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Characterization and optimization of silicon light valves for high-definition projection display.

机译:用于高清投影显示器的硅光阀的特性和优化。

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摘要

Liquid-crystal-on-silicon (LCOS) light valve has recently been recognized as an alternative approach for the fabrication of active matrix liquid crystal display (AMLCD). The major advantage is matured silicon fabrication technology. Very advanced display drivers and fine pixels can be integrated together as a self-contained and high-resolution display. The aperture ratio of the silicon light valve can be higher than 90% for good light efficiency and picture quality. As a result, the silicon light valve is very suitable for high-definition projection display, and has merits of high resolution, superior picture quality, high light efficiency and low power consumption. However, the silicon light valve used in projection display has a drawback in flicker.; In this dissertation research, systematic approaches were used to study flicker mechanisms in silicon light valves. Four experiments were designed, and a variety of silicon light valve samples were prepared for the characterizations. It was found that there were five conduction mechanisms accounting for the flicker. They were residual DC charge on silicon surface, voltage holding capability of liquid crystal cell, voltage holding capability of silicon panel, light leakage and parasitic capacitor coupling. Through the systematic characterizations, major causes of flicker were identified. An empirical model of flicker was proposed with quantitative experimental data and theories. Solutions of flicker minimization were obtained. Among these solutions, offset of common voltage was found very useful to compensate for residual DC charge and parasitic capacitor coupling. Frame rate multiplication was found very useful for reducing the flicker due to low voltage holding capabilities of liquid crystal cell and silicon panel. Material and device optimization could also help minimize the flicker in different manners. With all these optimizations, flicker-free high-definition projection displays based on silicon light valve were demonstrated.
机译:硅上液晶(LCOS)光阀最近被认为是制造有源矩阵液晶显示器(AMLCD)的替代方法。主要优势是成熟的硅制造技术。可以将非常先进的显示驱动器和精细像素集成在一起,成为一个独立的高分辨率显示器。硅光阀的开口率可以高于90%,以获得良好的光效率和图像质量。结果,硅光阀非常适合于高清投影显示,并具有高分辨率,出众的图像质量,高的光效率和低功耗的优点。然而,用于投影显示器的硅光阀具有闪烁的缺点。本文采用系统的方法研究了硅光阀的闪烁机理。设计了四个实验,并准备了各种硅光阀样品进行表征。发现存在五种导致闪烁的传导机制。它们是硅表面上的残留直流电荷,液晶单元的电压保持能力,硅面板的电压保持能力,漏光和寄生电容器耦合。通过系统表征,可以确定闪烁的主要原因。利用定量实验数据和理论,提出了一种闪烁的经验模型。获得了闪烁最小化的解决方案。在这些解决方案中,发现公共电压偏移对于补偿残留的直流电荷和寄生电容耦合非常有用。由于液晶单元和硅面板的低电压保持能力,发现帧速率倍增对于减少闪烁非常有用。材料和设备的优化还可以帮助以不同的方式使闪烁最小化。通过所有这些优化,展示了基于硅光阀的无闪烁高清投影显示器。

著录项

  • 作者

    Cheng, Po Wing.;

  • 作者单位

    Hong Kong University of Science and Technology (People's Republic of China).;

  • 授予单位 Hong Kong University of Science and Technology (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

  • 入库时间 2022-08-17 11:47:00

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