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Calculation of the phosphor heat generation in phosphor-converted light-emitting diodes

机译:荧光粉转换发光二极管中荧光粉发热的计算

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摘要

Phosphor heat generation in phosphor-converted light-emitting diodes (pc-LEDs) plays an important role in affecting the optical and thermal performance of LEDs, but it is hard to measure directly. In this paper, we developed a method to calculate the phosphor heat generation by modifying the Kubelka-Munk theory. With full consideration of light scattering, absorption and conversion inside the phosphor layer simultaneously, we calculated the phosphor heat generation and analyzed its trend with changing the phosphor quantum efficiency and phosphor parameters (concentration, thickness, particle size). Experiments were also conducted to validate the calculations. It was found that with the increase of phosphor concentration from 0.11 to 0.34 g/cm~3, the total energy loss increases by 54.11%. The phosphor concentration and thickness played similar roles in affecting the phosphor heat generation. The maximum phosphor heat generation corresponded to the phosphor particle size of around 2 μm, which is denoted as the critical size.
机译:磷光转换的发光二极管(pc-LED)中的磷光发热在影响LED的光学和热性能方面起着重要作用,但是很难直接测量。在本文中,我们开发了一种通过修改Kubelka-Munk理论来计算磷光体发热量的方法。在充分考虑荧光粉层内部的光散射,吸收和转换的同时,我们计算了荧光粉的热量生成并分析了其随着荧光粉量子效率和荧光粉参数(浓度,厚度,粒径)的变化而变化的趋势。还进行了实验以验证计算结果。研究发现,随着荧光粉浓度从0.11 g / cm〜3增加到0.34 g / cm〜3,总能量损失增加了54.11%。磷光体的浓度和厚度在影响磷光体发热方面起着相似的作用。最大的磷光体发热量对应于约2μm的磷光体粒径,称为临界尺寸。

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