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采用U型导光板的边缘/直下式混合迷你LED背光源,用于局部调光。

Edge/direct-lit hybrid mini-LED backlight with U-grooved light guiding plates for local dimming.

作者信息

Chen Enguo, Guo Ju, Jiang Zongzhao, Shen Qiongxin, Ye Yun, Xu Sheng, Sun Jie, Yan Qun, Guo Tailiang

出版信息

Opt Express. 2021 Apr 12;29(8):12179-12194. doi: 10.1364/OE.421346.

Abstract

Current mini-LED backlights improve high-dynamic-range liquid crystal displays (LCDs) by using tens of thousands of direct-lit sources for local dimming. However, relative thick profile and high power consumption are the inherent limitations while compared with edge-lit backlights. By synthesizing edge- and direct-lit advantages, we propose a novel hybrid mini-LED backlight equipped with a specially designed integrated light guiding plate (LGP) for large-area displays. This LGP is seamlessly spliced by multiple physically segmented sub-LGPs with a scattering dot array on the bottom and U-shaped grooves at the corners. Each sub-LGP is a single local dimming zone that can be independently controlled. Scattering dot distribution can be numerically calculated even from multiple edge-lit sources. High optical performance and satisfactory local dimming effect are verified and analyzed via both simulation and experiment. The experimental spatial illuminance uniformity and the light extraction efficiency reach 81% and 83% while the crosstalk can be well suppressed below 0.2% between adjacent local dimming zones. The significant advantages of our design towards state-of-the-art mini-LED backlights include the zero optical distance for an ultra-thin profile, low mini-LED amount for local dimming, high optical efficiency, and infinite extension of zone number, which is expected to have a broad application prospect in the near future.

摘要

当前的微型发光二极管(mini-LED)背光源通过使用数以万计的直下式光源进行局部调光,改善了高动态范围液晶显示器(LCD)。然而,与侧光式背光源相比,相对较厚的外形和高功耗是其固有的局限性。通过综合侧光式和直下式的优点,我们提出了一种新颖的混合式mini-LED背光源,它配备了专门设计的集成导光板(LGP),用于大面积显示。这种LGP由多个物理分割的子LGP无缝拼接而成,底部有散射点阵列,角落有U形凹槽。每个子LGP都是一个可独立控制的局部调光区域。即使从多个侧光式光源出发,也可以通过数值计算散射点分布。通过模拟和实验验证并分析了其高光学性能和令人满意的局部调光效果。实验测得的空间照度均匀性和光提取效率分别达到81%和83%,同时相邻局部调光区域之间的串扰可以很好地抑制在0.2%以下。我们的设计相对于现有mini-LED背光源的显著优势包括超薄外形的零光学距离、用于局部调光的少量mini-LED、高光学效率以及区域数量的无限扩展,预计在不久的将来具有广阔的应用前景。

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