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AFBR-57J5APZ PDF预览

AFBR-57J5APZ

更新时间: 2024-02-15 23:40:19
品牌 Logo 应用领域
安华高科 - AVAGO 光纤放大器通信
页数 文件大小 规格书
18页 580K
描述
Digital Diagnostic SFP, 850nm 3.072/2.4576 Gb/s, RoHS OBSAI/CPRI Compatible Optical Transceiver

AFBR-57J5APZ 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:TransferredReach Compliance Code:compliant
ECCN代码:EAR99HTS代码:8517.62.00.50
风险等级:4.55其他特性:MSA-SFF-8472
主体宽度:13.6 mm主体高度:12.4 mm
主体长度或直径:55.3 mm内置特性:AMPLIFIER
通信标准:GBE连接类型:LC CONNECTOR
数据速率(接收):24576 Mbps数据速率(发送):24576 Mbps
发射极/检测器类型:LASER DIODE, PIN PHOTODIODE光纤设备类型:TRANSCEIVER
光纤类型:MMFJESD-609代码:e4
安装特点:BOARD/PANEL MOUNT最高工作温度:85 °C
最低工作温度:-40 °C最大工作波长:860 nm
最小工作波长:830 nm标称工作波长:850 nm
标称光功率输出:0.125 mW最小回损:12 dB
子类别:Fiber Optic Transceivers最大供电电压:3.63 V
最小供电电压:2.97 V标称供电电压:3.3 V
表面贴装:NO端子面层:Gold (Au)

AFBR-57J5APZ 数据手册

 浏览型号AFBR-57J5APZ的Datasheet PDF文件第1页浏览型号AFBR-57J5APZ的Datasheet PDF文件第2页浏览型号AFBR-57J5APZ的Datasheet PDF文件第3页浏览型号AFBR-57J5APZ的Datasheet PDF文件第5页浏览型号AFBR-57J5APZ的Datasheet PDF文件第6页浏览型号AFBR-57J5APZ的Datasheet PDF文件第7页 
Flammability  
plant and remote transmitter. When operating out of re-  
quirements, the link cannot guarantee error free trans-  
mission.  
The AFBR-57J5APZ optical transceiver is made of metal  
and high strength, heat resistant, chemical resistant and  
UL 94V-0 flame retardant plastic.  
Fault Isolation  
Predictive Failure Identification  
The fault isolation feature allows a host to quickly  
pinpoint the location of a link failure, minimizing  
downtime. For optical links, the ability to identify a fault  
at a local device, remote device or cable plant is crucial to  
speeding service of an installation. AFBR-57J5APZ real-  
time monitors of Tx_Bias, Tx_Power, Vcc, Temperature and  
Rx_Power can be used to assess local transceiver current  
operating conditions. In addition, status flags Tx_Disable  
and Rx Loss of Signal (LOS) are mirrored in memory and  
available via the two-wire serial interface.  
The AFBR-57J5APZ predictive failure feature allows a host  
to identify potential link problems before system perfor-  
mance is impacted. Prior identification of link problems  
enables a host to service an application via “fail over”  
to a redundant link or replace a suspect device, main-  
taining system uptime in the process. For applications  
where ultra-high system uptime is required, a digital SFP  
provides a means to monitor two real-time laser metrics  
associated with observing laser degradation and pre-  
dicting failure: average laser bias current (Tx_Bias) and  
average laser optical power (Tx_Power).  
Component Monitoring  
Compliance Prediction:  
Component evaluation is a more casual use of the  
AFBR-57J5APZ real-time monitors of Tx_Bias, Tx_Power,  
Vcc, Temperature and Rx_Power. Potential uses are as  
debugging aids for system installation and design, and  
transceiver parametric evaluation for factory or field qual-  
ification. For example, temperature per module can be  
observed in high density applications to facilitate thermal  
evaluation of blades, PCI cards and systems.  
Compliance prediction is the ability to determine if an  
optical transceiver is operating within its operating and  
environmental requirements. AFBR-57J5APZ devices  
provide real-time access to transceiver internal supply  
voltage and temperature, allowing a host to identify  
potential component compliance issues. Received optical  
power is also available to assess compliance of a cable  
Table 1. Regulatory Compliance  
Feature  
Test Method  
Performance  
Electrostatic Discharge (ESD)  
to the Electrical Pins  
MIL-STD-883C Method 3015.4  
Class 1 (> 2000 Volts)  
Electrostatic Discharge (ESD)  
to the Duplex LC Receptacle  
Variation of IEC 61000-4-2  
GR1089  
Typically, no damage occurs with 25 kV when the duplex LC  
connector receptacle is contacted by a Human Body Model probe.  
10 contacts of 8 KV on the electrical faceplate with device inserted  
into a panel.  
Electrostatic Discharge (ESD)  
to the Optical Connector  
Variation of IEC 801-2  
Air discharge of 15kV(min) contact to connector w/o damage  
Electromagnetic Interference FCC Class B  
System margins are dependent on customer board and chassis  
design.  
(EMI)  
CENELEC EN55022 Class B  
(CISPR 22A)  
VCCI Class 1  
Immunity  
Variation of IEC 61000-4-3  
Typically shows no measurable effect from a 10V/m field swept from  
10 MHz to 1 GHz.  
Laser Eye Safety  
US FDA CDRH AEL Class 1  
CDRH certification # TBD  
and Equipment Type Testing  
US21 CFR, Subchapter J per Paragraphs 1002.10 and TUV file # TBD  
1002.12.  
(IEC) EN60825-1: 1994 + A11+A2  
BAUART  
¨
GEPRUFT  
¨
TUV  
TYPE  
APPROVED  
Rheinland  
Product Safety  
(IEC) EN60825-2: 1994 + A1  
(IEC) EN60950: 1992 + A1 + A2 + A3+ A4 + A11  
Component Recognition  
Underwriters Laboratories and Canadian Standards UL File # TBD  
Association Joint Component Recognition for Infor-  
mation Technology Equipment Including Electrical  
Business Equipment  
4

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