发明授权
US06603526B2 Liquid crystal display having high transmittance and high aperture ratio in which electrodes having branches arranged symmetry together in adjacent sub-pixel regions 有权
具有高透射率和高开口率的液晶显示器,其中具有分支的电极在相邻的子像素区域中对称地对齐

  • 专利标题: Liquid crystal display having high transmittance and high aperture ratio in which electrodes having branches arranged symmetry together in adjacent sub-pixel regions
  • 专利标题(中): 具有高透射率和高开口率的液晶显示器,其中具有分支的电极在相邻的子像素区域中对称地对齐
  • 申请号: US10213873
    申请日: 2002-08-06
  • 公开(公告)号: US06603526B2
    公开(公告)日: 2003-08-05
  • 发明人: Hyang Yul KimSeung Hee Lee
  • 申请人: Hyang Yul KimSeung Hee Lee
  • 优先权: KR98-19606 19980529
  • 主分类号: G02F11343
  • IPC分类号: G02F11343
Liquid crystal display having high transmittance and high aperture ratio in which electrodes having branches arranged symmetry together in adjacent sub-pixel regions
摘要:
The present invention is directed to provide a liquid crystal display having an improved picture quality, high transmittance and high aperture ratio. The liquid crystal display comprises: an upper and a lower substrate opposed each other to be spaced apart; a liquid crystal layer interposed between inner surfaces of the upper and lower substrates, the liquid crystal layer including a plurality of liquid crystal molecules; a gate bus line and a data bus line formed in the lower substrate in a matrix configuration and defining sub-pixel regions; a counter electrode formed on each sub-pixel region of the lower substrate; a pixel electrode formed on each sub-pixel region of the lower substrate, wherein the counter electrode and the pixel electrode form an electric field; a thin film transistor formed at an intersection of the gate bus line and the data bus line, and switching a signal transmitted from the data bus line into the pixel electrode when the gate bus line is selected; and a homogeneous alignment layer formed on inner surfaces of the upper and lower substrates, wherein a first electric field is formed between the counter and pixel electrodes of a selected sub-pixel among the sub-pixel regions, and the electric field is formed as a diagonal line with respect to the gate bus line and the data bus line, wherein a second electric field is formed between the counter electrode and the pixel electrode of another sub-pixel adjacent to said selected sub-pixel, and the second electric field is formed as a diagonal line to make a symmetry with the first electric field.
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