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    • 45. 发明申请
    • Image Pickup Apparatus, Method for Capturing Image, and Method for Designing Image Pickup Apparatus
    • 图像拾取装置,捕获图像的方法和设计图像拾取装置的方法
    • US20090128643A1
    • 2009-05-21
    • US11814151
    • 2006-01-13
    • Tetsujiro KondoYasushi TatehiraTetsushi KokuboKenji TanakaHitoshi MukaiHirofumi HibiKazumasa Tanaka
    • Tetsujiro KondoYasushi TatehiraTetsushi KokuboKenji TanakaHitoshi MukaiHirofumi HibiKazumasa Tanaka
    • H04N5/225H04N5/232H04N5/228
    • H04N5/2253H04N5/3415
    • The present invention relates to an image pickup apparatus, a method for capturing an image, and a method for designing the image pickup apparatus capable of realising a fixed focal length image pickup apparatus of high resolution and fine resolution at a low cost by disposing a plurality of image pickup elements therein. An image pickup device 31 is of a focal coincidence type having a plurality of image pickup elements, such as CCD sensors 62-1 to 62-3, arranged in an array. That is, the image pickup device 31 has an optical system including a first image formation system 41 for forming an image of focal coincidence, a field lens 43 disposed in an image formation plane or in the vicinity of the image formation plane of the first image formation system, and a second image formation system group formed by a plurality of second image formation systems arranged in an array and including an image pickup element CCD sensor 62-K (K is a value between 1 and 3 in this example) for capturing the image formed on itself and a zoom lens 61-K for reforming a predetermined, part, of the image formed on the image formation plane on the CCD sensor 62-K. The present invention is applicable to a digital still camera and a digital video camera including a plurality of image pickup elements.
    • 本发明涉及一种图像拾取装置,一种用于拍摄图像的方法和一种用于设计图像拾取装置的方法,该图像拾取装置能够以低成本实现高分辨率和精细分辨率的固定焦距图像拾取装置, 的图像拾取元件。 图像拾取装置31具有排列成阵列的诸如CCD传感器62-1至62-3的多个图像拾取元件的焦点一致型。 也就是说,图像拾取装置31具有光学系统,该光学系统包括用于形成焦点图像的第一图像形成系统41,设置在图像形成平面中或第一图像的图像形成平面附近的场透镜43 形成系统和由排列成阵列的多个第二图像形成系统形成的第二图像形成系统组,并且包括图像拾取元件CCD传感器62-K(K在本例中为1和3之间的值),用于捕获 形成在其上的图像和用于重新形成在CCD传感器62-K上的图像形成平面上的图像的预定部分的变焦透镜61-K。 本发明可应用于包括多个图像拾取元件的数字静态照相机和数字摄像机。
    • 47. 发明授权
    • Multifunctional switch with indicator
    • 带指示灯的多功能开关
    • US07141748B2
    • 2006-11-28
    • US11037466
    • 2005-01-19
    • Kazumasa TanakaKazuhiro Kikuya
    • Kazumasa TanakaKazuhiro Kikuya
    • H01H9/00
    • H01H9/181H01H25/06H01H2300/038
    • A multifunctional switch with an indicator for selecting and switching a plurality of functions is disclosed. The multifunctional switch is provided with a dial knob capable of being pushed in an axial direction and rotated; a window formed at a center of the dial knob; an indicator configured to indicate a selected function; an indicator support configured to support the indicator and disposed at a rear of the dial knob, the dial knob being rotatably fitted on the indicator support and movable with the indicator support In the axial direction; and means for anti-rotation of the indicator support.
    • 公开了一种具有用于选择和切换多个功能的指示器的多功能开关。 多功能开关设置有能够沿轴向被推动并旋转的拨盘旋钮; 形成在拨盘旋钮中心的窗口; 指示器,其被配置为指示所选择的功能; 指示器支撑件,其构造成支撑指示器并且设置在拨盘旋钮的后部,拨盘旋钮可旋转地装配在指示器支撑件上并且可与指示器支撑件在轴向方向上移动; 以及用于指示器支撑件的防旋转的装置。
    • 50. 发明授权
    • Examining apparatus and examining method
    • 检查仪器和检查方法
    • US08593625B2
    • 2013-11-26
    • US13202717
    • 2009-11-19
    • Kazumasa TanakaHiroyuki Yamashita
    • Kazumasa TanakaHiroyuki Yamashita
    • G01N21/00
    • G01N21/00G01N21/9501G01N21/95607
    • When examination at a scan speed equal to or higher than the line rate of the sensor such as a TDI sensor is carried out, the line rate of the TDI sensor is asynchronous with the scan speed, and the image is blurred. Therefore, a TDI sensor cannot be used at a scan speed equal to or higher than the line rate of the TDI sensor. This problem has not been considered. To solve the problem, high-speed examination irrespective of the line rate of the TDI sensor is enabled. To control the line rate of the TDI sensor and stage scan speed asynchronously and to solve the problem of the image addition variation due to the charge accumulation of the TDI sensor, the object to be examined is irradiated with thin-line illumination, and only a given pixel line of the TDI sensor is made to receive light scattered by the object to be examined. The aspect ratio of the detection pixel size can be controlled by the speed ratio between the line rate of the TDI sensor and the stage scan speed.
    • 当扫描速度等于或高于诸如TDI传感器的传感器的线路速率进行检查时,TDI传感器的线路速率与扫描速度异步,图像模糊。 因此,TDI传感器不能以等于或高于TDI传感器的线路速率的扫描速度使用。 这个问题还没有被考虑。 为了解决这个问题,无论TDI传感器的线路速率如何,都可以进行高速检查。 为了异步地控制TDI传感器的线路速率和级扫描速度,并且为了解决由于TDI传感器的电荷累积引起的图像增加变化的问题,用细线照明照射被检查对象,只有 使TDI传感器的给定像素线接收被被检体散射的光。 检测像素尺寸的宽高比可以通过TDI传感器的线路速率与平台扫描速度之间的速度比来控制。