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    • 3. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20130027650A1
    • 2013-01-31
    • US13639245
    • 2011-03-16
    • Yuki KawashimaKeisuke YoshidaYasutoshi TasakaRyohji YayotaniYoshimizu MoriyaKeiichi Ina
    • Yuki KawashimaKeisuke YoshidaYasutoshi TasakaRyohji YayotaniYoshimizu MoriyaKeiichi Ina
    • G02F1/1343
    • G02F1/133555G02F1/134309G02F1/134336
    • Disclosed is a liquid crystal display device 20 including a display region 11a and a display region 11b. The display region 11a includes pixels 10a provided with, as pixel electrodes, transflective electrodes 15, each including a transmissive electrode 15a that carries out transmissive display, and a reflective electrode 15b that carries out reflective display. The display region 11b includes pixels 10b provided with, as pixel electrodes, transmissive electrodes 16 that carry out transmissive display. The direction in which the long side of the transmissive electrode 15a of the pixel 10a extends is positioned in the same direction in which the long side of the transmissive electrode 16 of the pixel 10b extends. By aligning the long side direction of the transmissive electrode 15a with the long side direction of the transmissive electrode 16, the direction of change in chromaticity in the display region 11a and the direction of change in chromaticity in the display region 11b become the same.
    • 公开了包括显示区域11a和显示区域11b的液晶显示装置20。 显示区域11a包括设置有作为像素电极的半透反射电极15的像素10a,每个透反射电极15包括进行透射显示的透射电极15a和进行反射显示的反射电极15b。 显示区域11b包括具有作为像素电极的透光电极16的像素10b,透射电极16进行透射显示。 像素10a的透射电极15a的长边延伸的方向位于像素10b的透射电极16的长边延伸的相同方向。 通过使透射电极15a的长边方向与透射电极16的长边方向对准,显示区域11a的色度变化方向和显示区域11b的色度变化方向变得相同。
    • 7. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08289480B2
    • 2012-10-16
    • US12970022
    • 2010-12-16
    • Tokio TaguchiKazuhiko TsudaMutsumi NakajimaKeisuke YoshidaJunichi Yamada
    • Tokio TaguchiKazuhiko TsudaMutsumi NakajimaKeisuke YoshidaJunichi Yamada
    • G02F1/1335
    • G02F1/133555G02F2201/52
    • A liquid crystal display device comprises plural picture elements including a first picture element and a second picture element; plural switching elements; and plural scanning lines. The plural switching elements include a first switching element electrically connected to the first picture element and a second switching element electrically connected to the second picture element. The plural scanning lines include a first scanning line electrically connected to the first switching element and a second scanning line electrically connected to the second switching element. The second scanning line is located between at least part of the first picture element and the first scanning line. The first scanning line is located between at least part of the second picture element and the second scanning line.
    • 一种液晶显示装置,包括:包括第一像素和第二像素的多个像素; 多个开关元件; 和多条扫描线。 多个开关元件包括电连接到第一像素的第一开关元件和电连接到第二像素的第二开关元件。 多个扫描线包括电连接到第一开关元件的第一扫描线和与第二开关元件电连接的第二扫描线。 第二扫描线位于第一图像元素和第一扫描线的至少一部分之间。 第一扫描线位于第二图像元素的至少一部分与第二扫描线之间。
    • 8. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US07880834B2
    • 2011-02-01
    • US12293221
    • 2007-02-19
    • Tokio TaguchiKazuhiko TsudaMutsumi NakajimaKeisuke YoshidaJunichi Yamada
    • Tokio TaguchiKazuhiko TsudaMutsumi NakajimaKeisuke YoshidaJunichi Yamada
    • G02F1/1335
    • G02F1/133555G02F2201/52
    • Realizes a structure for a transreflective liquid crystal display device in which one pixel is defined by four or more picture elements, the structure providing a high aperture ratio and being suitable for display for which the transmission mode is prioritized. A liquid crystal display device according to the present invention is a transreflective liquid crystal display device, comprising a plurality of picture elements including a first picture element, a second picture element, a third picture element and a fourth picture element for displaying different colors from one another; in which each of the plurality of picture elements includes a transmission area for providing display in a transmission mode and a reflection area for providing display in a reflection mode. Each picture element includes a mesh portion shaped to be meshable with an adjacent picture element; and the reflection area of each picture element is located in the mesh portion.
    • 实现了其中一个像素由四个或更多个像素限定的透反射液晶显示装置的结构,该结构提供高开口率并且适于显示传输模式被优先化的显示。 根据本发明的液晶显示装置是一种透反射液晶显示装置,包括多个像素,包括第一像素,第二像素,第三像素和第四像素,用于从一个 另一个; 其中多个像素中的每一个包括用于在传输模式中提供显示的传输区域和用于以反射模式提供显示的反射区域。 每个像素包括成形为可与相邻像素相啮合的网格部分; 并且每个像素的反射区域位于网格部分中。
    • 9. 发明申请
    • DISPLAY DEVICE AND DISPLAY METHOD THEREOF
    • 显示装置及其显示方法
    • US20100033456A1
    • 2010-02-11
    • US12450722
    • 2008-02-28
    • Keisuke YoshidaMutsumi Nakajima
    • Keisuke YoshidaMutsumi Nakajima
    • G09G5/10G06F3/038
    • G09G3/3648G09G2320/0242G09G2340/06G09G2360/144
    • An object of the present invention is to provide a display device that achieves a balance between color reproducibility and luminance under the premise that the display device uses a display panel in which each pixel is configured by sub-pixels of four or more colors. An outside light detecting unit (500) outputs a current Ia according to the intensity of outside light. A switching control circuit (600) outputs a display mode selection signal (S) for selecting a display mode, based on the magnitude of the current (Ia). An output selection circuit (120) provides RGB image signals to an input selection circuit (160) when in a first display mode (when it is dark) and provides RGB image signals to a gray scale value converting unit (140) when in a second display mode (when it is bright). In the first display mode, a W image signal generated by a black signal generation circuit (130) is used as a gray scale signal (DV). In the second display mode, a W image signal generated by the gray scale value converting unit (140) referring to a gray scale value determination table (150) is used as a gray scale signal (DV).
    • 本发明的目的是提供一种显示装置,其在显示装置使用其中每个像素由四种或更多种颜色的子像素构成的显示面板的前提下,实现色彩再现性和亮度之间的平衡。 外部光检测单元(500)根据外部光的强度输出电流Ia。 开关控制电路(600)基于电流(Ia)的大小输出用于选择显示模式的显示模式选择信号(S)。 当处于第一显示模式(当它较暗时),输出选择电路(120)向输入选择电路(160)提供RGB图像信号,并且在第二显示模式中将灰度图像信号提供给灰度值转换单元(140) 显示模式(亮时)。 在第一显示模式中,由黑信号发生电路(130)产生的W图像信号用作灰度信号(DV)。 在第二显示模式中,使用由灰度值转换单元(140)参考灰度值确定表(150)产生的W图像信号作为灰度信号(DV)。