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    • 1. 发明授权
    • High power, high frequency transmission cable breach detection
    • 大功率,高频传输电缆断线检测
    • US5591937A
    • 1997-01-07
    • US348664
    • 1994-12-02
    • George R. WoodyStephen J. Hulsey
    • George R. WoodyStephen J. Hulsey
    • H01B7/42H02G3/03H02G15/28H01B7/34
    • H02G3/03H01B7/423H02G15/28
    • A transmission cable system that incorporates cooling channels that encircles electrical conductors with coolant. The transmission cable system also provides for breach or leak detection. More specifically, the transmission cable system maybe used with an inductive charging system that transfers electric power from a power source to batteries of an electric vehicle. The cable system includes a cooling system for storing, cooling, and pumping coolant, and a pressure sensitive switch for determining the pressure in the cooling system and for providing an output signal indicative of a drop in sensed pressure. A controller is coupled to the pressure sensitive switch that is responsive to the output signal from the switch for shutting down the inductive charging system in the event of a drop in sensed pressure. The transmission cable is electrically coupled between the power source and the electric vehicle for coupling electrical power to the batteries. The transmission cable is also coupled between the cooling system and the inductive charging system and includes a plurality of coolant channels that permit the flow of coolant between the cooling system and the inductive charging system that cools the transmission cable when transferring electrical power.
    • 传输电缆系统,其中包含冷却通道,冷却通道围绕电导体与冷却剂。 传输电缆系统还提供泄漏或泄漏检测。 更具体地,传输电缆系统可以与将电力从电源传输到电动车辆的电池的感应充电系统一起使用。 电缆系统包括用于存储,冷却和泵送冷却剂的冷却系统以及用于确定冷却系统中的压力并用于提供指示感测压力下降的输出信号的压力敏感开关。 控制器耦合到压力敏感开关,其响应于来自开关的输出信号,以在感测压力下降的情况下关闭感应充电系统。 传输电缆电耦合在电源和电动车辆之间,用于将电力耦合到电池。 传输电缆还耦合在冷却系统和感应充电系统之间,并且包括多个冷却剂通道,其允许在冷却系统和感应充电系统之间的冷却剂流动时,其在传送电力时冷却传输电缆。
    • 3. 发明授权
    • Two-phase transformer-coupled boost converter
    • 两相变压器耦合升压转换器
    • US08975884B2
    • 2015-03-10
    • US12413110
    • 2009-03-27
    • Stephen J. HulseyStephen Raiser
    • Stephen J. HulseyStephen Raiser
    • G05F1/40H02M3/18H02M3/158
    • H02M3/1584
    • Various embodiments provide two-phase boost converters. One two-phase boost converter includes a node configured to be coupled to an input voltage and a transformer coupled to the node. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding. Another two-phase boost converter includes an inductor configured to be coupled to an input voltage, a node coupled to the inductor, and a transformer coupled to the node. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding. Yet another two-phase boost converter includes a transformer coupled to first and second external inductors. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding.
    • 各种实施例提供两相升压转换器。 一个双相升压转换器包括被配置为耦合到输入电压的节点和耦合到节点的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。 另一个两相升压转换器包括被配置为耦合到输入电压的电感器,耦合到电感器的节点以及耦合到该节点的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。 另一个两相升压转换器包括耦合到第一和第二外部电感器的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。
    • 4. 发明授权
    • Voltage boost circuit for a high voltage converter
    • 高压变换器的升压电路
    • US5982644A
    • 1999-11-09
    • US212665
    • 1998-12-16
    • Stephen J. HulseyJames Lee
    • Stephen J. HulseyJames Lee
    • H02M3/337H02M7/10H02M3/335H02M7/538
    • H02M3/3374H02M7/10
    • A current controlled voltage boost circuit for a high voltage converter. The voltage boost circuit includes a boost converter connected to receive an input voltage and a control signal, and output an increased output voltage to the high voltage converter as a function of a control signal. The circuit further includes a current sensing circuit providing an output voltage proportional to the sensed input current to the high voltage converter. The output voltage from the current sense circuit varies a reference voltage that is compared to the boost converter output voltage by an error amplifier. The error amplifier, in turn, outputs a control signal to the boost converter such that the control signal controls the boost converter output voltage as a function of the input current to the high voltage converter.
    • 一种用于高电压转换器的电流控制升压电路。 升压电路包括连接以接收输入电压和控制信号的升压转换器,并且作为控制信号的函数向高压转换器输出增加的输出电压。 电路还包括电流感测电路,其提供与感测的输入电流成比例的输出电压到高压转换器。 来自电流检测电路的输出电压通过误差放大器改变与升压转换器输出电压相比较的参考电压。 误差放大器又将控制信号输出到升压转换器,使得控制信号控制升压转换器输出电压作为到高电压转换器的输入电流的函数。
    • 6. 发明申请
    • TWO-PHASE TRANSFORMER-COUPLED BOOST CONVERTER
    • 两相变压器耦合升压转换器
    • US20100244792A1
    • 2010-09-30
    • US12413110
    • 2009-03-27
    • STEPHEN J. HULSEYSTEPHEN RAISER
    • STEPHEN J. HULSEYSTEPHEN RAISER
    • G05F1/10
    • H02M3/1584
    • Various embodiments provide two-phase boost converters. One two-phase boost converter includes a node configured to be coupled to an input voltage and a transformer coupled to the node. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding. Another two-phase boost converter includes an inductor configured to be coupled to an input voltage, a node coupled to the inductor, and a transformer coupled to the node. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding. Yet another two-phase boost converter includes a transformer coupled to first and second external inductors. The transformer includes primary and secondary windings, an inductor coupled in series with the primary winding, and an inductor coupled in series with the secondary winding.
    • 各种实施例提供两相升压转换器。 一个双相升压转换器包括被配置为耦合到输入电压的节点和耦合到节点的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。 另一个两相升压转换器包括被配置为耦合到输入电压的电感器,耦合到电感器的节点以及耦合到该节点的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。 另一个两相升压转换器包括耦合到第一和第二外部电感器的变压器。 变压器包括初级和次级绕组,与初级绕组串联耦合的电感器和与次级绕组串联耦合的电感器。
    • 7. 发明授权
    • Contactless battery charging system with high voltage cable
    • 带高压电缆的非接触式电池充电系统
    • US5568036A
    • 1996-10-22
    • US348663
    • 1994-12-02
    • Stephen J. HulseyGeorge R. WoodyRay G. Radys
    • Stephen J. HulseyGeorge R. WoodyRay G. Radys
    • H02J7/00B60L11/18H01M10/44H02J7/02H02J17/00H01M10/46
    • B60L11/182H02J7/025B60L2270/147H01F2019/085Y02T10/7005Y02T10/7072Y02T90/122Y02T90/14
    • A high voltage cable system for use with a contactless battery charging system that charge propulsion batteries of an electric vehicle, and the like. The contactless battery charging system includes a primary power converter coupled to a power source and a secondary power converter located on the electric vehicle that is coupled propulsion batteries of the electric vehicle. The primary and secondary power converters are connected by way of a coaxial power cable. An isolation transformer is coupled between the output of the primary power converter and the coaxial power cable. This transformer allows one of the two outputs of the primary power converter to be connected to ground potential. The isolation transformer improves the safety and reduces electromagnetic interference (EMI) when coupling power to the secondary power converter. The isolation transformer 30 allows for the use of a stepped-up voltage level to be used in the primary power converter, which reduces the amount of current in the coaxial power cable required to deliver power to the secondary converter. This allows a much higher charge power to be delivered to the electric vehicle using a reasonably sized coaxial power cable.
    • 用于对电动车辆的推进电池充电的非接触式电池充电系统等的高压电缆系统。 非接触式电池充电系统包括耦合到电源的主电力转换器和位于电动车辆上的辅助电力转换器,该电动车辆是电动车辆的推进电池。 主电源和次级电源转换器通过同轴电缆连接。 隔离变压器耦合在主电力转换器的输出和同轴电力电缆之间。 该变压器允许主电源转换器的两个输出之一连接到地电位。 当将二次电源转换器的电源耦合时,隔离变压器可提高安全性并降低电磁干扰(EMI)。 隔离变压器30允许在主电力转换器中使用升压电压电平,这降低了向次级转换器递送电力所需的同轴电力电缆中的电流量。 这允许使用相当大的同轴电力电缆将高得多的充电功率输送到电动车辆。
    • 8. 发明授权
    • Electric vehicle inductive coupling charge port
    • 电动汽车电感耦合充电端口
    • US5264776A
    • 1993-11-23
    • US906599
    • 1992-06-30
    • Stephen J. Hulsey
    • Stephen J. Hulsey
    • H01F38/14H02J7/02H02J7/00
    • B60L11/182B60L3/0069H01F38/14H02J7/025B60L2210/30Y02T10/7005Y02T10/7072Y02T10/7241Y02T90/122Y02T90/127Y02T90/14Y10S439/95
    • An inductive charge port for an electric vehicle in which part of the inductive coupling transformer core is attached to the inside of an access door on the vehicle, and wherein only a primary coil assembly is inserted into the charging device when charging the vehicle. The charge port includes a primary coil assembly having a primary winding that is coupled by way of an electrical cable to a power source, and a secondary coil assembly disposed in the vehicle. A housing in the vehicle has the secondary coil assembly disposed therein. The secondary coil assembly includes a transformer core having a first portion disposed in the housing. A secondary winding is disposed in a cavity in the first portion of the transformer core which receives the primary winding therein. A hinged access door has a compressible, resilient member disposed on its inner wall and a second portion of the transformer core is secured to the compressible member. The second portion of the transformer core forms a lid or cap that mates with the first portion to form a complete transformer core. The mating first and second portions tightly secure the primary winding in the cavity when the door is closed. The secondary winding is coupled by way of an electrical cable to a charging circuit that is coupled to a battery of the vehicle. When the primary coil is inserted into the cavity and the external power source is energized, power flows from the power source through the inductive charge port to the battery. The present invention provides for an easy and safe inductive coupling that eliminates the possibility of shock hazard to a user when recharging the electric vehicle.
    • 一种用于电动车辆的感应充电端口,其中所述感应耦合变压器铁芯的一部分附接到所述车辆上的通道门的内部,并且其中,当为所述车辆充电时,只有初级线圈组件插入所述充电装置。 充电端口包括具有通过电缆耦合到电源的初级绕组的初级线圈组件和设置在车辆中的次级线圈组件。 车辆中的壳体具有设置在其中的次级线圈组件。 次级线圈组件包括具有设置在壳体中的第一部分的变压器芯。 次级绕组设置在变压器铁芯的第一部分中的空腔中,该第一部分在其中容纳初级绕组。 铰链进入门具有设置在其内壁上的可压缩弹性构件,并且变压器芯的第二部分固定到可压缩构件。 变压器铁芯的第二部分形成与第一部分配合以形成完整的变压器铁芯的盖或盖。 当门关闭时,配合的第一和第二部分将初级绕组紧密地固定在空腔中。 次级绕组通过电缆耦合到耦合到车辆的电池的充电电路。 当初级线圈插入空腔并且外部电源通电时,电源从电源通过感应充电端口流到电池。 本发明提供了一种容易且安全的感应耦合,其消除了在对电动车辆再充电时对使用者的电击危害的可能性。