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DSF-LSG Datasheet(PDF) 8 Page - DOMINANT Semiconductors

Part # DSF-LSG
Description  Right Angle DomiLED
PDF  18 Pages
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Manufacturer  DOMINANT [DOMINANT Semiconductors]
Direct Link  http://www.dominant-semi.com
Logo DOMINANT - DOMINANT Semiconductors

DSF-LSG Datasheet(HTML) 8 Page - DOMINANT Semiconductors

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30/05/2017 V5.0
8
InGaN Warm White : DSF-LSG
DOMINANT
Opto Technologies
Innovating Illumination
TM
Forward Current Vs Forward Voltage
I
F = f(VF); Tj = 25°C
Forward Voltage V
F (V)
Forward Current I
F (mA)
Relative Luminous Intensity Vs Forward Current
I
V/IV(20mA) = f(IF); Tj = 25°C
Temperature T(°C)
Maximum Current Vs Temperature
I
F=f(T)
Forward Current I
F (mA)
Chromaticity Coordinate Shift Vs Forward Current
∆Cx, ∆Cy = f(I
F);Tj = 25°C
Relative Spectral Emission
I
rel = f(λ); Tj = 25°C; IF = 20mA
Wavelength λ (nm)
Duty Ratio, %
Allowable Forward Current Vs Duty Ratio
( T
j = 25°C; tp ≤ 10μs )
0.0
0.2
0.4
0.6
0.8
1.0
1.2
0
5
10
15
20
0
5
10
15
20
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
Forward Current IF (mA)
Forward Current Vs Forward Voltage
IF = f(VF); Tj = 25°C
Forward Voltage VF(V)
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength λ (nm)
Maximum Current Vs Temperature
IF = f (T)
Temperature T(°C)
Ta
0
5
10
15
20
25
30
0
10 20 30 40 50 60 70 80 90 100 110 120
Ts
T= Ambient Temperature
T= Solder Point Temperature
Allowable Forward Current Vs Duty Ratio
( Tj = 25°C; tp ≤ 10μs )
Duty Ratio, %
10
100
1000
0.1
1
10
100
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA) = f(IF); Tj = 25°C
Relative Spectral Emission
Irel = f(λ); Tj = 25°C; IF = 20mA
0.0
0.2
0.4
0.6
0.8
1.0
1.2
0
5
10
15
20
0
5
10
15
20
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
Forward Current IF (mA)
Forward Current Vs Forward Voltage
IF = f(VF); Tj = 25°C
Forward Voltage VF(V)
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength λ (nm)
Maximum Current Vs Temperature
IF = f (T)
Temperature T(°C)
Ta
0
5
10
15
20
25
30
0
10 20 30 40 50 60 70 80 90 100 110 120
Ts
T= Ambient Temperature
T= Solder Point Temperature
Allowable Forward Current Vs Duty Ratio
( Tj = 25°C; tp ≤ 10μs )
Duty Ratio, %
10
100
1000
0.1
1
10
100
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA) = f(IF); Tj = 25°C
Relative Spectral Emission
Irel = f(λ); Tj = 25°C; IF = 20mA
0.0
0.2
0.4
0.6
0.8
1.0
1.2
0
5
10
15
20
0
5
10
15
20
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
Forward Current IF (mA)
Forward Current Vs Forward Voltage
IF = f(VF); Tj = 25°C
Forward Voltage VF(V)
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength λ (nm)
Maximum Current Vs Temperature
IF = f (T)
Temperature T(°C)
Ta
0
5
10
15
20
25
30
0
10 20 30 40 50 60 70 80 90 100 110 120
Ts
T= Ambient Temperature
T= Solder Point Temperature
Allowable Forward Current Vs Duty Ratio
( Tj = 25°C; tp ≤ 10μs )
Duty Ratio, %
10
100
1000
0.1
1
10
100
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA) = f(IF); Tj = 25°C
Relative Spectral Emission
Irel = f(λ); Tj = 25°C; IF = 20mA
0.0
0.2
0.4
0.6
0.8
1.0
1.2
0
5
10
15
20
0
5
10
15
20
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
Forward Current IF (mA)
Forward Current Vs Forward Voltage
IF = f(VF); Tj = 25°C
Forward Voltage VF(V)
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength λ (nm)
Maximum Current Vs Temperature
IF = f (T)
Temperature T(°C)
Ta
0
5
10
15
20
25
30
0
10 20 30 40 50 60 70 80 90 100 110 120
Ts
T= Ambient Temperature
T= Solder Point Temperature
Allowable Forward Current Vs Duty Ratio
( Tj = 25°C; tp ≤ 10μs )
Duty Ratio, %
10
100
1000
0.1
1
10
100
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA) = f(IF); Tj = 25°C
Relative Spectral Emission
Irel = f(λ); Tj = 25°C; IF = 20mA
0.0
0.2
0.4
0.6
0.8
1.0
1.2
0
5
10
15
20
0
5
10
15
20
2.6
2.7
2.8
2.9
3.0
3.1
3.2
3.3
ForwardCurrent IF (mA)
ForwardCurrent Vs Forward Voltage
IF = f(VF); Tj = 25°C
ForwardVoltage VF(V)
0.0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1.0
350 400 450 500 550 600 650 700 750 800 850
Wavelength λ (nm)
Maximum Current Vs Temperature
IF = f (T)
Temperature T(°C)
Ta
0
5
10
15
20
25
30
0
10 20 30 40 50 60 70 80 90 100 110 120
Ts
T= Ambient Temperature
T= Solder Point Temperature
Allowable ForwardCurrent Vs Duty Ratio
( Tj = 25°C; tp ≤ 10μs )
Duty Ratio, %
10
100
1000
0.1
1
10
100
Relative Luminous Intensity Vs Forward Current
IV/IV(20mA) = f(IF); Tj = 25°C
Relative Spectral Emission
Irel = f(λ); Tj = 25°C; IF = 20mA
∆Cx
∆Cy
-0.020
-0.015
-0.010
-0.005
0.000
0.005
0.010
0.015
0.020
0
5
10
15
20
-0.80
-0.60
-0.40
-0.20
0.00
0.20
0.40
0.60
0.80
0
10
20
30
40
50
60
70
80
Relative Wavelength Shift Vs Forward Current
λdom = f(IF); Tj = 25°C
Forward Current IF (mA)
Chromaticity Coordinate Shift Vs Forward Current
∆Cx, ∆Cy = f(IF);Tj = 25°C
Forward Current IF (mA)



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