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HFBR-2522 PDF预览

HFBR-2522

更新时间: 2024-01-30 01:22:10
品牌 Logo 应用领域
安捷伦 - AGILENT 光纤
页数 文件大小 规格书
20页 410K
描述
Versatile Link The Versatile Fiber Optic Connection

HFBR-2522 技术参数

是否Rohs认证:符合生命周期:Active
包装说明:DIPReach Compliance Code:compliant
风险等级:5.11Is Samacsys:N
主体高度:7.62 mm主体长度或直径:18.8 mm
数据速率:1 Mbps光纤设备类型:RECEIVER
光纤类型:POFJESD-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:封装形式:DIP
接收类型:DIGITAL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端子面层:MATTE TIN
Base Number Matches:1

HFBR-2522 数据手册

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17  
HFBR-15X3 Transmitter  
Pin #  
Function  
Anode  
Cathode  
Open  
Open  
1
2
3
4
5
8
8 DO NOT CONNECT  
1
2
3
4
ANODE  
CATHODE  
N.C.  
N.C.  
Do not connect  
Do not connect  
5 DO NOT CONNECT  
Note: Pins 5 and 8 are for mounting and  
retaining purposes only. Do not  
electrically connect these pins.  
Absolute Maximum Ratings  
Parameter  
Storage Temperature  
Operating Temperature  
Lead Soldering Cycle  
Forward Input Current  
Reverse Input Voltage  
Symbol  
Min.  
–40  
–40  
Max.  
+85  
+85  
260  
10  
1000  
80  
5
Units  
°C  
°C  
°C  
sec  
mA  
Reference  
T
S
T
A
Temp.  
Time  
Note 1  
I
Note 2, 3  
FPK  
I
Fdc  
V
BR  
V
Notes:  
1. 1.6 mm below seating plane.  
2. Recommended operating range between 10 and 750 mA.  
3. 1 µs pulse, 20 µs period.  
All HFBR-15XX LED transmitters are classified as IEC 825-1 Accessible  
Emission Limit (AEL) Class 1 based upon the current proposed draft scheduled  
to go into effect on January 1, 1997. AEL Class 1 LED devices are considered  
eye safe. Contact your Agilent sales representative for more information.  
Transmitter Electrical/Optical Characteristics 0°C to 70°C unless otherwise specified.  
For forward voltage and output power vs. drive current graphs.  
Parameter  
Symbol  
Min. Typ.  
Max. Units  
Conditions  
Ref.  
Transmitter Output  
Optical Power  
PT  
–11.2  
–13.6  
–35.5  
–5.1  
–4.5  
dBm IFdc = 60 mA, 25°C Notes 3, 4  
IFdc = 60 mA  
IFdc = 2 mA, 0-70°C Fig. 9, 10  
Output Optical Power  
Temperature Coefficient  
Peak Emission  
Wavelength  
PT/T  
–0.85  
660  
%/°C  
λPK  
nm  
Forward Voltage  
Forward Voltage  
Temperature Coefficient  
Effective Diameter  
Numerical Aperture  
VF  
VF/T  
1.45  
5.0  
1.67  
–1.37  
2.02  
V
IFdc = 60 mA  
mV/°C  
Fig. 18  
D
NA  
VBR  
1
0.5  
11.0  
mm  
V
Reverse Input Breakdown  
Voltage  
IFdc = 10 µA,  
TA = 25°C  
Diode Capacitance  
Rise Time  
Fall Time  
CO  
tr  
tf  
86  
80  
40  
pF  
ns  
VF = 0, f = 1 MHz  
10% to 90%,  
I = 60 mA  
F
Note 1  
Note:  
1. Rise and fall times are measured with a voltage pulse driving the transmitter and a series connected 50 load. A wide bandwidth  
optical to electrical waveform analyzer, terminated to a 50 input of a wide bandwidth oscilloscope, is used for this response time  
measurement.  

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