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    • 1. 发明申请
    • HIGH POWER DENSITY CAPACITOR AND METHOD OF FABRICATION
    • 高功率密度电容器及其制造方法
    • US20120014034A1
    • 2012-01-19
    • US12838237
    • 2010-07-16
    • Enis Tuncer
    • Enis Tuncer
    • H01G4/30H01G9/00
    • H01G4/30H01G4/32Y10T29/417
    • A ductile preform for making a drawn capacitor includes a plurality of electrically insulating, ductile insulator plates and a plurality of electrically conductive, ductile capacitor plates. Each insulator plate is stacked vertically on a respective capacitor plate and each capacitor plate is stacked on a corresponding insulator plate in alignment with only one edge so that other edges are not in alignment and so that each insulator plate extends beyond the other edges. One or more electrically insulating, ductile spacers are disposed in horizontal alignment with each capacitor plate along the other edges and the pattern is repeated so that alternating capacitor plates are stacked on alternating opposite edges of the insulator plates. A final insulator plate is positioned at an extremity of the preform. The preform may then be drawn to fuse the components and decrease the dimensions of the preform that are perpendicular to the direction of the draw.
    • 用于制造拉制电容器的延性预成型件包括多个电绝缘的延性绝缘板和多个导电的延性电容器板。 每个绝缘板垂直堆叠在相应的电容器板上,并且每个电容器板堆叠在仅一个边缘对准的相应绝缘板上,使得其它边缘不对准,并且使得每个绝缘板延伸超过其它边缘。 一个或多个电绝缘的延性间隔物沿着其它边缘与每个电容器板水平对准地布置,并且重复图案,使得交替的电容器板堆叠在绝缘板的交替的相对边缘上。 最后的绝缘板位于预型件的末端。 然后可以将预成型件拉伸以熔合部件并减小预成型件垂直于拉伸方向的尺寸。
    • 2. 发明申请
    • WELL DEFINED STRUCTURES FOR CAPACITOR APPLICATIONS
    • 用于电容器应用的良好定义的结构
    • US20100177461A1
    • 2010-07-15
    • US12351121
    • 2009-01-09
    • Enis Tuncer
    • Enis Tuncer
    • H01G4/06H01G7/00
    • H01G4/38H01G4/232H01G4/28H01G9/155Y02E60/13Y10T29/435
    • A capacitor is disclosed having a plurality of drawn fibers. Each of the drawn fibers has an electrically conductive fiber core and an electrically insulating cladding. The drawn fibers are arranged in a matrix bundle pattern of a first and second set of fiber cores with each fiber core of the first set being disposed adjacent to and aligned with at least one fiber core of the second set to create a capacitance between the first and second set of fiber cores. A first electrode contacts the first set of fiber cores and a second electrode contacts the second set of fiber cores so that an electric capacitance is established between the first and second sets of fiber cores and between the first and second electrodes.
    • 公开了一种具有多个拉伸纤维的电容器。 每个拉伸的纤维具有导电纤维芯和电绝缘包层。 拉伸的纤维以第一组和第二组纤维芯的矩阵束图案布置,其中第一组的每个纤维芯与第二组的至少一个纤维芯相邻并且与第二组的至少一个纤维芯对准,以在第一组之间产生电容 和第二组光纤芯。 第一电极接触第一组光纤芯,第二电极接触第二组光纤芯,从而在第一和第二组光纤芯之间以及在第一和第二电极之间建立电容。
    • 6. 发明授权
    • High power density capacitor and method of fabrication
    • 高功率密度电容器及其制造方法
    • US08315032B2
    • 2012-11-20
    • US12838237
    • 2010-07-16
    • Enis Tuncer
    • Enis Tuncer
    • H01G4/30
    • H01G4/30H01G4/32Y10T29/417
    • A ductile preform for making a drawn capacitor includes a plurality of electrically insulating, ductile insulator plates and a plurality of electrically conductive, ductile capacitor plates. Each insulator plate is stacked vertically on a respective capacitor plate and each capacitor plate is stacked on a corresponding insulator plate in alignment with only one edge so that other edges are not in alignment and so that each insulator plate extends beyond the other edges. One or more electrically insulating, ductile spacers are disposed in horizontal alignment with each capacitor plate along the other edges and the pattern is repeated so that alternating capacitor plates are stacked on alternating opposite edges of the insulator plates. A final insulator plate is positioned at an extremity of the preform. The preform may then be drawn to fuse the components and decrease the dimensions of the preform that are perpendicular to the direction of the draw.
    • 用于制造拉制电容器的延性预成型件包括多个电绝缘的延性绝缘板和多个导电的延性电容器板。 每个绝缘板垂直堆叠在相应的电容器板上,并且每个电容器板堆叠在仅一个边缘对准的相应绝缘板上,使得其它边缘不对准,并且使得每个绝缘板延伸超过其它边缘。 一个或多个电绝缘的延性间隔物沿着其它边缘与每个电容器板水平对准地布置,并且重复图案,使得交替的电容器板堆叠在绝缘板的交替的相对边缘上。 最后的绝缘板位于预型件的末端。 然后可以将预成型件拉伸以熔合部件并减小预成型件垂直于拉伸方向的尺寸。