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    • 72. 发明授权
    • Method for manufacturing liquid crystal display device with scribing groove, heating sealant and aligning liquid crystal
    • 具有划线槽,加热密封剂和取向液晶的液晶显示装置的制造方法
    • US08310650B2
    • 2012-11-13
    • US13222333
    • 2011-08-31
    • Masahide KanaiTakeshi Nishi
    • Masahide KanaiTakeshi Nishi
    • G02F1/1339G02F1/1333G02F1/1341
    • G02F1/133351G02F2001/13415
    • It is an object to prevent disordered orientation of liquid crystal molecules which is due to division of substrates even when a liquid crystal dripping method is used, and to provide a method for manufacturing a liquid crystal display device in which liquid crystal is not adversely affected even when a sealant not cured and liquid crystal are in contact. In a method for manufacturing a liquid crystal display device using a liquid crystal dripping method, a scribe groove is provided for at least one of a pair of substrates with a diamond cutter or the like before the pair of substrates are attached under reduced pressure. After the scribing, the pair of substrates are attached under reduced pressure, heat treatment for curing the sealant and aligning the liquid crystal molecules is performed, and the substrates are divided by applying impact using a breaking apparatus.
    • 本发明的目的是防止液晶分子的无序取向,这是由于即使使用液晶滴落方法也是由于基板的划分,并且提供了一种液晶显示装置的制造方法,液晶显示装置即使在不影响液晶的情况下 当密封剂未固化和液晶接触时。 在使用液晶滴落方法制造液晶显示装置的方法中,在减压下安装一对基板之前,为具有金刚石切割器等的一对基板中的至少一个设置划线槽。 在划线之后,一对基板在减压下附着,进行用于固化密封剂的热处理和对准液晶分子,并且通过使用断裂装置施加冲击来分割基板。
    • 73. 发明授权
    • Method for manufacturing liquid crystal display device
    • 制造液晶显示装置的方法
    • US08247250B2
    • 2012-08-21
    • US11602997
    • 2006-11-22
    • Daisuke KubotaTakeshi NishiAkio Yamashita
    • Daisuke KubotaTakeshi NishiAkio Yamashita
    • H01L31/0232G02F1/1337
    • G02F1/1341B82Y30/00G02F2001/13415Y10T428/10Y10T428/1036Y10T428/1059
    • An object is to uniformly align liquid crystal molecules without requiring a step of forming an alignment film. A material for forming a self-assembled monolayer is dispersed in a liquid crystal material, and the mixture is interposed between a pair of substrates by a liquid crystal injection method or a liquid crystal dropping method. A silane coupling agent (the material for forming a self-assembled monolayer) injected or dropped with the liquid crystal material adsorbs to a substrate interface (or a surface of an electrode formed over a substrate) after the injection or dropping, thereby forming a self-assembled monolayer. This self-assembled monolayer serves as an alignment film, and enables long axes of liquid crystal molecules to be approximately perpendicular to a substrate and the liquid crystal molecules to be uniformly aligned.
    • 本发明的目的是在不需要形成取向膜的步骤的情况下均匀地取向液晶分子。 用于形成自组装单层的材料分散在液晶材料中,并且通过液晶注入法或液晶滴下法将混合物插入在一对基板之间。 用液晶材料注入或滴下的硅烷偶联剂(用于形成自组装单层的材料)在注入或滴下之后吸附于基板界面(或在基板上形成的电极的表面),从而形成自身 组装单层。 该自组装单层用作取向膜,使液晶分子的长轴大致垂直于基板,使液晶分子均匀排列。
    • 74. 发明授权
    • Liquid crystal display device comprising a microstructure and method for manufacturing the same
    • 包括微结构的液晶显示装置及其制造方法
    • US08203686B2
    • 2012-06-19
    • US12364688
    • 2009-02-03
    • Kaoru HatanoTakeshi NishiShuji Fukai
    • Kaoru HatanoTakeshi NishiShuji Fukai
    • G02F1/1339G02F1/1333
    • G02F1/13731G02B26/00G02F1/1333G02F1/1362G02F1/13743G02F2203/62
    • To improve the response speed of liquid crystal molecules when a liquid crystal display device is changed from an on state to an off state. A liquid crystal display device that includes a liquid crystal material between a substrate and a counter substrate; a plurality of pixels over the substrate; and a microstructure which is provided over the substrate, is in contact with the liquid crystal material, and includes a movable portion and a method for manufacturing the liquid crystal display device are provided. The microstructure may include a lower electrode, an upper electrode, and a space between the lower electrode and the upper electrode. The microstructure is manufactured through the steps of forming the lower electrode over the substrate, forming a sacrificial layer over the lower electrode, forming the upper electrode over the sacrificial layer, and removing the sacrificial layer by etching to form the space.
    • 为了提高液晶显示装置从接通状态变为断开状态时的液晶分子的响应速度。 一种在基板和对置基板之间包括液晶材料的液晶显示装置; 在所述基板上的多个像素; 并且设置在基板上的微结构与液晶材料接触,并且包括可移动部分和制造液晶显示装置的方法。 微结构可以包括下电极,上电极和下电极与上电极之间的空间。 通过以下步骤制造微结构:在衬底上形成下电极,在下电极上形成牺牲层,在牺牲层上形成上电极,通过蚀刻去除牺牲层以形成空间。
    • 77. 发明申请
    • Light Emitting Device And Method of Manufacturing The Same
    • 发光装置及其制造方法
    • US20110272717A1
    • 2011-11-10
    • US13188513
    • 2011-07-22
    • Takeshi NishiYasuo Nakamura
    • Takeshi NishiYasuo Nakamura
    • H01L27/15
    • H01L51/5253H01L27/32H01L27/322H01L27/3244H01L33/56H01L51/0024H01L51/5221H01L51/5237H01L51/5246H01L2251/5315H01L2251/5323
    • A light emitting device having a structure in which oxygen and moisture are prevented from reaching light emitting elements, and a method of manufacturing the same, are provided. Further, the light emitting elements are sealed by using a small number of process steps, without enclosing a drying agent. The present invention has a top surface emission structure. A substrate on which the light emitting elements are formed is bonded to a transparent sealing substrate. The structure is one in which a transparent second sealing material covers the entire surface of a pixel region when bonding the two substrates, and a first sealing material (having a higher viscosity than the second sealing material), which contains a gap material (filler, fine particles, or the like) for protecting a gap between the two substrates, surrounds the pixel region. The two substrates are seated by the first sealing material and the second sealing material. Further, reaction between electrodes of the light emitting elements (cathodes or anodes) and the sealing materials can be prevented by covering the electrodes with a transparent protective layer, for example, CaF2, MgF2, or BaF2.
    • 提供了具有防止氧气和水分到达发光元件的结构的发光器件及其制造方法。 此外,通过使用少量的工艺步骤来密封发光元件,而不包封干燥剂。 本发明具有顶面发射结构。 其上形成有发光元件的基板被接合到透明密封基板。 该结构是当粘合两个基板时透明第二密封材料覆盖像素区域的整个表面的结构,以及包含间隙材料(填料)的第一密封材料(具有比第二密封材料更高的粘度) 微粒等),用于保护两个基板之间的间隙,围绕像素区域。 两个基板由第一密封材料和第二密封材料密封。 此外,通过用透明保护层覆盖电极可以防止发光元件(阴极或阳极)的电极与密封材料之间的反应,例如CaF 2,MgF 2或BaF 2。
    • 79. 发明授权
    • Liquid crystal display device and electronic device
    • 液晶显示装置及电子装置
    • US07764337B2
    • 2010-07-27
    • US11258245
    • 2005-10-26
    • Takeshi Nishi
    • Takeshi Nishi
    • C09K19/02
    • C09K19/52
    • It is an object of the present invention to improve deterioration of display performance in a liquid crystal display device, especially to obtain rapid response with the alignment of a liquid crystal maintained. According to one feature of the present invention, a liquid crystal display device comprises a pair of substrates where an electrode is formed in one side of each substrate; liquid crystals; and a ferroelectric, wherein the pair of substrates is disposed so that the electrodes oppose to each other, wherein the liquid crystal is sandwiched between the pair of substrates, wherein the ferroelectric includes an organic material and wherein the ferroelectric particles are dispersed in the liquid crystal.
    • 本发明的目的是改善液晶显示装置的显示性能的劣化,特别是通过保持液晶的取向获得快速响应。 根据本发明的一个特征,液晶显示装置包括一对基板,其中在每个基板的一侧形成电极; 液晶; 铁电体,其中所述一对基板被设置为使得所述电极彼此相对,其中所述液晶夹在所述一对基板之间,其中所述铁电体包括有机材料,并且其中所述铁电粒子分散在所述液晶中 。
    • 80. 发明申请
    • Liquid Crystal Electro-Optic Device
    • 液晶电光装置
    • US20100151607A1
    • 2010-06-17
    • US12710389
    • 2010-02-23
    • Shunpei YamazakiTakeshi NishiRumo Satake
    • Shunpei YamazakiTakeshi NishiRumo Satake
    • H01L21/28
    • G02F1/1368G02F1/134336G02F1/134363
    • In a horizontal electric field drive type liquid crystal electro-optic device wherein a liquid crystal material is driven by controlling the strength of an electric field parallel to a substrate, noncontinuity of the electric field strength around each pixel electrode is minimized and thereby the occurrence of flaws in the orientation of the liquid crystal material and dispersion in operation are reduced and a construction having improved display characteristics and a method of manufacturing the same are provided. In a horizontal electric field drive type liquid crystal electro-optic device wherein a gate electrode 403, a source electrode 407, a drain electrode 408, a semiconductor film 406 and a common electrode 404 are formed on a glass substrate and a liquid crystal material is driven by controlling the strength of an electric field substantially parallel to the glass substrate, the electrodes and the semiconductor film are made curved, for example semi-circular or semi-elliptical, in sectional profile. These curved sectional profiles can be formed by suitably selecting and combining various patterning and etching methods.
    • 在通过控制平行于基板的电场的强度来驱动液晶材料的水平电场驱动型液晶电光器件中,使每个像素电极周围的电场强度的不连续性最小化,从而发生 降低了液晶材料取向的缺陷和操作中的分散性,提供了具有改进的显示特性的结构及其制造方法。 在水平电场驱动型液晶电光器件中,其中在玻璃基板上形成栅电极403,源电极407,漏电极408,半导体膜406和公共电极404,液晶材料为 通过控制基本上平行于玻璃基板的电场的强度驱动,电极和半导体膜被制成弯曲的,例如半圆形或半椭圆形的截面轮廓。 这些弯曲的截面轮廓可以通过适当地选择和组合各种图案化和蚀刻方法来形成。