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    • 1. 发明申请
    • COMPRESSED-GAS REGULATOR APPARATUS
    • 压缩气体调节器装置
    • WO2010109221A2
    • 2010-09-30
    • PCT/GB2010050477
    • 2010-03-22
    • POOLE JOSEPH GEORGETEMPLEMAN JOHN BARRY
    • POOLE JOSEPH GEORGETEMPLEMAN JOHN BARRY
    • G05D16/20
    • G05D16/2013G01M3/3227
    • Compressed-gas regulator apparatus (10 ) for controlling a pressurised OFN supply, comprises a regulator housing (20) having a regulator gas inlet (24), a regulator gas outlet (16) and a flow path therebetween. The gas inlet (24) is releasably connectable to an outlet (26) of the OFN supply (28). An electrically-operable regulator valve (30) in the housing for controlling a flow of gas along the flow path is also provided, along with a pressure sensing device in the housing for sensing a backpressure at or from the gas outlet (16). A regulator user-interface (36) for inputting a backpressure value, a local regulator controller for automatically closing the valve when the user-selected backpressure is reached, a wireless regulator receiver in the housing (20) for remotely controlling the local regulator controller, and a discrete remote controller (18) having a remote user-interface (80) and a wireless transmitter for wirelessly transmitting a control signal to the wireless regulator receiver are also included. Preferably, a splitter device (14) is also included. The splitter device (14) comprises a splitter housing (48) having a splitter gas inlet (50) which is connectable to the regulator gas outlet (16), at least a suction gas outlet (52) for connection to a suction line of an air conditioning system and a liquid gas outlet (56) for connection to a liquid line of an air conditioning system, a local splitter controller having a splitter user-interface (60) on the splitter housing (48), at least one electrically-operable splitter valve controllable by the splitter controller for selectively connecting the splitter gas inlet (50) to the suction gas outlet (52) or the liquid gas outlet (56), and a wireless receiver in the housing for remotely controlling the splitter controller via the said remote controller (18).The splitter device (14) may also be provided independently of the regulator device. In this case, the wireless receiver and the remote controller (18) may be optional.
    • 用于控制加压OFN电源的压缩气体调节装置(10)包括调节器壳体(20),其具有调节器气体入口(24),调节器气体出口(16)和它们之间的流动路径。 气体入口(24)可释放地连接到OFN电源(28)的出口(26)。 还提供了用于控制沿着流动路径的气体流动的壳体中的电动可调节阀(30),以及用于感测气体出口(16)处或从气体出口(16)的背压的压力感测装置。 用于输入背压值的调节器用户接口(36),当达到用户选择的背压时自动关闭阀的局部调节器控制器,用于远程控制本地调节器控制器的壳体(20)中的无线调节器接收器, 并且还包括具有远程用户接口(80)的离散遥控器(18)和用于将控制信号无线发送到无线调节器接收器的无线发射器。 优选地,还包括分离器装置(14)。 分流器装置(14)包括分流器壳体(48),其具有可连接到调节器气体出口(16)的分流器气体入口(50),至少一个吸入气体出口(52),用于连接到吸入管线 空调系统和用于连接到空调系统的液体管线的液体气体出口(56),具有在分离器壳体(48)上的分离器用户界面(60)的局部分离器控制器,至少一个电可操作 分流器阀,其可由分流控制器控制,用于选择性地将分流气体入口(50)连接到吸气出口(52)或液体气体出口(56);以及壳体中的无线接收器,用于经由所述分离器控制器 遥控器(18)。分离器装置(14)也可以独立于调节装置设置。 在这种情况下,无线接收器和遥控器(18)可以是可选的。