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Failure mechanisms and color stability in light-emitting diodes during operation in high-temperature environments in presence of contamination

机译:在污染情况下在高温环境下运行过程中发光二极管的故障机制和颜色稳定性

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The energy efficiency of light-emitting diode (LED) technology compared to incandescent light bulbs has triggered an increased focus on solid state luminaries for a variety of lighting applications. Solid-state lighting (SSL) utilizes LEDs, for illumination through the process of electroluminescence instead of heating a wire filament as seen with traditional lighting. The fundamental differences in the construction of LED and the incandescent lamp results in different failure modes including lumen degradation, chromaticity shift and drift in the correlated color temperature. The use of LED-based products for safety-critical and harsh environment applications necessitates the characterization of the failure mechanisms and modes. In this paper, failure mechanisms and color stability has been studied for commercially available vertical structured thin film LED (VLED) under harsh environment conditions with and without the presence of contaminants. The VLED used for the study was mounted on a ceramic starboard in order to connect it to the current source. Contamination sources studied include operation in the vicinity of vulcanized rubber and adhesive epoxies in the presence of temperature and humidity. Performance of the VLEDs has been quantified using the measured luminous flux and color shift of the VLEDs subjected to both thermal and humidity stresses under a forward current bias of 350 mA. Results indicate that contamination can result in pre-mature luminous flux degradation and color shift in LEDs.
机译:与白炽灯泡相比,发光二极管(LED)技术的能量效率引发了各种照明应用的固态亮度的焦点。固态照明(SSL)利用LED,通过电致发光的过程来照明,而不是用传统照明看到的电线丝。 LED施工的基本差异和白炽灯导致不同的故障模式,包括内腔降解,色度偏移和相关色温漂移。使用基于LED的产品进行安全关键和苛刻的环境应用需要故障机制和模式的表征。在本文中,已经研究了失效机制和颜色稳定性,用于在苛刻的环境条件下的商业上可用的垂直结构薄膜LED(VLED),其具有且不存在污染物的存在。用于该研究的Vled安装在陶瓷右舷,以将其连接到电流源。研究的污染源包括在温度和湿度存在下的硫化橡胶和粘合剂环氧树脂附近的操作。所述VLEDs的性能已经使用350mA的正向电流偏压下进行热和湿度应力VLEDs的测量的光通量和色移定量。结果表明,污染可能导致LED的成熟光通量降低和颜色偏移。

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