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    • 6. 发明申请
    • DISPLAY DEVICE
    • 显示设备
    • US20120307178A1
    • 2012-12-06
    • US13244284
    • 2011-09-24
    • Hui-Chuan ChengShin-Tson WuJin YanYoung-Ran ChuangChing-Huan Lin
    • Hui-Chuan ChengShin-Tson WuJin YanYoung-Ran ChuangChing-Huan Lin
    • G02F1/13357
    • G02F1/133524G02B6/0053G02F1/1334G02F1/1336G02F1/1393G02F2001/133562G02F2001/13793
    • A display device includes a display module, a light source module and a guiding optical film. The display module includes a first substrate, a second substrate and a display medium. The light source module generates directional light. The display module has a vertical electric field. The display medium is optically isotropic, and the display medium is optically anisotropic when driven by the vertical electric field. The directional light is not perpendicular to the first substrate when the directional light enters the display nodule. The directional light is not perpendicular to the second substrate when the directional light exits the display module. The guiding optical film is disposed on the second substrate and has a light incident surface and a light emitting surface. After the directional light exits the guiding optical film, emitting light is formed, and the emitting light and the light emitting surface has an included angle there between.
    • 显示装置包括显示模块,光源模块和引导光学薄膜。 显示模块包括第一基板,第二基板和显示介质。 光源模块产生定向光。 显示模块具有垂直电场。 显示介质是光学各向同性的,并且当由垂直电场驱动时,显示介质是光学各向异性的。 当定向光进入显示结节时,定向光不垂直于第一基底。 当定向光离开显示模块时,定向光不垂直于第二基板。 引导光学膜设置在第二基板上,具有光入射面和发光面。 在定向光离开引导光学膜之后,形成发光,发光和发光面之间具有夹角。
    • 9. 发明授权
    • Transflective liquid crystal display having mutually complementary patterned electrode and reflector
    • 具有互补图案化电极和反射器的透反射液晶显示器
    • US07969540B2
    • 2011-06-28
    • US11975230
    • 2007-10-18
    • Xinyu ZhuZhibing GeShin-Tson Wu
    • Xinyu ZhuZhibing GeShin-Tson Wu
    • G02F1/1335
    • G02F1/133555G02F2001/134381
    • A transflective liquid crystal display with uniform cell gap configuration throughout the transmissive and the reflective display region is invented. Mutually complementary common electrode pattern and reflector pattern or mutually complementary ITO pixel electrode pattern and reflector pattern produce an electric field in the transmissive display region that has a uniform longitudinal field and an electric field in the reflective display region that is a fringing field. An initially vertically aligned negative dielectric anisotropic nematic liquid crystal material between the electrodes forms a smaller tilt angle with respect to the substrate normal in the reflective display region while a larger tilt angle with respect to the substrate normal in the transmissive display region. Consequently, the ambient incident light experiences smaller phase retardation in the reflective display region while the light from the backlight source experiences larger phase retardation. Since the ambient light passes through the reflective display region twice while the light from the backlight source passes through the transmissive display region only once, by properly designing the electrodes and the reflector width, the light from both ambient light source and backlight source will experience almost the same phase retardation in both reflective and transmissive display regions. As a result, the electro-optical performance curves of both-transmissive display mode and reflective display mode overlap.
    • 发明了在整个透射和反射显示区域中具有均匀的单元间隙配置的半透射型液晶显示器。 相互互补的公共电极图案和反射器图案或互补的ITO像素电极图案和反射器图案在透射显示区域中产生在反射显示区域中具有均匀的纵向场和电场的电场,该电场是边缘场。 电极之间的初始垂直排列的负介电各向异性向列型液晶材料在反射显示区域中相对于衬底法线形成较小的倾斜角,而在透射显示区域中相对于衬底的倾斜角相对于衬底法定。 因此,环境入射光在反射显示区域中经历较小的相位延迟,而来自背光源的光经历较大的相位延迟。 由于环境光通过反射显示区域两次,而来自背光源的光仅通过透射显示区域一次,通过适当地设计电极和反射器宽度,来自环境光源和背光源的光将经历几乎 在反射和透射显示区域中相同的相位延迟。 结果,双透射显示模式和反射显示模式的电光性能曲线重叠。