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    • 5. 发明授权
    • Liquid crystal display and method for producing the same
    • 液晶显示器及其制造方法
    • US08679595B2
    • 2014-03-25
    • US13131700
    • 2009-06-25
    • Masanobu MizusakiYohei Nakanishi
    • Masanobu MizusakiYohei Nakanishi
    • G02F1/1337
    • C08G73/1078C08G73/12C08L79/08C08L79/085G02F1/133723G02F1/133753G02F1/133788G02F2001/133397G02F2001/133715G02F2001/133742Y10T428/1005Y10T428/1023
    • A liquid crystal display device (100) according to the present invention includes: an active matrix substrate (220) having a pixel electrode (224); a counter substrate (240) having a counter electrode (244); a vertical-alignment type liquid crystal layer (260); and alignment sustaining layers (210, 230) provided between the active matrix substrate (220) and the liquid crystal layer (260) and between the counter substrate (240) and the liquid crystal layer (260). The alignment sustaining layers (210, 230) contain a polymerization product (poa) resulting from polymerization of a polyfunctional monomer. At least one of the active matrix substrate and the counter substrate further includes an alignment film (110, 120) located on the liquid crystal layer side, the alignment film (110, 120) containing polyimide (pi) and a polymerization product (pob) resulting from polymerization of a polyfunctional monomer.
    • 根据本发明的液晶显示装置(100)包括:具有像素电极(224)的有源矩阵基板(220)。 具有对电极(244)的对置基板(240); 垂直取向型液晶层(260); 以及设置在有源矩阵基板(220)和液晶层(260)之间以及对置基板(240)和液晶层(260)之间的配向维持层(210,230)。 取向维持层(210,230)含有由多官能单体聚合得到的聚合产物(poa)。 有源矩阵基板和对置基板中的至少一个还包括位于液晶层侧的取向膜(110,120),含有聚酰亚胺(pi)和聚合物(pob)的取向膜(110,120) 由多官能单体的聚合引起。
    • 7. 发明授权
    • Liquid crystal display device
    • 液晶显示装置
    • US08564751B2
    • 2013-10-22
    • US13264801
    • 2010-04-12
    • Yohei NakanishiMasanobu MizusakiTakashi KatayamaYuichi Kawahira
    • Yohei NakanishiMasanobu MizusakiTakashi KatayamaYuichi Kawahira
    • G02F1/1337
    • G02F1/133707G02F2001/13373G02F2001/133742G02F2001/133757G02F2001/133776
    • A VA-mode liquid crystal display device having a high display quality is provided. A liquid crystal display device according to the present invention includes a vertical alignment type liquid crystal layer; a first substrate and a second substrate facing each other with the liquid crystal layer interposed therebetween; a first electrode provided in the first substrate on the liquid crystal layer side and a second electrode provided in the second substrate on the liquid crystal layer side; and a first alignment film provided between the first electrode and the liquid crystal layer and a second alignment film provided between the second electrode and the liquid crystal layer. The liquid crystal display device includes a plurality of pixel areas located in a matrix. Each of the plurality of pixel areas includes a first liquid crystal domain in which a tilt direction of liquid crystal molecules at the center and in the vicinity thereof in a layer plane and in a thickness direction of the liquid crystal layer when a voltage is applied between the first electrode and the second electrode is a predetermined first direction, a second liquid crystal domain in which such a tilt direction is a predetermined second direction, a third liquid crystal domain in which such a tilt direction is predetermined third direction and a fourth liquid crystal domain in which such a tilt direction is a predetermined fourth direction; a difference between any two among the first direction, the second direction, the third direction and the fourth direction is approximately equal to an integral multiple of 90 degrees.
    • 提供具有高显示质量的VA模式液晶显示装置。 根据本发明的液晶显示装置包括垂直取向型液晶层; 第一基板和第二基板,其间夹着液晶层彼此面对; 设置在液晶层侧的第一基板中的第一电极和设置在液晶层侧的第二基板中的第二电极; 以及设置在第一电极和液晶层之间的第一取向膜和设置在第二电极和液晶层之间的第二取向膜。 液晶显示装置包括位于矩阵中的多个像素区域。 多个像素区域中的每一个包括第一液晶畴,其中当在第二液晶畴之间施加电压时,液晶分子在液晶层的中间和附近的层面和液晶层的厚度方向上的倾斜方向 第一电极和第二电极是预定的第一方向,其中倾斜方向为预定的第二方向的第二液晶畴,其中倾斜方向为预定的第三方向的第三液晶区域和第四液晶区域 其中这种倾斜方向是预定的第四方向; 第一方向,第二方向,第三方向和第四方向中的任意两方的差大致等于90度的整数倍。
    • 8. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • US20120033158A1
    • 2012-02-09
    • US13264801
    • 2010-04-12
    • Yohei NakanishiMasanobu MizusakiTakashi KatayamaYuichi Kawahira
    • Yohei NakanishiMasanobu MizusakiTakashi KatayamaYuichi Kawahira
    • G02F1/1337G02F1/1335
    • G02F1/133707G02F2001/13373G02F2001/133742G02F2001/133757G02F2001/133776
    • A VA-mode liquid crystal display device having a high display quality is provided. A liquid crystal display device according to the present invention includes a vertical alignment type liquid crystal layer; a first substrate and a second substrate facing each other with the liquid crystal layer interposed therebetween; a first electrode provided in the first substrate on the liquid crystal layer side and a second electrode provided in the second substrate on the liquid crystal layer side; and a first alignment film provided between the first electrode and the liquid crystal layer and a second alignment film provided between the second electrode and the liquid crystal layer. The liquid crystal display device includes a plurality of pixel areas located in a matrix. Each of the plurality of pixel areas includes a first liquid crystal domain in which a tilt direction of liquid crystal molecules at the center and in the vicinity thereof in a layer plane and in a thickness direction of the liquid crystal layer when a voltage is applied between the first electrode and the second electrode is a predetermined first direction, a second liquid crystal domain in which such a tilt direction is a predetermined second direction, a third liquid crystal domain in which such a tilt direction is predetermined third direction and a fourth liquid crystal domain in which such a tilt direction is a predetermined fourth direction; a difference between any two among the first direction, the second direction, the third direction and the fourth direction is approximately equal to an integral multiple of 90°. The first liquid crystal domain is close to at least a part of the edges of the first electrode, and the at least a part includes a first edge portion, wherein an azimuthal angle component of an alignment regulation force caused by an oblique electric field generated in the vicinity of the first edge portion and an azimuthal angle component of an alignment regulation force caused by the second alignment film are opposite to each other. The second substrate includes a first rib provided in an area corresponding to the first edge portion.