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AFBR-57R5APZ PDF预览

AFBR-57R5APZ

更新时间: 2024-02-13 08:07:02
品牌 Logo 应用领域
安华高科 - AVAGO 光纤
页数 文件大小 规格书
19页 288K
描述
Digital Diagnostic SFP, 850 nm, 4.25/2.125/1.0625 GBd, RoHS Compliant Optical Transceiver

AFBR-57R5APZ 技术参数

是否Rohs认证: 符合生命周期:Active
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8517.62.00.50风险等级:2.27
其他特性:MSA-SFF-8472主体宽度:13.4 mm
主体高度:8.5 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):4250 Mbps
数据速率(发送):4250 Mbps发射极/检测器类型:LASER DIODE, PIN PHOTODIODE
光纤设备类型:TRANSCEIVER光纤类型:50/125, 62.5/125, MMF
JESD-609代码:e4安装特点:BOARD/PANEL MOUNT
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)
Base Number Matches:1

AFBR-57R5APZ 数据手册

 浏览型号AFBR-57R5APZ的Datasheet PDF文件第6页浏览型号AFBR-57R5APZ的Datasheet PDF文件第7页浏览型号AFBR-57R5APZ的Datasheet PDF文件第8页浏览型号AFBR-57R5APZ的Datasheet PDF文件第10页浏览型号AFBR-57R5APZ的Datasheet PDF文件第11页浏览型号AFBR-57R5APZ的Datasheet PDF文件第12页 
Table 6. Transmitter and Receiver Electrical Characteristics  
(TC = -10°C to 85°C, VccT, VccR = 3.3 V 10ꢀ)  
Parameter  
Symbol  
Minimum  
Typical  
Maximum  
Unit  
Notes  
High Speed Data Input:  
VI  
400  
2400  
mV  
Note 1  
Transmitter Differential Input Voltage (TD +/-)  
High Speed Data Output:  
Receiver Differential Output Voltage (RD +/-)  
Vo  
TJ  
600  
1600  
mV  
Note 2  
Note 3  
Receiver Contributed Total Jitter  
(4.25 Gb/s)  
0.26  
62  
UI  
ps  
UI  
ps  
UI  
ps  
ps  
Receiver Contributed Total Jitter  
(2.125 Gb/s)  
TJ  
0.26  
124  
0.22  
205  
150  
Note 3  
Note 3  
Note 4  
Receiver Contributed Total Jitter  
(1.0625 Gb/s)  
TJ  
Receiver Electrical Output Rise & Fall Times  
(20-80ꢀ)  
tr, tf  
50  
Notes:  
1. Internally AC coupled and terminated (100 Ohm differential).  
2. Internally AC coupled but requires an external load termination (100 Ohm differential).  
3. Contributed DJ is measured on an oscilloscope in average mode with 50ꢀ threshold and K28.5 pattern. Contributed TJ is the sum of contrib-  
uted RJ and contributed DJ. 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 FC-PI (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 lim-  
its with the worst case specified component jitter input.  
4. 20ꢀ-80ꢀ electrical rise & fall times measured with a 500 MHz signal utilizing a 1010 data pattern.  
9

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