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    • 1. 发明授权
    • Multilayer common mode filter
    • 多层共模滤波器
    • US08466757B2
    • 2013-06-18
    • US12753462
    • 2010-04-02
    • Makoto YoshinoTakuo HattoriRyota Nakanishi
    • Makoto YoshinoTakuo HattoriRyota Nakanishi
    • H03H7/01H01F5/00H01F17/00
    • H03H7/09H03H2001/0085
    • A multilayer common mode filter is provided, which can inhibit cracks from occurring, while securing the magnetic coupling between coil conductors. Since magnetic layers are disposed in an inner region of spiral first and second coil conductors, the multilayer common mode filter can secure the magnetic coupling between the first and second coil conductors. In a columnar part including these magnetic layers, magnetic and nonmagnetic bodies are arranged alternately in the laminating direction, whereby the total volume of the magnetic layers in the inner region can be kept smaller than in the case where a magnetic layer penetrates through the inner region of the coil conductors. As a result, at the time of firing a matrix, the difference in the amount of shrinkage between the nonmagnetic and magnetic layers can be suppressed, so as to inhibit cracks from occurring at their interfaces.
    • 提供了多层共模滤波器,可以在确保线圈导体之间的磁耦合的同时,抑制裂纹发生。 由于磁性层设置在螺旋形的第一和第二线圈导体的内部区域中,多层共模滤波器可以确保第一和第二线圈导体之间的磁耦合。 在包括这些磁性层的柱状部分中,磁性和非磁性体在层叠方向上交替排列,由此内部区域中的磁性层的总体积可以比在磁性层穿过内部区域的情况下保持更小 的线圈导体。 结果,在烧成矩阵时,可以抑制非磁性层和磁性层之间的收缩量差异,从而抑制在其界面处发生裂纹。
    • 3. 发明申请
    • MULTILAYER COMMON MODE FILTER
    • 多层通用模式过滤器
    • US20100301966A1
    • 2010-12-02
    • US12753462
    • 2010-04-02
    • Makoto YOSHINOTakuo HattoriRyota Nakanishi
    • Makoto YOSHINOTakuo HattoriRyota Nakanishi
    • H03H7/09
    • H03H7/09H03H2001/0085
    • A multilayer common mode filter is provided, which can inhibit cracks from occurring, while securing the magnetic coupling between coil conductors.Since magnetic layers are disposed in an inner region of spiral first and second coil conductors, the multilayer common mode filter can secure the magnetic coupling between the first and second coil conductors. In a columnar part including these magnetic layers, magnetic and nonmagnetic bodies are arranged alternately in the laminating direction, whereby the total volume of the magnetic layers in the inner region can be kept smaller than in the case where a magnetic layer penetrates through the inner region of the coil conductors. As a result, at the time of firing a matrix, the difference in the amount of shrinkage between the nonmagnetic and magnetic layers can be suppressed, so as to inhibit cracks from occurring at their interfaces.
    • 提供了多层共模滤波器,可以在确保线圈导体之间的磁耦合的同时,抑制裂纹发生。 由于磁性层设置在螺旋形的第一和第二线圈导体的内部区域中,多层共模滤波器可以确保第一和第二线圈导体之间的磁耦合。 在包括这些磁性层的柱状部分中,磁性和非磁性体在层叠方向上交替排列,由此内部区域中的磁性层的总体积可以比在磁性层穿过内部区域的情况下保持更小 的线圈导体。 结果,在烧成矩阵时,可以抑制非磁性层和磁性层之间的收缩量差异,从而抑制在其界面处发生裂纹。