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Inductor with flux path for high inductance at low load

  • US 10,650,959 B1
  • Filed: 10/24/2017
  • Issued: 05/12/2020
  • Est. Priority Date: 05/06/2016
  • Status: Active Grant
First Claim
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1. A magnetic component comprising:

  • a bobbin having a first end flange, a second end flange and a passageway through the bobbin from the first end flange to the second end flange;

    at least one coil positioned around the passageway between the first end flange and the second end flange;

    a first E-core and a second E-core, each E-core having a respective main body, a respective middle leg, a respective first outer leg and a respective second outer leg, the legs of each E-core extending from the respective main body to respective end surfaces, the middle legs of the two E-cores positioned in the passageway of the bobbin with the respective end surfaces of the middle legs juxtaposed within the passageway and spaced apart by a first magnetic gap, each middle leg having a respective first longitudinal surface perpendicular to the respective end surface, the first and second outer legs of the two E-cores positioned outside the bobbin with the end surface of the first outer leg of the first E-core engaging the end surface of the first outer leg of the second E-core and with the end surface of the second outer leg of the first E-core engaging the second outer leg of the second E-core, whereineach of the first E-core and the second E-core is an economical flat design (EFD) core; and

    the middle leg of each of the first E-core and the second E-core has a height less than a height of each of the first outer leg and the second outer leg;

    anda first I-bar positioned in the passageway in alignment with the middle leg of the first E-core and in alignment with the middle leg of the second E-core, the first I-bar spanning the first magnetic gap with a first portion of the first I-bar parallel to and spaced apart from the first longitudinal surface of the middle leg of the first E-core to form a second magnetic gap between the first I-bar and the longitudinal surface of the middle leg of the first E-core with at least a portion of the second magnetic gap positioned within the passageway, and with a second portion of the first I-bar parallel to and spaced apart from the first longitudinal surface of the middle leg of the second E-core to form a third magnetic gap between the first I-bar and the longitudinal surface of the middle leg of the second E-core with at least a portion of the third magnetic gap positioned within the passageway.

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