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Color shift analysis and modeling of high power warm white pc-LED under high temperature and high humidity environment

机译:高温高湿环境下大功率暖白pc-LED的色偏分析与建模

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This paper focuses on the color stability degradation analysis and modeling for the commercially available high power warm white phosphor converted LED (pc-LED) packages under both high temperature and high humidity conditions. During the experiment, 3 kinds of different high power pc-LEDs were subjected to both high temperature, and high relative humidity (85°C/85%RH, 75°C/75%RH, 65°C/90%RH) accelerated life test with a 350mA bias current. Experimental results show that the phosphor binder layer of the pc-LEDs can swell and the color stability of LEDs degrades significantly. High temperature and humidity will oxidize the phosphor particles and oxidized phosphor particles shift the phosphor emission spectrum to the lower energy wavelength. The redistribution and oxidation of phosphor particles inside the phosphor binder will cause dramatically degradation of colorimetric properties of LED package in a very short time. Also, a closed form color shift model is built to project the color shift distance forward and prognosticate the color stability of LED packages. In the proposed model, not only temperature and humidity are included, but also the package characteristics, such as phosphor particles diameter, phosphor binder thickness. Compared with the experimental data, it is found that the color shift model can predict the color shift distance of the LED packages in an acceptable range.
机译:本文着重于在高温和高湿度条件下针对市售高功率暖白色荧光粉转换LED(pc-LED)封装的颜色稳定性退化分析和建模。在实验过程中,三种不同的大功率pc-LED都经受了高温和高相对湿度(85°C / 85 \%RH,75°C / 75 \%RH,65°C / 90 \% RH)使用350mA偏置电流进行的加速寿命测试。实验结果表明,pc-LED的荧光粉粘合剂层会膨胀,LED的颜色稳定性会大大降低。高温高湿会氧化磷光体颗粒,而氧化的磷光体颗粒会将磷光体的发射光谱移至较低的能量波长。磷光体粘合剂内的磷光体颗粒的重新分布和氧化将在非常短的时间内导致LED封装的比色性能急剧下降。此外,建立了封闭形式的色偏模型以向前预测色偏距离并预测LED封装的色稳定性。在提出的模型中,不仅包括温度和湿度,而且还包括封装特性,例如磷光体颗粒直径,磷光体粘合剂厚度。与实验数据相比,发现色偏模型可以预测LED封装的色偏距离在可接受的范围内。

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