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Degradation Physics of High Power LEDs in Outdoor Environment and the Role of Phosphor in the degradation process

机译:大功率LED在室外环境中的降解物理以及磷在降解过程中的作用

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摘要

A moisture- electrical - temperature (MET) test is proposed to evaluate the outdoor reliability of high power blue LEDs, with and without phosphor, and to understand the degradation physics of LEDs under the environment of combined humidity, temperature and electrical stresses. The blue LEDs with phosphor will be the high power white LEDs. Scanning acoustic microscopy is used to examine the resulted delamination during this test for the LEDs. The degradation mechanisms of blue LEDs (LEDs without phosphor) and white LEDs (LEDs with phosphor) are found to be different, under both the power on (i.e. with 350 mA through each LED) and power off (i.e. without current supply) conditions. Difference in the coefficient of thermal expansion between the molding part and the lens material as well as the heat generated by the phosphor layer are found to account for the major differences in the degradation mechanisms observed. The findings indicate that the proposed MET test is necessary for the LED industry in evaluating the reliability of LEDs under practical outdoor usage environment.
机译:提出了一种湿电温度(MET)测试,以评估带有或不带有荧光粉的高功率蓝光LED在室外的可靠性,并了解在湿度,温度和电应力共同作用下LED的退化物理学。带有荧光粉的蓝色LED将成为高功率白色LED。扫描声学显微镜用于检查在此测试期间导致的LED分层。发现在通电(即,通过每个LED 350 mA)和断电(即,在不通电的情况下)的情况下,蓝色LED(不具有磷光体的LED)和白色LED(具有磷光体的LED)的降解机理是不同的。发现模塑部件和透镜材料之间的热膨胀系数的差异以及磷光体层产生的热量是造成观察到的降解机理的主要差异的原因。研究结果表明,拟议的MET测试对于LED行业在评估实际户外使用环境下的LED可靠性时是必需的。

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