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    • 31. 发明授权
    • Liquid crystal display apparatus
    • 液晶显示装置
    • US6052161A
    • 2000-04-18
    • US165113
    • 1998-10-02
    • Nobuaki YamadaYasuhiro KumeToshikazu HirataMasahiko KondoMasato ImaiKazuyuki Endo
    • Nobuaki YamadaYasuhiro KumeToshikazu HirataMasahiko KondoMasato ImaiKazuyuki Endo
    • G02F1/1333G02F1/133G02F1/1337G09F9/35H01J17/48
    • G02F1/13334H01J17/485H01J2217/49207
    • A plasma address liquid crystal display device having a flat panel structure which is composed of display cells and plasma cells bonded to one another with an intermediate sheet, and in which position registration tolerance between the display and plasma cells can be made less strict. A plasma cell 2 has discharge channels 5 extending in the row direction. The display cell 1 has a electro-optical device 9 and signal electrodes 10 extending along the column direction. Pixels 11 are defined at the points of intersections of the signal electrodes 10 and the discharge channels 5. The electro-optical device 9 is a set of finely partitioned liquid crystal areas 15 and is controlled in orientation to axis-symmetrical orientation. The liquid crystal areas 15 are continuously arrayed at a constant pitch DP finer than an arraying pitch CP of the pixels 11 at least in the column direction. This structure can be extensively applied to the active matrix type liquid crystal display device.
    • 具有平板结构的等离子体地址液晶显示装置,其由显示单元和等离子体单元组成,其中间片彼此接合,并且可以使显示和等离子体单元之间的位置对准公差更不严格。 等离子体电池2具有沿行方向延伸的排出通道5。 显示单元1具有沿着列方向延伸的电光装置9和信号电极10。 像素11被定义在信号电极10和放电通道5的交点处。电光装置9是一组精细分隔的液晶区域15,并且被控制在轴对称取向的取向上。 至少在列方向上,液晶区域15以比像素11的阵列间距CP更窄的恒定间距DP连续排列。 该结构可以广泛地应用于有源矩阵型液晶显示装置。
    • 32. 发明授权
    • Liquid crystal display device, and method for producing the same
    • 液晶显示装置及其制造方法
    • US06330049B1
    • 2001-12-11
    • US09270752
    • 1999-03-17
    • Yasuhiro KumeMasahiko KondoMasatoshi YoshimiKatsuyuki HimeshimaNobuaki YamadaKazuyuki Kishimoto
    • Yasuhiro KumeMasahiko KondoMasatoshi YoshimiKatsuyuki HimeshimaNobuaki YamadaKazuyuki Kishimoto
    • G02F11339
    • G02F1/13394G02F1/133753
    • A liquid crystal display device of the present invention includes: a first substrate and a second substrate; a liquid crystal layer interposed between the first substrate and the second substrate, and a vertical alignment layer provided on at least one of the first substrate and the second substrate on a side which is closer to the liquid crystal layer. The liquid crystal layer includes a plurality of liquid crystal regions partitioned by at least one partition wall provided on the first substrate on a side which is closer to the liquid crystal layer. The liquid crystal layer has a liquid crystal material with a negative dielectric anisotropy. Liquid crystal molecules in the plurality of liquid crystal regions are oriented in a direction substantially perpendicular to the first substrate and the second substrate in an absence of an applied voltage. The liquid crystal molecules in each of the liquid crystal regions are oriented in axial symmetry about an axis within the liquid crystal region which is substantially perpendicular to the first substrate and the second substrate in a presence of an applied voltage. The partition wall has a section which is inclined with respect to the surface of the first substrate.
    • 本发明的液晶显示装置包括:第一基板和第二基板; 插入在第一基板和第二基板之间的液晶层,以及设置在更靠近液晶层的一侧上的第一基板和第二基板中的至少一个上的垂直取向层。 液晶层包括在靠近液晶层的一侧上设置在第一基板上的至少一个分隔壁分隔的多个液晶区域。 液晶层具有负介电各向异性的液晶材料。 在不存在施加电压的情况下,多个液晶区域中的液晶分子在大致垂直于第一基板和第二基板的方向上取向。 每个液晶区域中的液晶分子在存在施加电压的情况下基本上垂直于第一基板和第二基板的液晶区域内的轴线轴向对准。 隔壁具有相对于第一基板的表面倾斜的部分。
    • 40. 发明授权
    • Complex birefringent medium, polarizing plate, and liquid crystal device
    • 复合双折射介质,偏振片和液晶装置
    • US07999893B2
    • 2011-08-16
    • US12300682
    • 2007-06-01
    • Akira SakaiTakayuki NatsumeMasahiro HasegawaKazuhiko TsudaNobuaki Yamada
    • Akira SakaiTakayuki NatsumeMasahiro HasegawaKazuhiko TsudaNobuaki Yamada
    • G02F1/13363
    • G02B5/3016G02F1/13363G02F1/133634G02F2001/133637G02F2413/10
    • The present invention provides a complex birefringent medium, which has the so-called inverse wavelength dispersibility, that is, a wavelength dispersibility capable of giving an optimum phase difference to a light of a wide visible wavelength range, has a wide viewing angle, can be produced by a convenient method and is excellent in a degree of adjusting freedom of inverse wavelength dispersibility and in mass productivity, a polarizing plate and a liquid crystal display device. The complex birefringent medium of the present invention is a complex birefringent medium having a structure in which a plurality of birefringent layers are laminated, wherein in the complex birefringent medium, a phase difference exhibits inverse wavelength dispersibility as the whole of the complex birefringent medium, and wherein when a principal refractive index having the maximum absolute value of a difference from an average value of three principal refractive indexes at a wavelength λ (nm) is designated as a first principal refractive index n1(λ), a normal line of the birefringent layer and a principal axis corresponding to the first principal refractive index n1(550) of the birefringent layer are in the same plane.
    • 本发明提供了一种复数双折射介质,其具有所谓的反向波长分散性,即能够对宽可见光波长范围的光赋予最佳相位差的波长分散性,具有宽视角, 通过方便的方法制造,并且具有优异的反波长分散性和批量生产率的自由度,偏振片和液晶显示装置。 本发明的复合双折射介质是具有层叠多个双折射层的结构的复合双折射介质,其中在复合双折射介质中,作为复数双折射介质的整体,相位差呈现反波长分散性, 其中当将具有与波长λ(nm)处的三个主折射率的平均值的差的最大绝对值的主折射率指定为第一主折射率n1(λ)时,双折射层的法线 并且与双折射层的第一主折射率n1(550)对应的主轴在同一平面内。