Chen Lung-Chien, Tien Ching-Ho, Chen De-Fu, Ye Zhi-Ting, Kuo Hao-Chung
Department of Electro-optical Engineering, National Taipei University of Technology, No. 1, 3 Sec., Chung-Hsiao E. Rd, Taipei, 10608, Taiwan.
Department of Electro-Optical Engineering, National United University, 2, Lienda, Miaoli, 26063, Taiwan.
Nanoscale Res Lett. 2019 May 29;14(1):182. doi: 10.1186/s11671-019-2993-z.
This study proposes a novel direct-lit mini-chip-scale packaged light-emitting diode (mini-CSPLED) backlight unit (BLU) that used quantum dot (QD) film, diffusion plate, and two prism films to improve brightness uniformity. Three different luminous intensity units, 120° mini-CSPLED, 150° mini-CSPLED, and 180° mini-CSPLED with different emission angle structures were fabricated using a CSP process. In terms of component characteristics, although the 180° mini-CSPLED light output power is about loss 4% (at 10 mA) compared with 150° mini-CSPLED, it has a large emission angle that forms a planar light source that contributes to improving the BLU brightness uniformity and reduced quantity of LEDs at the same area. In terms of BLU analysis, the blue mini-CSPLEDs with different emission angles excite the different QD film thicknesses; the chromaticity coordinates conversion to the white light region. The BLU brightness increases as the QD film thickness increases from 60, 90, and 150 μm. This result can achieve a brightness uniformity of 86% in a 180° mini-CSPLED BLU + 150-μm-thick QD films as compared to the 120° mini-CSPLED BLU and 150° mini-CSPLED BLU.
本研究提出了一种新型的直下式微型芯片级封装发光二极管(mini-CSPLED)背光源单元(BLU),该背光源单元采用量子点(QD)膜、扩散板和两片棱镜片来提高亮度均匀性。使用芯片级封装(CSP)工艺制造了三种具有不同发光角度结构的不同发光强度单元,即120°mini-CSPLED、150°mini-CSPLED和180°mini-CSPLED。在组件特性方面,尽管180°mini-CSPLED的光输出功率与150°mini-CSPLED相比在10 mA时约有4%的损耗,但它具有较大的发光角度,可形成平面光源,有助于提高背光源单元的亮度均匀性,并在相同面积下减少发光二极管的数量。在背光源单元分析方面,不同发光角度的蓝色mini-CSPLED激发不同厚度的量子点膜;色度坐标转换到白光区域。随着量子点膜厚度从60、90和150μm增加,背光源单元的亮度增加。与120°mini-CSPLED背光源单元和150°mini-CSPLED背光源单元相比,在180°mini-CSPLED背光源单元 + 150μm厚的量子点膜的情况下,这一结果可实现86%的亮度均匀性。