HFBR-0570 Avago Technologies US Inc., HFBR-0570 Datasheet - Page 10

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HFBR-0570

Manufacturer Part Number
HFBR-0570
Description
Fiber Optics, Evaluation Kit
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-0570

Silicon Core Number
HFBR-5720L, HFBR-5720LP, HFBR-5720AL, HFBR-5720ALP
Kit Contents
Evaluation PC Board, Associated Technical Literature
Kit Features
For SFP Fiber Channel Applications
Main Purpose
Interface, Fiber Optics
Embedded
No
Utilized Ic / Part
HFBR-5720
Primary Attributes
SFP Fibre Channel Applications
Secondary Attributes
Small Form Factor Pluggable (SFP)
Tool / Board Applications
Optical Transceivers
Rohs Compliant
Yes
Operating Voltage
3.3 V
Description/function
Fiber Optic Kit
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 20 C
Development Tool Type
Hardware / Software - Eval/Demo Board
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
HFBR-5720x
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Contains lead / RoHS non-compliant
Table 6. Transmitter and Receiver Electrical Characteristics (T
Parameter
Data Input:
Transmitter Differential
Input Voltage (TD +/–)
Data Output:
Receiver Differential
Output Voltage (RD +/–)
Contributed Deterministic
Jitter (Receiver) 2.125 Gb/s
Contributed Deterministic
Jitter (Receiver) 1.0625 Gb/s
Contributed Random
Jitter (Receiver) 2.125 Gb/s
Contributed Random
Jitter (Receiver) 1.0625 Gb/s
Receive Data Rise and
Fall 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 1 x 10
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.
10
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.
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 in the FC-PI MM jitter specification table.
Symbol
V
V
DJ
DJ
RJ
RJ
Trf
–12
1
O
BER by multiplying the RMS jitter (measured on a single rise or fall edge) from the oscilloscope by 14.
Minimum
400
400
Typical
735
C
= –20 C to 85 C, V
Maximum
2400
2000
0.1
47
0.12
113
0.162
76
0.098
92
250
CC
T,R = 3.3 V 10%)
Unit
mV
mV
UI
ps
UI
ps
UI
ps
UI
ps
ps
Notes
Note 1
Note 2
Note 3, 6
Note 3, 6
Note 4, 6
Note 4, 6
Note 5

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