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HFBR-24E2C PDF预览

HFBR-24E2C

更新时间: 2024-01-23 07:59:39
品牌 Logo 应用领域
安捷伦 - AGILENT 光纤放大器通信
页数 文件大小 规格书
26页 283K
描述
Components is Designed to Provide cost effective, High performance fiber optic communication links

HFBR-24E2C 技术参数

是否无铅: 不含铅是否Rohs认证: 符合
生命周期:ActiveReach Compliance Code:compliant
Factory Lead Time:26 weeks风险等级:2.17
Samacsys Confidence:4Samacsys Status:Released
2D Presentation:https://componentsearchengine.com/2D/0T/962268.1.1.pngSchematic Symbol:https://componentsearchengine.com/symbol.php?partID=962268
PCB Footprint:https://componentsearchengine.com/footprint.php?partID=9622683D View:https://componentsearchengine.com/viewer/3D.php?partID=962268
Samacsys PartID:962268Samacsys Image:https://componentsearchengine.com/Images/9/HFBR-24E2Z.jpg
Samacsys Thumbnail Image:https://componentsearchengine.com/Thumbnails/1/HFBR-24E2Z.jpgSamacsys Pin Count:8
Samacsys Part Category:Integrated CircuitSamacsys Package Category:Other
Samacsys Footprint Name:HFBR-24E2Z-1Samacsys Released Date:2019-01-24 13:38:41
Is Samacsys:N其他特性:IT HAS A DATA RATE OF 5 MBD, IT HAS A RESPONSIVITY OF 7 MV/MICRO WATT
主体宽度:12.7 mm主体长度或直径:28.65 mm
内置特性:AMPLIFIER连接类型:SC CONNECTOR
发射极/检测器类型:PIN PHOTODIODE光纤设备类型:RECEIVER
光纤类型:62.5/125, MMF安装特点:THROUGH HOLE MOUNT
最高工作温度:85 °C最低工作温度:-40 °C
最大工作波长:865 nm最小工作波长:792 nm
标称工作波长:820 nm接收类型:ANALOG
灵敏度:-25.4 dBm子类别:Fiber Optic Receivers
最大供电电压:5.25 V最小供电电压:4.75 V
标称供电电压:5 V表面贴装:NO
Base Number Matches:1

HFBR-24E2C 数据手册

 浏览型号HFBR-24E2C的Datasheet PDF文件第18页浏览型号HFBR-24E2C的Datasheet PDF文件第19页浏览型号HFBR-24E2C的Datasheet PDF文件第20页浏览型号HFBR-24E2C的Datasheet PDF文件第22页浏览型号HFBR-24E2C的Datasheet PDF文件第23页浏览型号HFBR-24E2C的Datasheet PDF文件第24页 
Electrical/Optical Characteristics -40 °C to + 85 °C unless otherwise specified  
Fiber sizes with core diameter 100 µm and NA 0.35, 4.75 V V 5.25 V  
CC  
Parameter  
Symbol Min  
Typ3  
Max  
Units  
Conditions  
Reference  
High Level Output Current  
IOH  
5
250  
µA  
VO = 18  
PR < -40 dBm  
Low Level Output Voltage  
High Level Supply Current  
Low Level Supply Current  
VOL  
ICCH  
ICCL  
0.4  
3.5  
6.2  
0.5  
6.3  
10  
V
IO = 8 mA  
PR > -24 dBm  
mA  
mA  
VCC = 5.25 V  
PR < -40 dBm  
VCC = 5.25 V  
PR > -24 dBm  
Equivalent NA  
NA  
D
0.50  
400  
Optical Port Diameter  
µm  
Note 4  
Dynamic Characteristics  
-40 °C to +85 °C unless otherwise specified; 4.75 V V 5.25 V; BER 10-9  
CC  
Parameter  
Symbol Min  
Typ3  
Max  
Units  
Conditions  
Reference  
lP = 820 nm  
Peak Optical Input Power Logic Level HIGH PRH  
-40  
0.1  
dBm pk  
µW pk  
Note 5  
Peak Optical Input Power Logic Level LOW PRL  
-25.4  
2.9  
-9.2  
120  
dBm pk  
µW pk  
TA = +25 °C,  
IOL = 8mA  
Note 5  
Note 6  
-24.0  
4.0  
-10.0  
100  
dBm pk  
µW pk  
IOL = 8mA  
Propagation Delay LOW to HIGH  
Propagation Delay HIGH to LOW  
tPLHR  
tPHLR  
65  
49  
ns  
ns  
TA = +25 °C,  
PR = -21 dBm,  
Data Rate =  
5 MBd  
Notes:  
1. 2.0 mm from where leads enter case.  
2. 8 mA load (5 x 1.6 mA), RL = 560 W.  
3. Typical data at T = +25 °C, V = 5.0 Vdc.  
A
CC  
4. D is the effective diameter of the detector image on the plane of the fiber face. The numerical value is the product of the actual detector diameter  
and the lens magnification.  
5. Measured at the end of 100/140 mm fiber optic cable with large area detector.  
6. Propagation delay through the system is the result of several sequentially-occurring phenomena. Consequently it is a combination of data-rate-  
limiting effects and of transmission-time effects. Because of this, the data-rate limit of the system must be described in terms of time differentials  
between delays imposed on falling and rising edges.  
7. As the cable length is increased, the propagation delays increase at 5 ns per meter of length. Data rate, as limited by pulse width distortion, is not  
affected by increasing cable length if the optical power level at the receiver is maintained.  
CAUTION: The small junction sizes inherent to the design of these components increase the components’ susceptibility to damage  
from electrostatic discharge (ESD). It is advised that normal static precautions be taken in handling and assembly of these  
components to prevent damage and/or degradation which may be induced by ESD.  
21  

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