Invention Grant
US08421942B2 Active matrix substrate, liquid crystal panel, liquid crystal display device, liquid crystal display unit, and television receiver 有权
有源矩阵基板,液晶面板,液晶显示装置,液晶显示单元和电视接收机

  • Patent Title: Active matrix substrate, liquid crystal panel, liquid crystal display device, liquid crystal display unit, and television receiver
  • Patent Title (中): 有源矩阵基板,液晶面板,液晶显示装置,液晶显示单元和电视接收机
  • Application No.: US12933775
    Application Date: 2009-01-21
  • Publication No.: US08421942B2
    Publication Date: 2013-04-16
  • Inventor: Toshihide Tsubata
  • Applicant: Toshihide Tsubata
  • Applicant Address: JP Osaka
  • Assignee: Sharp Kabushiki Kaisha
  • Current Assignee: Sharp Kabushiki Kaisha
  • Current Assignee Address: JP Osaka
  • Agency: Nixon & Vanderhye, P.C.
  • Priority: JP2008-113105 20080423
  • International Application: PCT/JP2009/050881 WO 20090121
  • International Announcement: WO2009/130922 WO 20091029
  • Main IPC: G02F1/136
  • IPC: G02F1/136
Active matrix substrate, liquid crystal panel, liquid crystal display device, liquid crystal display unit, and television receiver
Abstract:
Provided are an active matrix substrate including plural pixel electrodes in a pixel region and a liquid crystal display device (pixel division mode) using the same. Proposed is a configuration of the liquid crystal display device of the capacitor-coupled pixel division mode which hardly causes reduction in display quality due to image-sticking of sub-pixels. The active matrix substrate includes: a data signal line (15x); scanning signal lines (16a and 16b); a transistor (12a) connected to the data signal line (15x) and scanning signal line (16a); a transistor (12b) connected to the data signal line (15x) and scanning signal line (16b); and pixel electrodes (17a and 17b) provided in a pixel region (101), the pixel electrode (17a) being connected to the data signal line (15x) via the transistor (12a), the pixel electrode (17b) being connected to the pixel electrode (17a) via a capacitor and the data signal line (15x) via the transistor (12b), and the transistors (12a and (12b) have identical W/L ratios of channels (each ratio of width W to length L of channel). The present invention can be configured with identical channel sizes without adjusting W/L ratios of channels of the transistors unlike a conventional configuration. Accordingly, deterioration of display quality due to variation in characteristics of transistors can be suppressed.
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