BL-R2132C [BRTLED]

GaP/GaP Green Low power consumption.; 的GaP / GaP的绿光低功耗。
BL-R2132C
型号: BL-R2132C
厂家: BRTLED    BRTLED
描述:

GaP/GaP Green Low power consumption.
的GaP / GaP的绿光低功耗。

光电
文件: 总2页 (文件大小:132K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
BRIGHT LED ELECTRONICS CORP.  
SINCE 1981  
BL-R2132C  
Features:  
Package dimensions:  
1. Chip material: GaP/GaP  
2. Emitted color : Green  
3. Lens Appearance : Green Diffused  
4. Low power consumption.  
5. Most suitable for use like level indicator.  
6. Excellent uniformity of light emittance.  
7. Long life solid state reliability.  
8. Compatible.  
9. This product don’t contained restriction  
substance, compliance ROHS standard.  
Notes:  
Applications:  
1. TV set  
1. All dimensions are in millimeters (inches).  
2. Tolerance is ±0.25mm (0.01”) unless otherwise specified.  
3. Lead spacing is measured where the leads emerge from  
the package.  
2. Monitor  
3. Telephone  
4. Computer  
5. Circuit board  
4. Specifications are subject to change without notice.  
Absolute maximum ratings(Ta=25)  
Parameter  
Power Dissipation  
Symbol  
Pd  
Rating  
Unit  
mW  
mA  
mA  
V
80  
Forward Current  
IF  
30  
150  
Peak Forward Current*1  
IFP  
Reverse Voltage  
VR  
5
-40~80℃  
-40~85℃  
260(for 5 seconds)  
Operating Temperature  
Storage Temperature  
Soldering Temperature  
Topr  
Tstg  
Tsol  
*1Condition for IFP is pulse of 1/10 duty and 0.1msec width.  
Ver.1.0 Page 1 of 2  
BRIGHT LED ELECTRONICS CORP.  
SINCE 1981  
BL-R2132C  
Electrical and optical characteristics(Ta=25)  
Parameter  
Symbol  
VF  
Condition  
IF=20mA  
IF=20mA  
VR=5V  
Min.  
Typ.  
2.2  
4.0  
-
Max.  
Unit  
V
Forward Voltage  
-
2.6  
Luminous Intensity  
Reverse Current  
Peak Wave Length  
Dominant Wave Length  
Spectral Line Half-width  
Viewing Angle  
Iv  
-
-
mcd  
µA  
nm  
nm  
nm  
deg  
IR  
-
100  
λp  
λd  
λ  
2θ1/2  
IF=20mA  
IF=20mA  
IF=20mA  
IF=20mA  
-
568  
-
-
560  
576  
-
-
30  
-
-
130  
Typical electro-optical characteristics curves  
Fig.1 Relative intensity vs. Wavelength  
Fig.2 Forward current derating curve  
vs. Ambient temperature  
1.0  
60  
50  
40  
30  
20  
0.5  
10  
0
0
520  
570  
620  
20  
40  
60  
80  
100  
Wavelength λ(nm)  
Ambient temperature Ta()  
Fig.3 Forward current vs. Forward voltage  
Fig.4 Relative luminous intensity  
vs. Ambient temperature  
50  
40  
30  
20  
10  
0
3.0  
2.5  
2.0  
1.5  
1.0  
0.5  
0
1
2
3
4
5
-40  
-20  
0
20  
40  
60  
Forward voltage(V)  
Ambient temperature Ta()  
Fig.5 Relative luminous intensity  
vs. Forward current  
Fig.6 Radiation diagram  
0
10  
20  
2.0  
30  
1.5  
1.0  
40  
50  
1.0  
0.9  
0.8  
60  
70  
0.5  
0
0.7  
80  
90  
10  
20  
30  
40  
50  
0.5  
0.3  
0.1  
0.2  
0.4  
0.6  
Forward current (mA)  
Ver.1.0 Page 2 of 2  

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