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    • 51. 发明授权
    • Knit design system
    • 针织设计系统
    • US06688144B2
    • 2004-02-10
    • US10398944
    • 2003-04-11
    • Fumihiro NishikawaHiroyuki OkazakiAkira Ueno
    • Fumihiro NishikawaHiroyuki OkazakiAkira Ueno
    • D04B1578
    • D04B37/02D04B1/246
    • A knit design system comprising grading line directing device (24) for directing grading lines (48, 90) at locations of size changes with respect to a design (34, 86) displayed on a monitor (8); grading line setting device (28) for setting information on design modification (34, 86) with respect to the grading lines (48, 90); operating device (26) for making size changes of the design (34, 86) with reference to the grading line (48, 90) directed by the grading line directing device (24) and the modification data set by the grading line setting device (28).
    • 一种编织设计系统,包括:分级线路引导装置(24),用于在尺寸变化的位置处相对于显示在监视器(8)上的设计(34,86)引导分级线(48,90); 分级线设定装置(28),用于设置关于分级线(48,90)的关于设计修改(34,86)的信息; 操作装置(26),用于参照由分级线引导装置(24)指示的分级线(48,90)和由分级线设置装置(24)设置的修改数据来进行设计(34,86)的尺寸变化 28)。
    • 52. 发明授权
    • Method of etching semiconductor substrate
    • 蚀刻半导体衬底的方法
    • US5478438A
    • 1995-12-26
    • US175629
    • 1993-12-30
    • Hideyuki NakanishiAkira UenoHideo NagaiAkio Yoshikawa
    • Hideyuki NakanishiAkira UenoHideo NagaiAkio Yoshikawa
    • H01L21/306H01L21/308H01L21/00
    • H01L21/308Y10S438/942
    • A method of performing anisotropic etching more than once with respect to a semiconductor substrate (1) is provided with the steps of performing first-time anisotropic etching by using a first etching mask (2) so as to form a first anisotropically etched region (4) which is hollow, forming a second etching mask (7) over the first etching mask (2), performing second-time anisotropic etching by using the second etching mask (7), and previously forming the first etching mask (2) from a material which is resistant to an etchant used for patterning the second etching mask (7) before the first-time anisotropic etching is performed. Thus, the edge portion (6) of the first etched region (4) is protected so that its configuration is excellently maintained. By way of example, either of the etching masks is composed of a dielectric material such as a silicon dioxide film, while the other etching mask is composed of a metallic material such as Au and Ti, and the second-time anisotropic etching is performed by using diluted potassium hydroxide.
    • 提供相对于半导体衬底(1)多次执行各向异性蚀刻的方法,具有通过使用第一蚀刻掩模(2)进行第一次各向异性蚀刻以形成第一各向异性蚀刻区域(4)的步骤 ),在第一蚀刻掩模(2)上形成第二蚀刻掩模(7),通过使用第二蚀刻掩模(7)进行第二次各向异性蚀刻,并从第一蚀刻掩模(2)预先形成第一蚀刻掩模 在进行第一次各向异性蚀刻之前,耐蚀刻用于图案化第二蚀刻掩模(7)的蚀刻剂的材料。 因此,第一蚀刻区域(4)的边缘部分(6)被保护,使得其构造被良好地保持。 作为示例,蚀刻掩模中的任一个由诸如二氧化硅膜的介电材料构成,而另一个蚀刻掩模由诸如Au和Ti的金属材料构成,并且第二次各向异性蚀刻通过 使用稀释的氢氧化钾。
    • 58. 发明授权
    • Image processing method and image processing apparatus
    • 图像处理方法和图像处理装置
    • US07650038B2
    • 2010-01-19
    • US11352432
    • 2006-02-10
    • Akira UenoMasaomi Tomizawa
    • Akira UenoMasaomi Tomizawa
    • G06K9/36
    • H04N19/42H04N19/423
    • An image processing method includes inputting image data for one block line having pixels of N times of a minimum unit (MCU) of image compression in the direction of column, and the length in the direction of row equivalent to one length of a scanning line, and outputting sequentially the image data of each block by dividing the image data into a plurality of block, which consists of N units block arranged in the direction of column, each of the unit blocks consisting of M MCUs arranged in the direction of row. The output image data of each block is compressed from the upper side unit block of each block, and compressed image data for each block of one block line is obtained. The obtained compressed image data is written in the frame memory. The written compressed image data is changed in sequence.
    • 一种图像处理方法包括:输入具有在列方向上图像压缩的最小单位(MCU)的N倍的像素的一个块行的图像数据,以及与扫描线的一个长度相等的行的长度, 并且通过将图像数据划分成由列排列的N个单位块构成的多个块,顺序地输出每个块的图像数据,每个单位块由排列在行方向上的M个MCU组成。 每个块的输出图像数据从每个块的上侧单元块被压缩,并且获得一个块线的每个块的压缩图像数据。 所获得的压缩图像数据被写入帧存储器。 写入的压缩图像数据按顺序改变。
    • 59. 发明申请
    • Image Taking System, and Image Signal Processing Program
    • 图像采集系统和图像信号处理程序
    • US20090086059A1
    • 2009-04-02
    • US11918111
    • 2006-03-31
    • Masao SambongiAkira Ueno
    • Masao SambongiAkira Ueno
    • H04N9/68
    • H04N5/2351H04N5/20H04N5/23245H04N5/243H04N9/69
    • The image taking system of the invention applies tone transformation processing to an image signal of an image taken through taking means (lens system 100, aperture 101 and CCD 102) while taking a taking situation into account. In the first embodiment, the image taking system comprises a taking situation assessment portion (108) adapted to make an assessment of a taking situation for the image, an amount-of-information change portion (107) adapted to change the amount of information of said image signal depending on the taking situation assessed at said taking situation assessment portion (108), and a tone transformation portion (110) adapted to implement tone transformation processing depending on tone transformation characteristics obtained using the image signal with the amount of information changed at the amount-of-information change portion (107).
    • 本发明的拍摄系统在考虑拍摄情况的同时,对通过拍摄装置拍摄的图像的图像信号(透镜系统100,光圈101和CCD 102)应用色调变换处理。 在第一实施例中,图像拍摄系统包括适于对图像拍摄情况进行评估的拍摄状态评估部分(108),适于改变信息量的信息量变化部分(107) 所述图像信号取决于在所述拍摄状况评估部分(108)处评估的拍摄情况,以及色调变换部分(110),其适于根据使用所述图像信号获得的色调变换特性来执行色调变换处理, 信息量变化部(107)。
    • 60. 发明申请
    • Video image capture device
    • 视频图像捕获设备
    • US20070109399A1
    • 2007-05-17
    • US11598191
    • 2006-11-13
    • Tomomi SekimotoAkira Ueno
    • Tomomi SekimotoAkira Ueno
    • H04N7/00
    • H04N5/2628H04N5/2253H04N5/23296
    • A video image capture device of the present invention includes: an optical system having distortion characteristics which enlarge the center portion and compress the peripheral portions; an image sensor which performs photoelectric conversion of a subject image focused by the optical system to output as original image data; a distortion correction circuit which corrects distortion in the original image data; an instruction portion which sets the size of an extraction angle of view for the original image data before correction of distortion; and a recording device which, taking the angle of view of the original image data to be a first angle of view, stores in succession image data corresponding to the first angle of view of the original image data and, as pairs, image data corresponding to a second angle of view narrower than the first angle of view set by the instruction portion.
    • 本发明的视频图像捕获装置包括:具有放大中心部分并压缩周边部分的失真特性的光学系统; 执行由所述光学系统聚焦的被摄体图像的光电转换以作为原始图像数据输出的图像传感器; 纠正原始图像数据中的失真的失真校正电路; 指令部,其在矫正变形之前设定原始图像数据的提取视角的大小; 并且以原始图像数据的视角为第一视角的记录装置连续存储对应于原始图像数据的第一视角的图像数据,并且作为成对存储对应于 第二视角比由指示部分设定的第一视角窄。