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    • 1. 发明授权
    • Solid electrolytic capacitor element, method for manufacturing same, and jig for manufacturing same
    • 固体电解电容器元件及其制造方法及其制造用夹具
    • US08847437B2
    • 2014-09-30
    • US13257153
    • 2010-03-16
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • H02M3/06
    • H01G9/0032C09D5/4476C25D13/04C25D13/20C25D13/22H01G9/0036H01G9/07H01G9/15Y10T29/417
    • Provided is a jig for manufacturing electrolytic capacitor elements wherein the jig is for forming dielectric layers on the surfaces of anode bodies by anodic oxidation or for forming semiconductor layers on the dielectric layers formed on the surfaces of the anode bodies. The jig for manufacturing the electrolytic capacitor elements comprises (i) a plurality of power supply circuits which are provided on an insulating substrate and to each of which a voltage-limiting value and a current-limiting value can be set, (ii) connection terminals for the anode bodies which are electrically connected to the respective outputs of the power supply circuits, and (iii) a terminal for setting the voltage-limiting values to the power supply circuits and a terminal for setting the current-limiting values to the power supply circuits; in the jig, a proper current can be set corresponding to the progress of the anodic oxidation and electrolytic polymerization. A method for manufacturing the electrolytic capacitor elements using the jig.
    • 提供一种用于制造电解电容器元件的夹具,其中夹具用于通过阳极氧化在阳极体的表面上形成介电层,或用于在形成在阳极体的表面上的电介质层上形成半导体层。 用于制造电解电容器元件的夹具包括:(i)设置在绝缘基板上的多个电源电路,并且每个电源电路可以设置电压限制值和限流值,(ii)连接端子 对于与电源电路的各个输出电连接的阳极体,以及(iii)用于将电压限制值设定到电源电路的端子和用于将电流限制值设定为电源的端子 电路; 在夹具中,可以根据阳极氧化和电解聚合的进行设定适当的电流。 一种使用夹具制造电解电容器元件的方法。
    • 2. 发明授权
    • Solid electrolytic capacitor element, method for producing same, and tool for producing said solid electrolytic capacitor element
    • 固体电解电容器元件及其制造方法以及用于制造所述固体电解电容器元件的工具
    • US09224538B2
    • 2015-12-29
    • US13824603
    • 2011-07-29
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • H01G9/00H01G9/028H01G9/15H02M3/06
    • H01G9/0029H01G9/0036H01G9/028H01G9/15H01G13/00
    • A method of manufacturing a solid electrolytic capacitor element including the steps of forming a semiconductor layer on a dielectric layer formed on surfaces of a plurality of anode bodies at one time. A step of forming a semiconductor layer includes repeating an electrolytic polymerization operation several times by applying a current from a power-feeding terminal that comes into contact with each anode body. Further, at least one of the electrolytic polymerization operations continuously applies a current while changing the amount of current between the range of 5 to 200 μA per power-feeding terminal. Also disclosed is a jig for electrolytic polymerization for forming the semiconductor layer including a plurality of power supply circuits (i) capable of continuously changing the amount of current between a lower limit and an upper limit; and a power-feeding terminals (ii).
    • 一种制造固体电解电容器元件的方法,包括以下步骤:一次在形成在多个阳极体的表面上的电介质层上形成半导体层。 形成半导体层的步骤包括通过从与每个阳极体接触的馈电端子施加电流来重复电解聚合操作几次。 此外,至少一个电解聚合操作连续地施加电流,同时改变每个馈电端子在5至200μA范围内的电流量。 还公开了用于形成半导体层的电解聚合用夹具,其包括能够连续地改变下限和上限之间的电流量的多个电源电路(i) 和馈电端子(ii)。
    • 3. 发明申请
    • REACTION CONTAINER FOR MANUFACTURING CAPACITOR ELEMENT, AND METHOD FOR MANUFACTURING CAPACITOR ELEMENT
    • 用于制造电容器元件的反应容器和制造电容器元件的方法
    • US20120304430A1
    • 2012-12-06
    • US13517387
    • 2010-12-08
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • C25D19/00C25D5/10H01G7/00
    • H01G9/0032H01G13/00
    • A reaction container for manufacturing a capacitor element, in which the liquid level in each individual chamber (compartment) of a container can be adjusted to the same level, adjustment to achieve uniformity of electrolytic solution in each individual chamber can also be performed, and with which a uniform dielectric layer or a uniform semiconductor layer can be formed with respect to a plurality of conductive members in a stable manner while maintaining a constant range of formation thereof. The reaction container (1) for manufacturing a capacitor element includes a container (2) which accommodates electrolytic solution (19) therein, a partitioning frame (3) which can partition the inside of the container (2) into a plurality of individual chambers (9), negative electrode members (6) individually arranged in each of the individual chambers (9), and a constant-current source (7) electrically connected to the cathode members 6. A passage 8, which enables movement of the electrolytic solution 19 between each individual chamber 9 and at least one individual chamber 9 of the individual chambers adjacent to each individual chamber, is provided in a manner such that the passage (8) can be opened and closed.
    • 用于制造电容器元件的反应容器,其中可以将容器的每个单独的室(室)中的液位调节到相同的水平,以实现各个室中的电解溶液的均匀性的调节,并且与 可以以稳定的方式相对于多个导电构件形成均匀的介电层或均匀的半导体层,同时保持其恒定的形成范围。 用于制造电容器元件的反应容器(1)包括容纳电解液(19)的容器(2),能够将容器(2)内部分隔成多个单独室的分隔框架(3) 9),分别设置在各个室(9)中的负极构件(6)和与阴极构件6电连接的恒流源(7)。使电解液19能够移动的通道8 在每个单独的室9和与每个单独的室相邻的各个室的至少一个单独的室9之间以使得通道(8)能够打开和关闭的方式设置。
    • 4. 发明授权
    • Gang socket and jig for manufacturing capacitor element that uses said gang socket
    • 用于制造电容器元件的插座和夹具,使用所述组合插座
    • US09196428B2
    • 2015-11-24
    • US13993371
    • 2011-10-13
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • H01G13/00H01G9/012H01G9/15H01G9/00
    • H01G13/00C25D9/02C25D11/005C25D11/04C25D11/26C25D17/005C25D17/08H01G9/0029H01G9/0032H01G9/0036H01G9/012H01G9/15H01G13/006Y10T29/417
    • Provided is a gang socket with which capacitor elements can be manufactured without contaminating chemical conversion treatment liquids or semiconductor layer forming liquids even when the chemical conversion treatment liquids and semiconductor layer forming liquids are corrosive and with which heat treatment can be carried out without obstacles even when heat treatment is carried out during the manufacture of the capacitor elements. This gang socket (1) is provided with a plurality of conductive socket main units (2) provided with insertion openings (37) and an insulator part (5) forming a plurality of receiving parts (6) that can accommodate at least part of the socket main units (2) and provided with a plurality of small openings (7) connecting to the bottom surface of the receiving parts (6) on a bottom surface (5b). The insulator part (5) is constituted of a material having heat resistance and corrosion resistance. At least part of the socket main units (2) are accommodated and secured in the receiving parts (6) of the insulator part (5), and the insertion openings (37) and the small openings (7) are connected.
    • 即使当化学转化处理液体和半导体层形成液体具有腐蚀性并且即使在没有障碍物的情况下也可以进行热处理时,即使在没有障碍物的情况下也可以在不污染化学转化处理液体或半导体层形成液体的情况下制造电容元件, 在电容器元件的制造期间进行热处理。 该组合插座(1)设置有多个具有插入开口(37)的导电插座主单元(2)和形成多个容纳部件(6)的绝缘体部件(5),该容纳部件可容纳至少部分 插座主单元(2),并且在底面(5b)上设置有多个与接收部(6)的底面连接的小开口(7)。 绝缘体部件(5)由具有耐热性和耐腐蚀性的材料构成。 插座主单元(2)的至少一部分被容纳并固定在绝缘体部分(5)的接收部分(6)中,并且插入开口(37)和小开口(7)连接。
    • 6. 发明申请
    • JIG FOR MANUFACTURING CAPACITOR ELEMENT AND METHOD FOR MANUFACTURING CAPACITOR ELEMENT
    • 制造电容元件的制造方法和制造电容元件的方法
    • US20140367268A1
    • 2014-12-18
    • US14362696
    • 2012-09-05
    • Kazumi NaitoMasahiro SuzukiKatsutoshi Tamura
    • Kazumi NaitoMasahiro SuzukiKatsutoshi Tamura
    • H01G9/00H01G9/04C25D17/06
    • H01G9/0032C25D17/06H01G9/0029H01G9/0036H01G9/04H01G9/052H01G9/07H01G9/15H01G13/006
    • A jig for manufacturing a capacitor element is provided in which an immersion position of an anode body in a processing liquid can be controlled accurately, and a heat treatment can be performed without difficulty when heat treatment is required in the middle of manufacturing the capacitor element. The jig includes a first substrate 11, a second substrate 12 to be arranged along the plane surface portion of the lower surface of the first substrate in parallel thereto, and a plurality of sockets mounted on the lower surfaced of the second substrate, the first electric connection terminals 41 on the lower surface of the first substrate 11 are respectively and electrically connected to electric power sources for supplying electric current to the capacitor anode body, the second electric connection terminal 42 on the upper surface of the second substrate 12 is electrically connected to the socket 1, when the second substrate 12 is arranged at the lower surface side of the first substrate 11 in parallel thereto in an overlapped manner, the first electric connection terminal 41 is in contact with the second electric connection terminal 42 and electrically connected thereto, whereby the socket is electrically connected to the electric power source, the socket 1 is provided with an insertion port 37 for electrically connecting a lead wire of the capacitor anode body, and the insertion port 37 is opened downward of the second substrate 12.
    • 提供一种用于制造电容器元件的夹具,其中可以精确地控制阳极体在处理液体中的浸没位置,并且在制造电容器元件的中间需要热处理时可以难以进行热处理。 夹具包括:第一基板11,与第一基板的平面面平行布置的第二基板12,以及安装在第二基板的下表面上的多个插座; 第一基板11的下表面上的连接端子41分别电连接到用于向电容器阳极体提供电流的电源,第二基板12的上表面上的第二电连接端子42电连接到 插座1当第二基板12以与其平行的方式布置在第一基板11的下表面侧时,第一电连接端子41与第二电连接端子42接触并与其电连接, 由此插座电连接到电源,插座1设置有插座 用于将电容器阳极体的引线电连接的插入口37和插入口37向第二基板12的下方开口。
    • 7. 发明申请
    • SOLID ELECTROLYTIC CAPACITOR ELEMENT, METHOD FOR PRODUCING SAME, AND TOOL FOR PRODUCING SAID SOLID ELECTROLYTIC CAPACITOR ELEMENT
    • 固体电解电容器元件及其制造方法,以及用于生产固体电解电容器元件的工具
    • US20130182375A1
    • 2013-07-18
    • US13824603
    • 2011-07-29
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • H01G9/00H01G9/15
    • H01G9/0029H01G9/0036H01G9/028H01G9/15H01G13/00
    • A method of manufacturing a solid electrolytic capacitor element including the steps of forming a semiconductor layer on a dielectric layer formed on surfaces of a plurality of anode bodies at one time. A step of forming a semiconductor layer includes repeating an electrolytic polymerization operation several times by applying a current from a power-feeding terminal that comes into contact with each anode body. Further, at least one of the electrolytic polymerization operations continuously applies a current while changing the amount of current between the range of 5 to 200 μA per power-feeding terminal. Also disclosed is a jig for electrolytic polymerization for forming the semiconductor layer including a plurality of power supply circuits (i) capable of continuously changing the amount of current between a lower limit and an upper limit; and a power-feeding terminals (ii).
    • 一种制造固体电解电容器元件的方法,包括以下步骤:一次在形成在多个阳极体的表面上的电介质层上形成半导体层。 形成半导体层的步骤包括通过从与每个阳极体接触的馈电端子施加电流来重复电解聚合操作几次。 此外,电解聚合操作中的至少一个连续施加电流,同时改变每个馈电端子在5至200μA范围内的电流量。 还公开了用于形成半导体层的电解聚合用夹具,其包括能够连续地改变下限和上限之间的电流量的多个电源电路(i) 和馈电端子(ii)。
    • 8. 发明申请
    • SOLID ELECTROLYTIC CAPACITOR ELEMENT, METHOD FOR MANUFACTURING SAME, AND JIG FOR MANUFACTURING SAME
    • 固体电解电容器元件,其制造方法和制造方法
    • US20120014036A1
    • 2012-01-19
    • US13257153
    • 2010-03-16
    • Kazumi NaitoMasahiro Suzuki
    • Kazumi NaitoMasahiro Suzuki
    • H01G9/26H01G9/00
    • H01G9/0032C09D5/4476C25D13/04C25D13/20C25D13/22H01G9/0036H01G9/07H01G9/15Y10T29/417
    • Provided is a jig for manufacturing electrolytic capacitor elements wherein the jig is for forming dielectric layers on the surfaces of anode bodies by anodic oxidation or for forming semiconductor layers on the dielectric layers formed on the surfaces of the anode bodies. The jig for manufacturing the electrolytic capacitor elements comprises (i) a plurality of power supply circuits which are provided on an insulating substrate and to each of which a voltage-limiting value and a current-limiting value can be set, (ii) connection terminals for the anode bodies which are electrically connected to the respective outputs of the power supply circuits, and (iii) a terminal for setting the voltage-limiting values to the power supply circuits and a terminal for setting the current-limiting values to the power supply circuits; in the jig, a proper current can be set corresponding to the progress of the anodic oxidation and electrolytic polymerization. A method for manufacturing the electrolytic capacitor elements using the jig.
    • 提供一种用于制造电解电容器元件的夹具,其中夹具用于通过阳极氧化在阳极体的表面上形成介电层,或用于在形成在阳极体的表面上的电介质层上形成半导体层。 用于制造电解电容器元件的夹具包括:(i)设置在绝缘基板上的多个电源电路,并且每个电源电路可以设置电压限制值和限流值,(ii)连接端子 对于与电源电路的各个输出电连接的阳极体,以及(iii)用于将电压限制值设定到电源电路的端子和用于将电流限制值设定为电源的端子 电路; 在夹具中,可以根据阳极氧化和电解聚合的进行设定适当的电流。 一种使用夹具制造电解电容器元件的方法。