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Simulation and Experimental Studies of Phosphor Concentration and Thickness for Phosphor-Based White Light-Emitting-Diodes

机译:磷光体浓度和磷光体白色发光二极管厚度的模拟与实验研究

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The dependence of luminous efficacy on phosphor concentration and thickness for high-power white light-emitting-diode (WLED) lamps is investigated by employing three-dimensional ray-tracing simulations. The simulations show that the brightness or luminous efficacy of WLED lamps highly depends on the combination of phosphor concentration and phosphor thickness (or phosphor-matrix composite volume). The package with lower concentration and higher phosphor thickness has higher luminous efficacy because the light trapping efficiency is lower with the low phosphor concentration. Our simulations demonstrating a 20% and 27% improvement in lumen output with 1.8mm-phosphor package over 0.8mm-phosphor package and 0.6mm-phosphor package respectively are found to be fully supported by experimental observations.
机译:通过采用三维射线描绘模拟研究了发光功效对高功率白色发光二极管(WLOD)灯的磷光体浓度和厚度的依赖性。模拟表明,WLED灯高度取决于磷光体浓度和磷光体厚度(或荧光粉复合体积)的结合所高度取决于亮度或发光效率。浓度较低和更高磷光体厚度的包装具有较高的发光功效,因为光捕获效率较低,磷光体浓度低。我们的模拟,分别在0.8mm-荧光粉包装和0.6mm - 磷光体包装上的漏腔输出的20%和27%的改善,并通过实验观察得到完全支持。

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