Q-FACTOR MEASUREMENT
    2.
    发明申请

    公开(公告)号:US20190109499A1

    公开(公告)日:2019-04-11

    申请号:US16154665

    申请日:2018-10-08

    Abstract: In accordance with some embodiments of the present invention, a method of determining a Q-factor in a transmit circuit with a resonant circuit includes setting a system voltage; performing a coarse scan to determine a course resonant frequency; performing a fine scan based on the course scan to determine a resonant frequency; performing a final measurement at the resonant frequency to determine an average system voltage and an average peak voltage of the resonant circuit; calculating a Q parameter from the average system voltage and the average peak voltage; and calculating the Q-factor from the Q parameter.

    Apparatus, system, and method for back-channel communication in an inductive wireless power transfer system

    公开(公告)号:US10355525B2

    公开(公告)日:2019-07-16

    申请号:US16024487

    申请日:2018-06-29

    Abstract: An inductive wireless power transfer device comprises a transmitter that comprises a transmit coil configured to generate a wireless power signal to a coupling region in response to an input voltage, and a modulator configured to modulate the wireless power signal and encode data with the wireless power signal to establish a back-channel communication link from the transmitter to a receiver. An inductive wireless power receiving device comprises a receiver that comprises a receive coil configured to generate a time varying signal in response to receiving a modulated wireless power signal from a transmitter in a coupling region, and a demodulator configured to demodulate the modulated wireless power signal from an established back-channel communication link from the transmitter to a receiver. Related inductive wireless power transfer systems and methods for back-channel communication from the transmitter to the receiver of an inductive wireless power transfer system are disclosed.

    APPARATUS, SYSTEM, AND METHOD FOR BACK-CHANNEL COMMUNICATION IN AN INDUCTIVE WIRELESS POWER TRANSFER SYSTEM
    5.
    发明申请
    APPARATUS, SYSTEM, AND METHOD FOR BACK-CHANNEL COMMUNICATION IN AN INDUCTIVE WIRELESS POWER TRANSFER SYSTEM 有权
    电感无线电力传输系统中后置通道的设备,系统及方法

    公开(公告)号:US20150115735A1

    公开(公告)日:2015-04-30

    申请号:US14594064

    申请日:2015-01-09

    Abstract: An inductive wireless power transfer device comprises a transmitter that comprises a transmit coil configured to generate a wireless power signal to a coupling region in response to an input voltage, and a modulator configured to modulate the wireless power signal and encode data with the wireless power signal to establish a back-channel communication link from the transmitter to a receiver. An inductive wireless power receiving device comprises a receiver that comprises a receive coil configured to generate a time varying signal in response to receiving a modulated wireless power signal from a transmitter in a coupling region, and a demodulator configured to demodulate the modulated wireless power signal from an established back-channel communication link from the transmitter to a receiver. Related inductive wireless power transfer systems and methods for back-channel communication from the transmitter to the receiver of an inductive wireless power transfer system are disclosed.

    Abstract translation: 感应无线电力传输装置包括发射机,发射机包括被配置为响应于输入电压而向耦合区域产生无线功率信号的发射线圈,以及配置成调制无线功率信号并用无线功率信号对数据进行编码的调制器 以建立从发射机到接收机的后向信道通信链路。 感应式无线电力接收装置包括:接收机,其包括接收线圈,其被配置为响应于从耦合区域中的发射机接收调制的无线电力信号而产生时变信号;以及解调器,被配置为解调来自 从发射机到接收机的建立的后向信道通信链路。 公开了相关的感应式无线电力传输系统和用于从感应无线电力传输系统的发射机到接收机的后向信道通信的方法。

    Q-factor measurement
    6.
    发明授权

    公开(公告)号:US10797535B2

    公开(公告)日:2020-10-06

    申请号:US16154665

    申请日:2018-10-08

    Abstract: In accordance with some embodiments of the present invention, a method of determining a Q-factor in a transmit circuit with a resonant circuit includes setting a system voltage; performing a coarse scan to determine a course resonant frequency; performing a fine scan based on the course scan to determine a resonant frequency; performing a final measurement at the resonant frequency to determine an average system voltage and an average peak voltage of the resonant circuit; calculating a Q parameter from the average system voltage and the average peak voltage; and calculating the Q-factor from the Q parameter.

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