首页> 外文会议>2003 International Electronic Packaging Technical Conference and Exhibition; Jul 6-11, 2003; Maui, Hawaii >EFFECTS OF LOCALIZED HEAT GENERATIONS DUE TO THE COLOR CONVERSION IN PHOSPHOR PARTICLES AND LAYERS OF HIGH BRIGHTNESS LIGHT EMITTING DIODES
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EFFECTS OF LOCALIZED HEAT GENERATIONS DUE TO THE COLOR CONVERSION IN PHOSPHOR PARTICLES AND LAYERS OF HIGH BRIGHTNESS LIGHT EMITTING DIODES

机译:磷颗粒和高亮度发光二极管层中的颜色转换对局部生热的影响

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The efficiency and reliability of the solid-state lighting devices strongly depend on successful thermal management. Light emitting diodes, LEDs, a strong candidate for the next generation general illumination applications are of interest. Typical white LEDs start with either blue or near UV light generated by the active quantum layers. The light is guided through a transparent encapsulant filled with micron sized phosphor particles. The phosphor particles up-convert the short wavelength light to desired colors, producing white light. Due to low quantum efficiency, during the conversion, localized heating of small particles occurs. Experimental results with high brightness LED packages showed that there is significant light output reduction. Idealized numerical models through Finite element technique were created to evaluate the effects of localized heat generations at particles and layers. Results showed that as small as a 3 mW heat generation on a 20 μm diameter spherical phosphor particle might lead to excessive temperatures which can be a major source of light output degradation and reliability concern for high brightness LEDs.
机译:固态照明设备的效率和可靠性在很大程度上取决于成功的热管理。发光二极管,LED是下一代通用照明应用的强力候选者。典型的白色LED从有源量子层产生的蓝光或近紫外光开始。光线被引导通过充满微米级荧光粉颗粒的透明密封剂。磷光体颗粒将短波长光上转换为所需的颜色,从而产生白光。由于量子效率低,在转化过程中会发生小颗粒的局部加热。高亮度LED封装的实验结果表明,光输出显着降低。通过有限元技术创建了理想的数值模型,以评估颗粒和层上局部生热的影响。结果表明,在直径为20μm的球形磷光体颗粒上产生的热量只有3 mW,可能会导致温度过高,这可能是光输出质量下降和可靠性高亮度LED的主要根源。

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