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Single structure multi mode antenna having a unitary body construction for wireless power transmission using magnetic field coupling

  • US 9,941,743 B2
  • Filed: 08/07/2015
  • Issued: 04/10/2018
  • Est. Priority Date: 08/07/2015
  • Status: Active Grant
First Claim
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1. An antenna, comprising:

  • a) a first coil portion configured to generate a first inductance and a first resonant frequency, the first coil portion comprising a continuous electrically conductive path that extends along a first conductive wire from a first coil portion first end that resides at an end of an outermost turn of the first coil portion to a first coil portion second end that resides at an end of an inner most turn of the first coil portion, the first coil portion comprising N1 number of turns, wherein a first gap extends between adjacent turns within the first coil;

    b) a second coil portion configured to generate a second inductance and a second resonant frequency, wherein the first resonant frequency is different than the second resonant frequency, the second coil portion comprising a continuous electrically conductive path that extends along a second conductive wire from a second coil portion, first end that resides at an end of an outermost turn of the second coil portion to a second coil portion second end that resides at an end of an inner most turn of the second coil portion, wherein the second coil portion is positioned one of within an inner perimeter formed by an innermost turn of the first coil and adjacent the first coil, the second coil portion comprising N2 number of turns, wherein a second gap extends between adjacent turns within the second coil portion, and wherein the first end of the second coil portion meets and joins the second end of the first coil portion forming a unitary antenna body with a continuous junction therebetween;

    c) a third gap separating the outermost turn of the second coil portion from the innermost turn of the first coil portion, wherein the third gap is greater than the first and second gaps;

    d) a first terminal electrically connected to the first end of the first coil portion, a second terminal electrically connected to the second end of the second coil portion and a third terminal electrically connected to either of the first or second coil portions;

    e) wherein a tunable inductance is generatable by electrically connecting two of the first, second and third terminals;

    f) wherein the first resonant frequency of the first coil differs from the second resonant frequency of the second coil by at least 100 kHz; and

    g) wherein at least one of the first coil and the second coil operates at about 100 kHz to about 500 kHz.

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