佰鴻工業股份有限公司
http://www.brtled.com
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Ver.1.0 Page: 1 of 2
SINCE 1981
8.62(.339)
1.0(.039)
21.0(.827) MIN.
2.0(.08)MIN.
0.5(.02)
SQ. TYP.
2.54(.10)
NOM.
2.54(.10)
NOM.
1.5(.059)
MAX. 1.5 0.5
(.059)
5.7(.22)
Hi-Eff Red
Anode
Green
Anode
5.0(.197)
Center Leads
Common Cathode
Notes:
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.
4. Specifications are subject to change without notice.
Features: Package Dimensions:
1. Chip material: GaAsP/GaP (Red)
and GaP/GaP (Green)
2. Emitted color : Hi-Eff Red and Green
3. Lens Appearance : White Diffused
4. Low power consumption.
5. High efficiency.
6. Versatile mounting on P.C. Board or panel.
7. Low current requirement.
8. 5mm diameter package
9. This product don’t contained restriction
substance, compliance ROHS standard.
Applications:
1. TV set
2. Monitor
3. Telephone
4. Computer
5. Circuit board
Absolute Maximum Ratings(Ta=25)
Parameter Symbol Hi-Eff Red Green Unit
Power Dissipation Pd 80 80 mW
Forward Current IF 30 30 mA
Peak Forward Current*1 I
FP 150 150 mA
Reverse Voltage V
R 5 V
Operating Temperature Topr -40~85
Storage Temperature Tstg -40~100
Soldering Temperature Tsol 260(for 5 seconds)
*1Condition for IFP is pulse of 1/10 duty and 0.1msec width.
1.2
佰鴻工業股份有限公司
http://www.brtled.com
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BR
RI
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SINCE 1981
Electrical and optical characteristics(Ta=25)
Parameter Symbol Condition Color Min. Typ. Max. Unit
Forward Voltage VF I
F=20mA Hi-Eff Red
Green - 2.1
2.2
2.6
2.6 V
Luminous Intensity Iv IF=20mA Hi-Eff Red
Green - 45
45 - mcd
Reverse Current IR V
R=5V Hi-Eff Red
Green - - 100
µA
Peak Wave Length λp IF=20mA Hi-Eff Red
Green - 640
568 - nm
Dominant Wave Length λd IF=20mA Hi-Eff Red
Green
617
560
-
-
638
576 nm
Spectral Line Half-width λ IF=20mA Hi-Eff Red
Green - 40
30 - nm
Viewing Angle 2θ1/2 I
F=20mA Hi-Eff Red
Green - 50 - deg
Typical Electro-Optical Characteristics Curves
Fig.3 Forward current vs. Forward voltage Fig.4 Relative luminous intensity
6.0
Relative luminous intensity(@20mA)
5
0
1.0
2.0
4.0
3.0
5.0
Forward current (mA)
2010 30 40 50
(E)
Fig.5 Relative luminous intensity
8.0
7.0
0
Forward current(mA)
20
10
30
40
50
vs. Forward current
2
Forward voltage(V)
1 3
(G)
54
(G)
(E)
Relative radiant intensity
Ambient temperature Ta( )
vs. Ambient temperature
0.5
Fig.6 Radiation diagram
-40
0
-20 200
2.0
Relative luminous intensity
1.0
1.5
2.5
3.0
6040
Fig.1 Relative intensity vs. Wavelength
Relative radiant intensity
500
0
0.5
1.0
Wavelength λ(nm)
580 640 720
(G) (E)
Ambient temperature Ta( )
vs. Ambient temperature
Fig.2 Forward current derating curve
Forward current(mA)
0
20
1010
30
20 40 60
40
50
60
10080
0.7
0.8
0.9
0.30.5 0.1
1.0
0
80
0.40.2 0.6
90
70
60
50
2010
40
30
1.1