Moteur de recherche de fiches techniques de composants électroniques |
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HLMP-CE31-QTQ00 Fiches technique(PDF) 5 Page - Agilent(Hewlett-Packard) |
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HLMP-CE31-QTQ00 Fiches technique(HTML) 5 Page - Agilent(Hewlett-Packard) |
5 / 7 page Figure 4. Maximum forward current vs. ambient temperature. Figure 5. Color vs. forward current. Figure 6. Spatial radiation pattern – 15 ° lamps. 0 0 AMBIENT TEMPERATURE – °C 40 80 35 30 25 15 10 20 60 100 120 5 20 40 0 498 FORWARD CURRENT – mA 15 25 520 506 10 20 512 30 5 502 508 500 504 510 514 516 518 1.0 0 ANGLE – DEGREES 0.5 -30 0 30 50 -50 10 -20 -10 20 -40 40 Notes: 1. The dominant wavelength, λd, is derived from the CIE Chromaticity Diagram and represents the perceived color of the device. 2. The radiant intensity, le in watts per steradian, may be found from the equation le = Iv/ ηV, where Iv is the luminous intensity in candelas and ηV is the luminous efficacy in lumens/watt. Electrical/Optical Characteristics at TA = 25˚C Parameter Symbol Min. Typ. Max. Units Test Conditions Forward Voltage VF 3.8 4.0 V IF = 20 mA Reverse Voltage VR 10 IR = 100 µA Capacitance C 40 pF VF = 0, f = 1 MHz Thermal Resistance R θJ-PIN 240 °C/W LED Junction-to-Cathode Lead Dominant Wavelength λd 505 nm IF = 20 mA Peak Wavelength λPEAK 502 nm Peak of Wavelength of Spectral Distribution at IF = 20 mA Spectral Halfwidth ∆λ1/2 35 nm Wavelength Width at Spectral Distribution Power Point at IF = 20 mA Luminous Efficacy ηV 350 lm/W Emitted luminous power/ Emitted radiant power Figure 1. Relative intensity vs. wavelength. Figure 2. Forward current vs. forward voltage. Figure 3. Relative luminous intensity vs. forward current. WAVELENGTH – nm 400 600 1.0 0.6 0 550 500 450 0.4 0.8 0.2 0 0 FORWARD CURRENT – mA 15 25 1.4 0.8 0.6 520 1.2 30 0.2 1.0 0.4 10 2 0 VF – FORWARD VOLTAGE – V 3.6 20 15 2.8 30 5 10 25 2.4 3.2 4.0 |
Numéro de pièce similaire - HLMP-CE31-QTQ00 |
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Description similaire - HLMP-CE31-QTQ00 |
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