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    • 1. 发明授权
    • Split gradient amplifier for an MRI system
    • 用于MRI系统的分离梯度放大器
    • US5270657A
    • 1993-12-14
    • US965131
    • 1992-10-22
    • William F. WirthThomas G. McFarlandRobert M. VavrekPeter B. RoemerOtward M. MuellerJohn N. Park
    • William F. WirthThomas G. McFarlandRobert M. VavrekPeter B. RoemerOtward M. MuellerJohn N. Park
    • G01R33/385G01V3/00
    • G01R33/3852
    • A gradient amplifier for use in magnetic resonance imaging equipment employs a low voltage DC power supply connected in series between a pair of higher voltage DC power supplies, the latter supplies serving to provide increased power for rapid gradient switching and the former supply providing correction current to produce the desired voltage output. The high voltage DC power supplies preferably comprise multiple DC units which can be combined to provide finer steps of control prior to correction by the lower voltage supply. The low voltage DC power supply preferably comprise one or more linear amplifiers connected in series, or one or more switchmode amplifiers connected in series. The DC power supplies are controlled in an open loop manner from a gradient signal that designates the desired current for the gradient coil and the amplifiers are operated in a closed loop responding to to a feedback signal from the gradient coil.
    • 用于磁共振成像设备的梯度放大器采用串联连接在一对高压直流电源之间的低压直流电源,后者用于为快速梯度切换提供增加的功率,而前一个电源提供校正电流 产生所需的电压输出。 高压DC电源优选地包括多个DC单元,其可以组合以在由较低电压源进行校正之前提供更精细的控制步骤。 低压DC电源优选地包括串联连接的一个或多个线性放大器或串联连接的一个或多个开关模式放大器。 直流电源由开路环路控制,该梯度信号指定用于梯度线圈的期望电流,并且放大器响应于来自梯度线圈的反馈信号在闭环中工作。
    • 6. 发明授权
    • Resonant inverter with improved control
    • 谐振逆变器具有改进的控制
    • US4672528A
    • 1987-06-09
    • US866818
    • 1986-05-27
    • John N. ParkRobert L. Steigerwald
    • John N. ParkRobert L. Steigerwald
    • H02M3/337H02P13/20
    • H02M3/3376H02M2007/53878Y02B70/1433Y02B70/1441
    • A resonant inverter is operated in a manner to provide a substantially constant output voltage to a load. The inverter is controlled using either a frequency control mode or a phase shift control mode. In the frequency control mode, a constant output voltage is maintained through frequency variation of the rectangular wave signal applied to the resonant circuit of the inverter. In the phase shift control mode, constant output voltage is maintained by phase shifting one component signal of the rectangular wave signal relative to another component signal thereof while maintaining constant the frequency of both component signals. Mode switching occurs automatically at the extremities of the operating frequency range of controllable switch means in the resonant inverter.
    • 谐振逆变器以向负载提供基本恒定的输出电压的方式操作。 使用频率控制模式或相移控制模式控制变频器。 在频率控制模式中,通过施加到逆变器的谐振电路的矩形波信号的频率变化来保持恒定的输出电压。 在相移控制模式中,通过相对于其另一分量信号相移矩形波信号的一个分量信号并保持两个分量信号的频率恒定来维持恒定的输出电压。 在谐振逆变器的可控开关装置的工作频率范围的末端,自动切换模式。
    • 7. 发明授权
    • FET Motor drive system
    • FET电机驱动系统
    • US4347464A
    • 1982-08-31
    • US239724
    • 1981-03-02
    • John N. ParkRobert L. Steigerwald
    • John N. ParkRobert L. Steigerwald
    • H02K29/08
    • H02K29/08
    • A multipole permanent magnet rotor is positioned on a shaft and rotatably mounted in a multiphase stator having two windings per stator phase. A distributor comprising a pattern of conducting and non-conducting material is mounted to turn with the rotor shaft. Pickup "fingers" in contact with the distributor, gate appropriate FET's of the pairs of FET's associated with each stator phase in sequence, with timing dependent on the instantaneous shaft position, to generate a rotating flux field. A voltage across the windings provides the current for flux generation, and can be supplied by a full wave rectified single phase AC source. The speed of rotation of the motor can be controlled by varying the voltage supplied.
    • 多极永磁转子位于轴上并可旋转地安装在每个定子相中具有两个绕组的多相定子中。 包括导电材料和非导电材料的图案的分配器安装成与转子轴一起转动。 拾取“指”与分配器接触,按顺序选择与每个定子相位相关联的FET对,其中定时取决于瞬时轴位置,以产生旋转磁通场。 绕组两端的电压提供了用于产生磁通的电流,并且可以由全波整流的单相交流电源提供。 可以通过改变所提供的电压来控制电动机的旋转速度。