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Effects of YAG: Ce Phosphor Particle Size on Luminous Flux and Angular Color Uniformity of Phosphor-Converted White LEDs

机译:YAG:Ce荧光粉粒度对荧光粉转换白光LED的光通量和角度颜色均匀性的影响

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Effects of YAG: Ce phosphor particle size on the luminous flux and angular color uniformity have been studied by using Monte Carlo ray-tracing simulation. A white LED model basing on Cree XLamp is constructed. The phosphor particle size is changed from 2 to 20 μm. Different simulation cases are carried out by changing the phosphor concentration and thickness. Results revealed that the luminous flux and angular color uniformity have complex relationships with the particle size depending on applied phosphor concentration and desired color temperature. A general finding is that an increase of the particle size is beneficial for the improvement of luminous flux but leads to worse angular color uniformity. A 2 μm particle achieves not only the best angular color uniformity but the lowest luminous flux. A particle size larger than 10 μm generates the highest luminous flux at low color temperature when the concentration is around 1.5 g/cm3. A particle size between 2 μm and 10 μm shows combined moderate performance when the phosphor concentration is higher than 2 g/cm3. To realize the best combined performance, a particle size around 6 μm is suggested.
机译:YAG:Ce荧光粉粒径对光通量和角度颜色均匀性的影响已通过蒙特卡洛射线追踪模拟进行了研究。构造了基于Cree XLamp的白色LED模型。荧光粉的粒径从2变为20μm。通过改变荧光粉的浓度和厚度可以进行不同的模拟情况。结果表明,取决于所施加的荧光粉浓度和所需的色温,光通量和角度颜色均匀性与粒径具有复杂的关系。一个普遍的发现是,粒径的增加有利于光通量的改善,但是导致更差的角颜色均匀性。 2μm的颗粒不仅实现最佳的角度颜色均匀性,而且实现最低的光通量。当浓度约为1.5 g / cm 3 时,大于10μm的颗粒在低色温下会产生最高的光通量。当荧光粉浓度高于2 g / cm 3 时,粒径在2μm和10μm之间显示出综合的中等性能。为了实现最佳的组合性能,建议使用约6μm的粒径。

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