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Degradation of epoxy lens materials in LED systems

机译:LED系统中环氧透镜材料的降解

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摘要

Due to their long lifetime and high efficacy, solid state lighting (SSL) has the potential to revolutionize the illumination industry. The long lifetime claimed by the manufacturers is often based solely on the estimated depreciation of lumen for a single LED operating at 25°C. However, self heating and high environmental temperature which will lead to increased junction temperature and degradation due to electrical overstress can shorten the life of light emitting diode. Furthermore, each SSL system includes different components such as the optical part, electrical driver and interconnections. The failure/degradation of any components wills severely affects the performance and reliability of whole system and hence the weakest component will become the bottleneck for the reliability and lifetime of the module. Literature reviews of the factors influencing the life of LED lamps identified the degradation of the epoxy lens and plastic package due to the junction temperature and voltages as one of the common failure mode. In this research, a methodology to predict the degradation of the epoxy lens has been proposed. In order to correlate the mean time to failure as a function of the junction temperature and the inputted voltage, the simplified Eyring models had been proposed in this research. Since the life of a SSL system is subjected to varying loading condition, another objectives of this research is to present a methodology to predict the life of a SSL under changing condition.
机译:由于它们的长寿和高效,固态照明(SSL)有可能彻底改变照明行业。制造商声称的长寿命通常仅基于在25°C下运行的单个LED的内腔的估计折旧。然而,自加热和高环境温度将导致接线温度和电气过长物引起的降解可以缩短发光二极管的寿命。此外,每个SSL系统包括诸如光学部分,电驱动器和互连的不同组件。任何组件的故障/劣化将严重影响整个系统的性能和可靠性,因此最弱的部件将成为模块可靠性和寿命的瓶颈。影响LED灯寿命的因素的文献综述鉴定了环氧树脂透镜和塑料包的降解,由于结温和电压作为常见故障模式之一。在该研究中,提出了一种预测环氧树脂透镜的降解的方法。为了将平均故障的平均时间与结温和输入的电压相关联,在这项研究中提出了简化的ePING模型。由于SSL系统的寿命受到不同的负载条件,因此该研究的另一个目的是提出一种方法来预测在变化条件下SSL的寿命。

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