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HLMP-AB86-MQ0ZZ 查看數據表(PDF) - HP => Agilent Technologies

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HLMP-AB86-MQ0ZZ Datasheet PDF : 8 Pages
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Electrical/Optical Characteristics TA = 25oC
Value
Parameters
Symbol Min. Typ. Max. Units Test Condition
Forward voltage
VF
Red
Green
Blue
V
2.20 2.40
3.60 4.00
3.50 4.00
IF = 20 mA
Reverse Voltage [1]
Red
Green
Blue
VR
5.0
5.0
5.0
V
IR = 100 µA
IR = 10 µA
IR = 10 µA
Thermal resistance [2]
RθJ-PIN
240
oC/W
Dominant wavelength [3,4]
Red
λd
Green
Blue
nm
622
630
634
520
525
540
460
470
480
IF = 20 mA
Peak wavelength
Red
λPEAK
639
Green
516
Blue
464
nm
Peak of wavelength of spectral
distribution at IF = 20 mA
Spectral half width
Red
∆λ1/2
17
Green
32
Blue
23
nm
Wavelength width at spectral
distribution power point at IF =
20 mA
Luminous Efficacy [5]
ηv
Red
Green
Blue
lm/W Emitted luminous
155
power/Emitted radiant power
484
74
Notes:
1. The reverse voltage of blue and green is equivalent to the forward voltage of the protective chip at IR = 10 µA.
The reverse voltage of red is equivalent to the forward voltage of the protective chip at IR = 100µA.
2. For AlInGaP Red, the thermal resistance applied to LED junction to cathode lead. For InGaN Blue and Green, the thermal resistance applied to LED
junction to anode lead.
3. The dominant wavelength λd is derived from the Chromaticity Diagram and represents the color of the lamp.
4. Tolerance for each color bin limit is ±0.5 nm
5. The radiant intensity, Ie in watts/steradian, may be found from the equation Ie = Iv/ηv, where Iv is the luminous intensity in candelas and ηv is the
luminous efficacy in lumens/watt.
4

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