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    • 5. 发明授权
    • Defect inspection method and computer-readable storage medium
    • 缺陷检查方法和计算机可读存储介质
    • US08040500B2
    • 2011-10-18
    • US12397587
    • 2009-03-04
    • Kazuya HisanoHiroshi TomitaTadashi Nishiyama
    • Kazuya HisanoHiroshi TomitaTadashi Nishiyama
    • G06K9/00
    • G06K9/2027G01N21/9501G01N2021/8835
    • The present invention includes an illuminance adjustment step of setting an optimum illuminance of the illumination; and a defect inspection step of picking up the image of the substrate illuminated with the illumination at the optimum illuminance, wherein the illuminance adjustment step has: a first step of applying illuminations at different illuminances to a plurality of measurement regions on a front surface of the substrate and picking up an image of each of the measurement regions, while moving the substrate; a second step of making a luminance of the picked up image of each of the measurement regions into a histogram to find a reference luminance where an integral value from a maximum luminance side of the histogram is a predetermined value; and a third step of calculating a correlation between each of the reference luminances and the illuminance, and setting based on the correlation an illuminance at which the reference luminance coincides with a predetermined luminance, as the optimum illuminance.
    • 本发明包括设置照明的最佳照度的照度调节步骤; 以及瑕疵检查步骤,用于拾取以最佳照度照明的基板的图像,其中所述照度调节步骤具有:第一步骤,将不同照度的照明施加到所述照明的前表面上的多个测量区域 在移动基板的同时拾取每个测量区域的图像; 使每个测量区域的拾取图像的亮度成为直方图以找到其中来自直方图的最大亮度侧的积分值为预定值的参考亮度的第二步骤; 以及第三步骤,计算每个参考亮度和照度之间的相关性,并且基于相关性将参考亮度与预定亮度重合的照度设置为最佳照度。
    • 7. 发明申请
    • FUEL CELL STACK
    • 燃料电池堆
    • US20110143251A1
    • 2011-06-16
    • US12944723
    • 2010-11-12
    • Go MORIMOTOTadashi NishiyamaHiroyuki Tanaka
    • Go MORIMOTOTadashi NishiyamaHiroyuki Tanaka
    • H01M8/24
    • H01M8/248H01M2008/1095
    • A fuel cell stack including a plurality of fuel cells each formed by stacking separators and an electrolyte membrane-electrode assembly. The electrolyte membrane-electrode assembly includes an electrolyte membrane provided with a pair of electrodes on the opposite sides thereof. A stacked body formed by stacking the fuel cells is provided with a pair of end plates at the opposite ends thereof in a stacking direction. The end plates are integrally fixed by fastening members with the distance between the end plates maintained. A load measurement mechanism including a plurality of load sensors integrally connected to a connector member is provided between one of the end plates and the stacked body. The one of the end plates is provided with a pressure mechanism. The pressure mechanism presses the load measurement mechanism toward the stacked body to thereby apply a tightening load to the stacked body via the load sensors.
    • 一种燃料电池堆,包括多个燃料电池,每个燃料电池通过堆叠隔板和电解质膜 - 电极组件形成。 电解质膜 - 电极组件包括在其相对侧上设置有一对电极的电解质膜。 通过层叠燃料电池而形成的层叠体在堆叠方向的相对端设置有一对端板。 端板通过紧固件一体地固定,并保持端板之间的距离。 在一个端板和堆叠体之间设置有包括与连接器构件一体连接的多个负载传感器的负载测量机构。 端板中的一个设置有压力机构。 压力机构将负载测量机构压向堆叠体,从而经由负载传感器对堆叠体施加紧固负荷。