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Degradation Mechanisms of Mid-Power White-Light LEDs Under High-Temperature–Humidity Conditions

机译:高温高湿条件下中功率白光LED的降解机理

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摘要

More and more mid-power white-light LED (MP LED) solutions have been used in outdoor illumination due to their good performance, cost attractiveness, and low energy consumption as compared with conventional lighting solutions. Hence, there is a need for MP LED manufacturers to develop more robust MP LEDs aimed at outdoor applications but still offer a significant cost benefit as compared with currently widely used high-power LEDs. This implies that MP LEDs would be operated in an environment with high humidity and high temperature. This may lead to serious degradation with different failure modes compared with an indoor operation. However, the combined effect of temperature and humidity on the MP LED reliability has not been extensively studied in literature. In this paper, MP LEDs were studied by the wet high-temperature operation life (WHTOL) test in order to understand their degradation mechanisms due to the combined effect of temperature and humidity. It is found that encapsulant discoloration (yellowing) is the major degradation mechanism in the WHTOL test, which will induce serious lumen degradation and color shift. Furthermore, it has been found that electrical degradation in terms of forward voltage increase will also affect the lumen maintenance. Finally, statistical analysis shows that lumen degradation mechanisms in the WHTOL test are similar to a failure in the LM-80-08 test, demonstrating that the WHTOL test is an efficient accelerated degradation test method, which dramatically reduces the test duration compared with the LM-80-08 test.
机译:与常规照明解决方案相比,越来越多的中功率白光LED(MP LED)解决方案由于其良好的性能,成本吸引力以及较低的能耗而被用于室外照明。因此,MP LED制造商需要开发针对户外应用的更坚固的MP LED,但与目前广泛使用的高功率LED相比仍具有显着的成本优势。这意味着MP LED将在高湿度和高温的环境中运行。与室内操作相比,在不同的故障模式下,这可能导致严重的性能下降。然而,文献中尚未对温度和湿度对MP LED可靠性的综合影响进行广泛研究。在本文中,通过湿式高温工作寿命(WHTOL)测试对MP LED进行了研究,以了解其在温度和湿度的共同作用下的降解机理。在WHTOL测试中,发现密封剂变色(泛黄)是主要的降解机理,它将导致严重的管腔降解和色移。此外,已经发现,就正向电压增加而言的电降解也将影响流明维持率。最后,统计分析表明,WHTOL测试中的管腔降解机制与LM-80-08测试中的失败类似,这表明WHTOL测试是一种有效的加速降解测试方法,与LM相比,可显着缩短测试时间-80-08测试。

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