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HFBR-5208AFM PDF预览

HFBR-5208AFM

更新时间: 2024-02-18 09:22:11
品牌 Logo 应用领域
惠普 - HP ATM异步传输模式光纤
页数 文件大小 规格书
21页 520K
描述
Agilent HFBR/HFCT-5208M 1 x 9 Fiber Optic Transceivers for 622 Mb/s ATM/SONET/SDH Applications

HFBR-5208AFM 技术参数

是否Rohs认证: 不符合生命周期:Obsolete
Reach Compliance Code:unknown风险等级:5.82
光纤设备类型:TRANSCEIVER安装特点:THROUGH HOLE MOUNT
最高工作温度:85 °C最低工作温度:-40 °C
标称工作波长:1330 nm子类别:Fiber Optic Transceivers
最大供电电压:5.25 V表面贴装:NO
Base Number Matches:1

HFBR-5208AFM 数据手册

 浏览型号HFBR-5208AFM的Datasheet PDF文件第3页浏览型号HFBR-5208AFM的Datasheet PDF文件第4页浏览型号HFBR-5208AFM的Datasheet PDF文件第5页浏览型号HFBR-5208AFM的Datasheet PDF文件第7页浏览型号HFBR-5208AFM的Datasheet PDF文件第8页浏览型号HFBR-5208AFM的Datasheet PDF文件第9页 
2 x Ø 1.9 0.1  
(0.075 0.004)  
Reference Design  
20.32  
(0.800)  
Agilent has developed a reference  
design for multimode and single-  
mode OC-12 ATM-SONET/SDH  
applications shown in Figure 6.  
This reference design uses a  
Vitesse Semiconductor Inc.’s  
VSC8117 clock recovery/clock  
generation/serializer/deserializer  
integrated circuit and a PMC-  
Sierra Inc. PM5355 framer IC.  
Application Note 1178 documents  
the design, layout, testing and  
performance of this reference  
design. Gerber files, schematic  
and application note are available  
from the Agilent Fiber-Optics  
Components’ web site at the URL  
of http://www.semiconductor.  
agilent.com.  
9 x Ø 0.8 0.1  
(0.032 0.004)  
20.32  
(0.800)  
2.54  
(0.100)  
TOP VIEW  
DIMENSIONS ARE IN MILLIMETERS (INCHES)  
Figure 5. Recommended Board Layout Pattern  
Operation in -5.2 V Designs  
For applications that require  
-5.2 V dc power supply level for  
true ECL logic circuits, the  
HFBR/HFCT-5208M transceiver  
can be operated with a V = 0 V  
CC  
dc and a V = -5.2 V dc. This  
EE  
transceiver is not specified with  
an operating, negative power  
supply voltage. The potential  
compromises that can occur with  
use of -5.2 V dc power are that the  
absolute voltage states for V  
OH  
and V will be changed slightly  
OL  
due to the 0.2 V difference in  
supply levels. Also, noise  
immunity may be compromised  
for the HFBR/HFCT-5208M trans-  
ceiver because the ground plane is  
Figure 6. 622.08 Mb/s OC-12 ATM-SONET/SDH Reference Design Board  
Electromagnetic Interference (EMI)  
One of a circuit board designer’s  
foremost concerns is the control  
of electromagnetic emissions  
from electronic equipment.  
EMI shielding for providing the  
now the V supply point. The  
CC  
designer with a means to achieve  
good EMI performance. The EMI  
performance of an enclosure  
using these transceivers is  
suggested power supply filter  
circuit shown in the Recommended  
Circuit Schematic figure should be  
located in the V paths at the  
EE  
Success in controlling generated  
Electromagnetic Interference  
dependent on the chassis design.  
Agilent encourages using standard  
transceiver supply pins. Direct  
coupling of the differential data  
signal can be done between the  
HFBR-5208M transceiver and the  
standard ECL circuits. For  
guaranteed -5.2 V dc operation,  
contact your local Agilent  
(EMI) enables the designer to pass RF suppression practices and  
a governmental agency’s EMI  
regulatory standard; and more  
importantly, it reduces the  
possibility of interference to  
neighboring equipment. There are  
three options available for the  
HFBR/HFCT-5208M with regard to  
avoiding poorly EMI-sealed  
enclosures. In addition, Agilent  
advises that for the best EMI  
performance, the metalized case  
must be connected to chassis  
ground using one of the shield  
options.  
Component Field Sales Engineer  
for assistance.  
5

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