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Humidity Effect on the Degradation of Packaged Ultra-bright White LEDs

机译:湿度对封装的超亮白光LED降解的影响

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Many ultra-bright light-emitting diodes (LEDs), especially the white LEDs, are being actively developed for solid-state lighting and many other commercial applications. Hence, it is important to evaluate and understand the failure mechanisms that affect the performance characteristics and lifetimes of these new LEDs. This study concerns the humidity effect on the degradation of GaN-based packaged white LEDs. Under the accelerated humidity test, the LEDs showed a degradation of optical output. With the mixture statistical distribution analysis method, it is noted that the luminous flux degradation of the packaged white LEDs is dependent on more than two failure mechanisms. Two of the failure mechanisms are observed to follow the lognormal distribution. With detailed spectrum analysis and by employing the parameters extraction method, one of the two failure mechanisms that follow the lognormal distribution is observed to be caused by chip related failure due to the accumulated moisture in the encapsulation. For the other failure mechanism, phosphor degradation is noted to be the primary cause.
机译:许多超高亮度发光二极管(LED),特别是白光LED,正在积极开发以用于固态照明和许多其他商业应用。因此,重要的是评估和理解影响这些新型LED的性能特征和寿命的故障机制。这项研究涉及湿度对GaN基封装白光LED退化的影响。在加速湿度测试下,LED显示出光输出的下降。使用混合统计分布分析方法,应注意,封装的白色LED的光通量下降取决于两个以上的故障机制。观察到两个故障机制遵循对数正态分布。通过详细的频谱分析并采用参数提取方法,观察到遵循对数正态分布的两个故障机制之一是由于封装中积聚的水分而导致的与芯片相关的故障。对于其他故障机制,磷光体退化被认为是主要原因。

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