Claims
- 1. An antenna for electromagnetic signals, comprising:
- a nonconductive cylindrical body;
- a conductive coating substantially covering said cylindrical body;
- six curved slots formed in said coating each extending partially around said cylindrical body in a helical shape, said slots being spaced apart and extending substantially parallel to one another; and
- a microstrip feed line for each slot, each feed line having a transverse portion extending across the corresponding slot and a longitudinal portion connected with the transverse portion thereof and extending generally along and parallel to the corresponding slot.
- 2. An antenna as set forth in claim 1, wherein said cylindrical body comprises a laminate.
- 3. An antenna as set forth in claim 1, wherein said coating provides an electrical ground for said feed lines.
- 4. An antenna as set forth in claim 3, wherein said longitudinal portion of each feed line terminates in an open circuit.
- 5. An antenna as set forth in claim 1, wherein said longitudinal portion of each feed line terminates in an open circuit.
- 6. An antenna as set forth in claim 1, wherein said longitudinal portion of each feed line has an end and a length L between the transverse portion thereof and said end thereof, said length L being approximately 1/4 .lambda. where .lambda. is the wavelength of selected signals to be received by the antenna.
- 7. An antenna as set forth in claim 6, wherein the end of the longitudinal portion of each feed line terminates in an open circuit.
- 8. An antenna as set forth in claim 1, wherein each slot extends around said cylindrical body approximately one half of the circumference thereof.
- 9. An antenna as set forth in claim 1, wherein the transverse portion of each feed line is oriented substantially perpendicular to the corresponding slot.
- 10. In an airborne antenna for receiving electromagnetic satellite signals, the improvement comprising:
- an antenna body constructed of a dielectric material and having the shape of a hollow cylinder presenting an outer surface, said antenna body having opposite first and second ends;
- a conductive coating on said outer surface of the antenna body;
- six curved slots in said coating each extending from adjacent said first end of the antenna body partially around said body in a helical shape and terminating away from said second end of the antenna body, said slots being spaced substantially equidistantly apart and extending substantially parallel to one another; and
- a microstrip feed line for each slot having a connection with an electric circuit, each feed line having a transverse portion extending across the corresponding slot and a longitudinal portion connected with the transverse portion thereof and extending generally along and parallel to the corresponding slot.
- 11. The improvement of claim 10, wherein said longitudinal portion of each feed line terminates in an end providing an open circuit.
- 12. The improvement of claim 11, wherein the longitudinal portion of each feed line has a length L between the transverse portion and the end thereof, said length L being approximately 1/4 .lambda. where .lambda. is the wavelength of selected satellite signals.
- 13. The improvement of claim 10, wherein each slot extends around said antenna body approximately one half of the circumference thereof.
- 14. An antenna as set forth in claim 10, wherein the transverse portion of each feed line is oriented substantially perpendicular to the corresponding slot.
- 15. An antenna comprising:
- A hollow cylindrical body constructed of nonconductive material, said body having opposite first and second ends and an outside surface;
- a conductive coating on said outside surface of said cylindrical body;
- six curved slots formed through said coating and body each extending from adjacent said first end of said cylindrical body in a helical shape and each terminating away from said second end, said slots being spaced apart and parallel;
- a microstrip feed line for each slot having a connection with an electric circuit;
- a transverse portion of each feed line extending across the corresponding slot substantially perpendicular thereto;
- a longitudinal portion of each feed line connected with said transverse portion thereof and extending generally along and parallel to the corresponding slot; and
- an end of each longitudinal portion spaced from the transverse portion of the same feed line by a length L of the longitudinal portion, each length L being approximately 1/4 .lambda. where .lambda. is the wavelength of selected electromagnetic signals to be received by the antenna.
- 16. An antenna as set forth in claim 15, wherein said end of each longitudinal portion of each feed line terminates in an open circuit.
- 17. An antenna as set forth in claim 15, wherein said coating provides an electrical ground for said feed lines.
- 18. An antenna as set forth in claim 15, wherein each slot extends around said cylindrical body approximately one half of the circumference thereof.
- 19. An antenna as set forth in claim 15, wherein said cylindrical body comprises a dielectric.
CROSS REFERENCE TO RELATED APPLICATION
This application is a continuation in part of U.S. application Ser. No. 08/642,506, filed May 3, 1996, now U.S. Pat. No. 5,955,997.
US Referenced Citations (18)
Continuation in Parts (1)
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Number |
Date |
Country |
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642506 |
May 1996 |
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