Phosphor concentration effects on the thermal and optical performance of cool and warm white single chip LEDs

Hwang Hsien Shiung, A. Permal, M. Devarajan
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引用次数: 4

Abstract

Phosphor converted light emitting diodes (LEDs) are emerging are the most promising solid state lighting source since the past few decades and with no doubt in few years to come, this technology would conveniently replace the current lighting industries. This paper elucidates the significance of thermal and optical performance difference between cool and warm white LEDs. The analyses were carried out in terms of effects of phosphor concentration on the rise in junction temperature, thermal resistance as well as the optical properties of the samples. It was observed that the cool white samples achieved 6.68% less junction temperature compared to warm white LED recorded at room temperature of 25.1°C and the average efficiency of the cool white LED was found to be higher in magnitude compared to warm white LEDs. The effects of phosphor concentration on degradation of LED performances were discussed in terms of photon scattering, light trapping and thermal loading phenomena.
荧光粉浓度对冷白光和暖白光单芯片led热学和光学性能的影响
荧光粉转换发光二极管(led)是过去几十年来最有前途的固态照明光源,毫无疑问,在未来几年内,这项技术将很容易取代目前的照明产业。本文阐述了冷白光led和暖白光led的热学和光学性能差异的意义。分析了荧光粉浓度对结温升高、热阻以及样品光学性能的影响。结果表明,在25.1℃的室温下,与暖白光LED相比,冷白光LED的结温降低了6.68%,而冷白光LED的平均效率在数量级上高于暖白光LED。从光子散射、光捕获和热负载等方面讨论了荧光粉浓度对LED性能下降的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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