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Effect of junction temperature oscillation on output characteristics of a light-emitting diode under pulse-width and pulse-frequency modulation driving modes

机译:脉宽和脉冲频率调制驱动模式下结温振荡对发光二极管输出特性的影响

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摘要

The authors have investigated the effect of thermal cycling on the output intensity, peak position and chromaticity coordinates of a high-power AlGaInP light-emitting diode (LED) driven under pulse-width modulation (PWM; pulse width of 200 ;C;s to 20 ms at a constant repetition frequency of 50 Hz) and pulse-frequency modulation (PFM; repetition frequency of 50??5000 Hz at a constant pulse width of 200 ;C;s) modes. Experimental data on the junction temperature oscillation were obtained by using the transient forward voltage method and accounted for by a thermal model of a repetitive-pulse-driven LED with multi-exponent relaxation of the junction temperature. Compared to the PWM driving mode, the PFM mode, which causes a reduced junction temperature oscillation, was shown to offer an efficiency gain (5% at a 50% duty cycle) and a reduced non-linearity of output characteristics (deviation of the output intensity dependence on duty cycle from a selfheating- free one, as well as electroluminescence (EL) band peak position and chromaticity coordinates dependences on duty cycle). Based on the results of the investigation, the PFM driving mode is suggested as an advantageous alternative for controlling polychromatic LED clusters by temperature feed-forward compensation loops and dimming LEDs in lighting applications.
机译:作者研究了热循环对在脉冲宽度调制(PWM;脉冲宽度为200; C; s至)下驱动的大功率AlGaInP发光二极管(LED)的输出强度,峰值位置和色度坐标的影响。在50 Hz的恒定重复频率下为20 ms)和脉冲频率调制(PFM;在200; C; s的恒定脉冲宽度下为50?5000 Hz的重复频率)模式。通过使用瞬态正向电压方法获得有关结温振荡的实验数据,并通过具有多重指数弛豫结温的重复脉冲驱动LED的热模型加以说明。与PWM驱动模式相比,PFM模式可降低结温振荡,可提高效率(占空比为50%时为5%),并且输出特性的非线性度(输出偏差)减小。强度与自发热的占空比的相关性以及电致发光(EL)峰的位置和色度与占空比的相关性。根据调查结果,建议使用PFM驱动模式作为通过温度前馈补偿环路和在照明应用中使LED变暗来控制多色LED集群的一种有利替代方案。

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