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Rapid Degradation of Mid-Power White-Light LEDs in Saturated Moisture Conditions

机译:饱和水分条件下中功率白光LED的快速降解

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Serious silicone carbonization has been reported in mid-power white-light LEDs during highly accelerated temperature and humidity stress test, although the junction temperature of the LED chip is much lower than the critical temperature of silicone carbonization (300 °C). This paper presents a comprehensive investigation, through which the effects of Joule heating and phosphor self-heating have been eliminated as main failure mechanisms. As a result, the over-absorption of blue lights by silicone bulk is considered as the root cause for silicone carbonization. This is mainly due to the scattering effect of water particles inside the silicone materials, which can increase the silicone temperature significantly. Furthermore, finite-element thermal simulation has also been performed, confirming the validity of the failure mechanism.
机译:尽管在LED芯片的结温大大低于有机硅碳化的临界温度(300°C)的情况下,但在高度加速的温度和湿度应力测试中,中功率白光LED仍发生严重的有机硅碳化现象。本文提出了一项全面的研究,通过该研究,消除了焦耳热和磷光体自热的影响,并将其作为主要的故障机理。结果,有机硅块体对蓝光的过度吸收被认为是有机硅碳化的根本原因。这主要是由于水颗粒在硅树脂材料内部的散射作用,这会显着提高硅树脂的温度。此外,还进行了有限元热仿真,证实了失效机理的有效性。

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