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    • 2. 发明申请
    • HIGH VOLTAGE CAPACITORS
    • 高压电容器
    • US20120297596A1
    • 2012-11-29
    • US13567822
    • 2012-08-06
    • JOHN BULTITUDEJOHN JIANGJOHN ROGERS
    • JOHN BULTITUDEJOHN JIANGJOHN ROGERS
    • H01G4/12
    • H01G4/012H01G4/232H01G4/30Y10T29/435
    • In a method of manufacturing a multilayer ceramic component, a ceramic capacitor body is formed from electrode layers and dielectric layers. First and second external terminals are attached on opposite ends of the ceramic capacitor body. The ceramic capacitor body is coated to assist in increasing breakdown voltage. The electrode layers include active electrode layers configured in an alternating manner such that a first end of the active electrodes extends from one end of the ceramic capacitor body inwardly and a next internal active electrode extends from an opposite end of the ceramic capacitor body inwardly. The active electrode layer includes side shields to provide additional shielding.
    • 在制造多层陶瓷部件的方法中,陶瓷电容器体由电极层和电介质层形成。 第一和第二外部端子附着在陶瓷电容器体的相对端。 涂覆陶瓷电容器体以帮助提高击穿电压。 电极层包括以交替方式配置的有源电极层,使得有源电极的第一端从陶瓷电容器体的一端向内延伸,并且下一个内部有源电极从陶瓷电容器体的另一端向内延伸。 有源电极层包括侧屏蔽件以提供附加屏蔽。
    • 7. 发明申请
    • HIGH VOLTAGE CAPACITORS
    • 高压电容器
    • US20120250219A1
    • 2012-10-04
    • US13406131
    • 2012-02-27
    • John BultitudeJohn JiangJohn Rogers
    • John BultitudeJohn JiangJohn Rogers
    • H01G4/005H01G7/00
    • H01G4/012H01G2/20H01G4/30Y10T29/435
    • A multilayer ceramic capacitor component includes a ceramic capacitor body having opposite ends and comprised of a plurality of electrode layers and dielectric layers, first and second external terminals attached to the ceramic capacitor body. The plurality of electrode layers include a plurality of alternating layers of active electrodes extending inwardly from alternating ends of the ceramic capacitor body. The capacitor may include a plurality of side shields disposed within the plurality of alternating layers of active electrodes to provide shielding with the alternating layers of active electrodes having a pattern to increase overlap area to provide higher capacitance without decreasing separation between the alternative layers of active electrodes. The capacitor may have a voltage breakdown of 3500 volts DC or more in air. The capacitor may have a coating. The capacitor provides improved resistance to arc-over, high voltage breakdown in air, and allows for small case size.
    • 多层陶瓷电容器部件包括具有相对端并由多个电极层和电介质层组成的陶瓷电容器体,第一和第二外部端子附着到陶瓷电容器主体。 多个电极层包括从陶瓷电容器主体的交替端向内延伸的多个有源电极交替层。 电容器可以包括设置在多个有源电极的交替层内的多个侧屏蔽,以提供具有图案的有源电极的交替层的屏蔽以增加重叠面积以提供更高的电容而不减少有源电极的替代层之间的间隔 。 电容器可能在空气中具有3500伏DC或更多的电压击穿。 电容器可以具有涂层。 该电容器提供了改善的耐空气中的电弧,高压击穿的电阻,并允许小尺寸。
    • 9. 发明授权
    • Dielectric stable at high temperature
    • 介电稳定在高温下
    • US5646080A
    • 1997-07-08
    • US561122
    • 1995-11-20
    • Mike Ssu-Hai ChuJohn BultitudeMichael RandKay Louise NimmoIan ThompsonChristopher Hood
    • Mike Ssu-Hai ChuJohn BultitudeMichael RandKay Louise NimmoIan ThompsonChristopher Hood
    • C04B35/46C04B35/468H01G4/12
    • C04B35/468H01G4/1227
    • A sinterable dielectric ceramic powder composition comprising 95 to 98 parts by weight of a major ingredient consisting of 97.0 to 99.5 mole % barium titanate, 0.5 to 3.0 mole % magnesium oxide or a precursor therefor and 0 to 2.0 mole % manganese oxide or a precursor therefor and 0 to 0.2 mole % cobalt oxide or a precursor therefor; 2 to 5 parts by weight of a minor ingredient consisting of a ternary mixture of 15 to 30 mole % barium oxide or a precursor therefor, 15 to 30 mole % silicon dioxide or a precursor therefor and 40 to 70 mole % calcium titanate, which composition can be fabricated into multilayer ceramic capacitors with nickel, nickel alloy, palladium or palladium/silver alloy inner electrodes, the so formed capacitors having a variation of capacitance with temperature of less than .+-.20% over the range -55.degree. C. to 140.degree. C. as compared to the value at 25.degree. C. and not containing any second phases after sintering.
    • 一种可烧结电介质陶瓷粉末组合物,其包含95至98重量份的主要成分,由97.0至99.5摩尔%的钛酸钡,0.5至3.0摩尔%的氧化镁或其前体和0至2.0摩尔%的氧化锰或其前体组成 和0至0.2摩尔%的氧化钴或其前体; 2至5重量份由15-30摩尔%氧化钡或其前体的三元混合物,15-30摩尔%二氧化硅或其前体和40-70摩尔%钛酸钙组成的次要成分,该组成 可以制造成具有镍,镍合金,钯或钯/银合金内电极的多层陶瓷电容器,所形成的电容器在-55℃至-55℃的范围内具有小于+/- 20%的电容变化, 140℃,与25℃的值相比,烧结后不含任何第二相。