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    • 1. 发明授权
    • Antiferroelectric liquid crystal display device
    • 反铁电液晶显示装置
    • US06208403B1
    • 2001-03-27
    • US09556655
    • 2000-04-24
    • Tomio TanakaTetsushi YoshidaJun OguraSatoru Shimoda
    • Tomio TanakaTetsushi YoshidaJun OguraSatoru Shimoda
    • G02F11335
    • G02F1/141G02F2001/1412
    • An antiferroelectric liquid crystal display device includes: an active matrix type LC cell and an antiferroelectric liquid crystal sealed in the cell. Liquid crystal molecules aligned to one of a first aligning direction and a second aligning direction are aligned in the other aligning direction in accordance with an applied voltage, thus forming a plurality of regions of different alignment states in a range shorter than a wavelength of light in a visible light band, and directions of said directors are changed in accordance with a ratio of regions in a first alignment state to regions in a second alignment state. The liquid crystal molecules may behave along a predetermined cone by a phase transition precursor in accordance with an applied voltage. The liquid crystal molecules may behave so as to be inclined in a direction perpendicular to an electric field, in accordance with an applied voltage.
    • 反铁电液晶显示装置包括:密封在电池中的有源矩阵型LC单元和反铁电液晶。 与第一对准方向和第二对准方向中的一个对准的液晶分子根据施加的电压在另一个排列方向上排列,从而在比光的波长短的范围内形成多个不同取向状态的区域 可见光带和所述导向器的方向根据第一取向状态的区域与第二取向状态的区域的比率而改变。 根据施加的电压,液晶分子可以通过相变前体沿预定锥体表现。 根据施加的电压,液晶分子可以表现为在垂直于电场的方向上倾斜。
    • 2. 发明授权
    • Liquid crystal display apparatus
    • 液晶显示装置
    • US6163360A
    • 2000-12-19
    • US878812
    • 1997-06-19
    • Tomio TanakaJun OguraSatoru ShimodaTetsushi Yoshida
    • Tomio TanakaJun OguraSatoru ShimodaTetsushi Yoshida
    • G02F1/1335G02F1/141G09G3/20G09G3/36C09K19/02
    • G02F1/141G02F2001/133531G02F2001/1412G02F2203/30G09G3/2011G09G3/3651G09G3/3688G09G2310/0251G09G2310/027G09G2310/061G09G2320/0204G09G2320/041
    • Placed between a pair of substrates is a liquid crystal which has a first ferroelectric phase where liquid crystal molecules are aligned substantially in a first direction in accordance with an applied voltage, a second ferroelectric phase where the liquid crystal molecules are aligned substantially in a second direction in accordance with an applied voltage, and an intermediate alignment state where the director of the liquid crystal is directed between the first and second directions. The liquid crystal in use is selected so that the first and second directions intersect each other at an angle of greater than 45.degree.. The transmission axis of one of a pair of polarization plates is set inclined to an intermediate direction between the first and second directions by 22.5.degree., and the optical axis of the other polarization plate is set perpendicular to the transmission axis of the former polarization plate. A voltage of a range which does not set the liquid crystal in a ferroelectric phase and can provide maximum and minimum transmittances is applied between electrodes which are so arranged as to sandwich a layer of the liquid crystal.
    • 放置在一对基板之间的液晶是具有第一铁电相的液晶,其中液晶分子基本上按照施加的电压在第一方向上取向,液晶分子基本上沿第二方向排列的第二铁电相 根据施加电压,以及液晶指向器在第一和第二方向之间的中间对准状态。 选择使用的液晶,使得第一和第二方向以大于45°的角度相交。 一对偏振板中的一个的透射轴被设定为在第一和第二方向之间的中间方向倾斜22.5°,另一个偏振板的光轴垂直于前一个偏振板的透射轴设置。 在电极之间施加不设置铁电相中的液晶并且可以提供最大和最小透射率的范围的电压,其被布置为夹着液晶层。
    • 3. 发明授权
    • Antiferroelectric liquid crystal display device
    • 反铁电液晶显示装置
    • US6122034A
    • 2000-09-19
    • US141495
    • 1998-08-27
    • Tomio TanakaTetsushi YoshidaJun OguraSatoru Shimoda
    • Tomio TanakaTetsushi YoshidaJun OguraSatoru Shimoda
    • G02F1/141G02F1/13G02F1/1335
    • G02F1/141G02F2001/1412
    • An antiferroelectric liquid crystal display device includes: an active matrix type LC cell and an antiferroelectric liquid crystal sealed in the cell. Liquid crystal molecules aligned to one of a first aligning direction and a second aligning direction are aligned in the other aligning direction in accordance with an applied voltage, thus forming a plurality of regions of different alignment states in a range shorter than a wavelength of light in a visible light band, and directions of said directors are changed in accordance with a ratio of regions in a first alignment state to regions in a second alignment state. The liquid crystal molecules may behave along a predetermined cone by a phase transition precursor in accordance with an applied voltage. The liquid crystal molecules may behave so as to be inclined in a direction perpendicular to an electric field, in accordance with an applied voltage.
    • 反铁电液晶显示装置包括:密封在电池中的有源矩阵型LC单元和反铁电液晶。 与第一对准方向和第二对准方向中的一个对准的液晶分子根据施加的电压在另一个排列方向上排列,从而在比光的波长短的范围内形成多个不同取向状态的区域 可见光带和所述导向器的方向根据第一取向状态的区域与第二取向状态的区域的比率而改变。 根据施加的电压,液晶分子可以通过相变前体沿预定锥体表现。 根据施加的电压,液晶分子可以表现为在垂直于电场的方向上倾斜。
    • 10. 发明授权
    • Transistor array substrate and display panel
    • 晶体管阵列基板和显示面板
    • US07573068B2
    • 2009-08-11
    • US11232368
    • 2005-09-21
    • Satoru ShimodaTomoyuki ShirasakiJun OguraMinoru Kumagai
    • Satoru ShimodaTomoyuki ShirasakiJun OguraMinoru Kumagai
    • H01L33/00H01L27/32
    • H01L27/124
    • A transistor array substrate includes a plurality of driving transistors which are arrayed in a matrix on a substrate. The driving transistor has a gate, a source, a drain, and a gate insulating film inserted between the gate, and the source and drain. A plurality of signal lines are patterned together with the gates of the driving transistors and arrayed to run in a predetermined direction on the substrate. A plurality of supply lines are patterned together with the sources and drains of the driving transistors and arrayed to cross the signal lines via the gate insulating film. The supply line is electrically connected to one of the source and the drain of the driving transistor. A plurality of feed interconnections are formed on the supply lines along the supply lines, respectively.
    • 晶体管阵列基板包括在基板上排列成矩阵的多个驱动晶体管。 驱动晶体管具有插入栅极和源极和漏极之间的栅极,源极,漏极和栅极绝缘膜。 多个信号线与驱动晶体管的栅极一起被图案化并排列成在衬底上沿预定方向运行。 多个供电线与驱动晶体管的源极和漏极一起被图案化,并被排列成经由栅极绝缘膜与信号线交叉。 电源线与驱动晶体管的源极和漏极之一电连接。 在供给线上分别沿供给线形成多个供给互连。