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    • 21. 发明申请
    • Method of mending breakage of line in display device
    • 修改显示设备中线路断线的方法
    • US20050052445A1
    • 2005-03-10
    • US10948392
    • 2004-09-22
    • Katsuaki MurakamiYasushi MatsuiAkio Nakayama
    • Katsuaki MurakamiYasushi MatsuiAkio Nakayama
    • G02F1/13G02F1/1343G02F1/1362G02F1/1368G09F9/00G09F9/30H01L29/786G09G5/00
    • G02F1/136213
    • A display device includes a scanning line (1) formed on an insulating substrate; a storage capacitance line (3) formed in parallel to the scanning line; an image signal line (2) formed across the scanning line (1) and the storage capacitance line (3) through an insulating layer; and a pixel electrode (6) being surrounded with the scanning line (1), the storage capacitance line (3) and the image signal line (2); wherein at least one overlapped area (11) of the storage capacitance line (3) and the image signal line (2) is defined in the area other than the crossing region of the storage capacitance line (3) and the image signal line (2) within one pixel area; whereby, breakage of the image signal line is mended without increasing the production steps, and production yield is improved.
    • 显示装置包括形成在绝缘基板上的扫描线(1) 与扫描线平行地形成的保持电容配线(3) 通过绝缘层横跨扫描线(1)和存储电容线(3)形成的图像信号线(2) 以及由扫描线(1),辅助电容线(3)和图像信号线(2)包围的像素电极(6)。 其中,所述保持电容配线(3)和所述图像信号线(2)的至少一个重叠区域(11)被限定在除了所述保持电容配线(3)与图像信号线(2)的交叉区域以外的区域中 )在一个像素区域内; 从而在不增加生产步骤的情况下修复图像信号线的断裂,并且提高了生产率。
    • 22. 发明授权
    • Golf club shaft
    • 高尔夫球杆杆
    • US06652389B2
    • 2003-11-25
    • US09998925
    • 2001-11-30
    • Goro HisamatsuHiroki AshidaYasushi Matsui
    • Goro HisamatsuHiroki AshidaYasushi Matsui
    • A63B5310
    • D04C1/06A63B53/10A63B60/06A63B60/08A63B60/10A63B2060/0081A63B2209/023
    • The golf club shaft comprises a reinforced tip portion from the tip end to the position 300 mm toward the grip end, gripping butt portion from the grip end to the position 100 mm toward the tip end, and an intermediate portion between the reinforced tip portion and the gripping butt portion. The shaft satisfies an equation EI=&agr;·X at its intermediate portion, where EI (Nm2) is the flexural rigidity, X (mm) is the distance from the tip end of the shaft, and &agr; is a given constant. The &agr; values of the shafts in accordance with the embodiments 1 through 3 are 0.12, 0.09, and 0.06, respectively. Thus, the present invention has an improved deflection during downswing and is liked by a majority of players.
    • 所述高尔夫球杆杆杆从前端到位于夹持端的位置为300mm的加强末端部分,从抓握端部向顶端夹持对接部分100mm,并且在加强顶端部分与 夹紧对接部分。 轴在其中间部分满足方程EI = alpha.X,其中EI(Nm 2)为弯曲刚度,X(mm)为距离轴末端的距离,α为给定常数。 根据实施例1至3的轴的α值分别为0.12,0.09和0.06。 因此,本发明在下摆期间具有改进的偏转,并且被大多数玩家喜欢。
    • 23. 发明授权
    • Apparatus and method for vapor growth
    • 气相生长装置和方法
    • US5308433A
    • 1994-05-03
    • US865426
    • 1992-04-09
    • Nobuyuki OtsukaYasushi Matsui
    • Nobuyuki OtsukaYasushi Matsui
    • C23C16/44C23C16/455C30B25/14
    • C23C16/45502C23C16/455C23C16/45561C30B25/14
    • Herein disclosed is a vapor growth system, in which the number of dummy lines is reduced to decrease the number of lines led into a valve system, thereby enabling thin film growth having a good interfacial steepleness. The system comprising gas supplying lines A70, B71 and C72, which are made up of AsH.sub.3 process gas lines A62, B65, C68 and and balance lines A61, B64 and C67, respectively. The balance lines A61, B64 and C.sub.67 contributes equalization of products of the viscosity and the flow rate in the gas supplying lines A70, B71 and C72, and the dummy line 60. Only when AsH.sub.3 (A), AsH.sub.3 (B) and AsH.sub.3 gases are not fed upon formation of the film growth, the dummy line 60 is connected to the main line. Whereby, the system is free from pressure fluctuation of the gas in the main line, with an arrangement of even a single dummy line.
    • 这里公开了一种蒸气生长系统,其中虚线的数量减少以减少引入阀系统的管线数量,从而实现具有良好界面陡峭性的薄膜生长。 该系统包括由AsH3工艺气体管线A62,B65,C68和余量管线A61,B64和C67组成的气体供应管线A70,B71和C72。 平衡线A61,B64和C67有助于气体供给管线A70,B71和C72以及虚拟管线60中的粘度和流量的乘积的均衡。只有当AsH 3(A),AsH 3(B)和AsH 3气体 在膜生长形成时不进料,虚线60连接到主线。 因此,该系统在主线中没有气体的压力波动,甚至布置了单个虚拟线。
    • 26. 发明授权
    • Method of mending breakage of line in display device
    • 修改显示设备中线路断线的方法
    • US07113252B2
    • 2006-09-26
    • US10948392
    • 2004-09-22
    • Katsuaki MurakamiYasushi MatsuiAkio Nakayama
    • Katsuaki MurakamiYasushi MatsuiAkio Nakayama
    • G02F1/13
    • G02F1/136213
    • A display device includes a scanning line (1) formed on an insulating substrate; a storage capacitance line (3) formed in parallel to the scanning line; an image signal line (2) formed across the scanning line (1) and the storage capacitance line (3) through an insulating layer; and a pixel electrode (6) being surrounded with the scanning line (1), the storage capacitance line (3) and the image signal line (2); wherein at least one overlapped area (11) of the storage capacitance line (3) and the image signal line (2) is defined in the area other than the crossing region of the storage capacitance line (3) and the image signal line (2) within one pixel area; whereby, breakage of the image signal line is mended without increasing the production steps, and production yield is improved.
    • 显示装置包括形成在绝缘基板上的扫描线(1) 与扫描线平行地形成的保持电容配线(3) 通过绝缘层横跨扫描线(1)和存储电容线(3)形成的图像信号线(2) 以及由扫描线(1),辅助电容线(3)和图像信号线(2)包围的像素电极(6)。 其中,所述保持电容配线(3)和所述图像信号线(2)的至少一个重叠区域(11)被限定在除了所述保持电容配线(3)与图像信号线(2)的交叉区域以外的区域中 )在一个像素区域内; 从而在不增加生产步骤的情况下修复图像信号线的断裂,并且提高了生产率。
    • 27. 发明授权
    • Transflective display with through hole extending through a light shield in the transmissive region of the display
    • 具有贯穿显示器透射区域中的遮光罩的通孔的透反射显示器
    • US07106403B2
    • 2006-09-12
    • US10464772
    • 2003-06-19
    • Hiroyuki MuraiYasushi Matsui
    • Hiroyuki MuraiYasushi Matsui
    • G02F1/1335
    • G02F1/133555G02F2201/48
    • A method of manufacturing a semitransparent display device includes the steps of forming a light shield film over a transparent display region on a transparent substrate, applying a photosensitive organic film over the transparent substrate coated with the light shield film, exposing and developing the photosensitive organic film to form a through hole extending through the photosensitive organic film in the transparent display region, removing the light shield film exposed through the through hole after forming the through hole, and forming a reflective film above the photosensitive organic film to form a reflective display region. Thereby, such a situation can be prevented that light reflected by a stage after passing through a TFT array substrate causes visible irregularities in thickness of an organic flattening film during exposure processing for forming the organic flattening film.
    • 一种制造半透明显示装置的方法包括以下步骤:在透明基板上的透明显示区域上形成遮光膜,将光敏有机膜涂覆在涂有遮光膜的透明基板上,曝光和显影感光有机膜 在透明显示区域中形成延伸穿过感光有机膜的通孔,在形成通孔之后去除通过通孔暴露的遮光膜,并在感光有机膜上方形成反射膜以形成反射显示区域。 由此,可以防止在通过TFT阵列基板的反射层之后反射的光在形成有机平坦化膜的曝光处理期间引起有机平坦化膜的厚度的可见的不规则性。
    • 30. 发明授权
    • Fine silica tube and process for making same
    • 精细硅胶管及其制造方法
    • US5573983A
    • 1996-11-12
    • US554715
    • 1995-11-07
    • Hidenori NakamuraYasushi MatsuiTakao Goto
    • Hidenori NakamuraYasushi MatsuiTakao Goto
    • C03C3/06C01B33/152C01B33/16C03B8/02C03B19/12C03B20/00C03C1/00C03C13/02C03C13/00
    • C01B33/163C03B19/12C03C1/006
    • A fine silica tube composed of silica gel and having an outer diameter of 0.05 to 2 .mu.m wherein the cylindrical wall portion of the tube has a cross-section defined by a substantially square outer periphery and a substantially square vacant center, or by a circular outer periphery and a substantially square vacant center; and a fine silica tube composed of silica glass and having an outer diameter of 0.05 to 1.4 .mu.m wherein the cylindrical wall portion of the tube has a cross-section defined by a substantially square outer periphery and a substantially square vacant center. The fine silica gel tube is made by treating a tetraalkoxysilane with ammonia or aqueous ammonia in a water-soluble alcohol medium in the presence of tartaric acid, citric acid, a tartaric acid salt or a citric acid salt, whereby the tetraalkoxysilane is hydrolyzed. The fine silica glass tube is made by calcining the fine silica gel tube at 800.degree. to 1,400.degree. C.
    • 由硅胶构成的外径为0.05〜2μm的二氧化硅细管,其特征在于,所述管的筒状壁部的截面形状为大致正方形的外周面,大致为空心的中心, 外周边和大致正方形的空中心; 以及由石英玻璃构成的外径为0.05〜1.4μm的细石英管,其中管的圆筒壁部分具有由基本上正方形的外周和基本上为空的中心限定的横截面。 通过在酒石酸,柠檬酸,酒石酸盐或柠檬酸盐的存在下,在水溶性醇介质中用氨或氨水处理四烷氧基硅烷,由此使四烷氧基硅烷水解,制成精细硅胶管。 细硅石玻璃管是通过在800〜1400℃下煅烧精细硅胶管制成的。