Claims
- 1. A microwave energy applicator radiating uniformly all around the applicator that maintains high efficiency Voltage Standing Wave Ratio (V.S.W.R.) for surrounding media of dielectric constants varying from about 1 to about 80.
- 2. The applicator of claim 1, wherein the high efficiency V.S.W.R. is less than about 1.3:1.
- 3. The applicator of claim 1, wherein the applicator includes a circular polarizer connectable to a dielectric waveguide radiator.
- 4. The applicator of claim 3, wherein the radiator includes a conical void in a dielectric entry section for providing a match to the polarizer.
- 5. The applicator of claim 3, wherein the radiator includes a substantially circular outer cross-section that tapers to an end.
- 6. The applicator of claim 3, wherein the radiator includes polypropylene.
- 7. The applicator of claim 3, wherein the polarizer includes one or more asymmetrical inserts for providing a circularly polarized microwave energy output given a linearly polarized microwave input.
- 8. A microwave energy applicator, comprising a circular polarizer connectable to a dielectric waveguide radiator, the radiator including a substantially circular outer cross-section that tapers to an end, the radiator also including a conical void formed in a dielectric entry section.
- 9. The applicator of claim 8, wherein a flange is connectable between the polarizer and the radiator.
- 10. The applicator of claim 8, wherein the radiator is substantially solid.
- 11. The applicator of claim 8, wherein the polarizer includes one or more asymmetrical inserts for providing a circularly polarized microwave energy output given a linearly polarized microwave input.
- 12. A microwave energy applicator comprising a circular polarizer connectable to a substantially solid dielectric waveguide radiator.
- 13. The applicator of claim 12, wherein the radiator includes a conical void formed in a dielectric entry section.
- 14. The applicator of claim 12, wherein the radiator includes a substantially circular outer cross-section that tapers to an end.
- 15. The applicator of claim 12, wherein the radiator includes polypropylene.
- 16. The applicator of claim 12, wherein the polarizer includes one or more asymmetrical inserts for providing a circularly polarized microwave energy output given a linearly polarized microwave input.
- 17. The applicator of claim 12, wherein the applicator provides a relatively uniform radiation to a variety of surrounding media.
- 18. A method for radiating microwave energy in a substantially uniform manner around a microwave energy applicator comprising connecting a circular polarizer to a dielectric waveguide radiator, the applicator maintaining a high efficiency Voltage Standing Wave Ratio (V.S.W.R.) for media surrounding the applicator having dielectric constants from about 1 to about 80.
- 19. The method of claim 18, wherein the high efficiency V.S.W.R. is less than about 1.3:1.
- 20. The method of claim 18, wherein the radiator is substantially solid and includes a conical void formed in a dielectric entry section.
Parent Case Info
[0001] RELATED APPLICATION
[0002] This application claims the benefit of U.S. Provisional Application No. 60/471,401, filed May 16, 2003, the entire teachings of which are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60471401 |
May 2003 |
US |