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HFBR-5923L Datasheet(PDF) 9 Page - AVAGO TECHNOLOGIES LIMITED

Part # HFBR-5923L
Description  Fibre Channel 2.125/1.0625 GBd 850 nm Small Form Factor Pin Through Hole (PTH) Low Voltage (3.3 V) Optical Transceiver
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Manufacturer  AVAGO [AVAGO TECHNOLOGIES LIMITED]
Direct Link  http://www.avagotech.com
Logo AVAGO - AVAGO TECHNOLOGIES LIMITED

HFBR-5923L Datasheet(HTML) 9 Page - AVAGO TECHNOLOGIES LIMITED

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Table 6. Transceiver Electrical Characteristics
(TC = 0˚C to 70˚C, VCCT,R = 3.3 V ± 5%)
Parameter
Symbol
Minimum
Typical
Maximum
Unit
Notes
AC Electrical Characteristics
Power Supply Noise Rejection
PSNR
100
mV
1
(Peak-to-Peak)
DC Electrical Characteristics
Module Supply Current
ICC
133
200
mA
Power Dissipation
PDISS
440
693
mW
Sense Output:
Transmit Fault [TX_FAULT],
VOH
2.0
VCCT,R + 0.3
V
2
2 x 6 Only
VOL
0.8
V
Sense Output:
Signal Detect [SD]
VOH
2.4
VCCT,R + 0.3
V
3
VOL
0.4
V
Control Inputs:
Transmitter Disable
VIH
2.0
VCC + 0.3
V
[TX_DISABLE]
VIL
0
0.8
V
Notes:
1. MSA filter is required on host board 10 Hz to 2 MHz.
2. External 4.7-10 K
Ω pull-up resistor required for TX_Fault.
3. SD pin is pulled up internally with a 2 K
Ω resistor to VCCR.
Table 7. Transmitter and Receiver Electrical Characteristics
(TC = 0˚C to 70˚C, VCCT,R = 3.3 V ± 5%)
Parameter
Symbol
Minimum
Typical
Maximum
Unit
Notes
Data Input:
Transmitter Differential Input
VI
400
2400
mV
1
Voltage (TD +/–)
Data Output:
Receiver Differential Output
VO
400
735
2000
mV
2
Voltage (RD +/–)
Contributed Deterministic
DJ
0.1
UI
3, 6
Jitter (Receiver) 2.125 Gb/s
47
ps
Contributed Deterministic
DJ
0.12
UI
3, 6
Jitter (Receiver) 1.0625 Gb/s
113
ps
Contributed Random Jitter
RJ
0.162
UI
4, 6
(Receiver) 2.125 Gb/s
76
ps
Contributed Random Jitter
RJ
0.098
UI
4, 6
(Receiver) 1.0625 Gb/s
92
ps
Receive Data Rise and Fall
Trf
250
ps
5
Times (Receiver)
Notes:
1. Internally AC coupled and terminated (100 Ohm differential). These levels are compatible with CML and LVPECL voltage swings.
2. Internally AC coupled with an external 100 ohm differential load termination.
3. Contributed DJ is measured on an oscilloscope in average mode with 50% threshold and K28.5 pattern.
4. Contributed RJ is calculated for 1x10-12 BER by multiplying the RMS jitter (measured on a single rise or fall edge) from the oscilloscope by 14. Per
the FC-PI standard (Table 13 - MM jitter output, Note 1), the actual contributed RJ is allowed to increase above its limit if the actual contributed
DJ decreases below its limits, as long as the component output DJ and TJ remain within their specified FC-PI maximum limits with the worst
case specified component jitter input.
5. 20%-80% Rise and Fall times measured with a 500 MHz signal utilizing a 1010 data pattern.
6. In a network link, each component’s output jitter equals each component’s input jitter combined with each component’s contributed jitter.
Contributed DJ adds in a linear fashion and contributed RJ adds in a RMS fashion. In the Fibre Channel FC-PI Rev 11 specification “6.3.3 MM
jitter budget” section, there is a table specifying the input and output DJ and TJ for the receiver at each data rate. In that table, RJ is found from
TJ - DJ where the RX input jitter is noted as Gamma R and the RX output jitter is noted as Delta R. Our component contributed jitter is such that,
if the maximum specified input jitter is present, and is combined with our maximum contributed jitter, then we meet the specified maximum
output jitter limits listed in the FC-PI MM jitter specification table.


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