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HFBR-5302 PDF预览

HFBR-5302

更新时间: 2023-12-18 00:00:00
品牌 Logo 应用领域
安捷伦 - AGILENT 光纤
页数 文件大小 规格书
13页 199K
描述
Fibre Channel 133 MBd and Fibre Channel 133 MBd and Cost 1x9 Package Style

HFBR-5302 技术参数

是否Rohs认证: 符合生命周期:Obsolete
Reach Compliance Code:unknownECCN代码:5A991.B.4.A
HTS代码:8517.62.00.50风险等级:5.41
JESD-30 代码:R-XXFO-X功能数量:1
最高工作温度:70 °C最低工作温度:
封装主体材料:UNSPECIFIED封装形状:RECTANGULAR
封装形式:FIBER OPTIC峰值回流温度(摄氏度):NOT SPECIFIED
认证状态:Not Qualified标称供电电压:5 V
表面贴装:NO电信集成电路类型:TELECOM CIRCUIT
温度等级:COMMERCIAL端子形式:UNSPECIFIED
端子位置:UNSPECIFIED处于峰值回流温度下的最长时间:NOT SPECIFIED

HFBR-5302 数据手册

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power budget to do this. This is  
primarily caused by a change of  
receiver sensitivity.  
may be induced by electrostatic  
discharge (ESD). These trans-  
ceivers are certified as MIL-STD-  
883C Method 3015.4 Class 2  
devices.  
These transceivers are compat-  
ible with industry standard wave  
and hand solder processes.  
These transceivers can also be  
used for applications which  
require different Bit Error Rate  
(BER) performance. Figure 5  
illustrates the typical trade-off  
between link BER and the  
receivers input optical power  
level.  
Shipping Container  
The transceiver is packaged in a  
shipping container designed to  
protect it from mechanical and  
ESD damage during shipment or  
storage.  
Care should be used to avoid  
shorting the receiver data or  
signal detect outputs directly to  
ground.  
Solder and Wash Process  
Compatibility  
Board Layout – Decoupling  
Circuit and Ground Planes  
Transceiver Jitter  
Performance  
The transceivers are delivered  
with a protective process plug  
inserted into the duplex SC  
connector receptacle. This  
process plug protects the optical  
subassemblies during wave solder  
and aqueous wash processing and  
acts as a dust cover during  
shipping.  
You should take care in the layout  
of your circuit board to achieve  
optimum performance from these  
transceivers. Figure 6 provides a  
good example of a schematic for  
a power supply decoupling circuit  
that works well with these parts.  
Hewlett-Packard further recom-  
mends that a contiguous ground  
The Hewlett-Packard 1300 nm  
transceivers are designed to  
operate per the system jitter  
allocations stated in FC-PH  
Annex A.4.3 and A.4.4.  
The HP 1300 nm transmitters will  
tolerate the worst case input  
electrical jitter allowed, without  
violating the worst case output  
optical jitter requirements.  
NO INTERNAL CONNECTION  
NO INTERNAL CONNECTION  
The HP 1300 nm receivers will  
tolerate the worst case input  
optical jitter allowed without  
violating the worst case output  
electrical jitter allowed.  
HFBR-530X  
TOP VIEW  
Rx  
Rx  
Tx  
Tx  
V
RD  
2
RD  
3
SD  
4
V
V
TD  
7
TD  
8
V
EE  
1
CC  
CC  
6
EE  
9
5
The jitter specifications stated in  
the following tables are derived  
from the values in FC-PH Annex  
A.4.3 and A.4.4. They represent  
the worst case jitter contribution  
that the transceivers are allowed  
to make to the overall system  
jitter without violating the  
C1  
C2  
V
CC  
R2  
R3  
C5  
L1  
C3  
L2  
C4  
TERMINATION  
AT PHY  
DEVICE  
R1  
R4  
V
CC  
INPUTS  
R5  
R7  
V
CC  
AT V  
TRANSCEIVER  
FILTER  
PINS  
CC  
TERMINATION  
AT TRANSCEIVER  
INPUTS  
allowed allocation. In practice,  
the typical contribution of the HP  
transceivers is below these  
C6  
R9  
R10  
R6  
R8  
maximum allowed amounts.  
RD  
RD  
SD  
V
TD  
TD  
CC  
NOTES:  
Recommended Handling  
Precautions  
THE SPLIT-LOAD TERMINATIONS FOR ECL SIGNALS NEED TO BE LOCATED AT THE INPUT  
OF DEVICES RECEIVING THOSE ECL SIGNALS. RECOMMEND 4-LAYER PRINTED CIRCUIT  
BOARD WITH 50 OHM MICROSTRIP SIGNAL PATHS BE USED.  
R1 = R4 = R6 = R8 = R10 = 130 ohms.  
R2 = R3 = R5 = R7 = R9 = 82 ohms.  
C1 = C2 = C3 = C5 = C6 = 0.1 µF.  
C4 = 10 µF.  
Hewlett-Packard recommends  
that normal static precautions be  
taken in handling and assembly  
of these transceivers to prevent  
damage and/or degradation which  
L1 = L2 = 1 µH COIL OR FERRITE INDUCTOR.  
Figure 6. Recommended Decoupling and Termination Circuits.  
218  

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