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    • 5. 发明授权
    • Scanning electron microscope device, evaluation point generating method, and program
    • 扫描电子显微镜装置,评价点生成方法和程序
    • US08742375B2
    • 2014-06-03
    • US13322394
    • 2010-05-25
    • Takahiro Kawasaki
    • Takahiro Kawasaki
    • H01J37/26G01N23/00
    • H01J37/28H01J37/3023H01J2237/24592H01J2237/2817
    • An image acquisition condition necessary to so arrange FOV's as not to overlap along a device shape so that all constituent arreas necessary for electric characteristic measurement may be confined in the FOV's is determined from device shape information (including circuit design data and layout design data) possessed by CAD data. Since, contingently upon the shape of a wiring portion, the wiring portion of a device is expressed by using a plurality of basic constituent figures in combination, a process of arranging FOV's to the individual constituent figures is executed. For a cell portion, a FOV is arranged in reference to a cell outer frame and apexes. At that time, any apex is a starting point of the FOV arrangement process and another apex is an end point of the same process.
    • 为了使FOV不沿设备形状重叠所必需的图像获取条件,使得电特性测量所必需的所有组成部分可以被限制在FOV中,这是由所拥有的装置形状信息(包括电路设计数据和布局设计数据)确定的 通过CAD数据。 由于根据配线部的形状,通过组合使用多个基本构成图来表示装置的布线部分,执行将FOV设置到各个构成图的处理。 对于细胞部分,FOV参考细胞外框架和顶点布置。 那时,任何顶点都是FOV安排过程的起点,另一个顶点是同一过程的终点。
    • 6. 发明授权
    • Chuck mechanism of charge/discharge testing device for flat-rechargeable batteries
    • 用于平板充电电池的充放电测试装置的卡盘机构
    • US08618804B2
    • 2013-12-31
    • US13161928
    • 2011-06-16
    • Takashi NishiharaTakahiro KawasakiTsutomu OkazakiTakeshi YasookaHiroaki HabeYoshikazu Niwa
    • Takashi NishiharaTakahiro KawasakiTsutomu OkazakiTakeshi YasookaHiroaki HabeYoshikazu Niwa
    • G01N27/416
    • H01M10/4285G01R31/3641H01M2/1061H01M2/20H01M10/4207
    • The present invention relates to a chuck mechanism of a charge/discharge testing device for flat-rechargeable batteries and has a proposition to provide a chuck mechanism that makes it possible to lighten conventionally needed troublesome works, that is, for example, works of storing and fixing a large number of flat-rechargeable batteries in a container, and that is capable of surely chucking the flat-rechargeable batteries (electrodes). The chuck mechanism includes a first guide engageable with a battery pressing member of a battery storage which moves according to a battery storage width of a plurality of flat-rechargeable batteries stored in parallel in the battery storage, a plurality of chuck units arranged in parallel by being resiliently and continuously joined and having the first guide on one end side, and a second guide mounted on each of the chuck units, wherein a chuck width of all of the chuck units resiliently arranged in parallel is adjusted according to the battery storage width of the flat-rechargeable batteries by an engagement of the first guide and the battery pressing member, and the second guide positions each of the chuck units being adjusted according to the battery storage width with corresponding flat-rechargeable batteries in the battery storage.
    • 本发明涉及一种用于平面可再充电电池的充电/放电测试装置的卡盘机构,并且具有提供一种卡盘机构的命题,该卡盘机构能够减轻常规需要的麻烦的作品,例如存储和 将大量的可再充电电池固定在容器中,并且能够可靠地夹持可再充电电池(电极)。 卡盘机构包括:第一引导件,其与电池存储器的电池按压部件接合,该电池按压部件根据电池存储器中并联存储的多个平面可再充电电池的电池存储宽度而移动;多个卡盘单元, 弹性地连续地连接并且在一端侧具有第一引导件,以及安装在每个卡盘单元上的第二引导件,其中平行地弹性布置的所有卡盘单元的卡盘宽度根据电池存储宽度 通过第一引导件和电池按压构件的接合,可再充电电池,以及第二引导位置,每个卡盘单元根据电池存储宽度被调整,并且电池存储器中的相应的可平面可再充电电池。
    • 8. 发明申请
    • SCANNING ELECTRON MICROSCOPE DEVICE, EVALUATION POINT GENERATING METHOD, AND PROGRAM
    • 扫描电子显微镜装置,评估点生成方法和程序
    • US20120104251A1
    • 2012-05-03
    • US13322394
    • 2010-05-25
    • Takahiro Kawasaki
    • Takahiro Kawasaki
    • H01J37/26G01N23/00
    • H01J37/28H01J37/3023H01J2237/24592H01J2237/2817
    • An image acquisition condition necessary to so arrange FOV's as not to overlap along a device shape so that all constituent arreas necessary for electric characteristic measurement may be confined in the FOV's is determined from device shape information (including circuit design data and layout design data) possessed by CAD data. Since, contingently upon the shape of a wiring portion, the wiring portion of a device is expressed by using a plurality of basic constituent figures in combination, a process of arranging FOV's to the individual constituent figures is executed. For a cell portion, a FOV is arranged in reference to a cell outer frame and apexes. At that time, any apex is a starting point of the FOV arrangement process and another apex is an end point of the same process.
    • 一种图像获取条件,使得FOV不会沿设备形状重叠,使得电特性测量所需的所有组成部分可以被限制在FOV中,这是由所拥有的设备形状信息(包括电路设计数据和布局设计数据)确定的 通过CAD数据。 由于根据配线部的形状,通过组合使用多个基本构成图来表示装置的布线部分,执行将FOV设置到各个构成图的处理。 对于细胞部分,FOV参考细胞外框架和顶点布置。 那时,任何顶点都是FOV安排过程的起点,另一个顶点是同一过程的终点。