, 900 ohm 900 ohm
Tx Gain -21 to +10 dB -3 dB
Rx Gain -21 to +10 dB -3 dB
PLAR RingCadence
2" on 4" off, 1" on 2" off 1" on 2" off
PLAR On, Off Off
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Miscellaneous Default
Password DXC5000
Device Name DXC 5000
TABLE 35: DEFAULT SOFTWARE CONFIGURATION