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    • 2. 发明授权
    • Coordinate input apparatus
    • 坐标输入装置
    • US5019917A
    • 1991-05-28
    • US197421
    • 1988-05-23
    • Toshihiko HataMitsunori AdachiSatoru Tomita
    • Toshihiko HataMitsunori AdachiSatoru Tomita
    • G06F3/042G06F3/033G06F3/041G06F3/048G06T1/00H04N1/113H04N1/38
    • G06F3/0425H04N1/113H04N1/38
    • A coordinate input apparatus of the present invention in which operation is switchable from an image pickup mode for displaying on a display apparatus an image of an object for image-taking to a coordinate input mode for inputting coordinates at a location indicated by a point indicator and vice versa, so that when the coordinate input mode is set, the duration of scanning by an image pickup element is controlled shorter than that in the case of the image pickup mode being set, whereby the duration required for image pickup during coordinate input mode operation can be reduced and speedy processing can be achieved for coordinate inputting, and which is provided with an image processing circuit for optimum image processing with respect to image signals for images taken, so that images taken in short image pickup duration during coordinate input mode can be prevented from deterioration.
    • 本发明的坐标输入装置,其特征在于,从图像拾取模式切换操作,在显示装置上显示用于拍摄对象的图像到用于在由点指示器指示的位置处输入坐标的坐标输入模式, 反之亦然,使得当设置坐标输入模式时,由图像拾取元件进行的扫描的持续时间被控制得比设置图像拾取模式的情况更短,从而在坐标输入模式操作期间所需的图像拾取所需的持续时间 可以减少并且可以快速地进行坐标输入处理,并且其具有用于对于所拍摄的图像的图像信号进行最佳图像处理的图像处理电路,使得在坐标输入模式期间以短图像拾取持续时间拍摄的图像可以是 防止恶化。
    • 3. 发明授权
    • Image pickup apparatus with range specification of displayed image
    • 具有显示图像范围规格的图像拾取装置
    • US4712142A
    • 1987-12-08
    • US884295
    • 1986-07-10
    • Satoru TomitaMitsunori Adachi
    • Satoru TomitaMitsunori Adachi
    • G06F3/033H04N1/387H04N1/393H04N1/10
    • H04N1/3875G06F3/033H04N1/3935
    • In an image pickup apparatus according to the present invention, a rotary scanning mirror (2) is rotated to sense the image of an original (10) by a linear image sensor (4), which in turn outputs picture signals to be stored in a frame memory (5), so that the image of the original (10) is displayed on a display unit (6) on the basis of the stored picture signals. A light pen (9) specifies a scanned range of the image displayed on the display unit (6) and a controller (8) indicates rotation angles of the rotary scanning mirror (2) on the basis of position signals from the light pen (9) to specify the scanned range while varying the step size of the rotary scanning mirror (2) thereby to vary resolution. Thus, a noted region in the original (10) can be easily image-sensed in high resolution.
    • 在根据本发明的图像拾取装置中,旋转扫描镜(2)被旋转以通过线性图像传感器(4)感测原稿(10)的图像,该线性图像传感器又输出要存储在其中的图像信号 帧存储器(5),使得原始(10)的图像基于存储的图像信号显示在显示单元(6)上。 光笔(9)指定在显示单元(6)上显示的图像的扫描范围,并且控制器(8)基于来自光笔(9)的位置信号来指示旋转扫描镜(2)的旋转角度 )来指定扫描范围,同时改变旋转扫描镜(2)的步长,从而改变分辨率。 因此,原始(10)中的注意区域可以以高分辨率容易地图像感测。
    • 4. 发明授权
    • Method of manufacturing multi-stage pulley
    • 制造多级滑轮的方法
    • US06338197B1
    • 2002-01-15
    • US09274731
    • 1999-03-23
    • Hiroshi ShoharaMitsunori AdachiHaruo SuzukiYasuji KasuyaTetuo OhnoYasuo TabuchiMasahiro KinoshitaShigeo Murata
    • Hiroshi ShoharaMitsunori AdachiHaruo SuzukiYasuji KasuyaTetuo OhnoYasuo TabuchiMasahiro KinoshitaShigeo Murata
    • B21K142
    • B21H1/04B21D53/261Y10T29/4946
    • The manufacturing cost of a multi-stage pulley is reduced without coaxially arranging a plurality of groove forming sections. While a portion between groove sections 103 is being pushed by a pushing roller 204, the groove sections 103 are successively formed. While a portion of workpiece W2 pushed by a groove forming roller 206 to form one groove section 103a and a portion of workpiece W2 pushed by a groove forming roller 207 to form the other groove section 103b are being shifted from each other in the circumferential direction, one groove section (103a) and the other groove section (103b) are simultaneously formed. Due to the foregoing, when the groove sections 103 are formed, it is possible to prevent the deformation of the groove section 103 and the groove section 103 which is adjacent to it. Accordingly, it is possible to enhance the yield of the multi-stage pulley 100 without coaxially arranging a plurality of groove forming sections. Therefore, the cost of manufacturing the multi-stage pulley 100 can be reduced.
    • 在不同时布置多个槽形成部的情况下,多级带轮的制造成本降低。 当槽部103之间的部分被推辊204推动时,槽部103依次形成。 当由槽形成辊206推动以形成一个槽部103a的工件W2的一部分和由槽形成辊207推动以形成另一个槽部103b的工件W2的一部分在圆周方向上彼此偏移时, 一个槽部(103a)和另一个槽部(103b)同时形成。 由于上述原因,当形成槽部103时,能够防止槽部103和与其相邻的槽部103的变形。 因此,可以在不同时布置多个槽形成部的情况下提高多级带轮100的收率。 因此,可以降低制造多级滑轮100的成本。