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AFBR-5803TZ PDF预览

AFBR-5803TZ

更新时间: 2024-01-16 03:58:16
品牌 Logo 应用领域
安捷伦 - AGILENT 异步传输模式以太网ATM
页数 文件大小 规格书
16页 288K
描述
FDDI, 100 Mb/s ATM, and Fast Ethernet Transceivers in Low Cost 1 x 9 Package Style

AFBR-5803TZ 技术参数

是否Rohs认证: 符合生命周期:Active
Reach Compliance Code:compliantECCN代码:5A991.B.5.A
HTS代码:8517.62.00.50风险等级:1.32
Samacsys Confidence:4Samacsys Status:Released
2D Presentation:https://componentsearchengine.com/2D/0T/839502.1.1.pngSchematic Symbol:https://componentsearchengine.com/symbol.php?partID=839502
PCB Footprint:https://componentsearchengine.com/footprint.php?partID=8395023D View:https://componentsearchengine.com/viewer/3D.php?partID=839502
Samacsys PartID:839502Samacsys Image:https://componentsearchengine.com/Images/9/AFBR-5803Z.jpg
Samacsys Thumbnail Image:https://componentsearchengine.com/Thumbnails/1/AFBR-5803Z.jpgSamacsys Pin Count:9
Samacsys Part Category:Integrated CircuitSamacsys Package Category:Other
Samacsys Footprint Name:AFBR-5803Z-2Samacsys Released Date:2019-02-07 11:12:52
Is Samacsys:N其他特性:IT ALSO OPERATES VOLTAGE RANGES FROM 4.75V TO 5.25V, 1X9 ARRAY
主体宽度:25.4 mm主体高度:12 mm
主体长度或直径:24.8 mm内置特性:AMPLIFIER
通信标准:ATM, OC-3C, SONET连接类型:SC CONNECTOR
数据速率(接收):125 Mbps数据速率(发送):125 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, MMFJESD-609代码:e3
安装特点:THROUGH HOLE MOUNT最高工作温度:70 °C
最低工作温度:最大工作波长:1380 nm
最小工作波长:1270 nm标称工作波长:1308 nm
标称光功率输出:0.039 mW子类别:Fiber Optic Transceivers
最大供电电压:3.5 V最小供电电压:3.135 V
标称供电电压:3.3 V表面贴装:NO
端子面层:Tin (Sn)Base Number Matches:1

AFBR-5803TZ 数据手册

 浏览型号AFBR-5803TZ的Datasheet PDF文件第2页浏览型号AFBR-5803TZ的Datasheet PDF文件第3页浏览型号AFBR-5803TZ的Datasheet PDF文件第4页浏览型号AFBR-5803TZ的Datasheet PDF文件第6页浏览型号AFBR-5803TZ的Datasheet PDF文件第7页浏览型号AFBR-5803TZ的Datasheet PDF文件第8页 
Application Information  
equipment mission life periods. encoding factor used to encode  
The Applications Engineering  
group in the Agilent Fiber  
Contact your Agilent sales  
representative for additional  
the data  
(symbols/bit).  
Optics Communication Division details.  
is available to assist you with  
When used in Fast Ethernet,  
FDDI and ATM 100 Mb/s  
applications the performance  
Figure 4 was generated with a  
Agilent fiber optic link model  
the technical understanding  
and design trade-offs  
associated with these trans-  
ceivers. You can contact them  
through your Agilent sales  
representative.  
containing the current industry of the 1300 nm transceivers is  
conventions for fiber cable  
specifications and the FDDI  
PMD and LCF-PMD optical  
parameters. These parameters  
guaranteed over the signaling  
rate of 10 MBd to  
125 MBd to the full conditions  
listed in individual product  
The following information is  
provided to answer some of  
the most common questions  
about the use of these parts.  
are reflected in the guaranteed specification tables.  
performance of the transceiver  
2.5  
specifications in this data  
sheet. This same model has  
2.0  
been used extensively in the  
ANSI and IEEE committees,  
including the ANSI X3T9.5  
committee, to establish the  
optical performance require-  
ments for various fiber optic  
interface standards. The cable  
parameters used come from  
the ISO/IEC JTC1/SC 25/WG3  
Generic Cabling for Customer  
Premises per  
DIS 11801 document and the  
EIA/TIA-568-A Commercial  
Building Telecommunications  
Cabling Standard per SP-2840.  
Transceiver Optical Power Budget  
versus Link Length  
Optical Power Budget (OPB) is  
the available optical power for  
a fiber optic link to  
accommodate fiber cable losses  
plus losses due to in-line  
connectors, splices, optical  
switches, and to provide  
margin for link aging and  
unplanned losses due to cable  
plant reconfiguration or repair.  
1.5  
1.0  
0.5  
0
0.5  
0
25 50  
75 100 125 150 175 200  
SIGNAL RATE (MBd)  
CONDITIONS:  
1. PRBS 27-1  
2. DATA SAMPLED AT CENTER OF DATA SYMBOL.  
3. BER = 10-ꢀ  
4. TA = +25˚ C  
5. VCC = 3.3 V to 5 V dc  
ꢀ. INPUT OPTICAL RISE/FALL TIMES = 1.0/2.1 ns.  
Figure 4 illustrates the pre-  
dicted OPB associated with the  
transceiver series specified in  
this data sheet at the Beginning  
of Life (BOL). These curves  
represent the attenuation and  
chromatic plus modal  
dispersion losses associated  
with the 62.5/125 µm and 50/  
125 µm fiber cables only. The  
area under the curves  
Figure 5. Transceiver Relative Optical Power  
Budget at Constant BER vs. Signaling Rate.  
12  
AFBR-5803, ꢀ2.5/125 µm  
10  
The transceivers may be used  
for other applications at  
signaling rates outside of the  
10 MBd to 125 MBd range  
with some penalty in the link  
optical power budget primarily  
caused by a reduction of  
receiver sensitivity. Figure 5  
gives an indication of the  
typical performance of these  
1300 nm products at different  
rates.  
8
AFBR-5803  
50/125 µm  
4
2
represents the remaining OPB  
at any link length, which is  
available for overcoming non-  
fiber cable related losses.  
1.  
0
0
0.3 0.5  
1.5  
2.0  
2.5  
FIBER OPTIC CABLE LENGTH (km)  
Figure 4. Optical Power Budget at BOL versus  
Fiber Optic Cable Length.  
Agilent LED technology has  
produced 1300 nm LED  
devices with lower aging  
characteristics than normally  
associated with these  
technologies in the industry.  
The industry convention is 1.5  
dB aging for 1300 nm LEDs.  
The Agilent 1300 nm LEDs will  
experience less than 1 dB of  
aging over normal commercial  
These transceivers can also be  
used for applications which  
require different Bit Error  
Rate (BER) performance.  
Figure 6 illustrates the typical  
trade-off between link BER  
and the receivers input optical  
power level.  
Transceiver Signaling Operating  
Rate Range and BER Performance  
For purposes of definition, the  
symbol (Baud) rate, also called  
signaling rate, is the reciprocal  
of the shortest symbol time.  
Data rate (bits/sec) is the  
symbol rate divided by the  
5

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