会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Method of manufacturing element substrate
    • 元件基板的制造方法
    • US09276019B2
    • 2016-03-01
    • US14131232
    • 2012-07-12
    • Takaharu YamadaRyohki ItohMasahiro YoshidaHidetoshi NakagawaTakuya OhishiMasahiro MatsudaKazutoshi Kida
    • Takaharu YamadaRyohki ItohMasahiro YoshidaHidetoshi NakagawaTakuya OhishiMasahiro MatsudaKazutoshi Kida
    • H01L27/12G02F1/1333G09G3/36G02F1/13H01L21/66G02F1/1345
    • H01L27/1262G02F1/1309G02F1/1345H01L22/14H01L22/32H01L27/124
    • A method of manufacturing an array substrate 20 according to the present invention includes a line forming step, and line forming step includes following performances. A plurality of source lines 27 are formed on a glass substrate GS so as to extend from a first region A1 on the glass substrate GS to a second region A2 that is adjacent to the first region on an outer side thereof. A plurality of source driver side check lines 45A are formed on the glass substrate GS so as to extend from the second region A2 to a third region that is adjacent to the first region A1 on an outer side thereof and adjacent to the second region A2. A plurality of first line connection portions 49 are formed in the second region A2 and the first line connection portions 49 connect the source lines 27 and the first source driver side check lines 45A. A capacity stem line 43 and a common line 44 are formed to extend from the first region A1 to the third region A3. A second source driver side check line 45B and a second line connection portion 50 that connects each of the capacity stem line 43 and the common line 44 and the source driver side check line 45B are formed in the third region A3.
    • 根据本发明的阵列基板20的制造方法包括线形成步骤,线形成步骤包括以下性能。 多个源极线27形成在玻璃基板GS上,以从玻璃基板GS上的第一区域A1延伸到与其外侧相邻的第一区域的第二区域A2。 多个源极驱动器侧检查线45A形成在玻璃基板GS上,从第二区域A2延伸到与第二区域A2的外侧相邻的与第一区域A1相邻的第三区域。 多个第一线路连接部分49形成在第二区域A2中,并且第一线路连接部分49连接源极线路27和第一源极驱动器侧检查线路45A。 容纳杆线43和公共线44形成为从第一区域A1延伸到第三区域A3。 在第三区域A3中形成有第二源极驱动器侧检查线45B和连接容量杆线43和公共线44以及源极驱动器侧检查线45B中的每一个的第二线路连接部50。
    • 2. 发明申请
    • METHOD OF MANUFACTURING ELEMENT SUBSTRATE
    • 制造元件基板的方法
    • US20150044789A1
    • 2015-02-12
    • US14131232
    • 2012-07-12
    • Takaharu YamadaRyohki ItohMasahiro YoshidaHidetoshi NakagawaTakuya OhishiMasahiro MatsudaKazutoshi Kida
    • Takaharu YamadaRyohki ItohMasahiro YoshidaHidetoshi NakagawaTakuya OhishiMasahiro MatsudaKazutoshi Kida
    • H01L27/12H01L21/66
    • H01L27/1262G02F1/1309G02F1/1345H01L22/14H01L22/32H01L27/124
    • A method of manufacturing an array substrate 20 according to the present invention includes a line forming step, and line forming step includes following performances. A plurality of source lines 27 are formed on a glass substrate GS so as to extend from a first region A1 on the glass substrate GS to a second region A2 that is adjacent to the first region on an outer side thereof. A plurality of source driver side check lines 45A are formed on the glass substrate GS so as to extend from the second region A2 to a third region that is adjacent to the first region A1 on an outer side thereof and adjacent to the second region A2. A plurality of first line connection portions 49 are formed in the second region A2 and the first line connection portions 49 connect the source lines 27 and the first source driver side check lines 45A. A capacity stem line 43 and a common line 44 are formed to extend from the first region A1 to the third region A3. A second source driver side check line 45B and a second line connection portion 50 that connects each of the capacity stem line 43 and the common line 44 and the source driver side check line 45B are formed in the third region A3.
    • 根据本发明的阵列基板20的制造方法包括线形成步骤,线形成步骤包括以下性能。 多个源极线27形成在玻璃基板GS上,以从玻璃基板GS上的第一区域A1延伸到与其外侧相邻的第一区域的第二区域A2。 多个源极驱动器侧检查线45A形成在玻璃基板GS上,从第二区域A2延伸到与第二区域A2的外侧相邻的与第一区域A1相邻的第三区域。 多个第一线路连接部分49形成在第二区域A2中,并且第一线路连接部分49连接源极线路27和第一源极驱动器侧检查线路45A。 容纳杆线43和公共线44形成为从第一区域A1延伸到第三区域A3。 在第三区域A3中形成有第二源极驱动器侧检查线45B和连接容量杆线43和公共线44以及源极驱动器侧检查线45B中的每一个的第二线路连接部50。
    • 4. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND MANUFACTURING METHOD THEREFOR
    • 液晶显示装置及其制造方法
    • US20120229739A1
    • 2012-09-13
    • US13510130
    • 2010-11-16
    • Iichiroh InoueKoichi MiyachiHidetoshi NakagawaAkihiro Shohraku
    • Iichiroh InoueKoichi MiyachiHidetoshi NakagawaAkihiro Shohraku
    • G02F1/1337G03F7/20G02F1/1335
    • G02F1/133788G02F1/133753G02F2001/133742G02F2201/52
    • A liquid crystal display device (100) according to the present invention includes a vertical alignment type liquid crystal layer (3); and a pair of optical alignment films (12, 22). A plurality of picture elements (R, G, B, Y) each include four liquid crystal domains (D1 through D4) in which tilt directions of liquid crystal molecules when a voltage is applied are different. The four liquid crystal domains are located in a matrix of 2 rows×2 columns. The pair of optical alignment films have such an alignment regulation force that causes an identical alignment pattern to appear in repetition in the liquid crystal layer along a first direction which is parallel to one of a row direction and a column direction, with 2n pixels (n is an integer of 1 or greater) being a minimum unit. In the 2n pixels which form the repeat unit of alignment pattern, there are first picture elements and second picture elements in a mixed state, the first picture elements each including the four liquid crystal domains located in a first order, and the second picture elements each including the four liquid crystal domains located in a second order which is different from the first order. According to the present invention, when the 4D-RTN mode is adopted for a liquid crystal display device in which one pixel includes a picture element having a different size from that of another picture element, increase of the cost and the time which are required for optical alignment processing can be suppressed.
    • 根据本发明的液晶显示装置(100)包括垂直取向型液晶层(3); 和一对光取向膜(12,22)。 多个图像元素(R,G,B,Y)各自包括其中施加电压时液晶分子的倾斜方向不同的四个液晶畴(D1至D4)。 四个液晶畴位于2行×2列的矩阵中。 一对光取向膜具有这样的取向调节力,使得沿着与行方向和列方向之一平行的第一方向在液晶层中重复出现相同的取向图案,具有2n个像素(n 是1以上的整数)为最小单位。 在形成对准图案的重复单位的2n个像素中,存在处于混合状态的第一图像元素和第二图像元素,第一图像元素分别包含以第一次为单位的四个液晶畴,第二图像元素各自 包括与第一级不同的第二级的四个液晶畴。 根据本发明,在液晶显示装置采用4D-RTN模式时,其中一个像素包括与另一像素尺寸不同的像素的像素,成本和时间增加为 可以抑制光学取向处理。
    • 5. 发明授权
    • Liquid crystal display device wherein each pixel has first, second, third, and, fourth alignment azimuths that are different from each other
    • 液晶显示装置,其中每个像素具有彼此不同的第一,第二,第三和第四对准方位
    • US08189154B2
    • 2012-05-29
    • US12747068
    • 2008-12-05
    • Hidetoshi Nakagawa
    • Hidetoshi Nakagawa
    • G02F1/1337G02F1/1333
    • G09G3/3614G02F1/133707G09G3/3607G09G3/3648G09G2300/0443G09G2300/0491G09G2310/06
    • A liquid crystal display device according to the present invention includes a plurality of pixels, each including first and second subpixels SP-A and SP-B. The reference alignment azimuths of liquid crystal molecules in the liquid crystal layer of the first subpixel SP-A include only first and second reference alignment azimuths with no third or fourth one. The reference alignment azimuths of liquid crystal molecules in the liquid crystal layer of the second subpixel SP-B include only the third and fourth reference alignment azimuths with no first or second one. In one vertical scanning period, the absolute value of an effective voltage applied to the liquid crystal layer of the first subpixel SP-A is greater than that of an effective voltage applied to the liquid crystal layer of the second subpixel SP-B. In another vertical scanning period, the absolute value of an effective voltage applied to the liquid crystal layer of the second subpixel SP-B is greater than that of an effective voltage applied to the liquid crystal layer of the first subpixel SP-A.
    • 根据本发明的液晶显示装置包括多个像素,每个像素包括第一和第二子像素SP-A和SP-B。 第一子像素SP-A的液晶层中的液晶分子的参考对准方位仅包括没有第三或第四子像素的第一和第二参考对准方位。 第二子像素SP-B的液晶层中的液晶分子的参考对准方位仅包括没有第一或第二子像素的第三和第四参考对准方位。 在一个垂直扫描期间,施加到第一子像素SP-A的液晶层的有效电压的绝对值大于施加到第二子像素SP-B的液晶层的有效电压的绝对值。 在另一个垂直扫描期间,施加到第二子像素SP-B的液晶层的有效电压的绝对值大于施加到第一子像素SP-A的液晶层的有效电压的绝对值。
    • 6. 发明授权
    • Liquid crystal display device and production method thereof
    • 液晶显示装置及其制造方法
    • US08134668B2
    • 2012-03-13
    • US12527962
    • 2007-11-02
    • Hidetoshi Nakagawa
    • Hidetoshi Nakagawa
    • G02F1/1337
    • G02F1/133753G02F1/133788G02F2001/133757
    • The present invention provides: a liquid crystal display device capable of improving display qualities and yield, the liquid crystal display device having two or more domains in a pixel through an alignment treatment that has been provided for a substrate over several times; and a production method thereof.The present invention is a production method of a liquid crystal display device, the liquid crystal display device including: a pair of substrates facing each other; a liquid crystal layer arranged between the pair of substrates; an alignment film arranged on a liquid crystal layer-side surface of at least one of the pair of substrates; and a pixel including two or more regions different in alignment direction, the production method including an exposure step of exposing a part of the alignment film using a photomask having a mask center part and a mask joint part, the mask center part having a plurality of transmissive parts formed within a light-shielding region, the mask joint part having a region where a plurality of transmissive parts are formed within a light-shielding region in a distribution density lower than a distribution density of the plurality of transmissive parts in the mask center part.
    • 本发明提供一种液晶显示装置,其能够通过多次对基板设置的取向处理,提高显示质量和产率,该液晶显示装置在像素中具有两个以上的畴; 及其制造方法。 本发明是一种液晶显示装置的制造方法,所述液晶显示装置具有:一对基板,彼此面对; 布置在所述一对基板之间的液晶层; 配置在所述一对基板中的至少一个的液晶层侧表面上的取向膜; 以及包括两个或更多个取向方向不同的区域的像素,所述制造方法包括使用具有掩模中心部分和掩模接合部分的光掩模曝光所述取向膜的一部分的曝光步骤,所述掩模中心部分具有多个 透光部分形成在遮光区域内,所述掩模接合部分具有在遮光区域内形成多个透射部分的区域,其分布密度低于掩模中心中的多个透射部件的分布密度 部分。
    • 7. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE AND PRODUCTION METHOD THEREOF
    • 液晶显示装置及其制造方法
    • US20100188623A1
    • 2010-07-29
    • US12677340
    • 2008-05-01
    • Hidetoshi Nakagawa
    • Hidetoshi Nakagawa
    • G02F1/1335G02F1/13G02F1/1337
    • G02F1/133753G02F1/133788G02F2001/133388
    • The present invention provides a liquid crystal display device capable of improving display qualities in a frame region and a production method thereof. The present invention is a liquid crystal display device including: first and second substrates facing each other; a liquid crystal layer arranged between the first and second substrates; first and second alignment films arranged on liquid crystal layer side-surfaces of the first and second substrates, respectively; and first and second polarization plates, the first polarization plate being arranged on a side opposite to the liquid crystal layer side of the first substrate, the second polarization plate being arranged on a side opposite to the liquid crystal layer side of the second substrate, wherein the first alignment film has an alignment portion in a frame region, an alignment direction of the alignment portion being in accordance with a polarization axis direction of the first polarization plate, and the second alignment film has a non-alignment portion for which an alignment treatment is not provided, the non-alignment portion of the second alignment film is positioned in a region corresponding to the alignment portion of the first alignment film.
    • 本发明提供一种能够提高帧区域的显示质量的液晶显示装置及其制造方法。 本发明是一种液晶显示装置,包括:第一和第二基板彼此面对; 布置在第一和第二基板之间的液晶层; 第一和第二取向膜分别布置在第一和第二基板的液晶层侧表面上; 以及第一偏振片和第二偏振片,第一偏光板配置在与第一基板的液晶层侧相反的一侧,第二偏光板配置在与第二基板的液晶层侧相反的一侧,其中, 第一取向膜在框架区域中具有对准部分,取向部分的取向方向与第一偏振板的偏振轴方向一致,第二取向膜具有取向处理 不设置第二取向膜的不对准部位于与第一取向膜的对准部对应的区域。