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    • 21. 发明授权
    • Inductor
    • 电感器
    • US08416050B2
    • 2013-04-09
    • US12929686
    • 2011-02-08
    • Kazuaki Mino
    • Kazuaki Mino
    • H01F27/28H01F21/02H01F27/29H01F27/24
    • H01F17/06
    • Two conducting wires are used in one embodiment of an inductor. Opposite ends of each of the conducting wires are connected to leader lines (terminals) shared by the conducting wires. Each of the conducting wires is wound to make half a round of an annular or ring-like magnetic substance. One of the conducting wires is wound around a lower half area of the magnetic substance to form one winding while the other conducting wire is wound around an upper half area of the magnetic substance to form another winding. In this manner, the distance between the leader lines can be increased to eliminate parasitic capacitance between the leader lines. The magnetic fluxes generated by current flowing in the two windings are in the same direction. Thus, it is possible to provide an inductor whose total parasitic capacitance is reduced. In other embodiments, additional conducting wires are used.
    • 在电感器的一个实施例中使用两根导线。 每个导线的相对端连接到由导线共享的引出线(端子)。 每个导线被卷绕以制造半环形或环状磁性物质。 一根导线缠绕在磁性物质的下半部分上,形成一个绕组,而另一个导线绕在磁性物质的上半部分上形成另一个绕组。 以这种方式,可以增加引出线之间的距离以消除引线之间的寄生电容。 在两个绕组中流动的电流产生的磁通量是相同的方向。 因此,可以提供总寄生电容减小的电感器。 在其他实施例中,使用附加的导线。
    • 22. 发明申请
    • Inductor
    • 电感器
    • US20110199175A1
    • 2011-08-18
    • US12929686
    • 2011-02-08
    • Kazuaki Mino
    • Kazuaki Mino
    • H01F27/28
    • H01F17/06
    • Two conducting wires are used in one embodiment of an inductor. Opposite ends of each of the conducting wires are connected to leader lines (terminals) shared by the conducting wires. Each of the conducting wires is wound to make half a round of an annular or ring-like magnetic substance. One of the conducting wires is wound around a lower half area of the magnetic substance to form one winding while the other conducting wire is wound around an upper half area of the magnetic substance to form another winding. In this manner, the distance between the leader lines can be increased to eliminate parasitic capacitance between the leader lines. The magnetic fluxes generated by current flowing in the two windings are in the same direction. Thus, it is possible to provide an inductor whose total parasitic capacitance is reduced. In other embodiments, additional conducting wires are used.
    • 在电感器的一个实施例中使用两根导线。 每个导线的相对端连接到由导线共享的引出线(端子)。 每个导线被卷绕以制造半环形或环状磁性物质。 一根导线缠绕在磁性物质的下半部分上,形成一个绕组,而另一个导线绕在磁性物质的上半部分上形成另一个绕组。 以这种方式,可以增加引出线之间的距离以消除引线之间的寄生电容。 在两个绕组中流动的电流产生的磁通量是相同的方向。 因此,可以提供总寄生电容减小的电感器。 在其他实施例中,使用附加的导线。
    • 23. 发明授权
    • Integrated structure of passive elements in LLC resonance converter realized by flexible circuit boards
    • 由柔性电路板实现的LLC谐振转换器中的无源元件的集成结构
    • US07671713B2
    • 2010-03-02
    • US12068242
    • 2008-02-04
    • Dehong XuYanjun ZhangYi ChenKazuaki Mino
    • Dehong XuYanjun ZhangYi ChenKazuaki Mino
    • H01F27/30H01F21/06H01F21/02H01F27/28H01F27/29H01F5/00H01F17/04
    • H01F27/2847H01F27/323H01F27/38H01F2027/2857H01F2027/2861H02M7/003
    • An integrated structure of passive elements in an LLC resonance converter realized by flexible circuit boards includes a closed magnetic circuit formed by first and second magnetic cores, a tubular, double-sided, flexible circuit board, tubular magnetic-material layer and tubular, single-sided, flexible circuit board. The single-sided circuit board is coaxially sleeved in turn from inside outwards on a magnetic core column of the closed magnetic circuit. The tubular, double-sided, circuit board is a laminated plate material formed in turn of a first insulating layer, first copper foil, insulating medium layer, second copper foil and second insulating layer. The tubular, single-sided, circuit board is a laminated plate material formed in turn of a third insulating layer, third copper foil and fourth insulating layer. The integration of a resonance capacitor, resonance inductor, shunt inductor and transformer in a LLC resonance converter is realized by using these flexible circuit boards.
    • 由柔性电路板实现的LLC谐振转换器中的无源元件的集成结构包括由第一和第二磁芯形成的闭合磁路,管状,双面,柔性电路板,管状磁性材料层和管状, 双面,柔性电路板。 单面电路板在闭合磁路的磁芯柱上从内向外同轴地套管。 管状双面电路板是依次形成第一绝缘层,第一铜箔,绝缘介质层,第二铜箔和第二绝缘层的叠层板材料。 管状单面电路板是依次形成第三绝缘层,第三铜箔和第四绝缘层的叠层板材料。 通过使用这些柔性电路板,实现了谐振电容器,谐振电感器,并联电感器和变压器在LLC谐振转换器中的集成。
    • 25. 发明申请
    • AC to DC converter circuit
    • 交直流转换电路
    • US20070069581A1
    • 2007-03-29
    • US11520683
    • 2006-09-14
    • Kazuaki Mino
    • Kazuaki Mino
    • H02J1/08
    • H02M7/217H02M1/42H02M2001/009Y02B70/12Y10T307/258Y10T307/406
    • An AC to DC converter circuit includes a main circuit including a first circuit and a second circuit connected to an AC power supply in parallel to each other, the first circuit including diodes and a switching device, the second circuit including diodes and a switching device. The switching devices are controlled to be ON and OFF corresponding to the input voltage polarity discriminated with an input voltage polarity discriminator such that two DC outputs are obtained from one AC power supply. The AC to DC converter circuit reduces the semiconductor devices, through which a current flows, facilitates reducing the losses caused therein, improving the conversion efficiency thereof, and reducing the size, weight and manufacturing costs of the cooling means thereof.
    • AC至DC转换器电路包括:主电路,包括第一电路和与彼此并联的AC电源连接的第二电路,所述第一电路包括二极管和开关器件,所述第二电路包括二极管和开关器件。 开关装置被控制为与由输入电压极性鉴别器鉴别的输入电压极性相对应的ON和OFF,使得从一个AC电源获得两个DC输出。 AC到DC转换器电路减少了电流流过的半导体器件,有助于减少其中引起的损耗,提高其转换效率,并且减小其冷却装置的尺寸,重量和制造成本。