AFBR-732BE HP [Agilent(Hewlett-Packard)], AFBR-732BE Datasheet - Page 7

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AFBR-732BE

Manufacturer Part Number
AFBR-732BE
Description
Ultra Short Link Pluggable Parallel Fiber Optic Modules, Transmitter and Receiver
Manufacturer
HP [Agilent(Hewlett-Packard)]
Datasheet
Receiver Electrical Characteristics
(T
Notes:
1. I
2. Measured over the range 4 MHz to 2 GHz.
3. DV
4. Inter-channel Skew is defined for the condition of equal amplitude, zero ps skew input signals. Input power at –10 dBm.
5. Rise and Fall Times are measured between the 20% and 80% levels using a 500 MHz square wave signal.
6. The Signal Detect output will change from logic “0” (Low) to “1” (High) within the specified assert time for a step transition in optical input power from
7. The Signal Detect output will change from logic “1” (High) to “0” (Low) within the specified de-assert time for a step transition in optical input power
7
Parameter
Supply Current
Power Dissipation
Differential Output Impedance
Data Output Differential Peak-to-Peak
Inter-channel Skew
Differential Data Output Rise/Fall Time
Signal Detect Assert Time (OFF-to-ON)
Control I/O
LVTTL & LVCMOS Output Voltage High
Compatible
Voltage Swing
C
outputs and any resistive terminations. See Figure 7 for recommended termination.
Voltage. DV
with a 2500 MBd, 8B10B serial encoded data pattern.
the de-asserted condition to the specified asserted optical power level on all 12 channels.
from the specified asserted optical power level to the de-asserted condition on any 1 channel.
= 0 °C to +80 °C, V
CC
R is the dc supply current, dependent upon the number of active channels, where the Data Outputs are ac coupled with capacitors between the
DOUTP-P
= DV
DOUTH
De-assert Time (ON-to-OFF)
DOUTH
and DV
Output Voltage Low
– DV
CC
DOUTL
= 3.3 V ± 5%, Typical T
DOUTL
= V
, where DV
DOUT+
– V
DOUTH
DOUT–
I
P
Symbol
Z
DV
V
V
t
t
t
CCR
r
SDA
SDD
DISR
OUT
/t
OL
OH
DOUTP-P
f
, measured with a 100 W differential load connected with the recommended coupling capacitors and
= High State Differential Data Output Voltage and DV
C
= +40 °C, V
Min.
80
2.5
450
V
EE
CC
= 3.3 V)
1.3
100
600
100
110
170
190
Typ.
400
3.1
Max.
1.55
120
150
150
445
750
0.4
V
CC
DOUTL
= Low State Differential Data Output
Unit
mA
mV
ps
ps
µs
µs
W
W
V
V
P-P
Reference
(Conditions)
1, Fig. 5
2, Fig. 8, 10
5
6
(I
(I
3, Figs. 7, 8
4
7
OL
OH
= 4.0 mA)
= -0.5 mA)

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