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    • 5. 发明授权
    • Inductive toy vehicle
    • 感应玩具车
    • US08545284B2
    • 2013-10-01
    • US12622465
    • 2009-11-20
    • David W. BaarmanRichard B. BylsmaHai D. NguyenJoshua B. TaylorWilliam T. Stoner, Jr.
    • David W. BaarmanRichard B. BylsmaHai D. NguyenJoshua B. TaylorWilliam T. Stoner, Jr.
    • A63H18/00
    • A63H18/02A63H17/26A63H18/12A63H19/24A63H30/04
    • An inductively powered toy vehicle and an associated track with inductive charging segment. The vehicle may include a secondary coil, a drive motor, an electrical power storage device connected between said secondary coil and said drive motor, and a wireless communications unit. The charging segment may include a primary coil, a sense circuit operable to detect the presence of the vehicle based on a change in the detected impedance of the primary coil, and a power control unit operable to provide a time-varying current to the primary coil when the vehicle traverses the charging segment. The primary coil is positioned within the race track adjacent the track upper surface. The vehicle drive motor may be operable at first and second speed settings, and a remote control device can provide operating instructions to the vehicle wireless communications unit.
    • 一种感应动力玩具车和一个带有感应充电段的相关轨道。 车辆可以包括次级线圈,驱动电动机,连接在所述次级线圈和所述驱动电动机之间的电力存储装置,以及无线通信单元。 充电段可以包括初级线圈,感测电路,其可操作以基于检测到的初级线圈的阻抗的变化来检测车辆的存在;以及功率控制单元,其可操作以向初级线圈提供时变电流 当车辆穿过充电段时。 初级线圈位于轨道上表面附近的跑道内。 车辆驱动电动机可以在第一和第二速度设置下操作,并且遥控设备可以向车辆无线通信单元提供操作指令。
    • 8. 发明申请
    • POWER SUPPLY
    • 电源
    • US20120286571A1
    • 2012-11-15
    • US13524496
    • 2012-06-15
    • David W. BaarmanJoshua K. SchwanneckeJoshua B. TaylorJohn James LordWesley J. Bachman
    • David W. BaarmanJoshua K. SchwanneckeJoshua B. TaylorJohn James LordWesley J. Bachman
    • H02J3/00
    • H01F30/08H01F27/2804H01F27/2823H01F27/34H01F27/38H01F38/14H02M3/33523H02M3/3376Y02B70/1433Y10T307/25
    • A power supply to provide electrical power to one or more loads. The power supply may include a resonant air core transformer to provide an adjustable and adaptable source of power to electronic devices. The power supply may include isolated primary-side circuitry and secondary-side circuitry. The primary-side circuitry may include control circuitry that, among other things, provides drive waveforms for the primary-side switching circuitry. In embodiments configured to produce AC output, the secondary-side circuitry may also include switching circuitry. The primary-side control circuitry may provide drive waveforms for the secondary-side switching circuitry. The secondary-side circuitry may include measurement circuitry that measures the current and/or voltage of the output and provides those measurements to the control circuitry through isolation circuitry. The control circuitry may adjust the drive waveforms for the primary-side and/or secondary-side switching circuitry as a function of the measured values.
    • 用于向一个或多个负载提供电力的电源。 电源可以包括谐振空气芯变压器,以向电子设备提供可调节和适应的电力来源。 电源可以包括隔离的初级侧电路和次级侧电路。 初级侧电路可以包括控制电路,其特别是提供初级侧开关电路的驱动波形。 在被配置为产生AC输出的实施例中,次级侧电路还可以包括开关电路。 初级侧控制电路可以为次级侧开关电路提供驱动波形。 次级侧电路可以包括测量输出的电流和/或电压的测量电路,并通过隔离电路将这些测量值提供给控制电路。 控制电路可以根据测量值调整初级侧和/或次级侧开关电路的驱动波形。
    • 10. 发明申请
    • INDUCTIVE POWER SUPPLY WITH DEVICE IDENTIFICATION
    • 具有设备识别功能的感应电源
    • US20120104868A1
    • 2012-05-03
    • US13323126
    • 2011-12-12
    • David W. BaarmanScott A. Mollema
    • David W. BaarmanScott A. Mollema
    • H02J17/00
    • H02J50/12G01R31/40H02J5/005H02J7/025H02J17/00H02J50/90H04B5/0037
    • An inductive power supply system to identify remote devices using unique identification frequencies. The system can inductively provide power to a remote device at different frequencies, and can sense reflected impedance of the remote device. The system further includes a plurality of different remote devices, each having a unique resonance frequency. In operation, the AIPS is capable of identifying the type of remote device present in the inductive field by applying power to a remote device at a plurality of unique identification frequencies until the remote device establishes resonance in response to one of the identification frequencies. The AIPS can recognize when resonance has been established by evaluating sensor data, which is representative of the reflected impedance of the remote device. The AIPS may pull operating parameters for the remove device from memory to ensure efficient operation and to assist in recognizing fault conditions.
    • 感应电源系统,用于识别使用独特识别频率的远程设备。 该系统可以以不同的频率感应地向远程设备提供电力,并且可以感测远程设备的反射阻抗。 该系统还包括多个不同的远程设备,每个具有唯一的共振频率。 在操作中,AIPS能够通过以多个唯一的识别频率向远程设备施加电力来识别存在于感应场中的远程设备的类型,直到远程设备响应于一个识别频率来建立共振。 当通过评估代表远程设备的反射阻抗的传感器数据建立共振时,AIPS可以识别。 AIPS可以从存储器中提取去除设备的操作参数,以确保有效的操作并帮助识别故障状况。