Cisco Model GS7000 4-Port Node 1 GHz with 42 54 Split Data Sheet

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Page 11 of 15 
 
 
Specifications, continued 
 
Electrical 
Units 
 
Notes 
Max. AC Through Current 
(continuous)
 Amps 
15 
 
Max. AC Through Current 
(surge)
 Amps 
25 
 
Component DC Power Consumption 
(typical)
 
 
@+24 VDC 
@ +8 VDC 
@ +5 VDC 
@ -6 VDC 
 
Launch Amplifier 
 (includes reverse amp)
 
Amps 
2.7 - 0.5 -   
Status Monitoring Transponder 
Amps 
0.01 
0.2 
 
GS7000 Low Current Optical Receiver  
Amps 
0.12 
 
Reverse Transmitter – High Gain FP 
Amps 
0.09 
0.07 
 
Reverse Transmitter – High Gain DFB 
Amps 
0.09 
0.09 
 
 
 
 
 
 
 
 
Power Supply DC Current Rating 
Amps 
6.20 0.90 1.30 0.80   
 
 
Station Powering Data 
AC Voltage 
 
GS7000 Node 
I DC 
(Amps at 24 
VDC) 
 
90 
85 
80 
75 
70 
65 
60 
55 
50 
45 
AC Current 
(A) 
1.3 1.4 1.4 1.4 1.5 1.5 1.6 1.8 1.9 2.2 
with: 1 forward Rx, 
1x2 forward config 
module,1 reverse 
Tx, 4x1 reverse 
config module 
2.93 
Power 
(W) 94.0 93.9 93.6 93.5 93.4 93.4 93.3 93.4 93.5  94.0 
AC Current 
(A) 
1.5 1.5 1.5 1.6 1.7 1.8 1.9 2.0 2.3 2.5 
with: 2 forward Rx’s, 
2x2 forward config 
module,4 reverse 
Tx’s, 4x4 reverse 
config module 
3.30 
Power 
(W)  108.4 108.1 108.0 107.7 107.6 107.6 107.6 107.6 107.8 108.7 
 
Data is based on stations configured  with status monitoring transponder.  AC currents specified are based on measurements made with 
typical CATV type ferro-resonant AC power supply (quasi-square wave). 
 
DC supply has a fixed under-voltage lockout of 33 V AC. 
 
Environmental 
Units 
 
Operating Temperature Range 
degrees 
-40
  F to 140  F (-40  C to 60  C) 
Relative Humidity Range 
percent 
5% to 95% 
Mechanical  
Housing Dimensions
 
Weight 
21.3 in. L x 11.6 in. H x 11.1 in. D 
(541 mm x 295 mm x 282 mm) 
Station with 4 RX, 4 TX, 2 power supplies: 50.0 lbs. 
(22.7 Kg) 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
Unless otherwise noted, specifications reflect typical performance and are referenced to 68
  F (20  C).  Specifications are based 
upon measurements made in accordance with SCTE/ANSI standards (where applicable), using standard frequency assignments.