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Simultaneous study of thermal and optical characteristics of light-emitting diode

机译:发光二极管热敏和光学特性的同时研究

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This paper deals with the simultaneous study of thermal and optical behaviors of light-emitting diode (LED) through various measuring conditions. The conditions such as different types of thermal interface materials (TIMs) and increases of driving current have been selected for detailed investigation. The results revealed that the measuring conditions led to a greater impact on thermal properties than optical properties of the LED. The determined junction-to-ambient thermal resistance and junction temperature were enhanced about 1.35% and 0.78%, respectively by replacing alumina to silver thermal compound. This indicates that the application of silver thermal compound provided a slightly weaker heat transfer from the packaged LED to ambient. On the other hand, it was only 0.5% deviation on the overall optical performance was found between both the TIMs. Despite, it was observed that the increase of driving current caused an augment in optical power, and adversely decreased the efficiency of the LED. Finally, the study of real thermal resistance of the LED was performed as to improve the accuracy of the measurement.
机译:本文涉及通过各种测量条件同时研究发光二极管(LED)的热敏和光学行为。已经选择了诸如不同类型的热界面材料(TIM)和驱动电流增加的条件以进行详细研究。结果表明,测量条件导致比LED的光学性质更大的热性能影响。通过将氧化铝替换为银热化合物,分别通过替代银色热化合物分别增强约1.35%和0.78%的连接到环境热阻和结温。这表明银色热化合物的应用提供了从封装LED的稍微较弱的热传递到环境。另一方面,在TIMS之间发现了整体光学性能的偏差仅为0.5%。尽管如此,观察到驱动电流的增加导致光功率增加,并且不利地降低了LED的效率。最后,进行了LED的实际热阻的研究,提高了测量的准确性。

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