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Design of a Highly-Efficient Light Guide Plate for the Edge Lighting Backlight Module

机译:用于边缘照明背光模块的高效导光板的设计

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This study develops a highly-efficient light-guide plate for edge lighting backlight module that has no optical films. The light guide plate is designed to control the angle of the incident rays to the top surface from light source, to get the highest uniformity of intensity for thin edge lighting backlight system applications. The micro-prisms of pyramidal shape on the top surface can highly-efficient collimate with the light rays. Another micro-prism of v-cut shape on the bottom surface can reflect the incident light into the front direction and mixing the rays in the light-guide plate with the high uniformity. A novel design concept of the v-cut is the regular density varies of the cut in the LGP. The modeling simulation program, employing a Monte Carlo method based on TracePro software, has optimized the shape of the pyramidal micro-prisms on the top surface and the density distribution condition of the v-cut micro-prisms on the bottom surface, also the multiple scattering characteristics. The two types of the micro-prisms at the top and bottom surface can be highly recommended for the uniformity of the brightness via the optimal design process. Future work is warranted on improving the optical efficiency by using light-emitting diodes as a light source. The backlight module will allow us to increase the optical efficiency and to lower the total cost in portable LCD applications. The study confirms that a uniformity of brightness can be achieved without using any optical films, resulting in a high uniformity of 84%.
机译:该研究开发用于不具有光学膜的边缘照明背光模块高效率的光导板。光导板被设计为从光源控制入射光线的顶表面的角度,以获得强度的薄边缘照明背光系统应用提供最高的均匀性。的顶表面上锥体的形状的微棱镜可以高效率与准直的光线。 V-CUT形状的底表面上的另一个微棱镜可以反射入射光到前方向和光导板具有高的均匀性混合射线。 V形切口的一种新颖的设计理念是在LGP切口的常规密度而变化。建模的仿真程序,采用基于TracePro的软件蒙特卡洛方法,优化了锥体微棱镜的顶表面上的形状和V形切口微棱镜的底表面上的密度分布情况,也多散射特性。这两种类型的在顶部和底部表面上的微棱镜的可高度推荐用于通过优化设计过程中的亮度的均匀性。未来的工作是必要的改善,通过使用发光二极管作为光源的光学效率。所述背光模块将允许我们以增加光效率,并降低在便携式LCD应用的总成本。该研究证实,亮度的均匀性可以在不使用任何光学膜,从而导致84%的高均匀性来实现。

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