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Improvement of luminance and uniformity of light guide panel using scatterer pattern by laser processing

机译:通过激光加工提高使用散射体图案的导光板的亮度和均匀性

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Light guiding panel (LGP) is major device in back light unit (BLU) of liquid crystal display (LCD) and determines the optical property of the LCD in terms of average luminance and uniformity. Previously proposed scatterer patterns had problem of non-uniform luminance such as high concentration of luminance near an entrance of a light source. In this paper, V-groove based scatterer patterns were proposed to improve the performance of the LGP. With changing interval between V-grooves and depth of V-groove itself, various patterns were prepared. The feasibility of the designed model was checked with simulation, which calculates luminance value over the LGP surface based on ray tracing technique, and the obtained results were analyzed to determine optimized fabrication conditions in experimental implementation. In modeling of the scatterer patterns, two different kinds of the patterns were considered: one is the pattern composed with regular V-groove interdistance at the same depth along the LGP length, and the other has regular arrangement along the length but different depth. From the results of simulation, experimental inscription with CO _2 laser was done. The implemented pattern consisting of V-grooves with linearly increasing depth of the slope of 3.2° has proved good possibility. The proposed LGP pattern is expected to be a good alternative to expensive and time consuming fabrication process, which could be a good solution for highly efficient LGP for LCD in the near future.
机译:导光板(LGP)是液晶显示器(LCD)的背光单元(BLU)中的主要设备,并根据平均亮度和均匀性确定LCD的光学特性。先前提出的散射体图案具有不均匀的亮度的问题,例如在光源的入口附近的亮度的高度集中。在本文中,提出了基于V型槽的散射体图案,以提高LGP的性能。随着V型槽之间的间隔和V型槽本身深度的变化,准备了各种图案。通过仿真验证了设计模型的可行性,并基于光线跟踪技术计算了LGP表面的亮度值,并对得到的结果进行了分析,以确定了在实验实现中的最佳制造条件。在对散射体图案进行建模时,考虑了两种不同的图案:一种是沿LGP长度在相同深度处具有规则的V形槽间距的图案,另一种是沿长度却具有不同深度的规则排列。根据仿真结果,用CO _2激光进行了实验题写。事实证明,由V型槽构成的图形具有3.2°的斜率线性增加的深度,这种可能性已得到证明。预计拟议的LGP模式可替代昂贵且费时的制造工艺,这可能是在不久的将来针对LCD的高效LGP的良好解决方案。

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