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    • 113. 发明授权
    • Coupled inductor with improved leakage inductance control
    • 耦合电感具有改进的漏电感控制
    • US09019063B2
    • 2015-04-28
    • US13567732
    • 2012-08-06
    • Alexandr Ikriannikov
    • Alexandr Ikriannikov
    • H01F27/24H01F3/10H01F30/06H02M3/158H01F3/14H01F27/28H01F38/00
    • H01F3/10H01F3/14H01F27/2847H01F30/06H01F2038/006H02M3/158H02M3/1584
    • An M-winding coupled inductor includes a first end magnetic element, a second end magnetic element, M connecting magnetic elements, and M windings. M is an integer greater than one. Each connecting magnetic element is disposed between and connects the first and second end magnetic elements. Each winding is wound at least partially around a respective one of the M connecting magnetic elements. The coupled inductor further includes at least one top magnetic element adjacent to and extending at least partially over at least two of the M connecting magnetic elements to provide a magnetic flux path between the first and second end magnetic elements. The inductor may be included in an M-phase power supply, and the power supply may at least partially power a computer processor.
    • M形绕组耦合电感器包括第一端磁性元件,第二端磁性元件,M连接磁性元件和M绕组。 M是大于1的整数。 每个连接的磁性元件设置在第一和第二端部的磁性元件之间并连接。 每个绕组至少部分地围绕M个连接磁性元件中的相应一个缠绕。 所述耦合电感器还包括至少一个顶部磁性元件,所述至少一个顶部磁性元件邻近并延伸至少两个所述M个连接磁性元件中的至少两个,以在所述第一和第二端部磁性元件之间提供磁通量。 电感器可以包括在M相电源中,并且电源可以至少部分地为计算机处理器供电。
    • 114. 发明申请
    • DIFFERENTIAL MODE AND COMMON MODE CHOKE
    • 差分模式和通用模式选择
    • US20140286068A1
    • 2014-09-25
    • US14217697
    • 2014-03-18
    • Schneider Toshiba Inverter Europe SAS
    • Yves-Laurent ALLAERTCyrille PLANQUE
    • H01F30/06H02M7/537
    • H01F30/06H01F3/14H01F27/24H01F37/00H01F2017/0093H01F2038/426H02M5/45H02M7/537
    • The invention relates to a differential mode and common mode choke comprising: a ferromagnetic core comprising three branches (1, 2, 3) extending between a bottom part (5) and a top part (4), a first coil (b1) wound around the first lateral branch (1), a second coil (b3) wound around the second lateral branch (3), the first lateral branch (1) being separated from the top part (4) by a first air gap (e1) and from the bottom part (5) by a second air gap (e10), the second lateral branch (3) being separated from the top part (4) by a first air gap (e3) and from the bottom part (5) by a second air gap (e30), the central branch (2) being separated from the top part (4) by a first air gap (e2) and from the bottom part (5) by a second air gap (e20).
    • 本发明涉及一种差模和共模扼流圈,包括:铁磁芯,包括在底部(5)和顶部(4)之间延伸的三个分支(1,2,3),缠绕在第一线圈(b1)上的第一线圈 所述第一横向分支(1),围绕所述第二侧向分支(3)缠绕的第二线圈(b3),所述第一侧向分支(1)通过第一气隙(e1)与所述顶部部分(4)分离, 所述底部部分(5)通过第二气隙(e10),所述第二横向分支(3)通过第一空气间隙(e3)与所述顶部部分(4)分离,并且从所述底部部分(5) 空气间隙(e30),中央分支(2)通过第一气隙(e2)与顶部部分(4)分离,并且从底部部分(5)通过第二气隙(e20)分离。
    • 115. 发明授权
    • Signal processing apparatus
    • 信号处理装置
    • US08629737B2
    • 2014-01-14
    • US13544444
    • 2012-07-09
    • Kun-Yin WangTao-Yao ChangChorng-Kuang WangShen-Iuan Liu
    • Kun-Yin WangTao-Yao ChangChorng-Kuang WangShen-Iuan Liu
    • H01P5/12H01F30/06
    • G06G7/04H03F3/602
    • The signal processing apparatus contains a first signal transforming circuit and a second signal transforming circuit. The first signal transforming circuit includes four first coupled lines and two second coupled lines, wherein two ends of each first coupled line are configured to carry a first pair of differential signals respectively, each second coupled line is magnetically coupled to two of the first coupled lines in parallel and comprises two signal ports, to which the two ends of each of the magnetically-coupled first coupled lines are placed symmetrically for transferring a second pair of differential signals. The second signal transforming circuit is configured to convert between the second pairs of differential signals at the signal ports and a third pair of differential signals at connecting ports of the second signal transforming circuit.
    • 信号处理装置包含第一信号变换电路和第二信号变换电路。 第一信号变换电路包括四个第一耦合线和两个第二耦合线,其中每个第一耦合线的两端被配置为分别承载第一对差分信号,每个第二耦合线被磁耦合到两个第一耦合线 并联并且包括两个信号端口,每个磁耦合的第一耦合线的两端对称地放置在其上以传送第二对差分信号。 第二信号变换电路被配置为在信号端口处的第二对差分信号和第二信号变换电路的连接端口处的第三对差分信号之间进行转换。
    • 116. 发明申请
    • REACTOR
    • 反应堆
    • US20130099887A1
    • 2013-04-25
    • US13806406
    • 2010-06-22
    • Shinichiro Yamamoto
    • Shinichiro Yamamoto
    • H01F30/06
    • H01F30/06H01F3/14H01F27/2804Y10T29/4902Y10T29/49073
    • Provided are a reactor which can perform step-up/step-down operations and soft switching with a small size and a smaller leakage inductance, and a method of adjusting a leakage inductance of the reactor. A reactor 1A includes a magnetic core 10A having a pair of inner core portions and forming a closed magnetic path, a main coil 11A having main coil elements 11a and 11b, and a sub-coil 12A having sub-coil elements 12a and 12b. The coil elements 11a and 12a are concentrically layered over one of the inner coil portions, and the coil elements 11b and 12b are concentrically layered over the other inner coil portion. One end portion of a wire 11w of the main coil 11A and one end portion of a wire 12w of the sub-coil 12A are joined to each other. A spacing between adjacent turns constituting the sub-coil element 12a (12b) is wider than that between adjacent turns constituting the main coil element 11a (11b). Thus, the reactor 1A has a smaller leakage inductance.
    • 提供一种能够以小尺寸和较小的漏电感执行升压/降压操作和软开关的电抗器,以及调节反应器的漏电感的方法。 电抗器1A包括具有一对内芯部并形成闭合磁路的磁芯10A,具有主线圈元件11a和11b的主线圈11A和具有子线圈元件12a和12b的子线圈12A。 线圈元件11a和12a同心地层叠在一个内部线圈部分上,线圈元件11b和12b同心地层叠在另一个内部线圈部分上。 主线圈11A的线11w的一端部和子线圈12A的线12w的一端部彼此接合。 构成副线圈元件12a(12b)的相邻匝之间的间隔比构成主线圈元件11a(11b)的相邻匝之间的间隔宽。 因此,电抗器1A具有较小的漏电感。
    • 117. 发明申请
    • POWER TRANSFER DEVICE
    • 电力传输设备
    • US20100328006A1
    • 2010-12-30
    • US12809085
    • 2008-12-26
    • Etienne Nicolaas Kathalijntje Paulus Marie Eberson
    • Etienne Nicolaas Kathalijntje Paulus Marie Eberson
    • H01F30/06
    • H01F38/14H01F27/325H01F30/06
    • This invention relates to a power transfer device via electromagnetic interaction. this invention proposes a power transfer device, comprising: a primary coil for transferring a power, including a first primary coil and a second primary coil; a secondary coil for transferring the power with the primary coil via electromagnetic interaction; wherein the secondary coil is positioned between the first primary coil and the second primary coil, the first and the second primary coil being configured to render the directions of the magnet fields they induce across the secondary coil consistent. With the specific association and positioning of the primary coil and the secondary coil, the power can be transferred between the primary coil and the secondary coil effectively; therefore, the size of the transfer device can be reduced significantly. This invention can be used for charging device, e.g. components of lighting products, electrical charging device, etc.
    • 本发明涉及通过电磁相互作用的功率传递装置。 本发明提出了一种功率传递装置,包括:用于传送功率的初级线圈,包括第一初级线圈和第二初级线圈; 用于通过电磁相互作用与初级线圈传输电力的次级线圈; 其中所述次级线圈位于所述第一初级线圈和所述第二初级线圈之间,所述第一和第二初级线圈被配置为使得它们在次级线圈上引起的磁场的方向一致。 通过初级线圈和次级线圈的特定关联和定位,能够有效地在初级线圈和次级线圈之间传递功率; 因此,可以显着地降低转印装置的尺寸。 本发明可以用于充电装置,例如, 照明产品组件,充电装置等