21-05-2020 дата публикации
Номер: US20200161055A1
Принадлежит:
A multilayer ceramic capacitor and a manufacturing method thereof are disclosed. The multilayer ceramic capacitor includes a base part including ceramic dielectrics, and inner electrodes formed in the ceramic dielectrics and arranged in interval by a staggered manner; two first outer electrodes of outer electrode layers are sintered and formed on two sides of the base part, and in electrical contact with the inner electrode terminals of the inner electrodes. Second outer electrodes are formed on outer parts of the two first outer electrodes. The inner electrodes and the first outer electrodes have barium titanate powder and nickel powder with average particle diameters in range of 0.2 μm to 0.4 μm, so that the inner electrodes are in good electrical contact with the first outer electrodes, to improve binding strength and reduce peeling of the first outer electrodes from the inner electrodes. 1. A multilayer ceramic capacitor , comprising:a base part comprising ceramic dielectric, and a plurality of inner electrodes formed in the ceramic dielectrics and arranged in interval by a staggered manner, wherein each of the plurality of inner electrodes has an inner electrode terminal formed on a side thereof and exposed out of the ceramic dielectric, and comprises barium titanate powder and nickel powder with average particle diameters in a range of 0.2 μm to 0.4 μm; andouter electrode layers formed on two opposite sides of the base part, and comprising two first outer electrodes formed and sintered on two opposite sides of the ceramic dielectrics of the base part, and second outer electrodes formed on outer parts of the two first outer electrode on two opposite sides of the ceramic dielectrics, wherein the two first outer electrodes are in electrical contact with the inner electrode terminals of the plurality of inner electrodes, and the first outer electrode comprises barium titanate powder and nickel powder with average particle diameters in a range of 0.2 μm to 0.4 μm, ...
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