Claims
- 1. An antenna assembly for use with a wireless communication device, the antenna assembly comprising:
a resonator support substrate; an electrically conducting element mechanically supported by the resonator support substrate; a ground plane element of reduced electrical potential; a dielectric bridge member having a first edge portion shaped to substantially support the resonator support substrate; and a signal and ground connection location of the conducting element, wherein at said connection location the conducting element is operatively coupled to both an RF signal line and the ground plane element.
- 2. The antenna assembly of claim 1, wherein the electrically conducting element is a metallic wire member.
- 3. The antenna assembly of claim 2, wherein the wire member is spirally wound about the resonator support substrate at least one turn.
- 4. The antenna assembly of claim 1, wherein the first edge portion of the dielectric bridge member is shaped in a curve shape.
- 5. The antenna assembly of claim 1, wherein the resonator support substrate is constructed of a deformable dielectric material.
- 6. The antenna assembly of claim 1, wherein the ground plane is formed as a thin layer of electrically conducting material on a portion of a printed wiring board.
- 7. The antenna assembly of claim 1, wherein the resonator support substrate has a longitudinal axis and includes opposing major surfaces.
- 8. The antenna assembly of claim 7, wherein the electrical element comprises at least one electrically conducting trace segment formed on the first major surface of the resonator support substrate.
- 9. The antenna assembly of claim 8, wherein the at least one electrically conducting trace line is substantially transverse to the longitudinal axis of the resonator support substrate.
- 10. The antenna assembly of claim 1, wherein the connection location defines a pair of operative portions of the conductive element having different operational lengths.
- 11. An antenna assembly in combination with a wireless communication device having a combined signal generating and receiving element and a ground plane, the antenna assembly comprising:
a resonator element; a conductive portion wherein the conductive portion electrically couples a communication signal output and the conductive portion electrically couples a ground plane of reduced electrical potential; a dielectric support element abutting the resonator element; and, wherein the resonator element and ground plane cooperatively transmit and receive electromagnetic communication signals.
- 12. The antenna assembly of claim 11, wherein the shaped support edge portion is curved.
- 13. The antenna assembly of claim 11, wherein the conductive portion is a wire member.
- 14. The antenna assembly of claim 13, wherein the wire member is spirally wound about the resonator element at least one turn.
- 15. The antenna assembly of claim 11, wherein the resonator element has a longitudinal axis and includes opposing major surfaces, and wherein the conductive portion comprises at least one electrically conducting trace on one of the opposing major surfaces of the resonator element.
- 16. The antenna assembly of claim 15, the conductive portion further comprising an electrically conductive layer on a substantial portion of the other major surface of the resonator element.
- 17. The antenna assembly of claim 15, wherein the conductive portion is a conductive layer deposited on a major surface of the resonator element.
- 18. The antenna assembly of claim 17, wherein the conductive layer forms an array pattern on the major surface.
- 19. The antenna assembly of claim 17, wherein the array pattern includes a plurality of equally spaced, parallel elements.
- 20. The antenna assembly of claim 19, wherein the support element comprises at least one tooth structure.
- 21. The antenna assembly of claim 17, wherein the support element comprises a conductive layer on a major surface of the support element.
- 22. The antenna assembly of claim 21, wherein the conductive layer operates to electrically couple the antenna assembly with the wireless communication device.
- 23. An antenna assembly for use with a wireless communication device, the antenna assembly comprising:
a resonator element composed of an electrically conducting material, said resonator element defining a signal and ground connection location; a flexible resonator support substrate supporting the resonator element; a dielectric bridge member supporting the resonator support substrate; a ground plane;
wherein the flexible resonator support substrate and the dielectric bridge member are mechanically connected together; and wherein the resonator element is operatively coupled to both the ground plane and to an RF signal line at the connection location.
- 24. The antenna assembly of claim 23, wherein a portion of the flexible resonator support substrate is curved and wherein the dielectric bridge member has a curved support edge which mechanically connects the flexible resonator support substrate to the dielectric bridge member.
- 25. The antenna assembly of claim 24, wherein the flexible resonator support substrate and the dielectric bridge member are mechanically connected substantially perpendicular to each other.
- 26. The antenna assembly of claim 24, wherein the curved support edge of the dielectric bridge member includes at least one non-conductive stand-off member.
- 27. The antenna assembly of claim 24, wherein the dielectric bridge member includes a downwardly facing edge having at least one tab extending therefrom, for mechanically coupling the antenna assembly to the ground plane of a wireless communication device.
- 28. The antenna assembly of claim 23, wherein the resonator element is an elongate band having an outwardly facing portion and a transverse band portion having an inwardly facing portion and wherein the connection location is defined upon the transverse band portion.
- 29. The antenna assembly of claim 28, further comprising:
an additional transverse band portion having different conductive regions as compared to the other transverse band portion.
- 30. The antenna assembly of claim 28, wherein an outwardly facing portion of the elongate band is substantially curved.
- 31. A resonator element for use in an antenna assembly having an RF signal line and a ground plane, the resonator element comprising:
an elongate band of conductive material; and, a transverse band of conductive material operatively connected to the elongate band in a spaced relation, said transverse band having a plurality of spaced conductive elements, at least one of the plurality of conductive elements defining a signal and ground connection location wherein the RF signal line and the ground plane are operatively coupled to the transverse band at the connection location.
- 32. The resonator element of claim 31, wherein the elongate band of conductive material is curved and wherein the location of transverse band relative to the elongated band is predetermined.
- 33. The resonator element of claim 31, further comprising at least one or more additional transverse bands of conductive material.
- 34. The resonator element of claim 33, further comprising a flexible resonator support substrate, the flexible resonator support substrate in supporting relation to the elongate band and the transverse band.
- 35. An antenna assembly for use in wireless communications device having an RF signal line and a ground plane, the antenna assembly comprising:
a resonator element being operatively coupled to the RF signal line and the ground plane proximate a connection location; a flexible resonator support substrate, the flexible resonator support substrate in supporting relation to the resonator element; and and a dielectric bridge member, the dielectric bridge member in supporting relation to the resonator element, wherein the flexible resonator element and the dielectric bridge member are mechanically connected to each other.
- 36. The antenna assembly of claim 35, wherein the flexible resonator support substrate is curved and wherein the dielectric bridge member has a predetermined support edge which operatively connects the flexible resonator support substrate to the dielectric bridge member in the non-conducting relation.
- 37. The antenna assembly of claim 36, wherein the non-conducting relation is non-orthogonal.
- 38. The antenna assembly of claim 36, wherein the predetermined support edge of the dielectric bridge member includes at least one stand-off.
- 39. The antenna assembly of claim 36, wherein the dielectric bridge member includes a downwardly facing edge having at least one tab extending therefrom for mechanically connecting the antenna assembly to the ground plane of a wireless communication device.
- 40. An antenna assembly for a wireless communication device, comprising:
a resonator means for receiving and transmitting radio frequency communication signals; communication circuitry means for transforming radio frequency communication signals received by the resonator means into audible communication signals and for transforming audible communication to radio frequency communication signals transmitted by the resonator means; and, wherein the resonator means is electrically coupled to a ground plane of reduced electrical potential; and wherein the resonator element further comprises:
a resonator support substrate having a curved shape; and, an electrically conducting element mechanically supported by the resonator support substrate and also having a curved shape.
Parent Case Info
[0001] The applicant for utility patent coverage in the U.S. for the invention taught, enabled, and claimed in this application for Letters Patent, hereby incorporates by reference and under 37 CFR §119(e) claims the benefit of priority of the respective filing dates accorded the following three provisional patent applications earlier filed with the U.S. Patent and Trademark Office, namely:
[0002] (i) U.S. Provisional Patent Application No. 60/207,602 filed May 26, 2000 and entitled, “Flexible Substrate Multiple Band Wire Antenna System,”
[0003] (ii) U.S. Provisional Patent Application No. 60/211,099 filed Jun. 12, 2000, and entitled, “Wide Band Dual Frequency Compact Antenna, and,
[0004] (iii) U.S. Provisional Patent Application No. 60/211,569 filed Jun. 15, 2000, and entitled, “Flexible Substrate Multiple Band Antenna System.”
Provisional Applications (3)
|
Number |
Date |
Country |
|
60207602 |
May 2000 |
US |
|
60211099 |
Jun 2000 |
US |
|
60211569 |
Jun 2000 |
US |