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Liquid Crystal Power Saving Display : Optically Rewritable E-paper and its Application.

机译:液晶节能显示器:可重写电子纸及其应用。

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摘要

In this work, a new type of liquid crystal power saving display--optically rewritable E-Paper was developed and implemented to explain a large number of experimental data. For a LC display device, like e-paper, the response time plays a crucial role. We use four methods to increase the rewriting speed of ORW E-Paper. The key parameter is K22 for static result which affects the azimuthal anchoring energy. And effective rotational viscosity gamma*1. is very important for the dynamic result, we increase the rewriting time by 4 times by applying electric field across the liquid crystal cell, i.e., decrease the effective rotational viscosity gamma*1. In order to treat ORW E-Paper the same as real paper in the manner of bending. We need to keep the cell gap insensitive to pressure, hitting or bending. We introduced two new methods for producing plastic ORW E-paper which can tolerate bending, pressure and hitting was introduced. The underlining principle is the random or regular and sticky spacers. 3D display technology is now becoming a new tendency of electronic products. In this article, we attempted to combine the stereoscopic 3D display technology with our technology of ORW E-paper which is operated by optically rewritable alignment technology.;Tunable grating is one of the important tools for many applications that have been well documented and several fabricating strategies have been proposed. We present an ORW grating based on PA and TN alignment domains, where the periodic distribution of the index to create the diffractive structure can be written, erased and re-written for different period and direction and further can be tuned by blue light for diffractive and non-diffractive states.;ORW E-Paper surface with a layer of the color polarizing film may be achieved non-monochrome display mode, but only with one color. Now we will introduce two ways to achieve a full color ORW E-Paper. Full color ORW E-Paper works similar as the ordinary liquid crystal display (LCD). Color triangle can be 21% NTSC.
机译:在这项工作中,开发并实施了一种新型的液晶节能显示器-光学可擦写电子纸,以解释大量的实验数据。对于液晶显示设备(如电子纸),响应时间至关重要。我们使用四种方法来提高ORW电子纸的重写速度。对于静态结果,关键参数是K22,它会影响方位锚固能量。有效旋转粘度γ* 1。对于动态结果非常重要,我们通过在液晶单元上施加电场使重写时间增加4倍,即降低有效旋转粘度g * 1。为了以弯曲的方式将ORW电子纸与真实纸一样处理。我们需要保持单元间隙对压力,撞击或弯曲不敏感。我们介绍了两种可承受弯曲,压力和撞击的塑料ORW电子纸生产新方法。强调原则是无规或规则且有粘性的垫片。 3D显示技术现在正成为电子产品的新趋势。在本文中,我们尝试将立体3D显示技术与我们的ORW电子纸技术相结合,该技术通过光学可重写的对齐技术进行操作;可调谐光栅是许多应用的重要工具之一,已被充分证明并进行多次制造已经提出了策略。我们提出了一种基于PA和TN对准域的ORW光栅,其中可以写入,擦除和重写折射率的周期性分布以创建不同的周期和方向,并且还可以通过蓝光对其进行调谐,以形成衍射结构。带有一层彩色偏光膜的ORW电子纸表面可以实现非单色显示模式,但是只能具有一种颜色。现在,我们将介绍两种方法来实现全彩ORW电子纸。全彩ORW电子纸的工作原理与普通液晶显示器(LCD)类似。彩色三角形可以是21%NTSC。

著录项

  • 作者

    Sun, Jiatong.;

  • 作者单位

    Hong Kong University of Science and Technology (Hong Kong).;

  • 授予单位 Hong Kong University of Science and Technology (Hong Kong).;
  • 学科 Electrical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 159 p.
  • 总页数 159
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:49

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