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    • 92. 发明授权
    • Display device
    • 显示设备
    • US08476654B2
    • 2013-07-02
    • US13390716
    • 2010-08-05
    • Keiichi TanakaSatoru Kishimoto
    • Keiichi TanakaSatoru Kishimoto
    • H01L29/20H01L27/15H01L29/205G02F1/1343
    • H01L51/5281G02F1/133512G02F1/136286H01L27/3276H05B33/12
    • The present invention provides a display device using a copper wiring and having high display properties in which without preventing a higher aperture ratio of the pixel, coloring of a screen due to reflected light of external light produced within the display device can be prevented. The display device according to the present invention is a display device including a plurality of pixel regions, wherein each of the pixel regions includes a copper wiring containing copper or an alloy thereof, and a red-colored layer and a colored layer of another color; and an area of the copper wiring is smaller in the pixel region including the red-colored layer than in the pixel region including the colored layer of another color, the area of the copper wiring reflecting incident light entering from the display surface side of the display device.
    • 本发明提供了一种使用铜布线并具有高显示特性的显示装置,其中不会妨碍像素的较高的开口率,可以防止由于在显示装置内产生的外部光的反射光引起的屏幕着色。 根据本发明的显示装置是包括多个像素区域的显示装置,其中每个像素区域包括包含铜或其合金的铜布线,以及红色层和另一种颜色的着色层; 并且在包括红色层的像素区域中的铜布线的面积比包括另一种颜色的着色层的像素区域小,反射从显示器的显示表面侧入射的光的铜布线的面积 设备。
    • 94. 发明申请
    • METHOD FOR MANUFACTURING COLOR FILTER SUBSTRATE
    • 制造彩色滤光片基板的方法
    • US20130115385A1
    • 2013-05-09
    • US13809649
    • 2011-04-13
    • Yoshitaka OkumotoYusuke WarataniKeiichi TanakaKazuki Kobayashi
    • Yoshitaka OkumotoYusuke WarataniKeiichi TanakaKazuki Kobayashi
    • B05D5/06
    • B05D5/06G02B5/201G02F1/133514G02F1/133516
    • The present invention provides a method for manufacturing a color filter substrate, in which the occurrence of color mixing between adjacent sub-pixels is prevented even when an inkjet method is used. A color filter substrate having color filters of a plurality of colors arranged in a matrix with a bank therebetween is manufactured using this method. The method has: a first inkjet step in which an ink is jetted to at least one region among a plurality of regions partitioned by the bank, and the ink is not jetted to any of regions adjacent to the one region in the horizontal direction and the vertical direction; and a second inkjet step in which the ink is jetted to at least one region to which the ink has not been jetted in the first inkjet step, the aforementioned at least one region being among the plurality of regions partitioned by the bank.
    • 本发明提供了一种制造滤色器基板的方法,其中即使在使用喷墨方法时也防止了相邻子像素之间的颜色混合的出现。 使用该方法制造具有排列成矩阵中的多个颜色的具有多个颜色的滤色器的滤色器基板。 该方法具有:第一喷墨步骤,其中将油墨喷射到由堤分隔开的多个区域中的至少一个区域上,并且油墨不被喷射到在水平方向上与该区域相邻的区域中的任一个区域,并且 垂直方向 以及第二喷墨步骤,其中在所述第一喷墨步骤中将所述油墨喷射到至少一个未喷墨的区域,所述至少一个区域在由所述堤分隔开的所述多个区域中。
    • 95. 发明申请
    • IMAGE RENDERING DEVICE, IMAGE RENDERING METHOD, AND IMAGE RENDERING PROGRAM FOR RENDERING STEREOSCOPIC IMAGES
    • 图像渲染设备,图像渲染方法和用于渲染立体图像的图像渲染程序
    • US20130100132A1
    • 2013-04-25
    • US13638136
    • 2012-03-05
    • Tomoko KatayamaKeiichi TanakaHidetaka OtoOsamu Yamaji
    • Tomoko KatayamaKeiichi TanakaHidetaka OtoOsamu Yamaji
    • G06T17/00
    • H04N13/128H04N13/156H04N13/275H04N2213/003
    • An image rendering device realizes stereoscopic viewing of composite images generated by compositing background three-dimensional models and foreground three-dimensional models each defined in three-dimensional modeling space. A texture mapping unit converts background image data into two or more viewpoint textures and maps each viewpoint texture to a background three-dimensional model in the three-dimensional modeling space. A viewport conversion unit extracts, for each of the two or more viewpoint textures, a viewport image from the background three-dimensional model mapped with the viewpoint texture and from the foreground three-dimensional model. By comparing a parallax of the foreground three-dimensional model occurring in stereoscopic playback with a parallax of the intra-texture object occurring in stereoscopic playback, the device determines depth relationship between the foreground three-dimensional model and the intra-texture object and adjusts positional relationship between the foreground three-dimensional model and the intra-texture object based on a result of the determination.
    • 图像渲染装置实现了通过合成背景三维模型和在三维建模空间中定义的前景三维模型生成的合成图像的立体观看。 纹理映射单元将背景图像数据转换为两个或更多个视点纹理,并将每个视点纹理映射到三维建模空间中的背景三维模型。 视口转换单元从两个或更多个视点纹理中的每一个提取来自与视点纹理映射的背景三维模型和来自前景三维模型的视口图像。 通过将立体重放中出现的前景三维模型的视差与立体重放中出现的纹理内对象的视差进行比较,可以确定前景三维模型与纹理内对象之间的深度关系, 基于确定结果,前景三维模型和纹理内对象之间的关系。
    • 99. 发明申请
    • DISPLAY DEVICE AND COLOR FILTER SUBSTRATE
    • 显示设备和彩色滤光片基板
    • US20120147314A1
    • 2012-06-14
    • US13391857
    • 2010-08-19
    • Takenori YoshizawaKeiichi Tanaka
    • Takenori YoshizawaKeiichi Tanaka
    • G02F1/1343H05B37/00G02B5/22
    • G02B5/201G02F1/133514G02F2201/40G02F2201/52
    • The display device (100) of this invention has pixels (P) arranged in columns and rows to form a matrix pattern. Each pixel (P) is defined by subpixels (R, G, B, Y) arranged in m columns and n rows (where n and m are integers and n and m≧2) to form a matrix pattern and that include first, second, third and fourth subpixels (R, B, Y, G) representing first, second, third and fourth colors, respectively. In three arbitrary pixels (P) arranged in line in one of row and column directions, if the central one of the three is called a first pixel (P1) and the other two second and third pixels (P2, P3), the arrangement of the subpixels (R, G, B, Y) in the first pixel (P1) is different from that of the subpixels (R, G, B, Y) in the second and third pixels (P2, P3). The first subpixels (R) of the first and second pixels (P1, P2) are adjacent to each other, so are their second subpixels (B). The third subpixels (Y) of the first and third pixels (P1, P3) are adjacent to each other, so are their fourth subpixels (G). According to the present invention, a display device, of which each pixel is defined by four or more subpixels, can have its aperture ratio increased.
    • 本发明的显示装置(100)具有以行和列排列的像素(P),以形成矩阵图案。 每个像素(P)由以m列和n行(其中n和m为整数,n和m≥2)排列的子像素(R,G,B,Y)定义,以形成矩阵图案,并且包括第一,第二 ,第三和第四子像素(R,B,Y,G)分别表示第一,第二,第三和第四颜色。 在行和列方向中的一个排列成行的三个任意像素(P)中,如果三个中心一个被称为第一像素(P1),另外两个第二和第三像素(P2,P3) 第一像素(P1)中的子像素(R,G,B,Y)与第二和第三像素(P2,P3)中的子像素(R,G,B,Y)的子像素不同。 第一和第二像素(P1,P2)的第一子像素(R)彼此相邻,它们的第二子像素(B)也相邻。 第一和第三像素(P1,P3)的第三子像素(Y)彼此相邻,它们的第四子像素(G)也相邻。 根据本发明,每个像素由四个或更多个子像素限定的显示装置可以使其开口率增加。
    • 100. 发明授权
    • Stage apparatus and exposure apparatus
    • 舞台装置和曝光装置
    • US07994484B2
    • 2011-08-09
    • US12385059
    • 2009-03-30
    • Keiichi Tanaka
    • Keiichi Tanaka
    • G01N31/00A61N5/00
    • G03F7/70858B82Y10/00B82Y40/00G03F7/70716G03F7/70766G03F7/70783G03F7/70808G03F7/70816G03F7/70841H01J37/3174
    • The present invention provides a stage apparatus wherein an object is disposed in an atmosphere with a gas pressure lower than atmospheric pressure, and the object can be driven with high accuracy. The stage apparatus that drives a reticle comprises: a vacuum chamber, which forms a space and has an opening; an integrated coarse and fine motion table, which has an electrostatic chuck that holds the object, that, when driven, moves the electrostatic chuck inside the space; a counter mass, which is disposed so that it covers the opening, that is capable of moving because of the reaction force produced when the integrated coarse and fine motion table is driven; and a vacuum cover, which forms a space that houses the counter mass; wherein the space and the space are set to prescribed gas pressures.
    • 本发明提供了一种舞台装置,其中物体设置在气压低于大气压的气氛中,并且可以高精度地驱动物体。 驱动掩模版的平台装置包括:真空室,其形成空间并具有开口; 具有固定物体的静电卡盘的集成的粗细动作台,驱动时将静电卡盘移动到空间内; 设置为使其覆盖开口的反质量块,其由于在驱动集成的粗细动作台时产生的反作用力而能够移动; 和真空盖,其形成容纳对置质量的空间; 其中所述空间和所述空间被设定为规定的气体压力。