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    • 5. 发明授权
    • Thin-film magnetic device, and electronic component module having same
    • 薄膜磁性装置和具有该薄膜磁性装置的电子部件模块
    • US07864017B2
    • 2011-01-04
    • US12033422
    • 2008-02-19
    • Toshiyasu FujiwaraKyung-Ku Choi
    • Toshiyasu FujiwaraKyung-Ku Choi
    • H01F5/00
    • H01F17/0033H01F17/0013H01F27/346H01F2017/002H01F2017/0066H01F2017/008H01L2924/0002H01L2924/00
    • It is an object of the present invention to provide an electronic component module with which circuit malfunction can be adequately prevented. There are provided a base having wiring, and a thin-film magnetic device provided on one side of the base. The thin-film magnetic device comprises a first magnetic film disposed facing the base, a second magnetic film disposed on the opposite side of the first magnetic film with respect to the base, and a thin-film coil wound so as to encircle the second magnetic film a plurality of times. The thin-film coil has a plurality of first conductor pattern components provided between the first and second magnetic films, a plurality of second conductor pattern components provided on the opposite side of the second magnetic film with respect to the first magnetic film, and a plurality of connecting conductors that connect the first conductor pattern components and the second conductor pattern components in series. The relative magnetic permeability of the second magnetic film is greater than the relative magnetic permeability of the first magnetic film.
    • 本发明的目的是提供一种可以充分防止电路故障的电子部件模块。 提供了具有布线的基座和设置在基座一侧的薄膜磁性装置。 所述薄膜磁性装置包括面向所述基座的第一磁性膜,相对于所述基底设置在所述第一磁性膜的相反侧的第二磁性膜,以及环绕所述第二磁性体的环绕所述第二磁性膜的薄膜线圈 多次拍摄。 所述薄膜线圈具有设置在所述第一和第二磁性膜之间的多个第一导体图案部件,设置在所述第二磁性膜相对于所述第一磁性膜的相反侧的多个第二导体图案部件,以及多个 连接导体,其连接第一导体图案部件和第二导体图案部件。 第二磁性膜的相对导磁率大于第一磁性膜的相对导磁率。
    • 9. 发明申请
    • Thin film device
    • 薄膜装置
    • US20060220776A1
    • 2006-10-05
    • US11389237
    • 2006-03-27
    • Toshiyasu Fujiwara
    • Toshiyasu Fujiwara
    • H01F5/00
    • H01F17/0006
    • The present invention provides a thin film device in which parasitic capacitance can be reduced as much as possible. In the case where a coil is provided so as to be insulated between an upper magnetic film and a lower magnetic film, the coil is constructed so that the cross section of the coil has the minimum width at its edges closest to the upper and lower magnetic films. Parasitic capacitance generated between the coil and the lower magnetic film and parasitic capacitance generated between the coil and the upper magnetic film are reduced and, in addition, parasitic capacitance generated between turns of the coil is also reduced.
    • 本发明提供了尽可能地减少寄生电容的薄膜器件。 在线圈被设置为在上部磁性膜和下部磁性膜之间绝缘的情况下,线圈被构造成使得线圈的截面在其最接近上部和下部磁体的边缘处具有最小宽度 电影。 在线圈和下部磁性膜之间产生的寄生电容和在线圈与上部磁性膜之间产生的寄生电容减少,此外,在线圈的匝间产生的寄生电容也减小。
    • 10. 发明授权
    • Coupler
    • 耦合器
    • US08525614B2
    • 2013-09-03
    • US12954783
    • 2010-11-26
    • Toshiyasu FujiwaraTakeshi Suga
    • Toshiyasu FujiwaraTakeshi Suga
    • H01P5/12H01P5/00
    • H01P5/16H01P5/184
    • According to an embodiment of the invention, a coupler has a first line that includes a coiled main line and a second line that includes a coiled secondary line arranged to oppose the main line via an insulating layer. The coupler also has a plurality of vias that connect the separate portions of the first line arranged in the different layers and connect the separate portions of the second line arranged in the different layers, and a plurality of terminals each connected to an end of the first and second lines. The vias include an extension via connected to the main line or the secondary line that extends through the insulating layer, and the extension via wires the first line and the second line to the same side of the insulating layer.
    • 根据本发明的实施例,耦合器具有包括线圈主线的第一线和包括经由绝缘层布置成与主线对置的线圈次级线的第二线。 耦合器还具有连接布置在不同层中的第一线的分离部分并且连接布置在不同层中的第二线的分离部分的多个通孔,以及多个端子,每个端子连接到第一 和第二行。 通孔包括连接到延伸穿过绝缘层的主线或次级线的延伸通孔,并且将第一线和第二线的导线延伸到绝缘层的同一侧。