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ASMT-YTC2-0AA02 View Datasheet(PDF) - Avago Technologies

Part Name
Description
MFG CO.
ASMT-YTC2-0AA02
Avagotech
Avago Technologies Avagotech
'ASMT-YTC2-0AA02' PDF : 12 Pages View PDF
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Table 1. Absolute Maximum Ratings (TJ = 25 °C)
Parameter
Red
Green & Blue Unit
DC forward current [1]
50
30
mA
Peak forward current [2]
100
100
mA
Power dissipation
Reverse voltage [3]
125
114
V
4
V
Junction temperature
125
°C
Operating temperature range
-40 to + 110
°C
Storage temperature range
-40 to + 120
°C
Notes:
1. Derate linearly as shown in Figure 7 to Figure 10.
2. Duty Factor = 10% Frequency = 1 kHz
3. Driving the LED in reverse bias condition is suitable for the short term only
Table 2. Optical Characteristics (TJ = 25 °C)
Luminous Intensity,
Dominant Wavelength, Peak Wavelength, Viewing Luminous Luminous
IV (mcd)
@ IF = 20 mA [1]
λd (nm)
@ IF = 20 mA [2]
λp (nm)
@ IF = 20 mA
Angle, Efficacy, Efficiency,
2θ½ (°) [3] ηV (lm/W) ηe (lm/W)
Color
Min. Typ. Max. Min. Typ. Max.
Typ.
Typ.
Typ.
Typ.
Red
355
450
715
618
622
628
629
120
210
22
Green
450
560
900
525
530
537
521
120
535
25
Blue
140
180
285
465
470
477
464
120
84
5
Notes:
1. Luminous intensity, IV is measured at the mechanical axis of the LED package at a single current pulse condition. The actual peak of the spatial
radiation pattern may not be aligned with the axis.
2. Dominant wavelength is derived from the CIE Chromaticity Diagram and represents the perceived color of the device.
3. θ½ is the off-axis angle where the luminous intensity is ½ of the peak intensity.
4. ΦV is the total luminous flux output as measured with an integrating sphere at mono pulse condition.
Table 3. Electrical Characteristics (TJ = 25 °C)
Forward Voltage, VF (V)
@ IF = 20 mA [1]
Reverse Voltage, VR (V)
@ IR = 100 mA [2]
Reverse Voltage, VR (V)
@ IR = 10 mA [2]
Color
Min.
Typ.
Max.
Min.
Min.
Red
1.8
2.1
2.5
4.0
--
Green
2.8
3.2
3.8
--
4.0
Blue
2.8
3.2
3.8
--
4.0
Notes:
1. Tolerance ± 0.1 V.
2. Indicates product final testing condition. Long-term reverse bias is not recommended.
Thermal Resistance,
RθJ-S (°C/W)
1 chip on 3 chips on
280
280
180
230
180
230
3
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