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用于超薄柔性光源的无光学透镜广角微型发光二极管

Wide-Angle Mini-Light-Emitting Diodes without Optical Lens for an Ultrathin Flexible Light Source.

作者信息

Chen Yen-Lung, Chin Wen-Chung, Tsai Chun-Wei, Chiu Chang-Che, Tien Ching-Ho, Ye Zhi-Ting, Han Pin

机构信息

Graduate Institute of Precision Engineering, National Chung Hsing University, Taichung 402, Taiwan.

Department of R&D Center, TOP RAYS Co., Ltd., Taichung 402, Taiwan.

出版信息

Micromachines (Basel). 2022 Aug 16;13(8):1326. doi: 10.3390/mi13081326.

Abstract

This report outlines a proposed method of packaging wide-angle (WA) mini-light-emitting diode (mini-LED) devices without optical lenses to create a highly efficient, ultrathin, flexible planar backlight for portable quantum dot light-emitting diode (QLED) displays. Since the luminous intensity curve for mini-LEDs generally recommends a beam angle of 120°, numerous LEDs are necessary to achieve a uniform surface light source for a QLED backlight. The light-guide layer and diffusion layer were packaged together on a chip surface to create WA mini-LEDs with a viewing angle of 180°. These chips were then combined with a quantum dot (QD) film and an optical film to create a high-efficiency, ultrathin, flexible planar light source with excellent color purity that can be used as a QLED display backlight. A 6 in (14.4 cm) light source was used as an experimental sample. When 1.44 W was supplied to the sample, the 3200-piece WA mini-LED with a flexible planar QLED display had a beam angle of 180° on the luminous intensity curve, a planar backlight thickness of 0.98 mm, a luminance of 10,322 nits, and a luminance uniformity of 92%.

摘要

本报告概述了一种用于封装广角(WA)微型发光二极管(mini-LED)器件的提议方法,该方法无需光学透镜,旨在为便携式量子点发光二极管(QLED)显示器创建一种高效、超薄、柔性的平面背光源。由于mini-LED的发光强度曲线通常建议光束角为120°,因此需要大量的LED才能为QLED背光源实现均匀的面光源。将导光层和扩散层一起封装在芯片表面,以制造视角为180°的广角mini-LED。然后将这些芯片与量子点(QD)膜和光学膜组合,以创建一种高效、超薄、柔性的平面光源,其具有出色的色纯度,可作为QLED显示器的背光源。使用一个6英寸(14.4厘米)的光源作为实验样品。当向该样品提供1.44瓦的功率时,具有柔性平面QLED显示器的3200个广角mini-LED在发光强度曲线上的光束角为180°,平面背光源厚度为0.98毫米,亮度为10322尼特,亮度均匀性为92%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8caf/9415139/f4b11711f18a/micromachines-13-01326-g001.jpg

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