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    • 2. 发明申请
    • Adjustable Rating for a Fault Interrupter and Load Break Switch
    • 故障断路器和负载断路开关的可调额定值
    • US20090279216A1
    • 2009-11-12
    • US12117474
    • 2008-05-08
    • Nicholas BruskyKurt Lawrence Lindsey
    • Nicholas BruskyKurt Lawrence Lindsey
    • H01H77/00H02H7/04
    • H01H71/142H01H1/2058H01H9/34H01H33/121H01H71/40H01H71/56H01H77/10
    • A fault interrupter and load break switch includes a trip assembly configured to automatically open a transformer circuit electrically coupled to stationary contacts of the switch upon the occurrence of a fault condition. The fault condition causes a Curie metal element electrically coupled to at least one of the stationary contacts to release a magnetic latch. The release causes a trip rotor of the trip assembly to rotate a rotor assembly. This rotation causes ends of a movable contact of the rotor assembly to electrically disengage the stationary contacts, thereby opening the circuit. The switch also includes a handle for manually opening and closing the electrical circuit in fault and non-fault conditions. Actuation of the handle coupled to the rotor assembly via a spring-loaded rotor causes the movable contact ends to selectively engage or disengage the stationary contacts.
    • 故障断路器和负载断路开关包括跳闸组件,其被配置为在发生故障状态时自动打开电耦合到开关的静止触点的变压器电路。 故障状况导致居里金属元件电耦合到至少一个固定触点以释放磁性锁存器。 释放导致跳闸组件的跳闸转子旋转转子组件。 该旋转使得转子组件的可动触点的端部电动地脱离固定触点,从而打开电路。 该开关还包括用于在故障和非故障条件下手动打开和关闭电路的手柄。 通过弹簧加载的转子联接到转子组件的手柄的致动使得可动接触端部选择性地接合或脱离固定触点。
    • 4. 发明授权
    • Apparatus for interrupting electrical power between two conductors
    • 用于中断两个导体之间电力的装置
    • US5864453A
    • 1999-01-26
    • US685895
    • 1996-07-18
    • Christopher J. WielochMark A. KappelJeffrey R. AnnisDavid J. BenardEllen BoehmerGernot Hildebrandt
    • Christopher J. WielochMark A. KappelJeffrey R. AnnisDavid J. BenardEllen BoehmerGernot Hildebrandt
    • H01H77/06H01H77/10H01H73/00
    • H01H77/10H01H77/06
    • A circuit interrupter provides a conducting path between two conductors and interrupts the conducting path in response to overcurrent conditions in the conductors. The interrupter includes a magnetic core around which the conductors are disposed. Each conductor is electrically coupled to an arc runner and a spanner is biased into contact with the arc runners to compete a conducting path between the conductors. A secondary response mechanism is provided adjacent to the core and includes arms extending around the core and a magnetic body. In response to overcurrent conditions of a first magnitude the body of the secondary response mechanism is attracted to the core causing the arms to displace the spanner out of contact with the arc runners. In response to overcurrent conditions of a second magnitude, such as due to direct short circuits, the spanner is repelled rapidly to a non-conducting position and the secondary response mechanism is attracted to the core to hold the spanner in the non-conducting position. The core shapes an electromagnetic field due to current in the conductors and the field causes extremely rapid expansion of arcs generated during movement of the spanner, resulting in very fast extinction of the arcs and a very brief turnoff time.
    • 电路断路器在两个导体之间提供导电路径,并响应于导体中的过电流条件中断导电路径。 断路器包括磁芯,导体布置在其周围。 每个导体电耦合到电弧流道并且扳手被偏置成与电弧流道接触以竞争导体之间的导电路径。 第二响应机构靠近芯部设置并且包括围绕芯部延伸的臂和磁体。 响应于第一幅度的过电流条件,次级响应机构的主体被吸引到芯部,使得臂使位移扳手脱离与电弧流道接触。 响应于第二量级的过电流条件,例如由于直接短路,扳手迅速地被排斥到非导通位置,并且次级响应机构被吸引到芯部以将扳手保持在不导通位置。 核心由于导体中的电流而形成电磁场,并且该场引起在扳手运动期间产生的电弧的极快的膨胀,导致电弧非常快速的消光和非常短的截止时间。
    • 5. 发明授权
    • Current limiting circuit interrupter
    • 限流电路断路器
    • US4656324A
    • 1987-04-07
    • US839491
    • 1986-03-14
    • Edward K. Howell
    • Edward K. Howell
    • H01H73/38H01H73/36H01H77/10H01H33/12H01H33/18
    • H01H77/10
    • A pair of main contacts and a pair of arcing contacts are electrically and mechanically interconnected within a current limiting circuit interrupter. A common operator biases the main contacts in a closed contact condition, while simultaneously biasing the arcing contacts to an open condition. A contact driver operating to open the main contacts simultaneously closes the arcing contacts causing circuit current to pass through both the main and arcing contacts. Further displacement of the moving contacts completely directs the circuit current through the arcing contacts for electromagnetic repulsion and arcing within a magnetic structure.
    • 一对主触点和一对电弧触点在限流电路断续器内电气和机械互连。 常见的操作者在闭合接触状态下偏压主触头,同时将电弧触点偏压到开启状态。 操作以打开主触点的触点驱动器同时关闭电弧触点,导致电路电流通过主电弧触头和电弧触点。 移动触点的进一步位移完全引导电路电流通过电弧触点,用于在磁性结构内的电磁排斥和电弧。
    • 6. 发明授权
    • Low inductance resistor for high current limitation
    • 低电感电阻器,用于高电流限制
    • US4568907A
    • 1986-02-04
    • US639876
    • 1984-08-13
    • Ralph L. Hurtle
    • Ralph L. Hurtle
    • H01H9/34H01H73/18H01H77/10H01C3/02
    • H01H77/10H01H73/18H01H2033/163H01H9/342
    • A low inductance resistor for high current limitation is arranged from a single conductor wrapped in a continuous direction to form a plurality of turns wherein current transport through each of the turns induces a corresponding magnetic field to oppose the magnetic field induced within each next adjacent turn. The resistor finds application within a current limiter unit which employs magnetic repulsion and gas pressure to direct arcs that occur between separating contacts to within the high voltage region of an arc chute. The resistor is connected across the arc to reduce the arc current to a low enough value so that the arc becomes extinguished within a predetermined period of time.
    • 用于高电流限制的低电感电阻器从沿连续方向缠绕的单个导体布置以形成多个匝,其中通过每个匝的电流传输引起相应的磁场以与在每个下一个相邻匝内感应的磁场相对。 电阻器在电流限制器单元内实现应用,其采用磁排斥和气体压力来将在分离触点之间发生的电弧引导到电弧槽的高电压区域内。 电阻器跨过电弧连接,以将电弧电流减小到足够低的值,使得电弧在预定时间段内熄灭。
    • 8. 发明授权
    • Current limiting contact arrangement
    • 限流触点布置
    • US4511774A
    • 1985-04-16
    • US559503
    • 1983-12-08
    • Kenneth A. Forsell
    • Kenneth A. Forsell
    • H01H9/42H01H9/46H01H77/10H01H33/20H01H33/16
    • H01H77/10H01H9/42H01H9/465
    • Current limiting stationary (2) and movable (6) contacts are arranged to provide spaced, parallel oppositely directed current paths therein whereby fault currents generate electromagnetic forces for repelling the movable contact (6) from the stationary contact (2). An electrically resistive arc runner (20) has an arc transfer segment (20a) disposed along the path of movement of the movable contact (6) and is biased at one end (20b) into current carrying engagement with a stop (22) on stationary contact (2). The other end of the transfer segment (20a) is connected through a major length of the arc runner (20) to the stationary contact (2) at a point distinct from stop (22). An arc drawn between the contacts (2, 6) at separation initially passes current to the transfer segment (20a) and the stationary contact (2) through stop (22). Gas pressure from the arc subsequently forces a separation of the arc runner end (20b) from the stop (22) whereby current is directed through the major length of the arc runner to the stationary contact for increasing the resistance of the arc for extinguishing the arc.
    • 电流限制固定(2)和可动(6)触点布置成在其中提供间隔开的平行的相对定向的电流路径,由此故障电流产生用于从静触点(2)排斥可动触头(6)的电磁力。 电阻电弧流道(20)具有沿着可移动触点(6)的移动路径设置的电弧传输段(20a),并且在一端(20b)处被偏置成与静止位置(22)的电流承载接合 联系人(2)。 转移段(20a)的另一端通过电弧流道(20)的主要长度在与止挡(22)不同的点处连接到固定触头(2)。 在分离时在触头(2,6)之间引出的电弧首先通过止动件(22)将电流传递到传递段(20a)和固定触点(2)。 来自电弧的气体压力随后迫使电弧流道端部(20b)与止动件(22)分离,由此电流通过电弧流道的主要长度被引导到固定触点,以增加电弧的电阻以熄灭电弧 。
    • 9. 发明授权
    • Current limiter unit
    • 电流限制器单元
    • US4485283A
    • 1984-11-27
    • US412445
    • 1982-08-27
    • Ralph L. Hurtle
    • Ralph L. Hurtle
    • H01H9/34H01H73/18H01H77/10H01H9/30
    • H01H73/18H01H77/10H01H2033/163H01H9/342
    • A current limiter unit employs both a magnetic repulsion field and a gas pressure force to direct arcs to within the high voltage region of an arc chute. The unit confines the evolved gas pressure in all directions except in the direction of the arc plates. Venting the opposite end of the arc chute rapidly motivates the arc through the arc plates and out of the unit. Venting the sides of the arc chute reduces the back pressure produced by arc gases as well as the pressure exerted upon the heated breaker casing. The combination of magnetic and directed gas repulsion substantilly reduces the I.sup.2 t value of the unit. A parallel positive temperature coefficient impedance can be connected across the arc to reduce the arc current to a low enough value so that the arc becomes extinguished within a predetermined period of time.
    • 电流限制器单元采用磁排斥场和气体压力力来将电弧引导到电弧槽的高电压区域内。 该单元将进化气体压力限制在除弧板方向以外的所有方向上。 将电弧槽的相对端排空,迅速激发电弧穿过电弧板并离开设备。 排气弧槽的侧面减少了由电弧气体产生的背压以及施加在加热的断路器壳体上的压力。 磁性和定向气体排斥的结合使得该单元的I2t值降低。 平行的正温度系数阻抗可以跨越电弧连接,以将电弧电流减小到足够低的值,使得电弧在预定时间段内熄灭。