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HLMP-ED31-ST000 Datasheet(PDF) 7 Page - AVAGO TECHNOLOGIES LIMITED |
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HLMP-ED31-ST000 Datasheet(HTML) 7 Page - AVAGO TECHNOLOGIES LIMITED |
7 / 13 page 7 Electrical/Optical Characteristics at TA = 25°C Parameter Symbol Min. Typ. Max. Units Test Conditions Forward Voltage IF = 20 mA Amber (λd = 592 nm) 2.3 Red-Orange (λd = 617 nm) VF 2.35 2.6[1] V Red (λd = 630 nm) 2.4 Reverse Voltage VR 5 20 V IR = 100 µA Peak Wavelength Peak of Wavelength of Amber 594 Spectral Distribution Red-Orange λPEAK 623 nm at IF = 20 mA Red 639 Spectral Halfwidth ∆λ1/2 17 nm Wavelength Width at Spectral Distrib- ution 1/2 Power Point at IF = 20 mA Speed of Response ts 20 ns Exponential Time Constant, e-t/ts Capacitance C 40 pF VF = 0, f = 1 MHz Thermal Resistance RQJ-PIN 240 °C/W LED Junction-to-Cathode Lead Luminous Efficacy[2] Emitted Luminous Amber 500 Power/Emitted Radiant Power Red-Orange hv 235 lm/W at If = 20 mA Red 155 Luminous Flux jV 1000 mlm IF = 20 mA Luminous Efficiency [3] he Emitted Amber 22 Luminous Flux/ Red-Orange 22 lm/W Electrical Power Red 21 Notes: 1. For options -xxRxx, -xxSxx, -xxTxx, -xxUxx, -xxWxx, -xxYxx, max forward voltage (Vf) is 2.6 V. Refer to Vf bin table. 2. The radiant intensity, Ie, in watts per steradian, may be found from the equation Ie = Iv/hv, where Iv is the luminous intensity in candelas and hv is the luminous efficacy in lumens/watt. 3. he = jV / IF x VF, where jV is the emitted luminous flux, IF is electrical forward current and VF is the forward voltage. Figure 1. Relative Intensity vs. Peak Wavelength. Figure 2a. Forward Current vs. Forward Voltage for Option -xxRxx, -xxSxx, -xxTxx, -xxUxx, -xxWxx and -xxYxx. WAVELENGTH – nm 550 600 650 700 1.0 0.5 0 AMBER RED-ORANGE RED 0 0 FORWARD VOLTAGE – V 2.5 40 30 0.5 1.5 60 3.0 10 20 50 RED 1.0 2.0 AMBER |
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