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Protective device for an electrical supply facility

  • US 9,948,087 B2
  • Filed: 03/11/2013
  • Issued: 04/17/2018
  • Est. Priority Date: 03/08/2010
  • Status: Active Grant
First Claim
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1. A protective device configured to be coupled between an AC power source and an electrical load, the AC power source including at least one hot conductor and a ground conductor connected to earth ground, the device comprising:

  • an input device configured to be coupled to the AC power source, the input device comprising a plurality of line contacts including at least one hot line contact configured to be coupled to the at least one hot conductor and a line-side ground contact configured to be coupled to the ground conductor;

    an output device including a plurality of load contacts configured to be coupled to the electrical load, the plurality of load contacts including at least one hot load contact and a load-side ground contact, the output device being configured to provide the electrical load with AC electric power received via the input device from the AC power source;

    a ground continuity monitor coupled to the ground conductor, the ground continuity monitor being configured to detect a ground discontinuity condition in the ground conductor, wherein the ground conductor is substantially isolated from the electrical load during at least one period of time during which the ground continuity monitor is configured to detect a ground discontinuity, the ground conductor being subsequently connected to the electrical load upon failing to detect a ground discontinuity during the at least one period of time;

    a circuit interrupter mechanism coupled to the ground continuity monitor, the circuit interrupter mechanism being configured to interrupt electrical continuity between the at least one hot line contact and the at least one hot load contact in a tripped state and establish electrical continuity between the at least one hot line contact and the at least one hot load contact in a reset state; and

    a self-test circuit coupled to the ground continuity monitor and configured to perform a simulated ground continuity test that simulates the ground discontinuity condition, the self-test circuit providing a test failure signal when the ground continuity monitor fails to provide an output signal in response to the simulated ground continuity test, the circuit interrupter mechanism being configured to trip in response to the test failure signal.

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