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Analysis of high-power packages for phosphor-based white-light-emitting diodes

机译:基于磷光体的白光发光二极管大功率封装分析

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摘要

An optimized packaging configuration for high-power white-light-emitting diode (LED) lamps that employs a diffuse reflector cup, a large separation between the primary emitter (the LED chip) and the wavelength converter (the phosphor) and a hemispherically shaped encapsulation is presented. Ray tracing simulations for this configuration show that the phosphor efficiency can be enhanced by up to 50% over conventional packages. Dichromatic LED lamps with phosphor layers on the top of a diffuse reflector cup were fabricated and studied experimentally. The experimental enhancement of phosphor efficiency is 15.4% for blue-pumped yellow phosphor and 27% for ultraviolet-pumped blue phosphor. Those improvements are attributed to reduced absorption of the phosphorescence by the LED chip and the reduction of deterministic optical modes trapped inside the encapsulant.
机译:针对大功率白光二极管(LED)灯的优化包装配置,该配置采用了漫反射杯,主发射器(LED芯片)和波长转换器(磷光体)之间的较大间距以及半球形封装被表达。此配置的光线跟踪模拟表明,与传统封装相比,磷光体效率可以提高多达50%。制作并实验研究了在漫反射杯顶部具有荧光粉层的双色LED灯。蓝泵浦黄色荧光粉的荧光粉效率实验提高了15.4%,而紫外泵浦蓝色荧光粉的荧光粉效率提高了27%。这些改进归因于LED芯片对磷光的吸收减少,以及密封剂内部捕获的确定性光学模式的减少。

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