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Dynamic thermal simulation of high brightness LEDs with unsteady driver power output

机译:具有不稳定驱动器功率输出的高亮度LED的动态热仿真

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摘要

High Brightness Light Emit Diodes (HB LEDs) have attract much attention recently with its high efficiency. However, they are known to be prone to high temperature and high thermo-mechanical induced failure. Since 80% of their input energy is loss as heat, this will heat up the junction temperate to more than 100°C due to joule heating. Furthermore, LED is not designed for AC power input and a driver is needed for LED lamp to convert the AC power from mains to DC power. However, DC supply from the driver is known to fluctuate and this will cause the temperature of the LED to vary and this in turn induced unstable thermal stress. In this work, a simplified thermal pulse is used to mimic this situation. Three situations are simulated: (1) stable heat generation, (2) heat generation with single disturbances, (3) heat generation with multiple disturbances with different frequencies. Results show that driver current fluctuations may result in significant thermal changes and associated mechanical stresses.
机译:高亮度发光二极管(HB LED)最近以其高效率而备受关注。然而,已知它们易于发生高温和高热机械诱导的故障。由于其80%的输入能量会因热量而损失,由于焦耳热,这会将结温升至100°C以上。此外,LED并非为交流电源输入而设计,LED灯需要驱动器将交流电源从市电转换为直流电源。但是,已知来自驱动器的DC电源会发生波动,这将导致LED的温度发生变化,进而引起不稳定的热应力。在这项工作中,使用简化的热脉冲来模拟这种情况。模拟了三种情况:(1)稳定的热量产生;(2)具有单个干扰的热量产生;(3)具有不同频率的多个干扰的热量产生。结果表明,驱动器电流波动可能导致明显的热变化和相关的机械应力。

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