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HFBR-2416OPTIONK PDF预览

HFBR-2416OPTIONK

更新时间: 2023-03-15 00:00:00
品牌 Logo 应用领域
安捷伦 - AGILENT /
页数 文件大小 规格书
29页 392K
描述
Receiver, 175Mbps, ST Connector, DIP, Panel Mount

HFBR-2416OPTIONK 数据手册

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27  
Dynamic Characteristics -40°C to +85°C; 4.75 V Supply Voltage 5.25 V; R  
= 511 , C  
LOAD  
LOAD  
= 5 pF unless otherwise specified  
[2]  
Parameter  
Symbol Min. Typ.  
Max. Units  
Conditions  
Reference  
Rise/Fall Time  
10% to 90%  
Pulse Width Distortion  
t , t  
3.3  
0.4  
2
6.3  
ns  
ns  
%
P = 100 µW peak Figure 15  
r
f
R
PWD  
2.5  
P = 150 µW peak  
R
Note 8,  
Figure 14  
Overshoot  
P = 5 µW peak,  
R
Note 9  
t = 1.5 ns  
r
Bandwidth (Electrical)  
BW  
125  
MHz  
-3 dB Electrical  
Bandwidth - Rise  
Time Product  
0.41  
Hz • s  
Note 10  
Notes:  
1. 2.0 mm from where leads enter case.  
2. Typical specifications are for operation at T = 25°C and V = +5 V dc.  
A
CC  
3. For 200 µm HCS fibers, typical responsivity will be 6 mV/µW. Other parameters will change as well.  
4. Pin #2 should be ac coupled to a load 510 ohm. Load capacitance must be less than 5 pF.  
5. Measured with a 3 pole Bessel filter with a 75 MHz, -3 dB bandwidth. Recommended receiver filters for various bandwidths are  
provided in Application Bulletin 78.  
6. Overdrive is defined at PWD = 2.5 ns.  
7. 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.  
8. Measured with a 10 ns pulse width, 50% duty cycle, at the 50% amplitude point of the waveform.  
9. Percent overshoot is defined as:  
V
- V  
PK  
100%  
––––––––––  
x 100%  
(
V
)
100%  
10. The conversion factor for the rise time to bandwidth is 0.41 since the HFBR-24X6 has a second order bandwidth limiting  
characteristic.  
0.1 µF  
+5 V  
10 Ω  
6
30 pF  
2
POST  
AMP  
LOGIC  
OUTPUT  
3 & 7  
R
LOADS  
500 MIN.  
Figure 12. Recommended ac Coupled Receiver Circuit. (See AB 78 and AN 1038 for more information.)  
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.  

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