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DR8-NJS-R-1 数据表(PDF) 5 Page - DOMINANT Semiconductors

部件名 DR8-NJS-R-1
功能描述  DomiLED
PDF  14 Pages
Scroll/Zoom Zoom In 100%  Zoom Out
制造商  DOMINANT [DOMINANT Semiconductors]
网页  http://www.dominant-semi.com
标志 DOMINANT - DOMINANT Semiconductors

DR8-NJS-R-1 数据表(HTML) 5 Page - DOMINANT Semiconductors

  DR8-NJS-R-1 Datasheet HTML 1Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 2Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 3Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 4Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 5Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 6Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 7Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 8Page - DOMINANT Semiconductors DR8-NJS-R-1 Datasheet HTML 9Page - DOMINANT Semiconductors Next Button
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background image
5
17/10/2017 V2.0
IR : DR8-NJS
DOMINANT
Opto Technologies
Innovating Illumination
TM
Junction Temperature T
j(°C)
Relative Forward Voltage Vs Junction Temperature
∆V
F = VF - VF(25°C) = f(Tj); IF =70mA
Junction Temperature T
j(°C)
Relative Radiant Intensity Vs Junction Temperature
I
e/Ie(25°C) = f(Tj); IF = 70mA
Junction Temperature T
j(°C)
Relative Wavelength Vs Junction Temperature
∆λdom = λdom - λdom (25°C) = f(T
j); IF =70mA
0.00
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
0
30
60
90
120 150 180 210 240 270 300
Relative Wavelength Shift Vs Forward Current
λdom = f(IF); Tj = 25°C
Forward Current IF (mA)
-0.5
-0.4
-0.3
-0.2
-0.1
0.0
0.1
0.2
0.3
0.4
0.5
-50
-25
0
25
50
75
100
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
2.0
-50
-25
0
25
50
75
100
Relative Forward Voltage Vs Junction Temperature
∆VF = VF -VF(25°C) = f(Tj); IF = 70mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
-60.0
-50.0
-40.0
-30.0
-20.0
-10.0
0.0
10.0
20.0
30.0
40.0
50.0
60.0
-50
-25
0
25
50
75
100
-0.030
-0.025
-0.020
-0.015
-0.010
-0.005
0.000
0.005
0.010
0.015
0.020
0.025
0.030
-50
-30
-10
10
30
50
70
90
110 130 150
Relative Wavelength Vs Junction Temperature
∆λdom = λdom - λdom (25°C) = f(Tj); IF = 70mA
Chromaticity Coordinate Shift Vs Junction Temperature
∆Cx, ∆Cy = f(Tj); IF = 50mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
∆Cx
∆Cy
Relative Radiant IntensityVs Junction Temperature
Ie/Ie(25°C) = f(Tj); IF = 70mA
0.00
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
0
30
60
90
120 150 180 210 240 270 300
Relative Wavelength Shift Vs Forward Current
λdom = f(IF); Tj = 25°C
Forward Current IF (mA)
-0.5
-0.4
-0.3
-0.2
-0.1
0.0
0.1
0.2
0.3
0.4
0.5
-50
-25
0
25
50
75
100
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
2.0
-50
-25
0
25
50
75
100
Relative Forward Voltage Vs Junction Temperature
∆VF = VF -VF(25°C) = f(Tj); IF = 70mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
-60.0
-50.0
-40.0
-30.0
-20.0
-10.0
0.0
10.0
20.0
30.0
40.0
50.0
60.0
-50
-25
0
25
50
75
100
-0.030
-0.025
-0.020
-0.015
-0.010
-0.005
0.000
0.005
0.010
0.015
0.020
0.025
0.030
-50
-30
-10
10
30
50
70
90
110 130 150
Relative Wavelength Vs Junction Temperature
∆λdom = λdom - λdom (25°C) = f(Tj); IF = 70mA
Chromaticity Coordinate Shift Vs Junction Temperature
∆Cx, ∆Cy = f(Tj); IF = 50mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
∆Cx
∆Cy
Relative Radiant IntensityVs Junction Temperature
Ie/Ie(25°C) = f(Tj); IF = 70mA
0.00
0.10
0.20
0.30
0.40
0.50
0.60
0.70
0.80
0.90
1.00
0
30
60
90
120 150 180 210 240 270 300
Relative Wavelength Shift Vs Forward Current
λdom = f(IF); Tj = 25°C
Forward Current IF (mA)
-0.5
-0.4
-0.3
-0.2
-0.1
0.0
0.1
0.2
0.3
0.4
0.5
-50
-25
0
25
50
75
100
0.0
0.2
0.4
0.6
0.8
1.0
1.2
1.4
1.6
1.8
2.0
-50
-25
0
25
50
75
100
Relative Forward Voltage Vs Junction Temperature
∆VF = VF -VF(25°C) = f(Tj); IF = 70mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
-60.0
-50.0
-40.0
-30.0
-20.0
-10.0
0.0
10.0
20.0
30.0
40.0
50.0
60.0
-50
-25
0
25
50
75
100
-0.030
-0.025
-0.020
-0.015
-0.010
-0.005
0.000
0.005
0.010
0.015
0.020
0.025
0.030
-50
-30
-10
10
30
50
70
90
110 130 150
Relative Wavelength Vs Junction Temperature
∆λdom = λdom - λdom (25°C) = f(Tj); IF = 70mA
Chromaticity Coordinate Shift Vs Junction Temperature
∆Cx, ∆Cy = f(Tj); IF = 50mA
Junction Temperature Tj(°C)
Junction Temperature Tj(°C)
∆Cx
∆Cy
Relative Radiant IntensityVs Junction Temperature
Ie/Ie(25°C) = f(Tj); IF = 70mA



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