EP1515392A2

Fractal antennas, resonators and loading elements

Abstract

A fractal-shaped element may be used to form an antenna (510A, 510B, 510B', 510C), an element in an antenna system, a ground counterpoise in an antenna system, a resonating system, or a combination of any or all of these elements. Fractalizing such systems can substantially reduce the physical size while preserving desired impedance and gain characteristics. For example, a fractalized antenna system for a cellular telephone may be fabricated within the telephone housing (500). The fractal component (510A, 510B, 510B', 510C) need not be planar and may be fabricated using printed circuit board or semiconductor fabrication techniques. Changes in spaced-apart or rotational proximities in an antenna or resonating system, or providing cuts in a fractal element may be used to tune such systems.

EP1515392A2, drawing sheet 1
Sheet 1 of 43

Term

Term ended

Projected expiry passed 8 August 2016, 10.1 years ago.

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19 claims: 5 independent, 14 dependent

  1. 1
    A fractal counterpoise component for use in an antenna system, comprising:a portion that includes at least a first motif and a first replication of said first motif and a second replication of said first motif such that a point chosen on a geometric figure represented by said first motif will result in a corresponding point on said first replication and on said second replication of said first motif;wherein there exists at least one non-straight line locus connecting each said point;wherein a replication of said first motif is a change selected from a group consisting of (a) a rotation and change of scale of said first motif, (b) a linear displacement translation and a change of scale of said first motif, and (c) a rotation and a linear displacement translation and a change of scale of said first motif.
  2. 5
    A ground counterpoise system including at least one fractal counterpoise element having a portion that includes at least a first motif and a first replication of said first motif and a second replication of said first motif such that a point chosen on a geometric figure represented by said first motif will result in a corresponding point on said first replication and on said second replication of said first motif;wherein there exists at least one non-straight line locus connecting each said point;wherein a replication of said first motif is a change selected from a group consisting of (a) a rotation and change of scale of said first motif, (b) a linear displacement translation and a change of scale of said first motif, and (c) a rotation and a linear displacement translation and a change of scale of said first motif.
  3. 10
    A resonator (filter) including at least a portion of which includes the fractal counterpoise component of any one of claims 1-9.
  4. 17
    A loaded antenna, comprising:a vertical element having an upper end and a lower end;anda top-hat assembly electrically coupled to said upper end of said vertical element;wherein said top-hat assembly includes a top-hat element having a portion that includes a first motif and a first replication of said first motif and a second replication of said first motif such that a point chosen on a geometric figure represented by said first motif will result in a corresponding point on said first replication and on said second replication of said first motif;wherein there exists at least one non-straight line locus connecting each said point;wherein a replication of said first motif is a change selected from a group consisting of (a) a rotation and change of scale of said first motif, (b) a linear displacement translation and a change of scale of said first motif, and (c) a rotation and a linear displacement translation and a change of scale of said first motif;and    wherein said top-hat element has a perimeter compression parameter (PC) defined by:PC=(full-sized antenna element length)/(fractal-reduced antenna element length)    in which PC=A log(N(D+C)), A and C are constant coefficients for said first motif, N is an iteration number, and D is a fractal dimension given by log(L)/log(r), where L and r are one-dimensional fractal top-hat element lengths before and after fractalization, respectively.
  5. 19
    A loading element at least a portion of which includes at least a first motif and a first replication of said first motif and a second replication of said first motif such that a point chosen on a geometric figure represented by said first motif will result in a corresponding point on said first replication and on said second replication of said first motif;wherein there exists at least one non-straight line locus connecting each said point;wherein a replication of said first motif is a change selected from a group consisting of (a) a rotation and change of scale of said first motif, (b) a linear displacement translation and a change of scale of said first motif, and (c) a rotation and a linear displacement translation and a change of scale of said first motif.