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Measurement of junction-to-ambient thermal resistance of a LED lighting luminaire

机译:测量LED照明灯具的结到环境热阻

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Recent advancement in solid state technology has made LED lighting energy-efficient and today it is one of the rapidly-developing lighting technologies. Design of LED lighting luminaires is still repeatedly governed by misinterpretations and inappropriate use of the related solid state lighting technology. Heat is generated as byproduct of the light generation process at the LED junction; this heat needs to be dissipated in an efficient manner. The correct method of thermal management in the LED luminaire is critical for effective heat transfer from the junction to the ambient. Light output, useful life and long term reliability of an LED luminaire are strongly associated with the temperature of the LED junction. Inadequate heat dissipation influences LED life and consequently the long term reliability of the entire LED luminaire. It is therefore important to have the proper knowledge about the light-output and thermal properties of the LED luminaire. This work proposes a methodology for the measurement of the junction-to-ambient thermal resistance of a market ready LED luminaire using the linear relationship between forward voltage and junction temperature of the LEDs. Measurement of the junction-to-ambient thermal resistance of a LED luminaire is essential to assess the quality of the thermal design of the luminaire. Considering two LED luminaire with similar electrical and photometric characteristics, the LED luminaire with lower junction-to-ambient thermal resistance has better heat management system compared to the one with a higher value of the junction-to-ambient thermal resistance. The methodology used in the study and findings of this study are discussed in this paper. If two similar LED luminaires are tested using the proposed method, their thermal management systems can be assessed based on junction-to-ambient thermal resistance.
机译:固态技术的最新发展已使LED照明更加节能,如今它已成为快速发展的照明技术之一。 LED照明灯具的设计仍然受到误解和对相关固态照明技术的不当使用的反复支配。在LED结处,光是发光过程的副产品。需要以有效的方式散发热量。 LED灯具中正确的热管理方法对于有效地将热从结点传递到周围环境至关重要。 LED灯具的光输出,使用寿命和长期可靠性与LED结的温度密切相关。散热不足会影响LED寿命,因此会影响整个LED灯具的长期可靠性。因此,重要的是要对LED照明器的光输出和热特性有适当的了解。这项工作提出了一种使用正向电压和LED结温之间的线性关系来测量市场上可用的LED灯具的结至环境热阻的方法。测量LED灯具的结至环境的热阻对于评估灯具的热设计质量至关重要。考虑到两种具有相似电和光度特性的LED灯具,与结至环境热阻值较高的LED灯具相比,结至环境热阻较低的LED灯具具有更好的热管理系统。本文讨论了本研究中使用的方法和研究结果。如果使用建议的方法测试了两个类似的LED灯具,则可以基于结至环境的热阻来评估其热管理系统。

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