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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Electrical-thermal-luminous-chromatic model of phosphor-converted white light-emitting diodes
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Electrical-thermal-luminous-chromatic model of phosphor-converted white light-emitting diodes

机译:磷光转换白光发光二极管的电-热-色-色模型

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摘要

The drive of increased electrical currents to achieve high luminous output for phosphor-converted white light-emitting diodes (PW-LED) has led to a series of thermal problems. The light performance of PW-LED is affected by the heat generated by the two major sources in a package/module: chip(s) and phosphors. In this work, spectral shift and consequent color properties change due to the increased temperature during operation were studied by a group of experiments. An electrical-thermal-luminous-chromatic (E-T-L-C) model was then developed to predict the light performance with thermal management under in-situ temperature. The model was then validated by integrated analyses of common LED packages. Besides, the model can also be used to analyze the thermal performance and light quality due to thickness and particle density variation of phosphors. The proposed dynamic E-T-L-C model can definitely benefit the design of future HB LEDs for better light quality.
机译:为磷光转换的白光发光二极管(PW-LED)驱动增加电流以实现高发光输出的方法导致了一系列热问题。 PW-LED的光性能受封装/模块中两个主要来源(芯片和荧光粉)产生的热量影响。在这项工作中,通过一组实验研究了由于操作过程中温度升高而引起的光谱偏移和随之而来的颜色特性变化。然后,开发了电热发光色(E-T-L-C)模型,以通过原位温度下的热管理来预测光性能。然后,通过对常见LED封装的集成分析来验证该模型。此外,该模型还可以用于分析由于磷光体的厚度和颗粒密度变化引起的热性能和光质量。所提出的动态E-T-L-C模型肯定可以使未来的HB LED的设计受益,以获得更好的光质量。

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