Integrated micro-optical light guide plate

Integrated micro-optical light guide plate
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一体化微光学导光板

DOI:
10.1364/oe.21.020159
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发表时间:
2013-08-26
期刊:
影响因子:
3.8
通讯作者:
Su, Zhijie
Su, Zhijie
中科院分区:
物理与天体物理2区
文献类型:
--
作者:
Xu, Ping;Huang, Yanyan;Su, Zhijie

文献摘要

被引文献

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本文提出了一种集成式微光学导光板(MOLGP),其上表面设计为非球面半圆柱形微聚光器阵列(ASCMCS),下表面融合有涂有高反射膜的微棱镜阵列。并给出了优化后的结构参数和分布模式。通过专业光学软件Lighttools的仿真,验证了所提出的集成MOLGP可以实现当前典型背光模块(BLM)中5种复杂结构薄膜的功能,并且集成MOLGP的背光模块的5个参数(光能利用效率、平均照度和亮度、照度均匀性和亮度均匀性)分别是典型背光模块的1.49倍、1.40倍、1.07倍、0.91倍和0.97倍。显然,MOLGP的性能参数超出了传统设计。此外,我们还利用图形用户界面(GUI)设计了两套四步掩码。最后,我们制作了一个1.8英寸的集成MOLGP样品。对比实验表明,制备的MOLGP样品的5个参数分别是典型BLM的1.43、1.43、0.97、0.89和0.70倍。实验结果验证了本文提出的集成MOLGP概念的可行性。(C)2013年美国光学学会
In this paper, we propose an integrated micro-optical light guide plate (MOLGP), of which the top surface is designed as aspheric semi-cylindrical micro-concentrator structure (ASCMCS) arrays and the bottom surface is fused with micro-prism arrays coated with a high-reflective film. And we also present the optimized structural parameters and distribution pattern of the MOLGP. By the simulation of the professional optical software Lighttools, it's verified that the integrated MOLGP we proposed can achieve the functions of five complex-structure films in current typical backlight module (BLM), and the Five Parameters (light energy utilization efficiency, average illuminance and luminance, uniformity of illuminance and uniformity of luminance) in the BLM with integrated MOLGP are respectively 1.49, 1.40, 1.07, 0.91 and 0.97 times than those in the typical BLM. Obviously, the performance parameters of the MOLGP exceed the traditional design. Moreover, we design two sets of four-step masks of the ASCMCS by the graphical user interface (GUI). At last, we fabricate a 1.8 inch integrated MOLGP sample. Comparative experiments show that the Five Parameters of the fabricated MOLGP sample are respectively 1.43, 1.43, 0.97, 0.89 and 0.70 times than those of the typical BLM. The experimental results verify the feasibility of the concept of the integrated MOLGP proposed in this paper. (C)2013 Optical Society of America