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    • 3. 发明申请
    • Liquid crystal display device
    • 液晶显示装置
    • US20080036930A1
    • 2008-02-14
    • US11882516
    • 2007-08-02
    • Takayuki KonnoShinichi NishidaTeruaki SuzukiYusuke Nogami
    • Takayuki KonnoShinichi NishidaTeruaki SuzukiYusuke Nogami
    • G02F1/1343G02F1/133G02F1/1347
    • G02F1/134363G02F1/136213G02F1/136227
    • Disclosed is an active matrix liquid crystal display device including substrates and a liquid crystal layer. The substrate includes: scan signal wiring lines; common signal wiring lines; video signal wiring lines intersecting these wiring lines; and pixels surrounded with the scan signal wiring lines and the video signal wiring lines. Each of pixels includes: a thin film transistor; source electrodes in a layer with the video signal wiring lines; pixel electrodes connected to the source electrodes; and common electrodes connected to the common signal wiring lines. The source electrodes include first parts overlapping the scan signal wiring lines and second parts connecting with the pixel electrodes, which are positioned around central parts between the video signal wiring lines. Molecular axes in the liquid crystal layer rotate under an electric field applied between the pixel electrodes and the common electrodes.
    • 公开了一种包括基板和液晶层的有源矩阵液晶显示装置。 基板包括:扫描信号布线; 公共信号线路; 与这些布线相交的视频信号布线; 以及被扫描信号布线和视频信号布线包围的像素。 每个像素包括:薄膜晶体管; 源电极在一层具有视频信号布线; 连接到源电极的像素电极; 以及连接到公共信号布线的公共电极。 源电极包括与扫描信号布线重叠的第一部分和与像素电极连接的第二部分,其位于视频信号布线之间的中心部分周围。 在施加在像素电极和公共电极之间的电场下,液晶层中的分子轴旋转。
    • 5. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US06873377B2
    • 2005-03-29
    • US10238279
    • 2002-09-10
    • Takayuki KonnoOsamu SukegawaMasayoshi SuzukiMakoto Watanabe
    • Takayuki KonnoOsamu SukegawaMasayoshi SuzukiMakoto Watanabe
    • G02F1/1337G02F1/133G02F1/1343G02F1/1362G02F1/139G09F9/30G09F9/35G09G3/20G09G3/36
    • G02F1/136286G02F1/1395
    • A dedicated control signal electrode is provided between pixel electrodes, and a strong electric field is generated between the control signal electrode and the common electrode to quickly and securely make an initial transition from liquid crystal molecules in a splay alignment state to the same in a bend alignment state. In addition, generating a strong electric field between the control signal electrode and the common electrode even during operation for displaying an image makes liquid crystal molecules stably stay in a bend alignment state. In this case the scan signal electrode, the video signal electrode and the common electrode, which are required for displaying an image, are not used to make a transition from liquid crystal molecules in a splay alignment state to the same in a bend alignment state and make the same stay in a bend alignment state.
    • 在像素电极之间设置有专用的控制信号电极,并且在控制信号电极和公共电极之间产生强电场,以迅速且可靠地从喷射取向状态的液晶分子到弯曲状态的初始转变 对准状态。 此外,即使在用于显示图像的操作期间,也在控制信号电极和公共电极之间产生强电场,使得液晶分子稳定地保持弯曲取向状态。 在这种情况下,用于显示图像所需的扫描信号电极,视频信号电极和公共电极不用于在弯曲取向状态下从喷射取向状态的液晶分子向其转变, 在弯曲对准状态下保持一致。
    • 7. 发明授权
    • High aperture ratio in-plane switching mode active matrix liquid crystal display unit
    • 高开口率面内切换模式有源矩阵液晶显示单元
    • US07777852B2
    • 2010-08-17
    • US11802467
    • 2007-05-23
    • Taku KawasakiTakayuki KonnoShinichi Nishida
    • Taku KawasakiTakayuki KonnoShinichi Nishida
    • G02F1/1343G02F1/1333
    • G02F1/134363G02F2001/134372G02F2201/40
    • In a liquid crystal display unit where a matrix pattern of pixels are defined by gate lines and crosswise data lines, transparent pixel electrodes are formed on the same layer as the data lines and corresponding transparent common electrodes are formed above the transparent pixel electrodes. On the common electrodes the liquid crystal layer is provided. In the aperture of each pixel, the common electrode has a pattern of parallel stripe portions and a peripheral portion outside of the aperture for shielding the field of the corresponding data line. Each pixel electrode cooperates with that parallel stripe portions of the corresponding common electrode to produce inner fringe fields along such parallel stripe portions and has portions that overlap the peripheral portions of the common electrode to produce peripheral fringe fields so that liquid-crystal cells can be uniformly in-plane switched by the inner fringe fields as well as by the peripheral fringe fields.
    • 在由栅极线和横向数据线限定像素的矩阵图案的液晶显示单元中,在与数据线相同的层上形成透明像素电极,并且在透明像素电极之上形成相应的透明公共电极。 在公共电极上设置液晶层。 在每个像素的孔径中,公共电极具有平行条纹部分的图案和用于屏蔽相应数据线的场的孔外的周边部分的图案。 每个像素电极与相应的公共电极的平行条纹部分配合,以沿平行的条状部分产生内边缘场,并且具有与公共电极的周边部分重叠的部分,以产生周边条纹场,使得液晶单元可均匀地 内边缘区域以及外围边缘区域进行平面切换。
    • 10. 发明申请
    • High aperture ratio in-plane switching mode active matrix liquid crystal display unit
    • 高开口率面内切换模式有源矩阵液晶显示单元
    • US20070273819A1
    • 2007-11-29
    • US11802467
    • 2007-05-23
    • Taku KawasakiTakayuki KonnoShinichi Nishida
    • Taku KawasakiTakayuki KonnoShinichi Nishida
    • G02F1/1343
    • G02F1/134363G02F2001/134372G02F2201/40
    • In a liquid crystal display unit where a matrix pattern of pixels are defined by gate lines and crosswise data lines, transparent pixel electrodes are formed on the same layer as the data lines and corresponding transparent common electrodes are formed above the transparent pixel electrodes. On the common electrodes the liquid crystal layer is provided. In the aperture of each pixel, the common electrode has a pattern of parallel stripe portions and a peripheral portion outside of the aperture for shielding the field of the corresponding data line. Each pixel electrode cooperates with that parallel stripe portions of the corresponding common electrode to produce inner fringe fields along such parallel stripe portions and has portions that overlap the peripheral portions of the common electrode to produce peripheral fringe fields so that liquid-crystal cells can be uniformly in-plane switched by the inner fringe fields as well as by the peripheral fringe fields.
    • 在由栅极线和横向数据线限定像素的矩阵图案的液晶显示单元中,在与数据线相同的层上形成透明像素电极,并且在透明像素电极之上形成相应的透明公共电极。 在公共电极上设置液晶层。 在每个像素的孔径中,公共电极具有平行条纹部分的图案和用于屏蔽相应数据线的场的孔外的周边部分的图案。 每个像素电极与相应的公共电极的平行条纹部分配合,以沿平行的条状部分产生内边缘场,并且具有与公共电极的周边部分重叠的部分,以产生周边条纹场,使得液晶单元可均匀地 内边缘区域以及外围边缘区域进行平面切换。