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    • 6. 发明授权
    • Smart wire harness for an electrical circuit
    • 用于电路的智能线束
    • US06833713B2
    • 2004-12-21
    • US10355567
    • 2003-01-31
    • Thomas J. SchoepfMalakondaiah NaiduSuresh Gopalakrishan
    • Thomas J. SchoepfMalakondaiah NaiduSuresh Gopalakrishan
    • H01H950
    • H02H3/30H02H1/0015
    • A direct current electrical circuit having a smart wire harness that has integrated electronics which measure both voltage and current through wires of the harness to detect and protect the electrical current from parallel and serial arc faults occurring within a protection zone. The protection zone is disposed directly between two smart connectors of the wire harness which are in communication with one another via a series of signal wires of the harness to detect serial or parallel arc faults within the protection zone. To measure serial arc faults, a voltage drop of the positive wire is measured at each smart connector and a difference taken which equals the serial arc voltage. If this voltage differential increases to a preset value, a switching device which provides power to the smart wire harness is opened. To detect parallel arc faults, that is those arcs which jump between the positive wire and the ground wire of the wire harness, a current is measured at both ends of the positive wire of the wire harness via the same smart connectors. If the ending current is less than the beginning current, signaling a parallel arc fault due to the arc resistance of the arc itself, the same switching device is opened.
    • 一种具有智能线束的直流电路,该智能线束具有集成电子装置,其通过线束的电线测量电压和电流,以检测和保护电流不受保护区内发生的并联和串联故障的影响。 保护区域直接设置在线束的两个智能连接器之间,它们通过线束的一系列信号线彼此连通,以检测保护区内的串联或并联电弧故障。 为了测量串联电弧故障,在每个智能连接器处测量正极线的电压降,并取得等于串联电弧电压的差值。 如果该电压差增加到预设值,则向智能线束提供电力的开关装置被打开。 为了检测平行电弧故障,即在线束的正极线和接地线之间跳跃的电弧,通过相同的智能连接器在线束的正极线的两端测量电流。 如果结束电流小于起始电流,则由于电弧本身的电弧电阻而发出并联电弧故障,同一个开关装置打开。
    • 7. 发明授权
    • Electrical connector
    • 电连接器
    • US06926547B2
    • 2005-08-09
    • US10013147
    • 2001-12-10
    • Thomas J. SchoepfRafil BasheerIsmat Abu-Isa
    • Thomas J. SchoepfRafil BasheerIsmat Abu-Isa
    • H01H33/76H01R13/115H01R13/53
    • H01R13/53H01H33/76Y10S439/921
    • An arc quenching electrical connector has a male pin terminal which inserts longitudinally into a receptacle or terminal having a gassing wall engaged concentrically about the receptacle. During “hot unplugging” of the electrical connector, an arc is carried between a tip of the male pin and a contact surface of a leading end of the receptacle. The gassing wall extends over and is directly engaged to a portion of the contact surface. Because the gassing wall is also preferably an electrical insulator, the arc communicates electrically with the exposed contact surface and is biased directly against the gassing wall. The gassing wall, when heated by the adjacent arc, quenches or reduces the energy of the arc by releasing gas which eliminates arc erosion of the terminals.
    • 电弧淬火电连接器具有插入端子或纵向插入端子的公插针端子,所述插座或端子具有围绕插座同心配合的放气壁。 在电连接器的“热拔出”期间,在阳销的尖端和容器的前端的接触表面之间承载电弧。 放气壁延伸并且直接接合到接触表面的一部分。 由于放气壁也优选为电绝缘体,所以电弧与暴露的接触表面电连通并且被直接偏压于放气壁。 当相邻电弧加热时,充气壁通过释放气体来淬灭或减少电弧的能量,消除了端子的电弧腐蚀。
    • 8. 发明授权
    • Arc fault detector and method
    • 电弧故障检测器及方法
    • US07009406B2
    • 2006-03-07
    • US10831733
    • 2004-04-23
    • Malakondaiah NaiduThomas J. SchoepfSuresh Gopalakrishnan
    • Malakondaiah NaiduThomas J. SchoepfSuresh Gopalakrishnan
    • G01R31/12
    • H02H1/0015G01R31/025H02H3/44
    • The present invention discloses an arc fault detector including a shunt resistor deployed in a circuit being protected, an arc discriminator sensing voltages across the shunt resistor and outputting an arc detection signal when it detects current variations caused by parallel and series arc faults, a signal transformer buffering the arc detection signal and outputting a pulse, a switch transient detector detecting a voltage differential across load switches and outputting a pulsed switch transient detection signal when the voltage differential across load switches exceeds a reference value, a line interrupter such as a static relay, a switch controller including logic gates generating a trip signal based on predetermined criteria, and a manual switch for resetting the line interrupter. A second embodiment of the present invention senses voltage induced in a coil wrapped around a toroidal core to detect current variations in conductors which pass through the center of the toroidal core.
    • 本发明公开了一种电弧故障检测器,包括部分在被保护电路中的分流电阻器,电弧鉴别器检测分流电阻器两端的电压,并在检测到由并联和串联电弧故障引起的电流变化时输出电弧检测信号;信号变压器 缓冲电弧检测信号并输出​​脉冲,开关瞬态检测器检测负载开关两端的电压差,并且当负载开关两端的电压差超过参考值时输出脉冲开关瞬态检测信号;线路中断器如静态继电器; 开关控制器,包括基于预定标准产生跳闸信号的逻辑门,以及用于复位线路断路器的手动开关。 本发明的第二实施例感测缠绕在环形磁芯上的线圈中感应的电压,以检测通过环形磁芯中心的导体中的电流变化。
    • 9. 发明授权
    • Electrical shuttle connector
    • 电动梭连接器
    • US06485318B1
    • 2002-11-26
    • US10010492
    • 2001-11-13
    • Thomas J. Schoepf
    • Thomas J. Schoepf
    • H01R1353
    • H01R13/53H01R13/193
    • An electrical shuttle connector is capable of being used in high electrical power applications without incurring contact erosion upon the primary electrical contact location with a male pin. A shuttle which receives the male pin is contained by and slides axially within a receptacle of the connector between a mated position and a disengaged position and through an unmated position. An arcing contact face of the receptacle and a leading arcing contact surface of the shuttle incurs any high voltage electrical arcing when mating or un-mating the electrical shuttle connector. As such, when un-mating, the arcing contact face and the leading arcing contact surface disconnect prior to the electrical disconnection of the shuttle from the male pin. When mating the connector, the shuttle establishes electrical continuity with the male pin prior to the electrical engagement of the arcing contact face with the leading arcing contact surface. The male pin is completely free from the receptacle when the shuttle is in the disengaged position, however, the shuttle remains secured within the receptacle.
    • 电穿梭连接器能够在高电力应用中使用,而不会在与主销的主电接触位置上引起接触侵蚀。 接收阳销的梭子被容纳在连接器的插座之间并且在配合位置和脱离位置之间并通过未配合的位置轴向地滑动。 插座的电弧接触面和导线的前导电弧接触表面在配合或取消配合电气梭连接器时会产生任何高压电弧。 因此,当不匹配时,电弧接触面和引导电弧接触表面在穿梭机从阳销引起电断开之前断开。 当配合连接器时,在电弧接触面与引出的电弧接触表面电接合之前,梭子与阳销之间建立电连续性。 当梭子处于脱离位置时,阳销完全没有插座,然而,梭子保持固定在容器内。