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Optical Model of Laminated Remote Phosphor Films and Its Application in White LED

机译:层压远程荧光粉光学模型及其在白光LED中的应用

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Based on Mie scattering and Monte Carlo ray tracing method, the transmission process of light in the remote phosphor film is described and the optical model of red and green laminated phosphor films is constructed. The photochromic properties of the phosphor films were studied by TM-30-15 method proposed by the North American Lighting Association. The investigation discloses that the normalized cross correlation of single-layer phosphor film spectral power distribution between the simulation and experimental results is about 99%, and the deviation of color coordinates is within 0.01. Based on the monochrome phosphor optical model, we establish bicolor optical model of red and green laminated phosphor film layers to form white light and can predict its color performance. The experimental results show that the normalized cross correlation of laminated phosphor film spectral power distribution between the simulation and experiment is about 97%, and the optical model of red and green laminated phosphor film can accurately predict the index Rf and Rg. When the red and green phosphor mass ratio is 0.05:0.5, the simulated color is optimal, Rf reaches 90, and Rg reaches 100, whose corresponding experimental values are Rf=90, Rg=101.
机译:基于MIE散射和蒙特卡罗射线跟踪方法,描述了远程磷光体膜中的光的变速过程,构建了红色和绿色层压磷光体膜的光学模型。通过北美照明协会提出的TM-30-15方法研究了磷光体膜的光致变色性质。该研究公开了模拟和实验结果之间单层荧光粉膜谱功率分布的标准化互相关约为99%,颜色坐标的偏差在0.01内。基于单色荧光模型,我们建立了红色和绿色层压磷膜层的双色光学模型,形成白光,可以预测其色性性能。实验结果表明,模拟和实验之间的夹层磷光体薄膜光谱配电的归一化交叉相关性约为97%,红色和绿色叠片磷膜的光学模型可以精确地预测指标RF和RG。当红色和绿色磷光体质量比为0.05:0.5时,模拟颜色是最佳的,RF达到90,RG达到100,其相应的实验值是RF = 90,RG = 101。

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