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Non-contact sensor based Rogowski coil

  • US 10,545,177 B2
  • Filed: 06/10/2016
  • Issued: 01/28/2020
  • Est. Priority Date: 09/02/2015
  • Status: Active Grant
First Claim
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1. A coil for sensing a changing current comprising:

  • (a) an elongate substantially flexible core material, said elongate substantially flexible core material having a first end portion and a second end portion, said elongate substantially flexible core material having a middle portion between said first end portion and said second end portion, said second end portion at an opposite end of said elongate substantially flexible core material than said first end portion;

    (b) a conductive sensing member supported by said middle portion of said substantially flexible core material;

    (c) a first non-contact voltage sensor supported by said middle portion of said substantially flexible core material, a second non-contact voltage sensor supported by said middle portion of said substantially flexible core material and spaced apart from said first non-contact voltage sensor, wherein said first non-contact voltage sensor is different than said conductive sensing member, wherein said second non-contact voltage sensor is different than said conductive sensing member;

    (d) said first end portion and said second end portion maintained in a position proximate one another;

    (e) a current sensing module that receives a first input signal from said conductive sensing member and estimates a current conductor signal within a conductor associated with said elongate substantially flexible core material, wherein said current conductor signal is representative of changing current levels in said conductor;

    (f) a voltage sensing module that receives a second input signal from said first non-contact voltage sensor, wherein said second input signal is different than said first input signal, and a third input signal from said second non-contact voltage sensor, wherein said third input signal is different than said first input signal, and estimates a voltage conductor signal within said conductor associated with said elongate substantially flexible core material based upon said second input signal from said first non-contact voltage sensor and said third input signal from said second non-contact voltage sensor, wherein said voltage conductor signal is representative of a voltage level in said conductor.

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