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    • 1. 发明授权
    • Compact molecular-drag vacuum pump
    • 紧凑型分子拖拉真空泵
    • US06866488B2
    • 2005-03-15
    • US10246798
    • 2002-09-17
    • Marc OlivierStephen C. JacobsenDavid Knutti
    • Marc OlivierStephen C. JacobsenDavid Knutti
    • F04D17/16F04D29/02F04D29/16F04B17/00F04B23/08F04B25/00
    • F04D29/023F04D17/168F04D29/162F05D2300/43F05D2300/518
    • A molecular drag vacuum pump for pumping a gas from an inlet to an outlet includes a high-speed spinning disk disposed within a housing. Gas flows through passageways in the housing adjacent the disk, where it comes into contact with surfaces of the spinning disk. Conformable wipers direct the gas to successive stages adjacent the disk. The pump can be powered by an integrated motor, comprising permanent magnets in the disk and cooperating coils in the housing. The pump can include various features, such as ridges on the wipers, seal rings, and regenerative pumping pockets, to reduce leakage and prevent backflow. The housing can have a modular configuration to allow two or more pump modules to be connected and operate in series. Successive modules may be independently or commonly powered, and may counter-rotate.
    • 用于将气体从入口泵送到出口的分子牵引真空泵包括设置在壳体内的高速旋转盘。 气体通过壳体中邻近盘的通道流动,在那里它与旋转盘的表面接触。 符合要求的刮水器将气体引导到靠近磁盘的连续阶段。 泵可以由集成电动机供电,其包括盘中的永磁体和壳体中的配合线圈。 泵可以包括各种特征,例如擦拭器上的脊,密封环和再生泵送袋,以减少泄漏并防止回流。 壳体可以具有模块化配置,以允许两个或更多个泵模块被连接并串联操作。 连续模块可以是独立的或通常的供电的,并且可以反向旋转。
    • 2. 发明授权
    • Compact molecular-drag vacuum pump
    • 紧凑型分子拖拉真空泵
    • US07165931B2
    • 2007-01-23
    • US11028998
    • 2005-01-03
    • Marc OlivierStephen C. JacobsenDavid Knutti
    • Marc OlivierStephen C. JacobsenDavid Knutti
    • F01D1/36F03B5/00
    • F04D29/023F04D17/168F04D29/162F05D2300/43F05D2300/518
    • A molecular drag vacuum pump configured for pumping a gas stream from an inlet to an outlet, the pump including a high-speed spinning disk or rotor disposed within a housing. A passageway is formed inside the housing adjacent the disk, and gas comes in contact with surfaces of the spinning disk in successive stages, conformable wipers being disposed adjacent the spinning disk to direct the gas stream to the successive stages. The disk can be powered by an integrated motor, comprising permanent magnets associated with the disk and cooperating coils associated with the housing. The wipers can include parallel ridges on a contacting face to facilitate creation of a conformable fit with the rotor. Seal rings may be disposed against the disk between gas passageways to reduce leakage therebetween, and the pump may include regenerative pumping pockets to help prevent backflow. The housing may have a modular configuration to allow two or more pump modules to be connected and operate in series. Successive stages may be independently or commonly powered, and may counter-rotate.
    • 一种构造成将气流从入口泵送到出口的分子阻力真空泵,所述泵包括设置在壳体内的高速旋转盘或转子。 在壳体内部邻近盘形成通道,并且气体连续地与旋转盘的表面接触,适配的擦拭器邻近旋转盘设置以将气流引导到连续阶段。 磁盘可以由集成电动机供电,包括与磁盘相关联的永磁体和与壳体相关联的协作线圈。 擦拭器可以在接触面上包括平行的脊,以便于与转子形成一致的配合。 密封环可以设置在气体通道之间的盘上以减少它们之间的泄漏,并且泵可以包括再生泵送袋以帮助防止回流。 壳体可以具有模块化配置,以允许两个或更多个泵模块连接并串联操作。 连续阶段可以是独立的或通常的动力,并且可以反向旋转。
    • 4. 发明授权
    • Antagonistic fluid control system for active and passive actuator operation
    • 主动和被动执行器操作的对流液控系统
    • US08061261B2
    • 2011-11-22
    • US12074260
    • 2008-02-28
    • Stephen C. JacobsenMarc Olivier
    • Stephen C. JacobsenMarc Olivier
    • F15B13/042F15B11/10
    • F15B13/0402F15B11/006F15B2211/30565F15B2211/30575F15B2211/329F15B2211/351F15B2211/7053
    • An antagonistic fluid control system, wherein the system may comprise multiple antagonistic pressure control valves operable with a single actuator, or multiple pressure control valves operable with respective antagonistic actuators. The pressure control valves are configured to provide functional and efficiency advantages, and operate together to provide several operating or valving states. A first valving state comprises an active valving state configured to actively control the movement of the load. A second valving state comprises an inactive actuation state, wherein either the return and pressure ports of one pressure control valve are closed, or only the return ports of one pressure control valve are opened, to allow the other pressure control valve to operate in an active valving state. A third valving state comprises a passive valving state, wherein the pressure control valves are operated in a slosh mode configured to allow the load to freely move or dangle. In this third passive valving state, or slosh mode, the return ports of the two pressure control valves are opened to allow fluid, and preferably local fluid, to shunt back and forth within the system.
    • 一种拮抗性流体控制系统,其中所述系统可以包括可用单个致动器操作的多个对抗压力控制阀,或者可用相应的对抗致动器操作的多个压力控制阀。 压力控制阀被配置为提供功能和效率优点,并且一起操作以提供若干操作或阀门状态。 第一阀门状态包括被配置为主动地控制负载的运动的主动阀状态。 第二阀门状态包括非活动致动状态,其中一个压力控制阀的返回压力端口和压力端口关闭,或者仅一个压力控制阀的返回端口打开,以允许另一个压力控制阀在主动 阀门状态 第三阀门状态包括无源阀门状态,其中压力控制阀以配置为允许负载自由移动或摇摆的晃动模式操作。 在该第三无源阀状态或短路模式中,两个压力控制阀的返回端口被打开以允许流体,并且优选局部流体在系统内来回分流。
    • 5. 发明授权
    • Valve system for a rapid response power conversion device
    • 阀系统用于快速响应电力转换装置
    • US07066116B2
    • 2006-06-27
    • US10903759
    • 2004-07-29
    • Stephen C. JacobsenMarc OlivierShane OlsenMike Morrison
    • Stephen C. JacobsenMarc OlivierShane OlsenMike Morrison
    • F02M23/00
    • F02B75/28F01B7/02F02B63/041F02B71/04
    • An apparatus and method for transferring energy from an internal combustion engine to drive a load. The system includes a rapid response component, a valve system and an actuator. The rapid response component is configured to be operatively coupled to a combustion portion of the internal combustion engine. The rapid response component is also configured to draw a portion of energy from the combustion in the internal combustion engine and transfer the portion of energy as a fluid including pulsitile fluid flow. The valve system is operatively coupled to the rapid response component and is operable to receive and controllably direct the pulsitile fluid flow from the rapid response component. The actuator is operatively coupled to the valve system and is configured to be operatively coupled to the load. The actuator operates to receive the fluid from the valve system to drive the load operatively coupled thereto.
    • 一种用于从内燃机传递能量以驱动负载的装置和方法。 该系统包括快速响应部件,阀门系统和执行器。 快速响应部件构造成可操作地联接到内燃机的燃烧部分。 快速响应部件还构造成从内燃机中的燃烧中抽取一部分能量,并将能量部分作为包括脉动流体流的流体传递。 阀系统可操作地耦合到快速响应部件并且可操作以接收并可控制地引导来自快速响应部件的脉动流体流。 致动器可操作地联接到阀系统并且被配置为可操作地联接到负载。 致动器操作以从阀系统接收流体以驱动与其可操作地耦合的负载。
    • 6. 发明授权
    • Rapid response power conversion device
    • 快速响应电源转换装置
    • US06957631B2
    • 2005-10-25
    • US10190336
    • 2002-07-05
    • Stephen C. JacobsenMarc Olivier
    • Stephen C. JacobsenMarc Olivier
    • F01B11/00F02B75/02F02B75/28F02M23/00
    • F02B75/285F01B11/00F02B75/28F02B2075/025F02B2075/027
    • An apparatus and method for extracting energy from an internal combustion engine includes a chamber having a primary piston and a secondary piston with a combustion portion of the chamber situated adjacently between the primary piston and secondary piston. The secondary piston includes a substantially lesser mass than that of the primary piston. The chamber includes at least one fluid port for supplying fuel to the combustion portion and an out-take port for releasing combustive exhaust. The chamber includes a controller for controlling the combustion therein at selected cycles of the primary piston. The secondary piston is configured to draw a portion of energy from combustion controlled by the controller in the chamber. Such portion of energy is provided with a rapid response to an energy transferring portion interconnected to the secondary piston, which in turn, transfers and/or converts the energy for acting on a load or external application.
    • 用于从内燃机中提取能量的装置和方法包括具有主活塞和第二活塞的腔室,其中腔室的燃烧部分位于主活塞和次活塞之间。 次级活塞包括比主活塞大得多的质量。 该室包括至少一个用于向燃烧部分供应燃料的流体端口和用于释放可燃性废气的出口。 该腔室包括用于在主活塞的选定循环中控制其中的燃烧的控制器。 次级活塞构造成从腔室中的控制器控制的燃烧中吸取一部分能量。 这样的能量部分对互连到次级活塞的能量传递部分提供快速响应,该次级活塞进而传递和/或转换能量以作用于负载或外部应用。
    • 8. 发明授权
    • Rapid response power conversion device
    • 快速响应电源转换装置
    • US07210430B2
    • 2007-05-01
    • US11259365
    • 2005-10-25
    • Stephen C. JacobsenMarc OlivierMichael MorrisonShane Olsen
    • Stephen C. JacobsenMarc OlivierMichael MorrisonShane Olsen
    • F02B71/04F02B75/04
    • F02B75/285F01B11/00F02B75/28F02B2075/025F02B2075/027
    • An apparatus and method for extracting energy from an internal combustion engine. The internal combustion engine includes a chamber having a primary piston and a secondary piston with a combustion portion of the chamber situated adjacently between the primary piston and secondary piston. The secondary piston includes a substantially lesser mass than that of the primary piston. The chamber includes at least one fluid port for supplying fuel to the combustion portion and an out-take port for releasing combustive exhaust. The chamber includes a controller for controlling the combustion therein at selected cycles of the primary piston. With this arrangement, the secondary piston is configured to draw a portion of energy from combustion controlled by the controller in the chamber. Such portion of energy is provided with a rapid response to an energy transferring portion interconnected to the secondary piston, which in turn, transfers and/or converts the energy for acting on a load or external application.
    • 一种用于从内燃机中提取能量的装置和方法。 内燃机包括具有主活塞和第二活塞的腔室,其中腔室的燃烧部分位于主活塞和次活塞之间。 次级活塞包括比主活塞大得多的质量。 该室包括至少一个用于向燃烧部分供应燃料的流体端口和用于释放可燃性废气的出口。 该腔室包括用于在主活塞的选定循环中控制其中的燃烧的控制器。 利用这种布置,次级活塞构造成从腔室中的控制器控制的燃烧中吸取一部分能量。 这样的能量部分对互连到次级活塞的能量传递部分提供快速响应,该次级活塞进而传递和/或转换能量以作用于负载或外部应用。