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    • 4. 发明申请
    • APPARATUS FOR TESTING AN ARC FAULT CIRCUIT INTERRUPTER
    • 测试电弧故障电路中断器的装置
    • WO2008010038A3
    • 2008-03-20
    • PCT/IB2007001863
    • 2007-07-05
    • EATON CORPPARKER KEVIN LGASS DALE LHASTINGS JEROME K
    • PARKER KEVIN LGASS DALE LHASTINGS JEROME K
    • G01R31/327
    • G01R31/3277
    • A test apparatus tests an arc fault circuit breaker with an arc fault generator having an input and an output. The test apparatus includes a first electrical connector electrically connected to the load side of an arc fault circuit interrupter. A second electrical connector is electrically connected to the input of the arc fault generator. A third electrical connector is electrically connected to the output of the arc fault generator. A plurality of fourth electrical connectors are electrically connected to one or more of a plurality of masking loads. A fifth electrical connector is electrically connected to another load. A two pole, plural position rotary selector switch provides a plurality of different configurations of at least the arc fault generator and the one or more masking loads downstream of the load side of the arc fault circuit breaker.
    • 测试设备利用具有输入和输出的电弧故障发生器来测试电弧故障断路器。 测试装置包括电连接到电弧故障断路器的负载侧的第一电连接器。 第二电连接器电连接到电弧故障发生器的输入端。 第三电连接器电连接到电弧故障发生器的输出端。 多个第四电连接器电连接到多个掩蔽负载中的一个或多个掩蔽负载。 第五电连接器电连接到另一个负载。 两极多位置旋转选择器开关提供至少电弧故障发生器和电弧故障断路器的负载侧下游的一个或多个掩蔽负载的多个不同配置。
    • 5. 发明申请
    • APPARATUS FOR TESTING AN ARC FAULT CIRCUIT INTERRUPTER
    • 用于测试ARC故障电路中断器的设备
    • WO2008010038A2
    • 2008-01-24
    • PCT/IB2007/001863
    • 2007-07-05
    • EATON CORPORATIONPARKER, Kevin, L.GASS, Dale, L.HASTINGS, Jerome, K.
    • PARKER, Kevin, L.GASS, Dale, L.HASTINGS, Jerome, K.
    • G01R31/3277
    • A test apparatus tests an arc fault circuit breaker with an arc fault generator having an input and an output. The test apparatus includes a first electrical connector electrically connected to the load side of an arc fault circuit interrupter. A second electrical connector is electrically connected to the input of the arc fault generator. A third electrical connector is electrically connected to the output of the arc fault generator. A plurality of fourth electrical connectors are electrically connected to one or more of a plurality of masking loads. A fifth electrical connector is electrically connected to another load. A two pole, plural position rotary selector switch provides a plurality of different configurations of at least the arc fault generator and the one or more masking loads downstream of the load side of the arc fault circuit breaker.
    • 测试装置用具有输入和输出的电弧故障发生器来测试电弧故障断路器。 测试装置包括电连接到电弧故障断路器的负载侧的第一电连接器。 第二电连接器电连接到电弧故障发生器的输入端。 第三电连接器电连接到电弧故障发生器的输出端。 多个第四电连接器电连接到多个屏蔽负载中的一个或多个。 第五电连接器电连接到另一负载。 两极多位置旋转选择开关提供至少电弧故障发生器和电弧故障断路器的负载侧下游的一个或多个屏蔽负载的多种不同配置。
    • 7. 发明申请
    • MAGNETIC FLUX CONCENTRATOR CURRENT SENSING TOPOLOGY
    • 磁通集中器电流传感拓扑
    • WO2005033717A1
    • 2005-04-14
    • PCT/IB2004/051935
    • 2004-09-30
    • EATON CORPORATIONHASTINGS, Jerome K.JUDS, Mark A.SOLVESON, Mark G.
    • HASTINGS, Jerome K.JUDS, Mark A.SOLVESON, Mark G.
    • G01R15/20
    • G01R15/202G01R15/207
    • The present invention is directed to system and method for current sensing. A current sensor system (10, 10a, 10b, 32, 60) includes a conductor (12, 12a, 36, 62, 80, 110) configured to receive current flow (14, 82) therethrough and generate magnetic flux (B1, 16, 20, 22, 88, 90, 92, 100, 102, 104, 120) thereabout. The current sensor system (10, 10a, 10b, 32, 60) also includes an anti-differential current sensor (H1, H2, 46, 48) configured to monitor magnetic flux (B1, 16, 20, 22, 88, 90, 92, 100, 102, 104, 120) about the conductor (12, 12a, 36, 62, 80, 110) and a flux concentrator (42, 44, 62, 64, 66, 94, 96, 98, 112, 114, 116) configured to concentrate magnetic flux (B1, 16, 20, 22, 88, 90, 92, 100, 102, 104, 120) induced by current flow (14, 82) through the conductor (12, 12a, 36, 62, 80, 110).
    • 本发明涉及用于电流感测的系统和方法。 电流传感器系统(10,10a,10b,32,60)包括导体(12,12a,36,62,80,110),其被配置为接收通过其中的电流(14,82)并产生磁通量(B1,16 ,20,22,88,90,92,100,102,104,120)。 电流传感器系统(10,10a,10b,32,60)还包括一个抗差动电流传感器(H1,H2,46,48),其被配置为监测磁通(B1,16,20,22,88,90, 关于导体(12,12a,36,62,80,110)和通量集中器(42,44,62,64,66,94,96,98,112,114)的通量集中器(92,100,102,104,120) ,116),其被配置为将由电流(14,82)感应的磁通(B1,16,20,22,88,90,92,100,102,104,120)集中通过所述导体(12,12a, 62,80,110)。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR CURRENT SENSING USING ANTI-DIFFERENTIAL, ERROR CORRECTING CURRENT SENSING
    • 使用抗差分电流检测的电流传感系统和方法
    • WO2005033716A1
    • 2005-04-14
    • PCT/IB2004/051934
    • 2004-09-30
    • EATON CORPORATIONHASTINGS, Jerome K.SOLVESON, Mark G.GASS, Dale L.
    • HASTINGS, Jerome K.SOLVESON, Mark G.GASS, Dale L.
    • G01R15/20
    • G01R15/202G01R15/207
    • The present invention is directed to system and method for current sensing using an anti-differential, error correcting, current sensing system (10, 10a, 10b). The invention includes a conductive path (12, 12a, 36, 38) configured to receive a current (14) therethrough. A first current sensor (H1) is positioned on a first side of the conductive path (12, 12a, 36, 38) and configured to monitor a first directional magnetic field (20) induced by the current (14). A second current sensor (H2) is positioned on a second side of the conductive path (12, 12a, 36, 38), substantially opposite the first current sensor (H1), and configured to monitor a second directional magnetic field (22) induced by the current (14) that is substantially opposite in direction to the first directional magnetic field (20). A processing component (18, 18a, 18b) is configured to receive feedback (21, 24, 24a, 26, 28, 28a) from the first current sensor (H1) and the second current sensor (H2) and generate an anti-differential output (19, 30) from the feedback (21, 24, 24a, 26, 28, 28a).
    • 本发明涉及使用反差分纠错电流检测系统(10,10a,10b)进行电流检测的系统和方法。 本发明包括被配置为接收穿过其中的电流(14)的导电路径(12,12a,36,38)。 第一电流传感器(H1)定位在导电路径(12,12a,36,38)的第一侧上,并被配置为监测由电流(14)感应的第一定向磁场(20)。 第二电流传感器(H2)位于与第一电流传感器(H1)基本相对的导电路径(12,12a,36,38)的第二侧上,并且被配置为监测引起的第二定向磁场(22) 通过与第一定向磁场(20)的方向基本上相反的电流(14)。 处理部件(18,18a,18b)被配置为从第一电流传感器(H1)和第二电流传感器(H2)接收反馈(21,24,24a,26,28,28a)并产生反差 输出(19,30)从反馈(21,24,24,26,28,28a)输出。
    • 10. 发明申请
    • INTEGRATED ANTI-DIFFERENTIAL CURRENT SENSING SYSTEM
    • 综合抗差分电流传感系统
    • WO2005033718A1
    • 2005-04-14
    • PCT/IB2004/051936
    • 2004-09-30
    • EATON CORPORATIONHASTINGS, Jerome K.GASS, Dale L.PAHL, BirgerLEE, Davin R.HANSEN, James E.
    • HASTINGS, Jerome K.GASS, Dale L.PAHL, BirgerLEE, Davin R.HANSEN, James E.
    • G01R15/20
    • G01R15/202G01R15/207
    • The present invention is directed to system for current sensing including a first Hall effect sensor (H1, 56, 120, 174, 204, 236) and a second Hall effect sensor (H2, 58, 124, 176, 206, 238) constructed to provide feedback (21, 24, 24a, 26, 28, 28a) indicating current flow (14) through a conductor (12, 130, 132, 152, 178, 180, 181, 182, 220, 232) susceptible to external magnetic flux (B2, 17, 166). A housing (184, 186, 188, 212, 214, 216, 244, 246, 248) is configured to position the first Hall effect sensor (H1, 56, 120, 174, 204, 236) and the second Hall effect sensor (H2, 58, 124, 176, 206, 238) about the conductor (12, 130, 132, 152, 178, 180, 181, 182, 220, 232)to provide generally magnitude equal feedback (21, 24) of the current flow (14) through the conductor (12, 130, 132, 152, 178, 180, 181, 182, 220, 232) and generally polarity opposite feedback (26, 28) of the external magnetic flux (B2, 17, 166).
    • 本发明涉及用于电流感测的系统,包括第一霍尔效应传感器(H1,56,120,174,204,236)和第二霍尔效应传感器(H2,58,124,176,206,238),其构造成 提供指示通过易受外部磁通量的导体(12,130,132,152,178,180,181,182,220,232)的电流(14)的反馈(21,24,24,26,28,28a) (B2,17,166)。 壳体(184,186,188,212,214,216,244,246,248)被配置成将第一霍尔效应传感器(H1,56,120,174,204,236)和第二霍尔效应传感器( 围绕导体(12,130,132,152,178,180,181,182,220,232)的H2,58,124,176,206,238,以提供电流的大致等同的反馈(21,24) 流体(14)穿过导体(12,130,132,152,178,180,181,182,220,232),并且通常与外部磁通(B2,17,166)极性相反的反馈(26,28) 。