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    • 3. 发明授权
    • Organic electroluminescent display and manufacturing method therefor
    • 有机电致发光显示及其制造方法
    • US07932109B2
    • 2011-04-26
    • US12668724
    • 2009-05-25
    • Hiroshi HayataNaoki SuzukiYoshio Kanata
    • Hiroshi HayataNaoki SuzukiYoshio Kanata
    • H01L21/77
    • H01L51/0005H01L27/3211H01L27/3246H01L51/56
    • This invention provides a means for suppressing streaks of light emission in an organic EL display having an organic light-emitting layer formed by coating by an ink jet method. A manufacturing process of the organic EL display of this invention includes: preparing a display substrate having two or more linear banks in parallel to each other, and two or more pixel regions arranged in a region between the linear banks; arranging an ink jet head such that the alignment direction of nozzles and the line direction of the linear banks are in parallel; and relatively moving the ink jet head in a direction perpendicular to the line direction of the linear banks and discharging the ink from the nozzles to apply the ink to every region defined by the linear banks.
    • 本发明提供一种用于抑制通过喷墨法涂布形成的有机发光层的有机EL显示器中的发光条纹。 本发明的有机EL显示器的制造方法包括:准备具有彼此平行的两个或更多个线性组的显示基板和布置在线性组之间的区域中的两个或更多个像素区域; 布置喷墨头,使得喷嘴的对准方向和线性组的线方向平行; 并且使喷墨头沿垂直于线性排的线方向的方向相对移动,并从喷嘴排出油墨,以将油墨施加到由线性库限定的每个区域。
    • 6. 发明授权
    • Edge line measuring method
    • 边线测量方法
    • US5805728A
    • 1998-09-08
    • US518601
    • 1995-08-21
    • Nobumichi MunesadaYoshio KanataMichitaro HoriuchiHiroki Hoshiyama
    • Nobumichi MunesadaYoshio KanataMichitaro HoriuchiHiroki Hoshiyama
    • G06T5/00G06T7/00G06K9/46G06K9/36G06K9/48G06K9/66
    • G06T7/0083G06T7/0004G06T7/004G06T2207/10056G06T2207/30148
    • A method for accurately obtaining, in a short period of time, the position and slope of a specific edge line, even when there are many extraneous points caused by dust and other such garbage or electrical noise around the edge line to be obtained. A window covering the area containing the desired edge line is set, and the area inside the window is scanned at a specific interval in a direction crossing the edge line so as to obtain specific image data. The coordinates of points indicating a change in brightness in the scanning direction are obtained as edge points. The area inside the window is divided into a group of rectangular subareas parallel to the edge line to be detected and at a predetermined pitch and size capable of containing the edge line. The subarea containing the greatest number of edge points is obtained, and the edge line is then estimated from the coordinates of the edge points in this subarea containing the greatest number of edge points.
    • 即使在由边缘线周围的灰尘和其他这种垃圾或电噪声引起的许多外部点也能够在短时间内精确地获得特定边缘线的位置和斜率的方法。 设置覆盖包含期望边缘线的区域的窗口,并且沿着与边缘线交叉的方向以特定间隔扫描窗口内的区域,以获得特定图像数据。 获得表示扫描方向的亮度变化的点的坐标作为边缘点。 窗口内的区域被分成与要检测的边缘线平行的一组矩形子区域,并以能够包含边缘线的预定间距和大小。 获得包含最大数量边缘点的子区域,然后从包含最大数量边缘点的该子区域中的边缘点的坐标估计边缘线。
    • 7. 发明授权
    • Automatic focus adjustment apparatus for performing position control
between consecutive images
    • 用于执行相关图像之间位置控制的自动聚焦调整装置
    • US5101277A
    • 1992-03-31
    • US465234
    • 1990-03-15
    • Yoshio Kanata
    • Yoshio Kanata
    • G02B7/28G02B7/36G02B21/24H04N5/232
    • G02B7/36G02B21/244H04N5/23212
    • The present invention is an automatic focus adjustment apparatus in which an object to be inspected is picked up by a camera (5) through an optical system (4), a video signal which is opto-electrically converted is transferred to a frame memory (9), image processing of a signal read out from the frame memory (9) is carried out, a focus adjustment evaluation quantity is calculated, and position of said optical system is controlled in a direction that the focus adjustment evaluation quantity approaches the maximum, and the position control operation of the optical system is carried out during a blanking time which is between electric charge storage times of two consecutive images of the camera.
    • PCT No.PCT / JP89 / 00696 Sec。 371 1990年3月15日 102(e)1990年3月15日PCT PCT 1989年7月11日PCT公布。 第WO90 / 01241号公报 日本1990年2月8日。本发明是一种自动对焦调节装置,其中通过光学系统(4)通过照相机(5)拾取被检查物体,光电转换的视频信号为 传送到帧存储器(9),执行从帧存储器(9)读出的信号的图像处理,计算焦点调整评估量,并且将所述光学系统的位置控制在聚焦调整 评估量接近最大值,并且在相机的两个连续图像的电荷存储时间之间的消隐时间期间执行光学系统的位置控制操作。
    • 8. 发明授权
    • Screw adjusting apparatus
    • 螺丝调节装置
    • US5091682A
    • 1992-02-25
    • US651620
    • 1991-02-07
    • Soichi NaganumaChihiro NakamuraYoshio Kanata
    • Soichi NaganumaChihiro NakamuraYoshio Kanata
    • G05B19/23G11B5/56
    • G05B19/231G11B5/56G05B2219/37555Y02P90/265
    • A screw adjusting apparatus includes a positioning control device for outputting rotation instructions to a designated position based on a rotation detection signal; an image sensing section; a visual recognition section for processing a video signal outputted from the image sensing section so as to measure position of an object; a screw feeding amount calculating device for deciding a feeding amount of the screw so as to place the object at a predetermined position according to position information outputted from the visual recognition section and the information of the object which has been moved by contact between the screw and a tool; and an instruction control device for issuing instructions to the positioning control device based on a decided feeding amount of the screw.
    • 螺旋调节装置包括:基于旋转检测信号将旋转指令输出到指定位置的定位控制装置; 图像感测部; 视觉识别部分,用于处理从图像感测部分输出的视频信号,以便测量对象的位置; 螺杆进给量计算装置,用于根据从视觉识别部输出的位置信息和通过螺杆与第一和第二部件之间的接触移动的物体的信息来决定螺钉的进给量以将物体放置在预定位置; 一个工具; 以及指令控制装置,用于基于所确定的螺钉的进给量向所述定位控制装置发出指令。