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    • 2. 发明申请
    • Valve Array with CAN Bus Circulation Valve
    • 带CAN总线循环阀的阀座
    • US20120104294A1
    • 2012-05-03
    • US13202477
    • 2010-04-16
    • Martin HeusserPeter ScheubertJean Michel Sabatier
    • Martin HeusserPeter ScheubertJean Michel Sabatier
    • F16K31/02
    • F15B13/0867F15B13/08F15B13/0814F15B13/0817F15B13/0857F15B13/086F15B20/008F15B21/085F15B2211/71F15B2211/8636F15B2211/87Y10T137/87772
    • The present invention relates to a hydraulic valve array with a CAN bus circulation valve. In particular, a hydraulic valve array is provided, having several modularly joined valve sections (S1-S5, Sx), at least some of which contain at least one electric actuator mechanism (13) and/or sensor mechanism (15) and at least one control and/or evaluation valve electronics (16), and having a communication bus cabling (K) connecting at least some valve sections (S1-S5, Sx) with a central control device (C) for controlling and/or monitoring the valve sections (S1-S5, Sx), wherein a circulation valve section (20) functionally associated to the valve sections (S1-S5, Sx) which is provided with an intelligent circulation valve control (μC1) is structurally integrated in the hydraulic valve array, and wherein the intelligent circulation valve control (μC1) is connected to the communication bus cabling (K) with a communication link (B) at least for communication with at least one valve section (S1-S5, Sx)
    • 本发明涉及具有CAN总线循环阀的液压阀座。 特别地,提供一种液压阀阵列,其具有若干模块连接的阀部分(S1-S5,Sx),至少其中一些包含至少一个电致动器机构(13)和/或传感器机构(15),并且至少 一个控制和/或评估阀电子器件(16),并且具有连接至少一些阀部分(S1-S5,Sx)与中央控制装置(C)的通信总线布线(K),用于控制和/或监视阀 (S1-S5,Sx),其中与设置有智能循环阀控制(μC1)的阀部(S1-S5,Sx)功能关联的循环阀部(20)结构地集成在液压阀列 ,并且其中所述智能循环阀控制(μC1)至少与至少一个阀部(S1-S5,Sx)通信的通信链路(B)连接到所述通信总线布线(K)
    • 3. 发明授权
    • Drive device comprising a position controller
    • 驱动装置包括位置控制器
    • US07520208B2
    • 2009-04-21
    • US11662510
    • 2006-02-21
    • Bernd BeuthUwe Mödinger
    • Bernd BeuthUwe Mödinger
    • F15B9/09F01B31/12
    • F15B15/2853F15B15/1433F15B15/1438F15B15/1466F15B15/202F15B15/2815F15B15/2861F15B15/2892F15B21/085
    • A drive device comprises a fluid driven drive (2), which defines a drive space (8), in which at least one drive piston (14) is located which is able to be linearly shifted by fluid actuation and is kinematically coupled with an output drive part (17). Furthermore there is a position regulator (3) which is responsible for setting the position of the at least one drive piston (14), such regulator having a electronic regulation circuitry (26) and a valve means (27) and being a component of a regulator cartridge (28) which is inserted as a unitary assembly from the side, which is axially opposite to the drive space (8), through an installation opening into a accommodating space (25) defined by an integral extension of the drive housing (4) made in one piece therewith and axially in sequence with the drive space (8).
    • 驱动装置包括限定驱动空间(8)的流体驱动驱动器(2),其中定位有至少一个驱动活塞(14),所述至少一个驱动活塞能够通过流体致动线性移动,并且与输出 驱动部件(17)。 此外,还有一个位置调节器(3),其负责设置至少一个驱动活塞(14)的位置,该调节器具有电子调节电路(26)和阀装置(27),并且是一个 调节器盒(28),其从与驱动空间(8)轴向相对的侧面作为整体式组件插入到通过驱动壳体(4)的整体延伸部限定的容纳空间(25)中的安装开口 )与驱动空间(8)顺序地一体地制成。
    • 6. 发明申请
    • Fluid control system
    • 流体控制系统
    • US20020000257A1
    • 2002-01-03
    • US09886882
    • 2001-06-21
    • Marcus MeadGary Alan ShawAlan Paul Ross
    • F16K027/00
    • F15B13/0839F15B13/0817F15B13/0821F15B13/0828F15B13/0853F15B13/0857F15B13/0867F15B13/0875F15B13/0889F15B21/085Y10T137/87885
    • A modular fluid control system, comprising: a control module for receiving parallel electronic control signals as a plurality of data streams, the control module including a control unit configured to convert the data streams of the parallel electronic control signals to serial electronic control signals, each including a plurality of data pulses as control instruction signals, and an electrical connector; a plurality of valve modules, each valve module including at least one valve operable to control the flow of pressurised fluid; and a plurality of manifold modules connectable in series to the control module and connected to respective ones of the valve modules, each manifold module including a fluid supply conduit to provide a common manifold for receiving pressurised fluid, first and second electrical connectors for connection with ones of the connectors of adjacent manifold modules and the connector of the control module to provide an electrical bus for transmission of the serial control signals and power supply, and a control unit configured to decode one or more of the first-received data pulses of the serial control signals, control the respective valve module accordingly, and pass any remaining data pulses as a modified serial control signal from which the decoded data pulses have been one of removed or blocked to the control unit of any downstream manifold module.
    • 一种模块化流体控制系统,包括:用于接收作为多个数据流的并行电子控制信号的控制模块,所述控制模块包括控制单元,其被配置为将并行电子控制信号的数据流转换为串行电子控制信号,每个 包括作为控制指令信号的多个数据脉冲和电连接器; 多个阀模块,每个阀模块包括至少一个可操作以控制加压流体流动的阀; 以及多个歧管模块,其可串联连接到所述控制模块并且连接到相应的所述阀模块,每个歧管模块包括流体供应管道,以提供用于接收加压流体的公共歧管,用于与所述阀组件连接的第一和第二电连接器 的相邻歧管模块的连接器和控制模块的连接器,以提供用于传输串行控制信号和电源的电气总线;以及控制单元,被配置为解码串行控制信号和电源中的一个或多个第一接收数据脉冲 控制信号,相应地控制相应的阀门模块,并且将任何剩余的数据脉冲作为经修改的串行控制信号传递,解码的数据脉冲从该数据脉冲已经被去除或阻塞到任何下游歧管模块的控制单元。
    • 8. 发明授权
    • Liquid pump for preventing contact between the sealing structure and
pressurized liquid
    • 用于防止密封结构和加压液体接触的液体泵
    • US5865597A
    • 1999-02-02
    • US625890
    • 1996-04-01
    • Yasuo Ozawa
    • Yasuo Ozawa
    • B63H25/30B63B25/00B63J3/00F04D29/10F04D29/14F15B11/08F15B11/17F15B15/18F15B21/08F16J15/16F16J15/42F16K31/124
    • F04D29/108F04D29/146F15B11/17F15B15/18F15B21/085F16J15/164F16J15/42F16K31/1245F15B2211/27F15B2211/6313F15B2211/633F15B2211/6651F15B2211/6653F15B2211/71F15B2211/76
    • A pump incorporates a housing with a pump chamber and an internal bore communicating with the pump chamber, and a power driven impeller shaft supported in the housing by at least one bearing in the internal bore. The impeller shaft has an impeller in the pump chamber. A seal mechanism is in the internal bore between the bearing and the pump chamber providing a seal between the impeller shaft and the wall surface of the internal bore. The internal bore has a stepped configuration with small and large diameter portions and a vertical wall defined therebetween. The large diameter portion defines an intermediate chamber between the bearing and the pump chamber and that chamber connects with the pump chamber. The intermediate chamber contains liquid with air being trapped in the remaining portion of the intermediate chamber. The bearing and the seal mechanism are located in the small diameter portion. A partition wall member in the intermediate chamber divides the chamber into a first compartment adjacent the pump chamber and a second compartment adjacent the seal mechanism. The first and second compartments are connected at the upper and radially outer peripheral portion of the intermediate chamber. A device provided on the impeller shaft forces the liquid in the second compartment when the impeller shaft rotates, so as to displace into the first compartment, while the air concentrates in the second compartment around the impeller shaft, thereby excluding liquid from the sealing mechanism.
    • 泵包括具有泵室的壳体和与泵室连通的内孔,以及由内孔中的至少一个轴承支撑在壳体中的动力驱动叶轮轴。 叶轮轴在泵室中具有叶轮。 密封机构位于轴承和泵室之间的内孔中,从而在叶轮轴和内孔的壁表面之间提供密封。 内孔具有阶梯状构造,其具有小直径和大直径部分,并且其间限定有垂直壁。 大直径部分限定了在轴承和泵室之间的中间室,并且该室与泵室连接。 中间室包含液体,空气被捕获在中间室的剩余部分中。 轴承和密封机构位于小直径部分。 中间室中的隔壁构件将室分隔成邻近泵室的第一隔室和与密封机构相邻的第二隔室。 第一和第二隔室连接在中间室的上部和外部的外周部分。 当叶轮轴旋转时,设置在叶轮轴上的装置迫使第二隔室中的液体,以便在空气集中在围绕叶轮轴的第二隔室中时移入第一隔室,从而从密封机构排除液体。
    • 9. 发明授权
    • Digital proportional wireless control
    • 数字比例无线控制
    • US09360870B2
    • 2016-06-07
    • US13945428
    • 2013-07-18
    • Lynch Fluid Controls Inc.
    • Ernest Thomas Lynch
    • F16K31/06G05D7/06G05D16/20F15B21/08
    • G05D7/0641F15B21/085F16K31/0675G05D7/0617G05D16/20G05D16/2026
    • Various embodiments are described herein for a system for controlling fluid systems and for remotely controlling fluid control devices. In some described embodiments, the system includes at least one fluid control device, a proportional valve driver coupled to the at least one fluid control device, a wireless network, and at least one user controller device coupled to the proportional valve driver through the wireless network. In some described embodiments, the proportional valve driver comprises a wireless transceiver, a proportional translation unit, and a parameter unit. The proportional valve driver comprises a wireless transceiver operable to establish a communication channel with a user controller, receive a request signal, transmit the request signal to a processor for deconstruction and execution, and transmit a response signal.
    • 这里描述了用于控制流体系统和远程控制流体控制装置的系统的各种实施例。 在一些描述的实施例中,系统包括至少一个流体控制装置,耦合到至少一个流体控制装置的比例阀驱动器,无线网络以及通过无线网络耦合到比例阀驱动器的至少一个用户控制器装置 。 在一些描述的实施例中,比例阀驱动器包括无线收发器,比例平移单元和参数单元。 比例阀驱动器包括可操作以与用户控制器建立通信信道的无线收发器,接收请求信号,将请求信号发送到处理器进行解构和执行,并发送响应信号。