大功率COP LED封装的光学分析与测量

C. Y. Tang, C. Chen, M. Tsai
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引用次数: 1

摘要

本研究的目的是研究具有低成本特性的高功率片上芯片(COP) LED封装的光学行为,从而最大限度地提高发光效率(这里主要关注光提取效率)。首先,为了验证光通量和坎德拉分布测量和TracePro(商用光学软件之一)模拟,对Lumiled K1 LED封装(商用封装之一)进行了数值和实验分析,并与给定数据表进行了比较。验证后,应用测量和TracePro研究了COP LED封装的坎德拉分布和光提取效率。此外,利用TracePro对COP LED封装的透镜腔高半径比(h/r)和杯角进行了参数化研究,找出影响光提取效率的关键因素。结果表明,TracePro模拟的COP LED封装的坎德拉分布与实验结果一致。在光学参数研究中,除了h/r=0外,COP LED封装的透镜腔高半径比(h/r)对光提取的影响可以忽略不计。此外,在给定透镜腔的情况下,硅酮密封剂与透镜之间的气隙对出光的影响是明显的,气隙随着出光量的增加而减小。在60°以下的杯角对光提取没有明显影响,而在60°以上,光提取随杯角的增大而增大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical analysis and measurements of high-power COP LED packages
The purpose of this study is to investigate the optical behaviors and thus maximize luminous efficiency (focusing on light extraction efficiency here) of high-power chip-on-plate (COP) LED packages with the low-cost feature. First of all, to validate the luminous flux and candela distribution measurements and TracePro (one of commercial optical software) simulation, a Lumiled K1 LED package (one of commercially-available packages) is analyzed numerically and experimentally and compared with given data sheet. After the validation, both measurements and TracePro are applied to studying the candela distribution and light extraction efficiency of the COP LED packages. Furthermore, parametric studies of lens cavity height-radius ratio (h/r) and cup angle of COP LED packages using TracePro are implemented to find out the key factors to the light extraction efficiency. The results show that the candela distribution of COP LED packages from TracePro simulation is consistent with that from experiments. In optical parametric study, the effect of lens cavity height-radius ratio (h/r) of the COP LED packages on light extraction is found to be negligible, except for h/r=0. Moreover, with given lens cavity, the effect of air gap between silicone encapsulant and lens on light extraction is apparent by a way that air gap decreases with increasing light extraction. Also, it is found that the cup angle below 60° does not apparently affect light extraction, but beyond 60°, light extraction increases with the cup angle.
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