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    • 9. 发明申请
    • INDUCTIVE STRUCTURES WITH IMPROVED COMMON MODE TRANSIENT IMMUNITY
    • 具有改进的共同模式瞬态免疫的电感结构
    • US20150004907A1
    • 2015-01-01
    • US14311354
    • 2014-06-23
    • Texas Instruments Incorporated
    • Rajaram SubramoniamGianpaolo LisiSwaminathan SankaranBradley Allen KramerGerard Socci
    • H04B5/00H04B5/02
    • H04B5/0087H04B5/0031H04B5/0037
    • In a first inductive structure, a first data coil includes: a first portion for conducting a first common mode current in a first direction; and a second portion for conducting a second common mode current in a second direction opposite the first direction. The first and second portions of the first data coil are connected at a first node. In a second inductive structure, a second data coil includes: a first portion for conducting a third common mode current in the first direction; and a second portion for conducting a fourth common mode current in the second direction. The first and second portions of the second data coil are connected at a second node galvanically isolated from the first node. The first, second, third and fourth common mode currents are induced by a common mode transient.
    • 在第一电感结构中,第一数据线圈包括:用于在第一方向上传导第一共模电流的第一部分; 以及用于在与第一方向相反的第二方向上传导第二共模电流的第二部分。 第一数据线圈的第一和第二部分在第一节点连接。 在第二感应结构中,第二数据线圈包括:用于在第一方向上传导第三共模电流的第一部分; 以及用于在第二方向上传导第四共模电流的第二部分。 第二数据线圈的第一和第二部分在与第一节点电隔离的第二节点处连接。 第一,第二,第三和第四共模电流由共模瞬变引起。
    • 10. 发明申请
    • CIRCUIT AND METHOD FOR EXTRACTING AMPLITUDE AND PHASE INFORMATION IN A RESONANT SYSTEM
    • 在谐振系统中提取振幅和相位信息的电路和方法
    • US20140319921A1
    • 2014-10-30
    • US14247617
    • 2014-04-08
    • Texas Instruments Incorporated
    • Gianpaolo LisiGerard SocciAli DjabbariRajaram SubramonianKosha Mahmodieh
    • G05F1/12H01F38/14
    • G05F1/12H02M7/53803Y02B70/1441
    • A resonant power transfer system includes resonant circuitry (26) including an inductor coil (59) and a resonant capacitor (51) coupled to a first terminal (27) of the inductor coil, wherein the inductor coil and the resonant capacitor resonate to produce an excitation signal (IS) and a state variable signal (VCS1). Sub-sampling circuitry (30) samples first and second points of the state variable signal at a rate which is substantially less than the RF frequency of the state variable signal. Information recovery circuitry (32) produces a state variable parameter signal representing a parameter (A) of the state variable signal from information in the first and second sampled points. Control circuitry (38) produces a first control signal in response to the state variable parameter signal. Detection and optimization circuitry (41) produces a second control signal in response to the state variable parameter signal. Voltage regulation circuitry (45) produces a regulated supply voltage in response to the first control signal. Switching inverter circuitry produces the excitation signal in response to the regulated supply voltage and the second control signal.
    • 谐振功率传输系统包括谐振电路(26),其包括耦合到电感线圈的第一端子(27)的电感器线圈(59)和谐振电容器(51),其中电感线圈和谐振电容器谐振以产生 激励信号(IS)和状态变量信号(VCS1)。 子采样电路(30)以基本上小于状态变量信号的RF频率的速率对状态变量信号的第一和第二点进行采样。 信息恢复电路(32)根据第一和第二采样点中的信息产生状态变量参数信号,该状态变量参数信号表示状态变量信号的参数(A)。 控制电路(38)响应于状态可变参数信号产生第一控制信号。 检测和优化电路(41)响应于状态可变参数信号产生第二控制信号。 电压调节电路(45)响应于第一控制信号产生稳定的电源电压。 开关逆变器电路响应于稳定的电源电压和第二控制信号产生激励信号。