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    • 81. 发明授权
    • Solid electrolytic capacitor and solid electrolytic capacitor device
    • 固体电解电容器和固体电解电容器件
    • US07042709B2
    • 2006-05-09
    • US10978409
    • 2004-11-02
    • Masaaki KobayashiMasaaki Togashi
    • Masaaki KobayashiMasaaki Togashi
    • H01G9/00
    • H01G9/012H01G9/15Y10T29/417
    • A solid electrolytic capacitor includes a valve metal support, a dielectric layer, a solid polymer electrolyte layer, and an insulating layer. The valve metal support has an opening formed about an anode terminal forming area except for a part of surroundings thereof. The dielectric layer is formed on a surface of the valve metal support so as to expose a part of the anode forming area. The solid polymer electrolyte layer is formed on the dielectric layer. The solid electrolytic capacitor is provided with the insulating layer for electrically insulating the anode terminal forming area in the valve metal support and the solid polymer electrolyte layer from each other.
    • 固体电解电容器包括阀金属支撑体,电介质层,固体聚合物电解质层和绝缘层。 阀金属支撑件具有围绕除了其一部分环境之外的阳极端子形成区域形成的开口。 电介质层形成在阀金属支撑体的表面上,以暴露阳极形成区域的一部分。 固体聚合物电解质层形成在电介质层上。 固体电解电容器设置有用于将阀金属载体和固体聚合物电解质层中的阳极端子形成区域彼此电绝缘的绝缘层。
    • 82. 发明授权
    • Capacitor
    • 电容器
    • US07016180B2
    • 2006-03-21
    • US11012832
    • 2004-12-16
    • Yumiko YoshiharaMasaaki Kobayashi
    • Yumiko YoshiharaMasaaki Kobayashi
    • H01G4/228H01G9/00H01G9/10
    • H01G9/012H01G9/15
    • A capacitor is constituted by a capacitor device including an anode part and a cathode part; and a substrate for mounting the capacitor device. The front face of a main part of the substrate is formed with first and second electrodes connected to the cathode and anode parts, respectively. The rear face of main part is provided with first and second outer electrodes electrically connected to the first and second electrodes by way of first and second conduction paths penetrating through the main part, respectively. The first and second electrodes are arranged in a row in a longitudinal direction of the substrate. The first and second outer electrodes include first and second connection areas for connecting with external wiring. The first and second connection areas extend in the longitudinal direction of the substrate, and are arranged in a row in a direction intersecting the longitudinal direction.
    • 电容器由包括阳极部分和阴极部分的电容器器件构成; 以及用于安装电容器装置的基板。 基板的主要部分的正面分别形成有连接到阴极和阳极部分的第一和第二电极。 主部件的后表面设置有分别通过穿过主要部分的第一和第二传导路径与第一和第二电极电连接的第一和第二外部电极。 第一电极和第二电极沿着衬底的纵向排列成一列。 第一和第二外部电极包括用于与外部布线连接的第一和第二连接区域。 第一和第二连接区域在基板的纵向方向上延伸,并且在与纵向方向交叉的方向上排列成一列。
    • 84. 发明申请
    • Method of inspecting an mura defect in a pattern and apparatus used for the same
    • 用于其中使用的图案和装置中的检查缺陷的方法
    • US20050220330A1
    • 2005-10-06
    • US11094357
    • 2005-03-31
    • Masaaki KobayashiAtsushi HaraNoboru YamaguchiYuudai Ishikawa
    • Masaaki KobayashiAtsushi HaraNoboru YamaguchiYuudai Ishikawa
    • G01N21/956G02F1/13G03F1/68G03F1/84G06K9/00
    • G03F1/84G01N21/956
    • A mura defect inspection apparatus 10 having an illuminating unit 12 which irradiates light onto a photomask 50 having a chip 55 on the surface thereof, the chip is formed with a repeated pattern that a unit pattern is regularly arranged, and a photoreceptor 13 which receives scattered light generated at the edge part of the unit pattern of the repeated pattern on the chip of the photomask and converts it to received light data, wherein the received light data is analyzed to detect a mura defect generated in the repeated pattern, wherein the illuminating unit irradiates light that is emitted from an illumination light source and has a orientation property of the rays almost parallel, the light having a parallelism within an angle of 2°, for example, onto a repeated pattern 51 on the chip 55 of the photomask 50. This application claims foreign priority based on Japanese Patent application No. 2004-106462, filed Mar. 31, 2004, the contents of which is incorporated herein by reference in its entirety.
    • 具有将光照射到其表面上具有芯片55的光掩模50的照明单元12的保护膜缺陷检查装置10形成有以规则排列的单位图案的重复图案,以及接收散射的感光体13 在光掩模的芯片上的重复图案的单元图案的边缘部分处产生的光,并将其转换为接收的光数据,其中分析接收的光数据以检测在重复图案中产生的色调缺陷,其中照明单元 照射从照明光源发射的光,并且具有几乎平行的射线的取向特性,例如平行于2°的角度的光到光掩模50的芯片55上的重复图案51上。 本申请基于2004年3月31日提交的日本专利申请No.2004-106462要求国外优先权,其内容通过引用并入本文 e整体。
    • 85. 发明申请
    • Capacitor
    • 电容器
    • US20050180090A1
    • 2005-08-18
    • US11012832
    • 2004-12-16
    • Yumiko YoshiharaMasaaki Kobayashi
    • Yumiko YoshiharaMasaaki Kobayashi
    • H01G4/228
    • H01G9/012H01G9/15
    • A capacitor is constituted by a capacitor device including an anode part and a cathode part; and a substrate for mounting the capacitor device. The front face of a main part of the substrate is formed with first and second electrodes connected to the cathode and anode parts, respectively. The rear face of main part is provided with first and second outer electrodes electrically connected to the first and second electrodes by way of first and second conduction paths penetrating through the main part, respectively. The first and second electrodes are arranged in a row in a longitudinal direction of the substrate. The first and second outer electrodes include first and second connection areas for connecting with external wiring. The first and second connection areas extend in the longitudinal direction of the substrate, and are arranged in a row in a direction intersecting the longitudinal direction.
    • 电容器由包括阳极部分和阴极部分的电容器器件构成; 以及用于安装电容器装置的基板。 基板的主要部分的正面分别形成有连接到阴极和阳极部分的第一和第二电极。 主部件的后表面设置有分别通过穿过主要部分的第一和第二传导路径与第一和第二电极电连接的第一和第二外部电极。 第一电极和第二电极沿着衬底的纵向排列成一列。 第一和第二外部电极包括用于与外部布线连接的第一和第二连接区域。 第一和第二连接区域在基板的纵向方向上延伸,并且在与纵向方向交叉的方向上排列成一列。
    • 86. 发明授权
    • Radiographic apparatus
    • 射线照相设备
    • US06928145B2
    • 2005-08-09
    • US09770667
    • 2001-01-29
    • Masaaki Kobayashi
    • Masaaki Kobayashi
    • G03B42/02A61B6/04
    • G03B42/02
    • There is disclosed a radiographic apparatus comprising a top plate for supporting a subject, an image receiver for receiving a radiographic image of the subject, a vertical moving mechanism for vertically moving the top plate and the image receiver, and means for limiting the action of the vertical moving mechanism according to the position relative to the top plate and/or posture of the image receiver. There is also disclosed a radiographic apparatus comprising a top plate for supporting a subject, an image receiver for receiving a radiographic image of the subject, a moving mechanism for varying the position relative to the top plate and/or posture of the image receiver, and means for limiting movement of the top plate in the predetermined direction in case the posture of the image receiver is not horizontal or limiting change in posture of the image receiver according to the position of the top plate.
    • 公开了一种放射线照相设备,包括用于支撑被摄体的顶板,用于接收被摄体的放射线图像的图像接收器,用于垂直移动顶板和图像接收器的垂直移动机构,以及用于限制 根据相对于顶板的位置和/或图像接收器的姿势的垂直移动机构。 还公开了一种放射线照相装置,包括用于支撑被检体的顶板,用于接收被检体的放射线图像的图像接收器,用于改变相对于顶板的位置和/或图像接收器的姿势的移动机构,以及 用于在图像接收器的姿势不是水平的情况下限制顶板在预定方向上的移动的装置,或者根据顶板的位置限制图像接收器的姿势变化。
    • 89. 发明申请
    • Solid electrolytic capacitor
    • 固体电解电容器
    • US20050105250A1
    • 2005-05-19
    • US10943988
    • 2004-09-20
    • Masaaki Kobayashi
    • Masaaki Kobayashi
    • H01G9/155H01G2/06H01G9/00H01G9/012H01G9/14H01G9/15H05K3/30
    • H01G9/012H01G9/14H01G9/26Y10T29/417
    • A solid electrolytic capacitor having significantly lowered its ESL is provided. In solid electrolytic capacitor elements adjacent each other in the solid electrolytic capacitor in accordance with the present invention, their respective anodes are connected to each other by an anode conduction path of a conduction path pair, whereas their respective cathodes are connected to each other by a cathode conduction path of the conduction path pair. Therefore, when electrons migrate between the solid electrolytic capacitor elements, respective currents directed opposite from each other flow through a pair of substantially parallel conduction paths. Consequently, a magnetic field caused by the current flowing through one conduction path is offset by a magnetic field caused by the current flowing through the other conduction path, whereby both magnetic fields cancel each other out. Hence, the solid electrolytic capacitor lowers its ESL.
    • 提供了显着降低其ESL的固体电解电容器。 在根据本发明的固体电解电容器中彼此相邻的固体电解电容器元件中,它们各自的阳极通过导电路径对的阳极传导路径彼此连接,而它们各自的阴极通过一个 导电路径对的阴极传导路径。 因此,当电子在固体电解电容器元件之间迁移时,彼此相反的相应电流流过一对基本上平行的导电路径。 因此,由流过一个导通路径的电流引起的磁场由流过另一导电路径的电流引起的磁场抵消,由此两个磁场相互抵消。 因此,固体电解电容器降低其ESL。