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Micro-lens array design on a flexible light-emitting diode package for indoor lighting

机译:用于室内照明的柔性发光二极管封装上的微透镜阵列设计

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摘要

An advanced, ultra-thin, flexible LED (FLED) package technique is first proposed in this study, where a polyimide substrate was used as the lead frame package material due to its physical stability in thermal processing. The experimental results showed that the thickness of the mockup sample measured by a vernier caliper was 260 mu m and 35% thinner than the Panasonic organic LED lighting panel announced on 4 March 2014 in Tokyo. Moreover, the flexible angle of the ultra-thin LED package was 200.54 degrees when it surrounded a disk with a 1 cm radius. A design of a micro-lens array manufactured by silicone molding on the FLED is also proposed in this study. Finally, different types of micro-lenses were applied to different lighting regions to investigate their lighting effects. (C) 2015 Optical Society of America
机译:这项研究首先提出了一种先进的超薄柔性LED(FLED)封装技术,其中聚酰亚胺衬底由于在热处理中的物理稳定性而被用作引线框封装材料。实验结果表明,通过游标卡尺测量的样机样品厚度为260微米,比2014年3月4日在东京宣布的松下有机LED照明面板薄35%。此外,当超薄LED封装包围半径为1 cm的磁盘时,其柔性角度为200.54度。在这项研究中,还提出了通过在FLED上进行硅树脂成型制造的微透镜阵列的设计。最后,将不同类型的微透镜应用于不同的照明区域以研究其照明效果。 (C)2015年美国眼镜学会

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