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    • 1. 发明授权
    • Liquid crystal device with metal oxide masking films with breaks between
films under metal lead electrodes
    • 具有金属氧化物掩膜的液晶装置,其在金属引线电极下的膜之间具有断裂
    • US5412494A
    • 1995-05-02
    • US750246
    • 1991-08-27
    • Kazuya IshiwataTakashi EnomotoToshifumi Yoshioka
    • Kazuya IshiwataTakashi EnomotoToshifumi Yoshioka
    • G03F7/038G02F1/1333G02F1/1335G02F1/1343G03F7/105
    • G02F1/133512G02F1/134336
    • A liquid crystal device is formed by disposing a liquid crystal between a plurality of elongated first display electrodes on a first substrate and a plurality of elongated second display electrodes on a second substrate so as to form a pixel at each intersection of the first and second display electrodes. The spacings between the pixels are masked by a metal oxide light-shielding mask disposed in lamination with the first display electrodes with an intermediate insulating film. The metal oxide light-shielding mask is separated into a plurality of discrete metal oxide masking films each allotted to a pixel at parts in alignment with at least one of first and second metal lead electrodes disposed along and in electrical contact with the first and second display electrodes. The structure is effective for preventing leakage light through a spacing between pixels without causing a short circuit between pixels, liquid crystal alignment disorder or peeling-off of the insulating film.
    • 通过在第一基板上的多个细长的第一显示电极和第二基板上的多个细长的第二显示电极之间设置液晶来形成液晶装置,以便在第一和第二显示器的每个交叉处形成像素 电极。 像素之间的间距用与中间绝缘膜与第一显示电极层压的金属氧化物屏蔽掩模掩蔽。 金属氧化物屏蔽掩模被分离成多个离散的金属氧化物掩模膜,每个分离的金属氧化物掩模膜分别与沿与第一和第二显示器电气接触设置的第一和第二金属引线电极中的至少一个对齐的部分分配给像素 电极。 该结构对于防止像素之间的间隔的泄漏光而不会引起像素之​​间的短路,液晶取向障碍或绝缘膜的剥离是有效的。
    • 2. 发明授权
    • Electrode substrate with light shielding film having upper surface
coplanar with upper surface of laminate electrodes
    • 具有遮光膜的电极基板,具有与层叠电极的上表面共面的上表面
    • US5568291A
    • 1996-10-22
    • US296180
    • 1994-08-29
    • Tatsuo MurataKazuya IshiwataToshifumi Yoshioka
    • Tatsuo MurataKazuya IshiwataToshifumi Yoshioka
    • G02B5/00G02F1/1335G02F1/1333G02F1/1343
    • G02F1/133512
    • A process for producing an electrode substrate for use in a liquid crystal device in which a laminate film comprised of a transparent conductive film and a metal film is formed of a first side of a transparent substrate. The laminate film is pattern-etched so as to form islands of the laminate film in a predetermined pattern. A photosensitive anaerobic colored resin is applied on the transparent substrate on which the islands of laminate film are arranged in the predetermined pattern. The transparent substrate is uniformly exposed to a light from a second side of the substrate opposite to the first side in an oxygen-containing atmosphere. Unexposed portions of the photosensitive anaerobic resin are removed so as to leave the photosensitive anaerobic resin only in the spaces between adjacent islands of the laminate film, for forming a light-shielding film in each of the spaces. The metal film of each laminate film island is etched so as to remove unnecessary portions of the metal film, thereby forming metal electrodes wired along edges of the transparent conductive film.
    • 一种用于液晶显示装置的电极基板的制造方法,其中,由透明导电膜和金属膜构成的层叠膜由透明基板的第一面形成。 对层压膜进行图案蚀刻,以形成预定图案的叠层膜的岛。 将感光性厌氧性着色树脂施加在其上以预定图案布置层压膜岛的透明基板上。 透明基板在含氧气氛中均匀地暴露于与第一侧相对的基板的第二侧的光。 去除感光性厌氧性树脂的未曝光部分,以便仅在层压膜的相邻岛之间的空间中留下感光性厌氧树脂,以在每个空间中形成遮光膜。 蚀刻每个层压膜岛的金属膜,以去除金属膜的不需要的部分,从而形成沿着透明导电膜的边缘布线的金属电极。
    • 5. 发明授权
    • Process for producing electrode substrate
    • 电极基板的制造方法
    • US5348828A
    • 1994-09-20
    • US660861
    • 1991-02-26
    • Tatsuo MurataKazuya IshiwataToshifumi Yoshioka
    • Tatsuo MurataKazuya IshiwataToshifumi Yoshioka
    • G02B5/00G02F1/1335C09K19/02G02F1/03
    • G02F1/133512
    • A process for producing an electrode substrate for use in a liquid crystal device in which a laminate film of a transparent conductive film and a metal film is formed on a first side of a transparent substrate. The laminate film is pattern-etched so as to form islands of the laminate film in a predetermined pattern. A photosensitive anaerobic colored resin is applied on the transparent substrate on which the islands of laminate film arranged in the predetermined pattern. The transparent substrate is uniformly exposed to a light from a second side of the substrate opposite to the first side in an oxygen-containing atmosphere. Unexposed portions of the photosensitive anaerobic resin are removed so as to leave the photosensitive anaerobic resin only in the spaces between adjacent islands of the laminate film, for forming a light-shielding film in each of the spaces. The metal film of each laminate film island is etched so as to remove unnecessary portions of the metal film, thereby forming metal electrodes wired along edges of the transparent conductive film.
    • 一种制造用于液晶装置的电极基板的制造方法,其中在透明基板的第一面上形成透明导电膜和金属膜的叠层膜。 对层压膜进行图案蚀刻,以形成预定图案的叠层膜的岛。 将感光性厌氧性着色树脂施加在其上以预定图案布置层压膜岛的透明基板上。 透明基板在含氧气氛中均匀地暴露于与第一侧相对的基板的第二侧的光。 去除感光性厌氧性树脂的未曝光部分,以便仅在层压膜的相邻岛之间的空间中留下感光性厌氧树脂,以在每个空间中形成遮光膜。 蚀刻每个层压膜岛的金属膜,以去除金属膜的不需要的部分,从而形成沿着透明导电膜的边缘布线的金属电极。
    • 9. 发明授权
    • Liquid crystal device having two bistable orientation states in the
chiral smectic temperature range
    • 液晶装置在手性近晶温度范围内具有两个双稳态取向状态
    • US5076671A
    • 1991-12-31
    • US451364
    • 1989-12-15
    • Toshiharu UchimiAkio YoshidaKazuya IshiwataTakashi Enomoto
    • Toshiharu UchimiAkio YoshidaKazuya IshiwataTakashi Enomoto
    • G02F1/1337G02F1/141
    • G02F1/141G02F1/1337
    • A liquid crystal device includes a pair of substrates with a orientation controlling film being provided on at least one of the substrates through a base layer, and a ferroelectric smectic liquid crystal which is disposed between the substrates. The orientation controlling film has a uniaxial orientation processing axis. The ferroelectric smectic liquid crystal generates two different stable orientation states at high and low temperatures regions within the temperature range achieving the ferroelectric smectic phase. The ferroelectric smectic liquid crystal is in one of the two stable orientation states which is generated at the low temperature region when the liquid crystal in the other stable orientation state generated at the high temperature region cools. Where d is the thickness of the orientation controlling film and S is the average surface roughness of the base layer, d and S have the relation expressed by0.ltoreq.S/d
    • 液晶装置包括:一对基板,其具有通过基底层在至少一个基板上设置的取向控制膜,以及设置在基板之间的铁电体相液晶。 取向控制膜具有单轴取向处理轴。 铁电层状液晶在实现铁电近晶相的温度范围内的高温和低温区产生两种不同的稳定取向状态。 当在高温区域产生的另一个稳定取向状态的液晶冷却时,铁电体系液晶处于在低温区域产生的两种稳定取向状态之一。 其中d是取向控制膜的厚度,S是基层的平均表面粗糙度,d和S具有由0