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HFBR-2522 参数 Datasheet PDF下载

HFBR-2522图片预览
型号: HFBR-2522
PDF下载: 下载PDF文件 查看货源
内容描述: 多功能连接的通用光纤连接 [Versatile Link The Versatile Fiber Optic Connection]
分类和应用: 光纤
文件页数/大小: 19 页 / 195 K
品牌: AVAGO [ AVAGO TECHNOLOGIES LIMITED ]
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HFBR-15X3 Transmitter  
Pin #  
Function  
Anode  
1
2
3
4
5
8
8 DO NOT CONNECT  
Cathode  
1
ANODE  
2
Open  
CATHODE  
3
Open  
N.C.  
4
Do not connect  
Do not connect  
N.C.  
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  
Symbol  
Min.  
40  
40  
Max.  
+85  
+85  
260  
10  
Units  
°C  
Reference  
Storage Temperature  
Operating Temperature  
Lead Soldering Cycle  
T
S
T
A
°C  
Temp.  
Time  
°C  
Note 1  
sec  
mA  
Forward Input Current  
Reverse Input Voltage  
I
1000  
80  
Note 2, 3  
FPK  
I
Fdc  
V
BR  
5
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 Avago 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  
PT/T  
0.85  
%/°C  
Temperature Coefficient  
Peak Emission  
Wavelength  
λPK  
660  
nm  
Forward Voltage  
VF  
1.45  
5.0  
1.67  
2.02  
V
IFdc = 60 mA  
Forward Voltage  
Temperature Coefficient  
VF/T  
1.37  
mV/°C  
Fig. 18  
Effective Diameter  
Numerical Aperture  
D
1
mm  
V
NA  
VBR  
0.5  
Reverse Input Breakdown  
Voltage  
11.0  
IFdc = 10 µA,  
TA = 25°C  
Diode Capacitance  
Rise Time  
CO  
tr  
86  
80  
40  
pF  
ns  
VF = 0, f = 1 MHz  
10% to 90%,  
I = 60 mA  
F
Note 1  
Fall Time  
tf  
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.  
17