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    • 32. 发明授权
    • Display device
    • 显示设备
    • US07990499B2
    • 2011-08-02
    • US12280729
    • 2006-12-28
    • Akiko ItoKozo NakamuraShun UekiTokio Taguchi
    • Akiko ItoKozo NakamuraShun UekiTokio Taguchi
    • G02F1/1335
    • G02F1/133555G02F1/133514G02F2201/52
    • The present invention provides a transflective display device capable of reducing a difference in white balance between transmissive display and reflective display. The display device of the present invention is a transflective display device including three or more filters having different colors in a pixel, each of the three or more filters having different colors, including: a transmissive region for displaying an image by transmitting light from a backlight; and a reflective region for displaying an image by reflecting surrounding light, wherein, in the reflective region of at least one of a plurality of filters having different colors used for displaying white in reflective display, a light-reducing film which reduces an amount of at least light having a peak wavelength of a visible light transmission spectrum of the at least one of a plurality of filters is arranged, and the visible light transmission spectrum is measured using a standard light source D65.
    • 本发明提供一种能够减少透射显示和反射显示之间的白平衡差异的透反式显示装置。 本发明的显示装置是一种半透过型显示装置,其包括三个或更多个像素中具有不同颜色的滤光器的透反射显示装置,所述三个或更多个滤光器中的每一个具有不同的颜色,包括:用于通过透射来自背光的光来显示图像的透射区域 ; 以及反射区域,用于通过反射周围光来显示图像,其中在反射显示中用于显示白色的具有不同颜色的多个滤光片中的至少一个的反射区域中,减少膜的量的减光膜 布置具有多个滤光器中的至少一个的可见光透射光谱的峰值波长的最少光,并且使用标准光源D65测量可见光透射光谱。
    • 33. 发明授权
    • Display device
    • 显示设备
    • US07916245B2
    • 2011-03-29
    • US12280878
    • 2007-02-02
    • Tokio TaguchiAkiko ItoShun UekiKozo Nakamura
    • Tokio TaguchiAkiko ItoShun UekiKozo Nakamura
    • G02F1/1335
    • G02F1/133555G02F1/133512G02F1/133514G02F2201/52G09G3/3611G09G2300/0452G09G2300/0456
    • The present invention provides a transflective display device capable of extending a color reproduction range and reducing a difference in white balance between transmissive display and reflective display. The display device of the present invention is a transflective display device including four or more filters having different colors in a pixel, each of the four or more filters having different colors including: a transmissive region for displaying an image by transmitting light from a backlight; and a reflective region for displaying an image by reflecting surrounding light, wherein at least two of the four or more filters having different colors are different in a proportion of an area of the reflective region, and the proportion of the area is represented by the following formula (1): Proportion of area of reflective region=Area of reflective region/Effective area of filter  (1).
    • 本发明提供了能够延长彩色再现范围并减少透射显示和反射显示之间的白平衡差的透反式显示装置。 本发明的显示装置是一种半透过型显示装置,包括四个或更多个像素中具有不同颜色的滤光器的透反射显示装置,四个或更多个滤光器中的每一个具有不同的颜色,包括:透射区域,用于通过透射来自背光的光来显示图像; 以及用于通过反射周围光来显示图像的反射区域,其中具有不同颜色的四个或更多个滤光器中的至少两个在反射区域的面积的比例上不同,并且该区域的比例由以下 公式(1):反射区域的面积=反射区域的面积/过滤器的有效面积(1)。
    • 37. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20090073358A1
    • 2009-03-19
    • 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。
    • 40. 发明授权
    • Liquid crystal display panel
    • 液晶显示面板
    • US08416380B2
    • 2013-04-09
    • US13146630
    • 2009-08-26
    • Akihiro YamamotoYusuke NishiharaIori AoyamaTokio TaguchiMasumi Kubo
    • Akihiro YamamotoYusuke NishiharaIori AoyamaTokio TaguchiMasumi Kubo
    • G02F1/1337
    • G02F1/133753G02F1/133371G02F1/133707G02F2001/133776
    • Disclosed is a liquid crystal display panel which causes no gray scale inversion, even when obliquely viewed, and which realizes suppression of a gamma characteristics change and a chromaticity change. The liquid crystal display panel is made of a pair of substrates, at least one of which includes a plurality of pixel electrodes containing red, green and blue pixel electrodes, and a liquid crystal layer arranged between the pair of substrates. The liquid crystal layer is divided for each pixel into a first region and a second region, which have liquid crystal molecules different in the directions of inclination from each other. Both of the liquid crystal molecules positioned in the first region and the second region are oriented either vertically or horizontally when the pair of substrates is viewed in the front direction, and are oriented obliquely with respect to the substrate surface and symmetrically of each other when the pair of substrates is viewed in the cross-sectional direction. The liquid crystal layer has a smaller thickness in the regions corresponding to the blue pixel electrodes than those in the regions corresponding to the green and red pixel electrodes.
    • 公开了即使在倾斜观察时也不会产生灰度反转的液晶显示面板,这实现了伽马特性变化和色度变化的抑制。 液晶显示面板由一对基板构成,其中至少一个基板包括多个像素电极,该像素电极包含红色,绿色和蓝色像素电极,以及配置在该对基板之间的液晶层。 液晶层被分割成具有在倾斜方向上不同的液晶分子的第一区域和第二区域。 位于第一区域和第二区域中的两个液晶分子当从正面方向观察一对基板时被定向成垂直或水平方向,并且相对于基板表面倾斜定向并且彼此对称 在横截面方向观察一对基板。 与对应于绿色和红色像素电极的区域相比,液晶层在对应于蓝色像素电极的区域中具有较小的厚度。