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    • 44. 发明授权
    • Electrolytic capacitor
    • 电解电容器
    • US06870728B1
    • 2005-03-22
    • US10765880
    • 2004-01-29
    • Chris T. BurketYumiko YoshiharaMasaaki Kobayashi
    • Chris T. BurketYumiko YoshiharaMasaaki Kobayashi
    • H01G9/14H01G9/012H01G9/04H01G9/045H01G9/10H01G9/15
    • H01G9/045H01G9/012H01G9/15
    • An electrolytic capacitor with a further lowered impedance is provided. In the electrolytic capacitor in accordance with the present invention, respective currents directed opposite from each other flow through anode and cathode vias extending along the thickness of a substrate. The anode vias are lopsidedly located in a marginal area of an anode electrode pattern, and thus are disposed significantly close to the cathode vias formed in a cathode electrode pattern disposed close to the anode electrode pattern. The cathode vias are lopsidedly located in a marginal area of the cathode electrode pattern, and thus are disposed significantly close to the anode vias. Since the anode and cathode vias are formed close to each other as such, this electrolytic capacitor achieves a lower ESL, thereby attaining an impedance lower than that of a conventional electrolytic capacitor.
    • 提供具有进一步降低阻抗的电解电容器。 在根据本发明的电解电容器中,彼此相反的各个电流流过沿衬底的厚度延伸的阳极和阴极通孔。 阳极通孔被偏斜地位于阳极电极图案的边缘区域中,并且因此被设置为非常接近形成在靠近阳极电极图案设置的阴极电极图案中的阴极通孔。 阴极通孔偏斜地位于阴极电极图案的边缘区域中,因此被显着地靠近阳极通孔设置。 由于阳极和阴极通孔彼此靠近地形成,因此该电解电容器实现较低的ESL,从而达到比常规电解电容器低的阻抗。