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HFBR-5205A PDF预览

HFBR-5205A

更新时间: 2024-02-15 11:06:06
品牌 Logo 应用领域
其他 - ETC 光电异步传输模式ATM
页数 文件大小 规格书
23页 414K
描述
ATM MMF Transceiver for SONET OC-3/SDH STM-1 in 1x9 Package: Extended Temp.. SC

HFBR-5205A 技术参数

生命周期:Obsolete包装说明:,
Reach Compliance Code:unknown风险等级:5.84
Base Number Matches:1

HFBR-5205A 数据手册

 浏览型号HFBR-5205A的Datasheet PDF文件第4页浏览型号HFBR-5205A的Datasheet PDF文件第5页浏览型号HFBR-5205A的Datasheet PDF文件第6页浏览型号HFBR-5205A的Datasheet PDF文件第8页浏览型号HFBR-5205A的Datasheet PDF文件第9页浏览型号HFBR-5205A的Datasheet PDF文件第10页 
7
The following information is  
provided to answer some of the  
most common questions about  
the use of these parts.  
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  
1300 nm Agilent LEDs are  
specified to experience less than  
1 dB of aging over normal  
commercial equipment mission  
life periods. Contact your Agilent  
sales representative for additional  
details.  
cable parameters used come from  
the ISO/IEC JTC1/SC 25/WG3  
Generic Cabling for Customer  
Premises per DIS 11801 docu-  
ment and the EIA/TIA-568-A  
Commercial Building  
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  
Telecommunications Cabling  
Standard per SP-2840.  
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 symbol time. Data rate (bits/  
sec) is the symbol rate divided by  
the encoding factor used to  
encode the data (symbols/bit).  
unplanned losses due to cable  
plant reconfiguration or repair.  
Figure 4 was generated for the  
1300 nm transceivers with an  
Agilent fiber optic link model  
containing the current industry  
conventions for fiber cable  
specifications and the draft ANSI  
T1E1.2. These optical parameters  
are reflected in the guaranteed  
performance of the transceiver  
specifications in this data sheet.  
This same model has been used  
extensively in the ANSI and IEEE  
committees, including the ANSI  
T1E1.2 committee, to establish  
the optical performance  
Figure 4 illustrates the predicted  
OPB associated with the three  
transceivers series specified in  
this data sheet at the Beginning of  
Life (BOL). These curves repre-  
sent 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  
When used in 155 Mbps SONET  
OC-3 applications the perform-  
ance of the 1300 nm transceivers,  
HFBR-5204/5205 is guaranteed  
to the full conditions listed in  
individual product specification  
tables.  
represents the remaining OPB at  
any link length, which is available  
for overcoming non-fiber cable  
losses.  
requirements for various fiber  
optic interface standards. The  
12  
HFBR-5205, 62.5/125 µm  
10  
8
HFBR-5205,  
50/125 µm  
6
HFBR-5204,  
62.5/125 µm  
4
2
HFBR-5204,  
50/125 µm  
0
0.3 0.5  
1.0  
1.5  
2.0  
2.5  
FIBER OPTIC CABLE LENGTH (km)  
Figure 4. Optical Power Budget vs.  
Fiber Optic Cable Length.  

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