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    • 3. 发明授权
    • Inline spark gap assembly
    • 在线火花隙组件
    • US07301122B2
    • 2007-11-27
    • US10907522
    • 2005-04-04
    • Justin L PaquetteJeffery J Gadamus
    • Justin L PaquetteJeffery J Gadamus
    • B23K9/067
    • B23K9/0672B23K9/0673B23K9/105
    • A spark gap point and spark gap assembly for a welding-type device are disclosed for igniting and stabilizing a welding-type arc. A double-headed spark gap point having spark gap surfaces on two ends is incorporated into a spark gap assembly with a pair of single-headed spark gap points that each have only a single spark gap surface. All spark gap points are arranged coaxially on a base so that each spark gap surface faces another spark gap surface. A spark gap is created between each set of opposing spark gap surfaces. When a high voltage is applied across the spark gap points, sparks periodically arc across the spark gaps, creating a high frequency, high voltage signal usable to ignite or stabilize a welding-type arc.
    • 公开了用于点焊和稳定焊接型电弧的用于焊接型装置的火花隙点和火花隙组件。 具有两端具有火花隙表面的双头火花隙点被并入具有一对单头火花隙点的火花隙组件中,每一个仅具有单个火花隙表面。 所有火花隙点同轴地布置在基座上,使得每个火花隙表面面向另一个火花隙表面。 在每组相对的火花隙表面之间产生火花隙。 当在火花隙点之间施加高电压时,火花周期性地跨越火花隙,产生可用于点燃或稳定焊接电弧的高频,高电压信号。
    • 8. 发明授权
    • Ground fault protection method and apparatus
    • 接地故障保护方法及装置
    • US06347025B1
    • 2002-02-12
    • US09488767
    • 2000-01-21
    • Mark A. UlrichJeffery J. Gadamus
    • Mark A. UlrichJeffery J. Gadamus
    • H02H316
    • H02H3/162G01R31/025H05B6/04
    • A method and apparatus for supply welding, plasma cutting, and/or induction heating power having a ground fault interrupt (GFI) protection circuit is disclosed. The primary winding of a monitoring transformer in the GFI protection circuit is connected between the high frequency floating output of the power supply and ground. One end of the secondary of the monitoring transformer is connected to a voltage source. The other end of the secondary is connected to an impedance. The other end of the impedance is connected back to the voltage source to form a voltage divider across the voltage source. Changes in the impedance between the floating output of the power supply and ground are sensed by the GFI protection circuit and converted into a voltage. This voltage is filtered, rectified, and calibrated into a dc sense signal. The sense signal is compared to a threshold signal. In the event the sense signal exceeds the threshold signal, an interrupt signal is sent to the power supply and the power supply shuts down.
    • 公开了一种具有接地故障中断(GFI)保护电路的供电焊接,等离子切割和/或感应加热电源的方法和装置。 GFI保护电路中监控变压器的初级绕组连接在电源的高频浮动输出和地之间。 监控变压器次级的一端连接电压源。 次级的另一端连接到阻抗。 阻抗的另一端连接到电压源,以在电压源上形成分压器。 电源和接地的浮动输出之间的阻抗变化由GFI保护电路检测并转换成电压。 该电压被滤波,整流并校准为直流感测信号。 将感测信号与阈值信号进行比较。 在感测信号超过阈值信号的情况下,中断信号被发送到电源并且电源关闭。