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    • 1. 发明授权
    • Process and arrangement for selective network monitoring for switchgear
    • 开关柜选择性网络监控的流程和布置
    • US06373669B1
    • 2002-04-16
    • US09381874
    • 2000-02-15
    • Werner HartmannWilfried HaasJörg KieserHarald Kurzmann
    • Werner HartmannWilfried HaasJörg KieserHarald Kurzmann
    • H02H300
    • H02H7/30H01H33/66H02H3/044H02H3/05
    • In switchgear with superordinate power circuit-breakers and a plurality of subordinate power circuit-breakers, the superordinate power circuit-breaker must be triggered in the event of failure of the subordinate power circuit-breakers. This is accomplished as follows: electrical post-arc currents are detected after current zero, the electrical post-arc currents are compared with a predetermined limit value, and if the limit value is exceeded, a signal is effected for triggering the superordinate power circuit-breaker in the switchgear. This method can advantageously be implemented in particular in the case of vacuum circuit-breakers with at least one vacuum interrupter. The associated arrangement has a device which monitors the subordinate power circuit-breakers and, if appropriate, triggers the superordinate power circuit-breaker.
    • 在具有上级电源断路器和多个次级断路器的开关柜中,在下级断路器发生故障的情况下必须触发上级电源断路器。 这是通过以下方式实现的:在电流零点之后检测电弧后电流,将电弧后电流与预定极限值进行比较,并且如果超过极限值,则实现用于触发上级功率电路 - 断路器在开关柜。 在具有至少一个真空断路器的真空断路器的情况下,该方法可以有利地被实现。 相关联的装置具有监视下属电源断路器的装置,并且如果适当的话触发上级电源断路器。
    • 2. 发明授权
    • Low pressure gas discharge switch
    • 低压气体放电开关
    • US06417604B1
    • 2002-07-09
    • US09319655
    • 1999-09-10
    • Werner HartmannGünter LinsKlaus-Dieter RohdeJan StrohJörg KieserErnst-Ludwig Hoene
    • Werner HartmannGünter LinsKlaus-Dieter RohdeJan StrohJörg KieserErnst-Ludwig Hoene
    • H01J1714
    • H01J17/04H01H33/6642H01J17/14H01J17/44
    • For a low-pressure gas discharge switch, at least two main electrodes are arranged at least a distance d from each other, the electrodes in an arcing chamber forming a cathode and an anode of a discharge path for the low-pressure gas discharge. The gas discharge is triggered by increasing the electron density in a cathode cavity, at least the cathode in its disk-shaped area having at least one aperture, the cathode and anode apertures preferably being opposite and aligned with each other, for triggering the discharge. An arrangement generating a magnetic field superimposed on the discharge between the main electrodes (1, 1a, 2, 2a) are assigned to the main electrodes (1, 1a, 2, 2a), with which either a predominantly parallel magnetic field is generated or a predominantly perpendicular one, with regard to the direction of current in the discharge. The magnetic field generator may include slot arrangements (11, 11′, 21, 21′) in hollow cylinders (1b, 2b), which are part of the anode (1) and cathode (2) configured as hollow electrodes, or may be realized in the associated current supply lines.
    • 对于低压气体放电开关,至少两个主电极彼此至少设置距离d,电弧室中的电极形成用于低压气体放电的排出路径的阴极和阳极。 通过增加阴极腔中的电子密度来触发气体放电,至少其盘形区域中的至少具有一个孔的阴极,阴极和阳极孔优选地彼此相对并对准,以触发放电。 在主电极(1,1a,2,2a)之间产生叠加在主电极(1,1a,2,2a)之间的放电上的磁场的布置被分配给主电极(1,1a,2,2a),或者主要是平行的磁场,或者 主要是垂直的,关于放电中的电流方向。 磁场发生器可以包括中空圆柱体(1b,2b)中的槽结构(11,11',21,21'),它们是构成中空电极的阳极(1)和阴极(2)的一部分,或者可以是 在相关的电源线实现。