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    • 92. 发明公开
    • A vacuum pumping system and method of controlling the same
    • Methode zur Steuerung eines Vakuumpumpensystems
    • EP1367260A2
    • 2003-12-03
    • EP03253197.2
    • 2003-05-22
    • The BOC Group plc
    • Savidge, Derek Graeme MadgewickTurner, NeilHuntley, Graeme
    • F04C29/10
    • F04C28/24F04B37/14F04C25/02F04C28/065F04C2220/10F04C2220/30F04C2270/02Y10T137/86083
    • A vacuum pump system (10; 36; 46) for pumping gas from an enclosure (12) comprises: a vacuum pump unit (14) having a pump inlet (16) connectable with an outlet (18) of such an enclosure and a pump outlet (20) for exhausting gas; and a chamber (22; 50) selectively connectable with the pump inlet and the pump outlet, such that, in use, in a first state gas can be pumped from the chamber to the pump inlet by the vacuum pump unit and in a second state gas can be evacuated from the pump outlet to the chamber to reduce pressure at the pump outlet.
      A method of controlling the vacuum pump system (10; 36; 46) comprises a first step of pumping gas from the chamber to the pump inlet using the vacuum pump unit and a second step of allowing gas to be evacuated from the pump outlet to the chamber to reduce pressure at the pump outlet.
    • 一种用于从外壳(12)泵送气体的真空泵系统(10; 36; 46)包括:真空泵单元(14),其具有可与这种外壳的出口(18)连接的泵入口(16) 用于排出气体的出口(20) 以及可选择性地与泵入口和泵出口连接的腔室(22; 50),使得在使用中,在第一状态下,气体可以通过真空泵单元从腔室泵送到泵入口,并且处于第二状态 气体可以从泵出口抽空到室以减小泵出口处的压力。 控制真空泵系统(10; 36; 46)的方法包括使用真空泵单元将气体从腔室泵送到泵入口的第一步骤,以及允许气体从 泵出口到腔室以减少泵出口处的压力。
    • 95. 发明授权
    • 전력 소비가 적은 펌핑 방법과 장치
    • 低功耗的泵送方法和装置
    • KR101778318B1
    • 2017-09-13
    • KR1020127012734
    • 2010-10-27
    • 파이퍼 배큠
    • 넬티에리
    • F04C25/02F04F5/54F04C23/00F04C28/00
    • F04D19/046F04C23/005F04C25/02F04C2220/12F04C2270/02F04D15/0254F04D15/0281F04D19/02F04D25/16F04D27/004F04F5/20F04F5/54
    • 펌핑장치는진공챔버에연결된가스유입오리피스및 도관상으로유도하는가스유출오리피스가결합된건식러프진공펌프, 건식러프진공펌프에서도관내에위치하는역류체크밸브, 그리고역류체크밸브와의관계에서병렬적으로장착되는이젝터를포함한다. 펌핑방법은다음의단계, 즉진공챔버에들어있는가스가건식러프진공펌프를이용하여가스유입오리피스를통해펌핑되는단계와, 건식러프진공펌프의가스유출오리피스가이젝터에연결되는단계와, 건식러프진공펌프에의해서소비되는전력과건식러프진공펌프의유출구에서도관내에있는가스압력이측정되는단계와, 건식러프진공펌프의유출구에서가스압력이상승하여, 설정값을통과하고, 건식진공펌프에의해서소비되는전력이상승하여설정값을통과한때로부터시간지연이일어난후, 이젝터가작동하기시작하는단계와, 건식러프진공펌프에서소비되는전력이하강하여설정값을통과하고, 건식저 진공펌프의유출구에서도관내에있는가스압력이하강하여설정값을통과할때, 이젝터가정지하는단계를포함한다.
    • 所述泵送装置是并联在相对于干粗真空泵气体出口孔被耦合以驱动在气体入口孔和管道连接到所述真空室,定位在干粗真空泵,阀门管回流量检查,并且反向流动的单向阀 并在其上安装喷射器。 该泵送方法包括以下步骤:利用干式粗抽真空泵将真空室内的气体通过进气口泵出;干式真空泵的出气口与喷射器连接; 测量干式粗真空泵出口处管道中的气体压力和真空泵消耗的功率的步骤;以及使设定值通过干式粗真空泵出口的步骤, 后,其电yisangseung引起从经过一次,还包括喷射器开始工作的时间延迟设定值,并通过在干式粗真空泵所消耗的功率或强或弱的设置,在干式低真空泵的出口处的管功率 当设定值大于预定气压时,喷射器停止。
    • 98. 发明申请
    • METHOD OF DETERMINING PUMP FLOW IN ROTARY POSITIVE DISPLACEMENT PUMPS
    • 在旋转位移泵中确定泵流量的方法
    • WO2013155140A9
    • 2014-04-24
    • PCT/US2013035902
    • 2013-04-10
    • ITT MFG ENTPR LLCSTAVALE ANTHONY E
    • STAVALE ANTHONY E
    • F04C2/107F04C2/00F04C14/28
    • G05D7/0635F04C2/1071F04C14/28F04C2270/02F04C2270/03F04C2270/052F04C2270/80G01F25/0007
    • Techniques are provided for tuning a rotary positive displacement pump. The techniques include apparatus featuring a signal processor configured to the present invention may take the form of apparatus comprising a signal processor that may be configured to receive signaling containing information about actual pump performance data related to the operation of a rotary positive displacement pump; and determine corrected published pump performance data to operate the rotary positive displacement pump by compensating published pump performance data based at least partly on the actual pump performance data. The corrected published pump performance data may include a corrected published rated power, flow and slip factor, and the actual pump performance data contains information about actual power, specific gravity and viscosity related to the operation of the rotary positive displacement pump and received from a pump controller or controlling device, including a variable frequency drive.
    • 提供了用于调整旋转容积式泵的技术。 这些技术包括具有配置成本发明的信号处理器的装置可以采用包括信号处理器的装置的形式,该信号处理器可被配置为接收包含关于与旋转容积式泵的操作有关的实际泵性能数据的信息的信号; 并且通过至少部分地基于实际的泵性能数据来补偿公布的泵性能数据,并且确定校正的已发布的泵性能数据来操作旋转容积式泵。 校正的已发布的泵性能数据可以包括校正的公布的额定功率,流量和滑移因子,并且实际的泵性能数据包含关于旋转容积式泵的操作并从泵接收的实际功率,比重和粘度的信息 控制器或控制装置,包括变频器。
    • 99. 发明申请
    • METHOD OF DETERMINING PUMP FLOW IN ROTARY POSITIVE DISPLACEMENT PUMPS
    • 在旋转位移泵中确定泵流量的方法
    • WO2013155140A2
    • 2013-10-17
    • PCT/US2013/035902
    • 2013-04-10
    • ITT MANUFACTURING ENTERPRISES LLCSTAVALE, Anthony, E.
    • STAVALE, Anthony, E.
    • G06F19/00
    • G05D7/0635F04C2/1071F04C14/28F04C2270/02F04C2270/03F04C2270/052F04C2270/80G01F25/0007
    • Techniques are provided for tuning a rotary positive displacement pump. The techniques include apparatus featuring a signal processor configured to the present invention may take the form of apparatus comprising a signal processor that may be configured to receive signaling containing information about actual pump performance data related to the operation of a rotary positive displacement pump; and determine corrected published pump performance data to operate the rotary positive displacement pump by compensating published pump performance data based at least partly on the actual pump performance data. The corrected published pump performance data may include a corrected published rated power, flow and slip factor, and the actual pump performance data contains information about actual power, specific gravity and viscosity related to the operation of the rotary positive displacement pump and received from a pump controller or controlling device, including a variable frequency drive.
    • 提供了用于调整旋转容积式泵的技术。 这些技术包括具有配置成本发明的信号处理器的装置可以采用包括信号处理器的装置的形式,该信号处理器可被配置为接收包含关于与旋转容积式泵的操作有关的实际泵性能数据的信息的信号; 并且通过至少部分地基于实际的泵性能数据来补偿公布的泵性能数据,并且确定校正的已发布的泵性能数据来操作旋转容积式泵。 校正的已发布的泵性能数据可以包括校正的公布的额定功率,流量和滑移因子,并且实际的泵性能数据包含关于旋转容积式泵的操作并从泵接收的实际功率,比重和粘度的信息 控制器或控制装置,包括变频器。
    • 100. 发明申请
    • A SYSTEM AND METHOD OF REMOTELY CONNECTING AND DISCONNECTING THE AUXILIARY POWER SUPPLY OF A FREQUENCY INVERTER
    • 远程连接和断开频率逆变器辅助电源的系统和方法
    • WO2012113047A3
    • 2013-06-27
    • PCT/BR2012000036
    • 2012-02-25
    • WHIRLPOOL SAMAASS GUENTER JOHANN
    • MAASS GUENTER JOHANN
    • F04C28/00H02M1/00H02M3/00
    • F04C28/00F04C28/08F04C2240/403F04C2240/808F04C2270/02F04C2270/095F04C2270/105H02M3/00H02M2001/0032Y02B70/16
    • The present invention refers to a system and a method of remotely connecting and disconnecting an auxiliary power supply (19) of the frequency inverter for variable capacity compressors employed in cooling systems, wherein the inverter comprises a circuit breaker (10) which acts such that when it receives an external signal to activate the auxiliary power supply (30) indicating that the auxiliary supply (19) should be connected, the circuit breaker (10) enables the running of the auxiliary power supply (19), which activates the running of the inverter, and the inverter begins sending, continually, the internal maintenance signal to activate the auxiliary supply (40) to the circuit breaker (10) indicating that the auxiliary supply should be kept running, making the circuit breaker maintain the auxiliary power supply (19) enabled, and when the circuit breaker (10) receives an external deactivation signal from the auxiliary supply (30) indicating that the auxiliary supply should be disconnected, the inverter stops sending the signal to maintain the auxiliary supply activated (40) to the circuit breaker (10), and the circuit breaker (10) disables the auxiliary power supply (19), deactivating the running of the inverter.
    • 本发明涉及一种用于远程连接和断开用于冷却系统中的可变容量压缩机的变频器的辅助电源(19)的系统和方法,其中所述逆变器包括断路器(10) 它接收外部信号以启动指示辅助电源(19)应该被连接的辅助电源(30),断路器(10)使能辅助电源(19)的运行,从而激活辅助电源 变频器,变频器开始连续发送内部维护信号,激活辅助电源(40)到断路器(10),指示辅助电源应保持运行,使断路器保持辅助电源(19 ),并且当断路器(10)从辅助电源(30)接收到指示辅助电源应该断开的外部去激活信号时 变频器停止发送信号,将辅助电源(40)维持到断路器(10),断路器(10)禁用辅助电源(19),停用变频器的运行。