Flat capacitor for an implantable medical device
    3.
    发明授权
    Flat capacitor for an implantable medical device 有权
    用于可植入医疗器械的扁平电容器

    公开(公告)号:US06699265B1

    公开(公告)日:2004-03-02

    申请号:US09706447

    申请日:2000-11-03

    IPC分类号: A61N139

    摘要: One embodiment includes a capacitor having a first anode stack having a first number of anode foils, a second anode stack having a second number of anode foils, where the first number of anode foils is different than the second number of anode foils. Another aspect provides a capacitor having a case having a curved interior surface, and first, second, and third capacitor modules that confront the curved interior surface of the case. One aspect provides a capacitor having one or more anodes and a cathode structure comprising a plurality of integrally connected cathode plates, the cathode structure having a serpentine shape, interweaving under and over each of the one or more anodes. One aspect provides a feedthrough assembly having an electrically conductive member dimensioned to extend at least partially through a feedthrough hole of a case of the capacitor, the conductive member having a passage therethrough. One aspect provides a capacitor having a first stack of capacitive elements a second stack of capacitive elements, wherein the first and second stacks are enclosed in separate compartments of a capacitor case that electrically isolate the electrolytes of each stack from one another. One aspect provides a capacitor case including a portion having opposing interior and exterior surfaces, with the portion having a hole; and a semi-permeable membrane adjacent the hole to regulate passage of fluids through the hole.

    摘要翻译: 一个实施例包括具有第一阳极箔的第一阳极堆叠的电容器,具有第二数量的阳极箔的第二阳极堆叠,其中第一数量的阳极箔不同于第二数量的阳极箔。 另一方面提供一种电容器,其具有具有弯曲内表面的壳体,以及面对壳体的弯曲内表面的第一,第二和第三电容器模块。 一个方面提供一种具有一个或多个阳极的电容器和包括多个整体连接的阴极板的阴极结构,所述阴极结构具有蛇形形状,在一个或多个阳极中的每一个下方交织。 一个方面提供了一种馈通组件,其具有导电构件,其尺寸设计成至少部分地延伸穿过电容器的壳体的馈通孔,导电构件具有穿过其的通道。 一个方面提供一种具有电容元件的第一堆叠电容元件的第二堆叠的电容器,其中所述第一和第二堆叠封装在电容器壳体的分离的隔室中,所述电容器壳体将每个电池堆的电解质彼此电隔离。 一方面提供一种电容器壳体,包括具有相对的内表面和外表面的部分,该部分具有孔; 以及邻近孔的半透膜,以调节流体通过孔的通道。

    Electrolytic capacitor and multi-anodic attachment
    5.
    发明授权
    Electrolytic capacitor and multi-anodic attachment 失效
    电解电容器和多阳极附件

    公开(公告)号:US06881232B2

    公开(公告)日:2005-04-19

    申请号:US10617279

    申请日:2003-07-10

    摘要: A multi-anodic aluminum electrolytic capacitor includes an electrical connection to the multiple porous (e.g., tunnel-etched) anodes in an anode stack using a single anode tab that is attached only to a first anode. Other anodes are electrically coupled to the anode tab through the first anode. Anodes in the anode stack are in intimate physical and electrical contact with other such anodes as a result of layering effected by planar stacking or cylindrical winding. The need for separate tabs to different anode layers is eliminated or at least minimized, thereby reducing capacitor volume, increasing capacitor reliability, and reducing the cost and complexity of the capacitor manufacturing process for multi-anodic capacitors. The capacitor is capable of use in implantable defibrillators, camera photoflashes, and other electric circuit applications.

    摘要翻译: 多阳极铝电解电容器包括使用仅仅附接到第一阳极的单个阳极接头与阳极堆叠中的多孔(例如,隧道蚀刻)阳极的电连接。 其他阳极通过第一阳极电耦合到阳极片。 阳极堆叠中的阳极与其它这样的阳极紧密物理和电接触,这是由于通过平面堆叠或圆柱形绕组实现的层叠的结果。 消除或至少最小化对不同阳极层的分离片的需要,从而减少电容器体积,增加电容器可靠性,并降低多阳极电容器的电容器制造工艺的成本和复杂性。 电容器可用于可植入除颤器,相机闪光灯和其他电路应用中。

    Electrolytic capacitor and multi-anodic attachment
    7.
    发明授权
    Electrolytic capacitor and multi-anodic attachment 失效
    电解电容器和多阳极附件

    公开(公告)号:US06249423B1

    公开(公告)日:2001-06-19

    申请号:US09063692

    申请日:1998-04-21

    IPC分类号: H01G900

    摘要: A multi-anodic aluminum electrolytic capacitor includes an electrical connection to the multiple porous (e.g., tunnel-etched) anodes in an anode stack using a single anode tab that is attached only to a first anode. Other anodes are electrically coupled to the anode tab through the first anode. Anodes in the anode stack are in intimate physical and electrical contact with other such anodes as a result of layering effected by planar stacking or cylindrical winding. The need for separate tabs to different anode layers is eliminated or at least minimized, thereby reducing capacitor volume, increasing capacitor reliability, and reducing the cost and complexity of the capacitor manufacturing process for multi-anodic capacitors. The capacitor is capable of use in implantable defibrillators, camera photoflashes, and other electric circuit applications.

    摘要翻译: 多阳极铝电解电容器包括使用仅仅附接到第一阳极的单个阳极接头与阳极堆叠中的多孔(例如,隧道蚀刻)阳极的电连接。 其他阳极通过第一阳极电耦合到阳极片。 阳极堆叠中的阳极与其它这样的阳极紧密物理和电接触,这是由于通过平面堆叠或圆柱形绕组实现的层叠的结果。 消除或至少最小化对不同阳极层的分离片的需要,从而减少电容器体积,增加电容器可靠性,并降低多阳极电容器的电容器制造工艺的成本和复杂性。 电容器可用于可植入除颤器,相机闪光灯和其他电路应用中。

    Method of constructing a capacitor stack for a flat capacitor
    10.
    发明授权
    Method of constructing a capacitor stack for a flat capacitor 失效
    构建扁平电容器的电容器堆叠的方法

    公开(公告)号:US06763265B2

    公开(公告)日:2004-07-13

    申请号:US10418616

    申请日:2003-04-17

    IPC分类号: A61N102

    摘要: In one aspect, a method of manufacturing a capacitor includes disposing one or more conductive layers of a first electrode stack in a recess of an alignment mechanism, where the recess is positioned relative to two or more alignment elements. The method further includes placing a separator over the one or more conductive layers where an outer edge of the separator contacts the two or more alignment elements. In one embodiment, a capacitor includes anode and cathode foils having offsetting edge portions. In one embodiment, a multiple tab cathode for a flat capacitor. A plurality of cathode tabs are portioned into a plurality of cathode tab groups positioned in different locations along the edge of the capacitor stack to reduce the amount of space required for connecting and routing the cathode tabs.

    摘要翻译: 一方面,制造电容器的方法包括将第一电极堆叠的一个或多个导电层设置在对准机构的凹部中,其中凹部相对于两个或更多个对准元件定位。 该方法还包括将分离器放置在一个或多个导电层上,其中分离器的外边缘接触两个或更多个对准元件。 在一个实施例中,电容器包括具有偏移边缘部分的阳极箔和阴极箔。 在一个实施例中,用于扁平电容器的多片式阴极。 多个阴极突片被分成沿着电容器叠层的边缘定位在不同位置的多个阴极片组,以减少连接和布线阴极片所需的空间。