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Decay Mechanisms of Radiation Pattern and Optical Spectrum of High-Power LED Modules in Aging Test

机译:大功率LED模块老化测试中辐射方向图和光谱的衰减机理

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Decay of radiation pattern and optical spectrum of high-power LED modules fabricated by different manufacturers after a thermal-aging test were investigated experimentally and numerically. Samples were aged at 65degC, 85degC, and 95degC under a constant current of 350 mA. The results showed that the radiation pattern of the LED modules at the two view angles of plusmn(45deg ~ 75deg) decreased more than the other angles as aging time increased. This was due to the reduction of optical power from corner shape of lens. Due to the degradation of lens material after thermal aging, the center wavelength of the LED spectrum shifted 5 nm. Furthermore, the radius curvature of plastic lens was observed to have 6-70 mum contraction as aging times increased. The key module package related to the decrease of power density, the change of radiation pattern, and the shift of optical spectrum in high-power LED modules under thermal aging were due to the degradation of lens material and lens structure. Both experimental and simulated results clearly indicated that improving the lens structure and lens material is essential to extend the operating life of the high-power LED modules. This study may provide practical LED package guidelines in low-cost consumer applications.
机译:实验和数值研究了不同制造商制造的大功率LED模块在热老化后的辐射图和光谱衰减。样品在350 mA的恒定电流下分别在65℃,85℃和95℃下老化。结果表明,随着老化时间的增加,LED模块在正视角(45deg〜75deg)的两个视角下的辐射方向图下降幅度均大于其他视角。这是由于透镜角部形状导致的光焦度降低。由于热老化后透镜材料的降解,LED光谱的中心波长偏移了5 nm。此外,观察到塑料透镜的曲率半径随着老化时间的增加而收缩6-70。与大功率LED模块在热老化下的功率密度下降,辐射方向图变化以及光谱变化有关的关键模块封装是由于透镜材料和透镜结构的退化而引起的。实验和模拟结果均清楚表明,改善透镜结构和透镜材料对于延长大功率LED模块的使用寿命至关重要。这项研究可以为低成本消费应用提供实用的LED封装指南。

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