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    • 123. 发明授权
    • Solid electrolytic capacitor and the use thereof
    • 固体电解电容器及其用途
    • US07522404B2
    • 2009-04-21
    • US10592377
    • 2005-03-08
    • Kazumi NaitoKatutoshi Tamura
    • Kazumi NaitoKatutoshi Tamura
    • H01G9/04H01G9/02
    • H01G9/025H01G9/028H01G9/0425H01G9/07
    • The present invention relates to a solid electrolytic capacitor with low ESR obtained by stacking a dielectric layer on a surface of an anode body comprising a valve-acting metal or an electrically conducting oxide, further sequentially stacking a semiconductor layer and an electrically conducting layer on the dielectric layer to prepare a solid electrolytic capacitor element, and molding it with a jacket material, the electrically conducting layer having an electrically conducting paste layer mainly comprising an electrically conducting metal powder and resin, wherein the tap density of the electrically conducting metal powder is 4 g/cm3 or more, and an electronic circuit and an electronic device using the solid electrolytic capacitor.
    • 本发明涉及一种具有低ESR的固体电解电容器,其通过在包括阀作用金属或导电氧化物的阳极体的表面上堆叠电介质层而获得,进一步依次将半导体层和导电层堆叠在 电介质层以制备固体电解电容器元件,并用护套材料成型,导电层具有主要包含导电金属粉末和树脂的导电浆料层,其中导电金属粉末的振实密度为4 g / cm 3以上,以及使用固体电解电容器的电子电路和电子装置。
    • 126. 发明授权
    • Solid electrolytic capacitor which can easily be lowered in ESL
    • 在ESL中容易降低的固体电解电容器
    • US07457103B2
    • 2008-11-25
    • US11429344
    • 2006-05-05
    • Katsuhiro YoshidaKoji Sakata
    • Katsuhiro YoshidaKoji Sakata
    • H01G9/00H01G9/04H01G9/145
    • H01G9/10H01G9/012H01G9/042H01G9/15
    • In a solid electrolytic capacitor including a device portion having a cathode conductor layer and an anode conductor layer arranged on a sheet-like or a foil-like base member, a first insulating resin layer is formed on the cathode conductor layer and the anode conductor layer. A positive electrode mounting terminal layer is formed on the first insulating resin layer. An anode conductor portion penetrates the first insulating resin layer to electrically connect the positive electrode mounting terminal layer to the anode conductor layer. A plurality of negative electrode mounting terminal layers are arranged on the first insulating resin layer. A cathode conductor portion penetrates the first insulating resin layer to electrically connect the negative electrode mounting terminal layer to the cathode conductor layer. A second insulating resin layer is formed on the positive electrode mounting terminal layer. The second insulating resin layer has a plurality of first opening portions partially exposing the positive electrode mounting terminal layer.
    • 在包括具有阴极导体层的器件部分和布置在片状或箔状基底上的阳极导体层的固体电解电容器中,在阴极导体层和阳极导体层上形成第一绝缘树脂层 。 正极安装端子层形成在第一绝缘树脂层上。 阳极导体部分穿透第一绝缘树脂层以将正电极安装端子层电连接到阳极导体层。 多个负电极安装端子层设置在第一绝缘树脂层上。 阴极导体部分穿透第一绝缘树脂层,以将负电极安装端子层电连接到阴极导体层。 在正极安装端子层上形成第二绝缘树脂层。 第二绝缘树脂层具有部分暴露正极安装端子层的多个第一开口部。
    • 128. 发明授权
    • Sintered body electrode and solid electrolytic capacitor using the electrode
    • 烧结体电极和使用电极的固体电解电容器
    • US07423863B2
    • 2008-09-09
    • US10552589
    • 2004-04-13
    • Kazumi Naito
    • Kazumi Naito
    • H01G9/04
    • H01G9/0525B22F3/1103H01G9/028H01G9/042H01G9/052Y10T428/24926
    • A sintered body electrode for a sintered body electrode capacitor, which enables production of a solid electrolytic capacitor having a good capacitance appearance factor, including at least one member selected from an earth-acid metal, an alloy mainly comprising an earth-acid metal, an electrically conducting oxide of an earth-acid metal, and a mixture of two or more thereof. The value (pseudo-closed porosity) obtained by dividing the difference between the volume of a sintered body measured under atmospheric pressure and the volume measured in a vacuum, which are determined according to the Archimedes method, by the volume measured under atmospheric pressure is 11% or less. Also disclosed is a solid electrolytic element using the sintered body, a solid electrolytic capacitor using the element and use of the solid electrolytic capacitor.
    • 一种用于烧结体电极电容器的烧结体电极,其能够制造具有良好的电容外观因子的固体电解电容器,其包括选自土 - 酸金属,主要包含土 - 酸金属的合金, 土 - 酸金属的导电氧化物及其两种或更多种的混合物。 通过将在大气压下测量的烧结体的体积与根据阿基米德法测定的在真空中测量的体积之间的差除以在大气压下测量的体积而得到的值(伪闭孔率)为11 % 或更少。 还公开了使用该烧结体的固体电解质元件,使用该元素的固体电解电容器和使用固体电解电容器。