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GE T1 Multiplexer - Power Requirements; Figure 5: Typical Rack Layout

GE T1 Multiplexer
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342-86400-431PS
Issue 2.1
March 2013
Page 15
Copyright
GE Multilin Inc. 2001-2013
J1 J15J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 J12 J13 J14
CCT1 CCT2 CCT3 CCT4
TRANSMIT RECEIVE
86429-M2 DTT TEST PANEL
CCT1 CCT2 CCT3 CCT4
PWR
130 V
4W2W FXS
PWR
130 V
HCBCDR
CONTACT
I/O
S 1x SHR
JIFPORT 2
JIF-SHARE
L R
CH 1
CH 7
CH 13
CH 19
CH 2
JVT-S (PAIR 3) VT-1x
JVT-Q (PAIR 3) VT-14x: SITE G
CH 4
R
CH 3
R
PAIR 2
QUAD-DS1 QUAD-DS1
-
JIFPORT 2
JVT VT
1
MO DE
L/R
L R
SITE B SITE C
BC96 TX: 0041
R 2
R
10x TIE
Q 3R 14x
STD
P 4R 15x STD
PAIR 3
JIF-SHARE
PWR
130 V
PWR
130 V
2W TO 4W OCUDP DATA
JVT-Q (PAIR 3) VT-14x: SITE G
BC96 RX: 0014
CH 4
BLANK
BC96
TX: 0158
RX: 0815
CH 5
56kb/s
CH 6
slot
CH 8-12
NX64
CH 2 CH 14
LS
DATA
HS
DATA
JVT-P (PAIR 3) VT-15x: SITE H
DTT RXDTT TX
CH 1 CH 1
BC96 TX: 0023
CH 2
HS
DATA
BC96 RX: 0032
VT 22x TO 28x
PAIR 1
1 TO 7
JIFPORT 1
L R
ETHER-10
slot
BLANK
ETHER-10
CH 5
L
SITE D
S 7xL
DS1 VT
5
L/R
R 6
R
8x
Q 7R 9x
- -- -
slot
DATA
CH 1 (L)
CH 2 (R)
PTM
RTU
PWR
130 V
PWR
130 V
JMUX SERV JMUX
OC-3 OC-3
L R
SITE BFIBRE TO: SITE CFIBRE TO:
O/W
VM-40
CBW
PORT
A
“BB”
RING: 1
NODE: 1
“AA”
4W PL BLANK
VNA#
m37
MPEG-4 VIDEO
VNA# 17
SYNC MODE
NORMAL, LEFT
CH 1 CH 2
MPEG-4 VIDEO
m37, VPORT#2
OUTPUT (BOOT):
VNA#5
(24
TH
STREET)
CV1, 8Mb/s
m37, VPORT#1
BLANK
CBW
PORT
B
ETHER-100
22
ND
STREET
VNA# 16
MAIN STREET
-
OUTPUT (BOOT):
CCT ADR
TX: 0304
RX: 0403
CCT ADR
TX: 0102
RX: 0201
J1 J15J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 J12 J13 J14J1 J15J2 J3 J4 J5 J6 J7 J8 J9 J10 J11 J12 J13 J14
CCT1 CCT2 CCT3 CCT4
TRANSMIT RECEIVE
86429-M2 DTT TEST PANEL
CCT1 CCT2 CCT3 CCT4
PWR
130 V
4W2W FXS
PWR
130 V
HCBCDR
CONTACT
I/O
S 1x SHR
JIFPORT 2
JIF-SHARE
L R
CH 1
CH 7
CH 13
CH 19
CH 2
JVT-S (PAIR 3) VT-1x
JVT-Q (PAIR 3) VT-14x: SITE G
CH 4
R
CH 3
R
PAIR 2
QUAD-DS1 QUAD-DS1
-
JIFPORT 2
JVT VT
1
MO DE
L/R
L R
SITE B SITE C
BC96 TX: 0041
R 2
R
10x TIE
Q 3R 14x
STD
P 4R 15x STD
PAIR 3
JIF-SHARE
PWR
130 V
PWR
130 V
2W TO 4W OCUDP DATA
JVT-Q (PAIR 3) VT-14x: SITE G
BC96 RX: 0014
CH 4
BLANK
BC96
TX: 0158
RX: 0815
CH 5
56kb/s
CH 6
slot
CH 8-12
NX64
CH 2 CH 14
LS
DATA
HS
DATA
JVT-P (PAIR 3) VT-15x: SITE H
DTT RXDTT TX
CH 1 CH 1
BC96 TX: 0023
CH 2
HS
DATA
BC96 RX: 0032
VT 22x TO 28x
PAIR 1
1 TO 7
JIFPORT 1
L R
ETHER-10
slot
BLANK
ETHER-10
CH 5
L
SITE D
S 7xL
DS1 VT
5
L/R
R 6
R
8x
Q 7R 9x
- -- -
slot
DATA
CH 1 (L)
CH 2 (R)
PTM
RTU
PWR
130 V
PWR
130 V
JMUX SERV JMUX
OC-3 OC-3
L R
SITE BFIBRE TO: SITE CFIBRE TO:
O/W
VM-40
CBW
PORT
A
“BB”
RING: 1
NODE: 1
“AA”
4W PL BLANK
VNA#
m37
MPEG-4 VIDEO
VNA# 17
SYNC MODE
NORMAL, LEFT
CH 1 CH 2
MPEG-4 VIDEO
m37, VPORT#2
OUTPUT (BOOT):
VNA#5
(24
TH
STREET)
CV1, 8Mb/s
m37, VPORT#1
BLANK
CBW
PORT
B
ETHER-100
22
ND
STREET
VNA# 16
MAIN STREET
-
OUTPUT (BOOT):
CCT ADR
TX: 0304
RX: 0403
CCT ADR
TX: 0102
RX: 0201
Figure 5: Typical Rack Layout
Power Requirements
Input power for the unit is made on the paddleboard TB1. Input voltage level is
dependent on unit option and can be either from a floating or grounded supply.
Refer to the Equipment Option Code Table.

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