EP0753897A2

Wideband double C-patch antenna including gap-coupled parasitic elements

Abstract

A wide bandwidth, shorted, dual C-patch antenna includes a truncated ground plane, a layer of dielectric material having a first surface overlying the ground plane and an opposing second surface, and an electrically conductive layer overlying the second opposing surface of the dielectric layer. The electrically conductive layer is differentiated into a plurality of antenna elements including a driven antenna element and at least one non-driven, parasitic antenna element. Each of the antenna elements is in the shape of a parallelogram and has one of a rectangular and a non-rectangular (e.g., parabolic, triangular, pentagonal) aperture having a length that extends along a first edge of the electrically conductive layer and a width that extends towards an oppositely disposed second edge. The length has a value that is equal to approximately 20% to approximately 35% of a length of the first edge. The antenna may further include electrically conductive vias or feedthroughs for shorting the electrically conductive layer to the ground plane at a region adjacent to a third edge of the electrically conductive layer. The wide bandwidth antenna may be curved about one or more axes.

EP0753897A2, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Projected expiry passed 13 June 2016, 10.3 years ago.

  1. Priority
  2. Filed
  3. Published
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18 claims: 10 independent, 8 dependent

  1. 1
    An antenna structure, comprising:a ground plane;a layer of dielectric material having a first surface overlying said ground plane and an opposing second surface;an electrically conductive layer overlying said second opposing surface of said dielectric layer, said electrically conductive layer being differentiated into a plurality of antenna elements including a driven antenna element and at least one non-driven, parasitic antenna element, individual ones of said parasitic antenna elements being disposed on opposite sides of said driven antenna element, each of said antenna elements having the shape of a parallelogram and having a first aperture having a length that extends along a first edge of said electrically conductive layer and a width that extends towards an oppositely disposed second edge, said electrically conductive layer further having a second aperture having a length that extends along said first edge of said electrically conductive layer and a width that extends towards said oppositely disposed second edge, said first and second apertures having a zero potential plane disposed therebetween;and means for coupling radio frequency energy into and out of said electrically conductive layer of said driven antenna element.
  2. 4
    An antenna structure as set forth in any preceding claim, wherein said coupling means is comprised of means for connecting a coaxial cable to said electrically conductive layer at a point between said first and second apertures that is nearer to one of said apertures than the other.
  3. 5
    An antenna structure as set forth in any preceding claim, wherein said structure is curved about at least one axis.
  4. 6
    An antenna structure as set forth in any preceding claim, wherein each of said antenna elements includes means for shorting said electrically conductive layer to said ground plane at a region adjacent to a third edge of said electrically conductive layer.
  5. 9
    An antenna structure as set forth in any of claims 6 to 8, wherein said length of said first edge is less than approximately 8.5 cm, and wherein said third edge has a length that is less than approximately 5.5 cm.
  6. 10
    An antenna structure as set forth in any preceding claim, wherein said coupling means is comprised of means for connecting a coaxial cable to said electrically conductive layer of said driven antenna element at a point between said aperture and said third edge.
  7. 11
    An antenna structure as set forth in any preceding claim, wherein said ground plane is truncated, and has dimensions that are approximately equal to the total dimensions of said driven element and said non-driven, parasitic elements.
  8. 12
    An antenna structure as set forth in any preceding claim, having a resonant frequency of approximately 900 MHz.
  9. 13
    A module adapted for insertion into a data processor, said module comprising:an interface for electrically coupling said module to the data processor;a modem that is bidirectionally coupled to said interface;an RF energy transmitter having an input coupled to an output of said modem;an RF energy receiver having an output coupled to an input of said modem;and a wide band, shorted, dual C-patch antenna that is electrically coupled to an output of said RF energy transmitter and to an input of said RF energy receiver, said antenna being comprised of a driven antenna element and at least one non-driven, parasitic antenna element that is coupled to said driven antenna element across a gap.
  10. 16
    A portable handset of a radiotelephone, said handset comprising:an RF energy transmitter;an RF energy receiver;and a wide bandwidth, shorted, microstrip antenna that is electrically coupled to an output of said RF energy transmitter and to an input of said RF energy receiver, said antenna being comprised of a driven antenna element and at least one non-driven, parasitic antenna element that is coupled to said driven antenna element across a gap.