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    • 81. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20130027650A1
    • 2013-01-31
    • US13639245
    • 2011-03-16
    • Yuki KawashimaKeisuke YoshidaYasutoshi TasakaRyohji YayotaniYoshimizu MoriyaKeiichi Ina
    • Yuki KawashimaKeisuke YoshidaYasutoshi TasakaRyohji YayotaniYoshimizu MoriyaKeiichi Ina
    • G02F1/1343
    • G02F1/133555G02F1/134309G02F1/134336
    • Disclosed is a liquid crystal display device 20 including a display region 11a and a display region 11b. The display region 11a includes pixels 10a provided with, as pixel electrodes, transflective electrodes 15, each including a transmissive electrode 15a that carries out transmissive display, and a reflective electrode 15b that carries out reflective display. The display region 11b includes pixels 10b provided with, as pixel electrodes, transmissive electrodes 16 that carry out transmissive display. The direction in which the long side of the transmissive electrode 15a of the pixel 10a extends is positioned in the same direction in which the long side of the transmissive electrode 16 of the pixel 10b extends. By aligning the long side direction of the transmissive electrode 15a with the long side direction of the transmissive electrode 16, the direction of change in chromaticity in the display region 11a and the direction of change in chromaticity in the display region 11b become the same.
    • 公开了包括显示区域11a和显示区域11b的液晶显示装置20。 显示区域11a包括设置有作为像素电极的半透反射电极15的像素10a,每个透反射电极15包括进行透射显示的透射电极15a和进行反射显示的反射电极15b。 显示区域11b包括具有作为像素电极的透光电极16的像素10b,透射电极16进行透射显示。 像素10a的透射电极15a的长边延伸的方向位于像素10b的透射电极16的长边延伸的相同方向。 通过使透射电极15a的长边方向与透射电极16的长边方向对准,显示区域11a的色度变化方向和显示区域11b的色度变化方向变得相同。
    • 83. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20130021564A1
    • 2013-01-24
    • US13637315
    • 2010-11-24
    • Yasutoshi TasakaKeisuke YoshidaYuki KawashimaKaori SaitohMutsumi Nakajima
    • Yasutoshi TasakaKeisuke YoshidaYuki KawashimaKaori SaitohMutsumi Nakajima
    • G02F1/1335
    • G02F1/1393G02F1/133707G02F1/134309
    • A pixel electrode (1) has a frame portion (6) along the entire inner circumference of a pixel (10). The frame portion (6) is provided with a plurality of fine electrodes (7a to 7d) each disposed to form an angle of 45 degrees to the polarization axis of a linear polarizing plate. The pixel electrode (1) has a slit (8) formed in a portion other than the frame portion (6) and the fine electrodes (7a to 7d), i.e., the center portion. When the pixel electrode (1) is applied with a voltage, liquid crystal molecules (4) are oriented in four different directions along the fine electrodes (7a to 7d). Furthermore, by the effects from the frame portion (6) along the entire inner circumference of the pixel (10), the liquid crystal molecules (4) are tilted from the center of the pixel electrode (1) toward the outer circumference of an opposite electrode. That is, the liquid crystal molecules (4) are oriented in the four different directions while tilting from the center of the pixel electrode (1) toward the outer circumference of the opposite electrode.
    • 像素电极(1)具有沿像素(10)的整个内周的框架部分(6)。 框架部分(6)设置有多个精细电极(7a至7d),每个精细电极设置成与线性偏振片的偏振轴成45度的角度。 像素电极(1)具有形成在除了框架部分(6)和微细电极(7a至7d)之外的部分(即中心部分)中的狭缝(8)。 当像素电极(1)施加电压时,液晶分子(4)沿着细电极(7a至7d)沿四个不同的方向取向。 此外,通过框架部分(6)沿着像素(10)的整个内圆周的影响,液晶分子(4)从像素电极(1)的中心向相反的外周倾斜 电极。 也就是说,液晶分子(4)在从像素电极(1)的中心朝向相对电极的外周倾斜的同时朝向四个不同的方向。
    • 87. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE
    • 液晶显示装置
    • US20120075565A1
    • 2012-03-29
    • US13319797
    • 2010-02-26
    • Yasuyoshi KaiseYasutoshi Tasaka
    • Yasuyoshi KaiseYasutoshi Tasaka
    • G02F1/1343
    • G02F1/133707G02F1/133753G02F1/134309G02F2201/121G02F2201/122
    • The present invention provides a liquid crystal display device that can control the alignment of liquid crystal molecules more reliably and also can suppress the deterioration of the contrast characteristics and a reduction in transmittance without complicating the manufacturing process of a matrix substrate. Specifically disclosed is a liquid crystal display device including a pair of substrates (110 and 130) and a liquid crystal layer held between the pair of substrates. One of the pair of substrates has pixel electrodes (113). The other of the pair of substrates has a first opposite electrode (132), an insulating layer (133) formed on the first opposite electrode, and a second opposite electrode (134) formed on the insulating layer. The second opposite electrode has an opening (137), and the opening overlaps at least with a pixel when the pair of substrates are observed in a plan view, and the first opposite electrode overlaps at least with part of said opening in the pixel when the pair of substrates are observed in a plan view.
    • 本发明提供一种可以更可靠地控制液晶分子取向的液晶显示装置,并且还可以抑制对比度特性的劣化和透光率的降低,而不会使基体基板的制造过程复杂化。 具体公开了一种液晶显示装置,其包括一对基板(110和130)以及保持在该对基板之间的液晶层。 一对基板中的一个具有像素电极(113)。 一对基板中的另一个具有第一相对电极(132),形成在第一相对电极上的绝缘层(133)和形成在绝缘层上的第二相对电极(134)。 第二相对电极具有开口(137),并且当在平面图中观察到一对基板时,开口至少与像素重叠,并且当第一相对电极至少与像素中的所述开口的一部分重叠时,当 在平面图中观察到一对基板。
    • 88. 发明授权
    • Alignment treatment of liquid crystal display device
    • 液晶显示装置的对准处理
    • US08054425B2
    • 2011-11-08
    • US12875609
    • 2010-09-03
    • Hidefumi YoshidaTsutomu SeinoYasutoshi Tasaka
    • Hidefumi YoshidaTsutomu SeinoYasutoshi Tasaka
    • G02F1/1337
    • G02F1/133784G02F1/133512G02F1/133753G02F1/133788G02F2001/133742G02F2001/133757
    • An alignment-treating method including a first irradiation step of conducting an alignment-treating for realizing an alignment of liquid crystals in a predetermined azimuth direction on a alignment layer of a substrate by obliquely irradiating the substrate with ultraviolet rays, and a second irradiation step of conducting an alignment-treating for realizing an alignment of liquid crystals in an azimuth direction different from the predetermined azimuth direction by obliquely irradiating a region of the substrate where ultraviolet ray irradiation has not been conducted in the first irradiation step with ultraviolet rays in an azimuth direction 180° different from an azimuth direction of ultraviolet ray irradiation in the first irradiation step. In the first and second irradiation steps, the substrate is obliquely irradiated with ultraviolet rays, through a mask having stripe-shaped light shielding area and stripe-shaped opening, in an azimuth direction parallel to a longer direction of the stripe-shaped opening.
    • 一种取向处理方法,包括:第一照射步骤,通过用紫外线倾斜照射基板,在基板的取向层上进行用于实现在预定方位方向上的液晶的取向的取向处理的第一照射步骤;以及第二照射步骤 通过在方位角方向上用紫外线倾斜照射在第一照射步骤中未进行紫外线照射的基板的区域,进行与方向方向不同的方位取向的液晶的取向处理 与第一照射工序中的紫外线照射的方位方向不同的180°。 在第一和第二照射步骤中,通过具有条形遮光区域和条形开口的掩模,在平行于条形开口的较长方向的方位角方向上将基板倾斜地照射紫外线。