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包装材料的折射率对带有微透镜阵列的COB-LED光提取效率的影响

Effect of refractive index of packaging materials on the light extraction efficiency of COB-LEDs with millilens array.

作者信息

Yu Xingjian, Xiang Linyi, Zhou Shuling, Pei Naiqi, Luo Xiaobing

出版信息

Appl Opt. 2021 Jan 10;60(2):306-311. doi: 10.1364/AO.410141.

Abstract

Lens arrays are introduced to diminish the total internal reflection (TIR) that happens at chip-encapsulant and encapsulant-air interfaces of chip-on-board light-emitting diodes (COB-LEDs), so as to improve the light extraction efficiency (LEE) of the COB-LEDs. However, the LEE of COB-LEDs with lens array depends on the refractive index of the encapsulant layer and lens array , which was rarely concerned so far. Optical simulations based on a Monte Carlo ray tracing method, and experiments were conducted to investigate the effect of and on the LEE of COB-LEDs with millilens array. The simulated results show that the TIR at chip-encapsulant, encapsulant-lens, and lens-air interfaces can be significantly diminished by regulating the and , and the LEE of COB-LEDs decreases as the refractive difference of encapsulant layer and lens array || increases. Compared to the COB-LEDs with only a flat encapsulant layer, the LEEs of blue and white COB-LEDs with ===2 are enhanced by 246.2% and 50.6%, where is the refractive index of the top layer of the conventional LED chip. The experimental results agree well with the simulated results with normalized LEE deviation within 7.3%.

摘要

引入透镜阵列以减少板上芯片发光二极管(COB-LED)的芯片-封装层和封装层-空气界面处发生的全内反射(TIR),从而提高COB-LED的光提取效率(LEE)。然而,具有透镜阵列的COB-LED的LEE取决于封装层和透镜阵列的折射率,而这一点迄今为止很少受到关注。基于蒙特卡罗光线追踪方法进行了光学模拟,并开展了实验以研究折射率和对具有微透镜阵列的COB-LED的LEE的影响。模拟结果表明,通过调节折射率和,可以显著减少芯片-封装层、封装层-透镜和透镜-空气界面处的TIR,并且随着封装层和透镜阵列的折射率差||增大,COB-LED的LEE降低。与仅具有平坦封装层的COB-LED相比,折射率为===2的蓝色和白色COB-LED的LEE分别提高了246.2%和50.6%,其中为传统LED芯片顶层的折射率。实验结果与模拟结果吻合良好,归一化LEE偏差在7.3%以内。

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