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    • 6. 发明申请
    • Coil component
    • 线圈组件
    • US20080100409A1
    • 2008-05-01
    • US11907603
    • 2007-10-15
    • Tomonaga NishikawaTomokazu ItoMakoto YoshidaHiroshi Kamiyama
    • Tomonaga NishikawaTomokazu ItoMakoto YoshidaHiroshi Kamiyama
    • H01F5/00
    • H01F17/0006H01F17/0013H01F27/027H01F27/292H01F27/323H03H2001/0092
    • The invention relates to surface-mount type coil components having a mounting surface for mounting them on a printed circuit board or hybrid IC (HIC) and provides a low-cost coil component having a low direct-current resistance. A common mode filter includes a bridge conductor layer which has a bridge conductor one end of which is connected to one end of a lead wire and another end of which is connected to an inner circumferential end of a coil conductor and another bridge conductor one end of which is connected to one end of another lead wire and another end of which is connected to an inner circumferential end of another coil conductor, the bridge conductor layer being formed between two coil conductor layers with an insulation film interposed between the bridge conductor layer and each of the coil conductor layers.
    • 本发明涉及具有用于将它们安装在印刷电路板或混合IC(HIC)上的安装表面的表面安装型线圈部件,并提供具有低直流电阻的低成本线圈部件。 共模滤波器包括桥式导体层,该桥式导体层的一端连接到引线的一端并且另一端连接到线圈导体的内圆周端,桥式导体的一端 其连接到另一个引线的一端,另一端连接到另一个线圈导体的内圆周端,桥导体层形成在两个线圈导体层之间,绝缘膜置于桥导体层和每个导体层之间 的线圈导体层。
    • 9. 发明授权
    • Electronic component and manufacturing method of electronic component
    • 电子元件的电子元件及其制造方法
    • US08174349B2
    • 2012-05-08
    • US12621194
    • 2009-11-18
    • Makoto YoshidaHiroshi KamiyamaTomonaga Nishikawa
    • Makoto YoshidaHiroshi KamiyamaTomonaga Nishikawa
    • H01F5/00H01F27/28H01L21/66H01L23/12
    • H01F27/292H01F27/027H01F41/046H01G4/224H01G4/33Y10T29/4913
    • A manufacturing method of electronic components includes forming a first insulation layer on a substrate, forming a plurality of passive elements on the first insulation layer, forming a second insulation layer on the passive elements, forming a plurality of conductor layers electrically connected to the respective passive elements, on the outer side of the second insulation layer to be exposed to an upper surface of each electronic component, and forming grooves between the electronic components including the respective passive elements to expose side surfaces of each electronic component and parts of the conductor layers from the side surfaces of each electronic component. The manufacturing method further including plating a plurality of external electrodes on the respective conductor layers exposed to the upper surface and the side surfaces of each electronic component, and cutting the substrate to completely separate into individual electronic components.
    • 电子部件的制造方法包括在基板上形成第一绝缘层,在所述第一绝缘层上形成多个无源元件,在所述无源元件上形成第二绝缘层,形成与各自被动电连接的多个导体层 元件,在第二绝缘层的外侧暴露于每个电子部件的上表面,以及在包括各个无源元件的电子部件之间形成凹槽,以暴露每个电子部件的侧表面和导体层的部分 每个电子元件的侧面。 该制造方法还包括在暴露于每个电子部件的上表面和侧表面的各个导体层上电镀多个外部电极,并且将基板切割成完全分离为各个电子部件。
    • 10. 发明授权
    • Common mode choke coil and manufacturing method thereof
    • 共模扼流圈及其制造方法
    • US07646280B2
    • 2010-01-12
    • US12196464
    • 2008-08-22
    • Tomokazu ItoTomonaga Nishikawa
    • Tomokazu ItoTomonaga Nishikawa
    • H01F5/00
    • H01F17/0013H01F5/04H01F41/042H01F41/046H01F2017/0093Y10T29/4902
    • A common mode choke coil includes two extraction conductors formed on a resin insulating layer, and a concave portion is formed in the resin insulating layer in an area between a first portion covered with one of the extraction conductors and a second portion covered with the other extraction conductor. An upper resin insulating layer is embedded inside the concave portion. Accordingly, because the resin insulating layer is not flat in the portion where the extraction conductors are formed, a distance between the extraction conductors along the surface of the resin insulating layer increases. Therefore, a current path generated due to ion migration along the surface of the insulating layer is hardly formed, thereby enabling to obtain high withstand voltage, even if the distance between the extraction conductors is short.
    • 共模扼流线圈包括形成在树脂绝缘层上的两个引出导体,并且在树脂绝缘层之间的一个区域中形成凹部,该第一部分覆盖有一个引出导体,第二部分覆盖有另一个提取 导体。 上部树脂绝缘层嵌入凹部内。 因此,由于树脂绝缘层在形成提取导体的部分中不是平坦的,所以提取导体之间距树脂绝缘层表面的距离增加。 因此,由于沿着绝缘层的表面离子迁移而产生的电流路径几乎不形成,因此即使提取导体之间的距离短,也能获得高的耐受电压。