Claims
- 1. A UHF antenna device, intended to have radiation properties over an antenna bandwidth, said antenna device comprising:
- first and second dielectric layer means overlying each other;
- a first ground plane lying on said first dielectric layer means, opposed to said second dielectric layer means;
- a first conductive patch of a chosen shape, located between said first and second dielectric layer means;
- a second conductive patch of a chosen shape, lying on said second dielectric layer means, opposed to said first conductive patch, said first and second conductive patches substantially facing each other;
- third dielectric layer means overlying both said second conductive patch and said second dielectric layer means, opposed to said first layer means; and
- coupling means for coupling ultra-high frequency electromagnetic wave energy to said first conductive patch, said first conductive patch in turn feeding said second conductive patch;
- said coupling means comprising connection means to a chosen point of said first conductive patch, said connection means insulatively passing through said first ground plane and through said first dielectric layer means;
- wherein:
- said second conductive patch is of a size smaller than that of the first conductive patch;
- said connection means of said coupling means being arranged for connection to at least one chosen point situated between the center and the circumference of said first conductive patch;
- said chosen shapes of said first and second conductive patches and said at least one chosen point being selected together such that said first conductive patch contributes to the antenna radiation properties over a portion of said antenna bandwidth.
- 2. A device according to claim 1, wherein said first and second conductive patches are of a generally circular shape.
- 3. A device according to claim 1, wherein the dielectric materials of said first and second dielectric layer means have a dielectric constant of the order of 2, and wherein the ratio of the thicknesses of the second and first dielectric layer means is of the order of 3.
- 4. A device according to claim 3, wherein the dielectric material of said third dielectric layer means has a dielectric constant of the order of 4.
- 5. A device according to claim 1, further comprising fourth dielectric layer means underlying said first ground plane, opposed to said first dielectric layer means, and a second ground plane underlying said fourth dielectric layer means, opposed to said first ground plane.
- 6. A device according to claim 5, wherein said coupling means comprises a Wilkinson divider located at an intermediate level of said fourth dielectric layer means, and connected to said connector means for feeding said first conductive patch at two chosen points forming with said center of said first conductive patch a substantially right-angled isosceles triangle.
- 7. A device according to claim 5, wherein the dielectric material of said fourth dielectric layer means has a dielectric constant of the order of 2.
- 8. A device according to claim 5, further comprising transversal conductive lead-ins to connect said first ground plane to said second ground plane, said transversal conductive lead-ins defining a peripheral shield for said fourth dielectric layer means.
- 9. A UHF antenna device, intended to have radiation properties over an antenna bandwidth, said antenna device comprising:
- first and second dielectric layer means overlying each other;
- a first ground plane lying on said first dielectric layer means, opposed to said second dielectric layer means;
- a first conductive patch of a generally circular shape, located between said first and second dielectric layer means;
- a second conductive path of a generally circular shape, lying on said second dielectric layer means, opposed to said first conductive patch, said first and second conductive patches substantially facing each other, and said second conductive patch having a size smaller than that of the first conductive patch;
- third dielectric layer means overlying both said second conductive patch and said second dielectric layer means, opposed to said first layer means;
- fourth dielectric layer means underlying said first ground plane, opposed to said first dielectric layer means; and
- a second ground plane underlying said fourth dielectric layer means, opposed to said first ground plane;
- coupling means comprising a feeding circuit located intermediate level said fourth dielectric layer means and said first ground plane; and
- connecting means for connecting said feeding circuit to at least one chosen point situated between the center and the circumference of said first conductive patch, said connecting means insulatively passing through said first ground plane and through said first dielectric layer means;
- said first and second ground planes forming with said coupling means and said fourth dielectric layer means a three-plate structure.
- 10. A device according to claim 9, wherein said feeding circuit comprises a Wilkinson divider connected to said connector means for feeding said first conductive patch at two chosen points situated between the center and the circumference of said first conductive patch and forming with said center of said first conductive patch a substantially right-angled isosceles triangle.
- 11. A device according to claim 9, wherein the dielectric materials of said first and second dielectric layer means and of said fourth dielectric layer means have a dielectric constant of the order of 2, and wherein the ratio of the thicknesses of the second and first dielectric layer means is of the order of 3.
- 12. A device according to claim 11, wherein the dielectric material of said third dielectric layer means has a dielectric constant of the order of 4.
- 13. An UHF antenna array device, intended to have radiation properties over an antenna bandwidth, said antenna array device comprising:
- first and second dielectric layer means overlying each other;
- a first ground plane lying on said first dielectric layer means, opposed to said second dielectric layer means;
- a plurality of first conductive patches of a chosen shape, located between said first and second dielectric layer means;
- a plurality of second conducive patches of a chosen shape, lying on said second dielectric layer means, each of said second conductive patches being opposed and coaxial to a respective one of said first conducive patches;
- third dielectric layer means overlying both said second conductive patches and said second dielectric layer means, opposed to said first layer means; and
- coupling means for coupling ultra-high frequency electromagnetic wave energy to each of said first conductive patches, each of said first conductive patches in turn feeding a respective one of said second conductive patches;
- said coupling means comprising connection means to a chosen point of each of said first conductive patches, said connection means insulatively passing through said first ground plane and through said first dielectric layer means;
- wherein:
- each of said second conductive patches is of a size smaller than that of the first conductive patch that is coaxial to it;
- said connection means of said coupling means being arranged for connection to at least one chosen point situated between the center and the circumference of each said first conductive patches;
- said chosen shapes of said first and second conductive patches and said at least one chosen point being selected together such that said first conductive patches contributes to the antenna radiation properties over a portion of said antenna bandwidth.
- 14. A device according to claim 13, wherein said first and second conductive patches are of a generally circular shape.
- 15. A device according to claim 13, wherein the dielectric materials of said first and second dielectric layer means have a dielectric constant of the order of 2, and wherein the ratio of the thicknesses of the second and first dielectric layer means is of the order of 3.
- 16. A device according to claim 15, wherein the dielectric material of said third dielectric layer means has a dielectric constant of the order of 4.
- 17. A device according to claim 13, further comprising fourth dielectric layer means underlying said first ground plane, opposed to said first dielectric layer means, and a second ground plane underlying said fourth dielectric layer means, opposed to said first ground plane.
- 18. A device according to claim 17, wherein the dielectric material of said fourth dielectric layer means has a dielectric constant of the order of 2.
- 19. A device according to claim 17, wherein said coupling means comprises a Wilkinson divider located at an intermediate level of said fourth dielectric layer means, and connected to said connector means for feeding each of said first conductive patches at two chosen points forming with said center of said first conductive patch a substantially right-angled isosceles triangle.
- 20. A device according to claim 19, wherein said pairs of chosen points on each respective first patches are distributed according to a predetermined configuration to improve the ellipticity rate of the antenna array device for large beam steering angles.
- 21. A device according to claim 20, wherein said predetermined configuration is of a substantially random distribution type or experimentally determined type.
- 22. A device according to claim 17, further comprising transversal peripheral conductive lead-ins to connect said first ground plane to said second ground plane, said transversal conductive lead-ins defining a peripheral shield for said fourth dielectric layer means.
- 23. A device according to claim 13, wherein said coupling means is fed with controllable phase shifters imparting thereto an electronic scanning function.
- 24. A device according to claim 23, wherein said controllable phase shifters are calibrated on the basis of a function of the distance between the theoretical and real values for both respective ones of two central working frequencies of the antenna.
- 25. An antenna device for atmospheric propagation of an ultra high frequency (UHF) electromagnetic energy signal, said signal having a wavelength, said antenna device comprising:
- first dielectric layer means having first and second opposing sides;
- a ground plane on said fist side;
- a first conductive patch of a chosen shape on said second side of said first dielectric layer means, said first conductive patch having a first side adjacent first dielectric layer means and a second side;
- second dielectric layer means, having first and second sides, surmounting said first dielectric layer means with said first dielectric layer means second side adjacent said first side of the second dielectric layer means, said first patch second side adjacent said second dielectric layer means first side;
- a second conductive patch of a chosen shape, on said second dielectric layer means second side;
- third dielectric layer means surmounting the second dielectric layer means; and
- connector means for connecting said UHF signal to one of said conductive patches,
- wherein:
- (a) said second conductive patch is of a size smaller than that of the first conductive patch;
- (b) said first conductive patch first side is connected to said connector means at at least one chosen point situated between the center and the circumference of said first conductive patch.
- 26. An antenna device according to claim 25, wherein said first conductive patch has a diameter less than 1/2 said wavelength.
- 27. An antenna device according to claim 25, wherein said first and second dielectric layer means are each comprised of a material having a dielectric constant on the order of 2, and each have a thickness wherein a ratio of thickness of the second dielectric layer means to the first dielectric layer means is on the order of 3.
- 28. An antenna device according to claim 27, wherein said third dielectric layer means is comprised of a material having a dielectric constant on the order of 4.
- 29. An antenna device according to claim 25, wherein said connector means includes a feeding circuit in a dielectric substrate, said dielectric substrate comprised of a three-plate structure, and further including a bottom ground plate below said dielectric substrate, said three plate structure including a substrate layer located between said ground plane and said bottom ground plane, said substrate layer having conductive lead-ins defining a peripheral shield and a Wilkinson divider, said conductive lead-ins, in combination with said connector means, comprising a means for feeding said first conductive patch at two separated points, said separated points in combination with a center of said first conductive patch forming a substantially right-angled isosceles triangle.
- 30. An antenna device according to claim 25, wherein said antenna device has a reflection coefficient better than -20 dB a central receiving frequency of 1.545 GHz and a central transmitting frequency of 1.645 GHz, said first conductive patch has a diameter of about 70 mm and said second conductive patch has a diameter of about 60 mm.
- 31. An antenna device according to claim 25, wherein said first conductive patch has a diameter of from about 36% to about 38% of said wavelength.
Priority Claims (1)
| Number |
Date |
Country |
Kind |
| 91 13984 |
Nov 1991 |
FRX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/971,206, filed Nov. 4, 1992, abandoned.
US Referenced Citations (5)
Continuations (1)
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Number |
Date |
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| Parent |
971206 |
Nov 1992 |
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