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    • 73. 发明授权
    • Liquid crystal display having an in a pixel electrode along a boundary of differently oriented regions
    • 液晶显示器沿不同取向区域的​​边界具有像素电极
    • US06714271B1
    • 2004-03-30
    • US09533075
    • 2000-03-22
    • Hiroaki MatsuyamaYoshihiko Hirai
    • Hiroaki MatsuyamaYoshihiko Hirai
    • G02F1136
    • G02F1/134336G02F1/133753G02F1/133788
    • In an LCD, according to the present invention, an electrode 3 is made up of a transparent film such as indium tin oxide (ITO) and is formed on top of transparent substrate 1. An aperture 5, with its width W being equal to or longer than the width x of the defectively oriented region C, is formed on both the electrode 3 and the substrate 1. An alignment layer 10, made of a transparent insulating film, is formed on top of the electrode 3. The surface of the alignment layer 10 is subjected to an optically orienting process using UV rays. Thereby, differently oriented regions that orient respective liquid crystal molecules 15, 16 and 14 almost perpendicular to the surface of the alignment layer 10 when no electric field is applied via the electrode 3, are generated on the alignment layer 10. An electrode 4, made of a transparent conductive film such as an ITO, is formed on the underside of transparent substrate 2. Alignment layer 11, made of a transparent insulating film is formed on the underside of the electrode 4. The surface of the alignment layer is subjected to the above optical orienting process. Thereby, differently oriented regions are generated on the alignment layer 11 in an identical manner to that of generating them on the alignment layer 10.
    • 在LCD中,根据本发明,电极3由诸如氧化铟锡(ITO)的透明膜构成,并且形成在透明基板1的顶部上。孔5的宽度W等于或​​等于 在电极3和基板1两者上形成比缺陷取向区域C的宽度x长。在电极3的顶部形成由透明绝缘膜构成的取向层10。 使用紫外线对层10进行光学取向处理。 由此,在取向层10上产生不经过电极3施加电流的方向使各液晶分子15,16和14几乎垂直于配向层10的表面的取向不同的区域。电极4 的透明导电膜如ITO形成在透明基板2的下侧上。由透明绝缘膜制成的对准层11形成在电极4的下侧上。对准层的表面经受 以上光学取向过程。 由此,在取向层11上以与在取向膜10上产生它们相同的方式产生不同取向的区域。
    • 74. 发明授权
    • Tablet integrated liquid crystal display apparatus with less parallax
    • 平板电脑集成液晶显示装置,视差较小
    • US06504584B2
    • 2003-01-07
    • US09846257
    • 2001-05-02
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • G02F11368
    • G06F3/0412G02F1/133345G02F1/13338G02F1/13725G06F3/045
    • In a tablet integrated type liquid crystal display apparatus, a first transparent substrate is provided on a view side. The first substrate is a plastic substrate having a thickness equal to or thinner than 0.6 mm, and a counter electrode is formed on the first substrate. A second substrate on which a driving layer composed of switching elements and pixel electrodes respectively connected to the switching elements is formed. The second substrate is a glass substrate having a thickness in a range of 0.6 mm to 1.1 mm. A guest host liquid crystal layer sandwiched by the first substrate and the second substrate such that the guest host liquid crystal is driven by a voltage applied between the counter electrode and the pixel electrode. A tablet electrode layer may be provided between the first substrate and the counter electrode.
    • 在片式一体型液晶显示装置中,在观察侧设置第一透明基板。 第一基板是厚度等于或小于0.6mm的塑料基板,在第一基板上形成对电极。 形成有分别与开关元件连接的开关元件和像素电极的驱动层的第二基板。 第二基板是厚度在0.6mm至1.1mm范围内的玻璃基板。 夹在第一基板和第二基板之间的客体主体液晶层使得客体主体液晶由施加在对电极和像素电极之间的电压驱动。 可以在第一基板和对置电极之间设置片状电极层。
    • 75. 发明授权
    • Active matrix liquid crystal display
    • 有源矩阵液晶显示
    • US06473140B1
    • 2002-10-29
    • US09518987
    • 2000-03-03
    • Eishi MizobataNaoyasu IkedaYoshihiko Hirai
    • Eishi MizobataNaoyasu IkedaYoshihiko Hirai
    • G02F11335
    • G02F1/13338G06F3/0412
    • In an LCD, there is used a GH-mode liquid crystal of which change in transmittivity due to variation in gap thickness is less than that of the conventional TN liquid crystal. A tablet facility is directly arranged or electrodes having the function of the tablet are formed over or below the liquid crystal. Thanks to the structure, this protection plate conventionally required to prevent the change in gap thickness resulting due to pressure of a pen input device applied to the LCD can be eliminated. Consequently, it is possible to reduce weight, volume, and parallax of the LCD. An active matrix LCD with integrated table-type input device is attainable in a simple configuration without increasing weight and volume thereof.
    • 在LCD中,使用由间隙厚度的变化引起的透射率的变化小于现有的TN液晶的GH模式的液晶。 直接设置片剂设备,或者在液晶的上方或下方形成具有片剂功能的电极。 由于结构,可以消除通常需要防止由于施加到LCD的笔输入装置的压力而导致的间隙厚度变化的保护板。 因此,可以减轻LCD的重量,体积和视差。 具有集成台式输入装置的有源矩阵LCD可以以简单的结构实现,而不增加其重量和体积。
    • 76. 发明授权
    • Liquid crystal display and method of performing display operation
    • 液晶显示器和执行显示操作的方法
    • US06469765B1
    • 2002-10-22
    • US09592199
    • 2000-06-13
    • Hiroaki MatsuyamaYoshihiko HiraiKazumi KobayashiYuji YamamotoMamoru OkamotoMichiaki SakamotoShinichi Nakata
    • Hiroaki MatsuyamaYoshihiko HiraiKazumi KobayashiYuji YamamotoMamoru OkamotoMichiaki SakamotoShinichi Nakata
    • G02F11343
    • G02F1/134363G02F2001/13712
    • A liquid crystal display and a method of operating such liquid crystal display in which display operation is performed by changing a director of said liquid crystal molecules mainly in a plane parallel to first and second substrate forming a liquid crystal display panel. Liquid crystal molecules in the liquid crystal display panel have a negative anisotropy of permittivity. The liquid crystal display comprises: a first common electrode disposed on the side of said first substrate; an insulating layer formed on the first common electrode; at least one pixel electrodes each of which is formed on the insulating layer and has a plurality of opening portions; a second common electrode disposed on the side of the second substrate. The first common electrode comprises at least a particular portion formed in a particular area which extends from a non-opening portion to an opening portion of the pixel electrode and in which the first common electrode overlaps the non-opening portion in a cross section perpendicular to the substrates.
    • 一种液晶显示器和操作这种液晶显示器的方法,其中主要在与形成液晶显示面板的第一和第二基板平行的平面中改变所述液晶分子的指向器来执行显示操作。 液晶显示面板中的液晶分子具有负的各向异性介电常数。 液晶显示器包括:设置在所述第一基板侧的第一公共电极; 形成在所述第一公共电极上的绝缘层; 每个所述至少一个像素电极形成在所述绝缘层上并且具有多个开口部分; 设置在第二基板侧的第二公共电极。 第一公共电极至少包括形成在特定区域中的特定部分,该特定区域从像素电极的非开口部分延伸到开口部分,并且其中第一公共电极在与非开口部分重叠的截面中垂直于 底物。
    • 80. 发明授权
    • Tablet integrated liquid crystal display apparatus with less parallax
    • 平板电脑集成液晶显示装置,视差较小
    • US5995172A
    • 1999-11-30
    • US778268
    • 1997-01-02
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • Naoyasu IkedaEishi MizobataYoshihiko Hirai
    • G02F1/133G02F1/1333G02F1/139G06F3/033G06F3/041G06F3/045
    • G06F3/0412G02F1/13338G06F3/045G02F1/133345G02F1/13725
    • In a tablet integrated type liquid crystal display apparatus, a first transparent substrate is provided on a view side. The first substrate is a plastic substrate having a thickness equal to or thinner than 0.6 mm, and a counter electrode is formed on the first substrate. A second substrate on which a driving layer composed of switching elements and pixel electrodes respectively connected to the switching elements is formed. The second substrate is a glass substrate having a thickness in a range of 0.6 mm to 1.1 mm. A guest host liquid crystal layer sandwiched by the first substrate and the second substrate such that the guest host liquid crystal is driven by a voltage applied between the counter electrode and the pixel electrode. A tablet electrode layer may be provided between the first substrate and the counter electrode. Alternatively, a tablet electrode layer may be provided on the first substrate on an opposite side of the counter electrode. In this case, a protecting film is provided on the tablet electrode layer. In addition, a tablet electrode layer may be provided between the second substrate and the driving layer such that the tablet electrode layer is isolated from the driving layer.
    • 在片式一体型液晶显示装置中,在观察侧设置第一透明基板。 第一基板是厚度等于或小于0.6mm的塑料基板,在第一基板上形成对电极。 形成有分别与开关元件连接的开关元件和像素电极的驱动层的第二基板。 第二基板是厚度在0.6mm至1.1mm范围内的玻璃基板。 夹在第一基板和第二基板之间的客体主体液晶层使得客体主体液晶由施加在对电极和像素电极之间的电压驱动。 可以在第一基板和对置电极之间设置片状电极层。 或者,可以在对置电极的相对侧上的第一基板上设置片状电极层。 在这种情况下,在片状电极层上设置有保护膜。 此外,可以在第二基板和驱动层之间设置片状电极层,使得片状电极层与驱动层隔离。