Claims
- 1. A layered antenna having at least one radiating element comprising:
- a metallic ground plane having a pair of identical rectangular apertures in alignment;
- a pair of colinear probes each projecting in opposite direction into a respective aperture to form a dipole, and;
- a feed network conductor pattern connected to and arranged to feed the probes in antiphase whereby each probe radiates through its respective aperture;
- wherein the probes are continuations of the feed network conductor pattern, the feed network conductor pattern and the probes are formed on an insulating substrate adjacent to and spaced at a uniform distance to the ground plane;
- wherein the dimensions of the apertures and the bounding portions of the ground plane are chosen so that the bounding portions parallel with the probes act as parasitic antenna radiating elements, which together with the pair of radiating probes shape the radiation pattern of the antenna; and
- wherein the feed network conductor pattern is positioned so as to be in alignment with unapertured portions of the ground plane in a microstrip configuration.
- 2. A layered antenna according to claim 1, having a plurality of radiating elements each according to claim 1, formed as a linear array, the pairs of probes of all the radiating elements being in alignment, the antenna having a feed network conductor pattern arranged to feed all the probes having one orientation in phase and all the probes having an opposing orientation in antiphase.
- 3. A layered antenna according to claim 1, including a reflector plane spaced from the rear of the antenna.
- 4. A layered antenna according to claim 1 wherein the ground plane is formed as a stamped aluminium sheet.
- 5. A layered antenna according to claim 1, wherein the feed network and the probes are formed as a printed circuit pattern on said insulating substrate.
- 6. A layered antenna according to claim 1, wherein there is a foamed dielectric spacer positioned between the feed network and the ground plane.
- 7. A layered antenna according to claim 2, including a reflector plane spaced from the rear of the antenna.
- 8. A layered antenna according to claim 2, wherein the ground plane is formed as a stamped aluminium sheet.
- 9. A layered antenna according to claim 2, wherein the feed network and the probes are formed as a printed circuit pattern on said insulating substrate.
- 10. A layered antenna according to claim 2, wherein there is a foamed dielectric sheet spacer positioned between the feed network and the ground plane.
- 11. A layered antenna having at least one radiating element comprising:
- a first metallic ground plane having a pair of identical rectangular apertures in alignment;
- a pair of colinear probes each projecting in opposite direction into a respective aperture to form a dipole;
- a feed network conductor pattern connected to and arranged to feed the probes in antiphase whereby each probe radiates through its respective aperture; and
- a second metallic ground plane having a pair of identical rectangular apertures in alignment;
- wherein the probes are continuations of the feed network conductor pattern, the feed network conductor pattern and the probes being formed on an insulating substrate adjacent and spaced at a uniform distance to the ground planes;
- wherein the dimensions of the apertures and the bounding portions of the ground plane are chosen so that the bounding portions parallel with the probes act as parasitic antenna radiating elements, which together with the pair of radiating probes shape the radiation pattern of the antenna; and
- wherein the feed network conductor pattern is positioned so as to be in alignment with unapertured portions of the first and second ground planes in a triplate configuration.
- 12. A layered antenna according to claim 11, having a plurality of radiating elements each according to claim 11, formed as a linear array, the pairs of probes of all the radiating elements being in alignment, the antenna having a feed network conductor pattern arranged to feed all the probes having one orientation in phase and all the probes having an opposing orientation in antiphase.
- 13. A layered antenna according to claim 11, including a reflector plane spaced from the rear of the antenna.
- 14. A layered antenna according to claim 11 wherein the ground planes are each formed as a stamped aluminium sheet.
- 15. A layered antenna according to claim 11, wherein the feed network and the probes are formed as a printed circuit pattern on said insulating substrate.
- 16. A layered antenna according to claim 11, wherein there is a foamed dielectric sheet positioned between the feed network and a ground plane.
- 17. A layered antenna according to claim 12, including a reflector plane spaced from the rear of the antenna.
- 18. A layered antenna according to claim 12, wherein the ground planes are each formed as a stamped aluminium sheet.
- 19. A layered antenna according to claim 12, wherein the feed network and the probes are formed as a printed circuit pattern on said insulating substrate.
- 20. A layered antenna according to claim 12, wherein there is a foamed dielectric sheet spacer between the feed network and a ground plane.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9124291.7 |
Nov 1991 |
GBX |
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RELATED APPLICATIONS
This application is a continuation-in-part of U.S. Ser. No. 969,750 filed on Oct. 30, 1992 now abandoned.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
4614947 |
Rammos |
Sep 1986 |
|
4827276 |
Fukuzawa et al. |
May 1989 |
|
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
969750 |
Oct 1992 |
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