Claims
- 1. A voltage-controlled tunable filter, comprising:
at least one coaxial combline resonator; said at least one coaxial combline resonator includes and at least one metallized through-hole; an input/output coupling metallization on at least one surface of said at least one coaxial combline resonator; at least one tunable varactor associated with said at least one coaxial combline resonator; and an inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization.
- 2. The voltage-controlled tunable filter of claim 1, further comprising at least one DC biasing point for providing voltage to said at least one tunable varactor.
- 3. The voltage-controlled tunable filter of claim 1, wherein said at least one tunable varactor is four tunable varactors.
- 4. The voltage-controlled tunable filter of claim 1, wherein said at least one input/output coupling metallization on at least one surface of said at least one coaxial combline resonator is two input/output coupling metallizations on at least one surface of said at least one coaxial combline resonator.
- 5. The voltage-controlled tunable filter of claim 1, wherein said voltage-controlled tunable filter is a monoblock voltage controlled tunable filter.
- 6. The voltage-controlled tunable filter of claim 1, wherein said voltage-controlled tunable filter is a coaxial block voltage controlled tunable filter.
- 7. The voltage-controlled tunable filter of claim 1, wherein said inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization provides variable capacitive cross coupling.
- 8. The voltage-controlled tunable filter of claim 1, wherein said inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization provides variable inductive cross coupling.
- 9. The voltage-controlled tunable filter of claim 1, wherein said inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization provides variable capacitive and inductive cross coupling.
- 10. A voltage-controlled tunable filter, comprising:
at least one coaxial combline resonator; said at least one coaxial combline resonator includes and at least one metallized through-hole; a plurality of input/output coupling metallizations on at least one surface of said at least one coaxial combline resonator; at least one tunable varactor associated with said at least one coaxial combline resonator; and an inter-pole-and-port cross coupling component cross coupling at least two of said plurality of input/output coupling metallizations.
- 11. The voltage-controlled tunable filter of claim 10, further comprising at least one DC biasing point for providing voltage to said at least one tunable varactor.
- 12. The voltage-controlled tunable filter of claim 10, wherein said at least one tunable varactor is four tunable varactors.
- 13. The voltage-controlled tunable filter of claim 10, wherein said plurality of one input/output coupling metallizations on at least one surface of said at least one coaxial combline resonator is two input/output coupling metallizations on at least one surface of said at least one coaxial combline resonator, said two input/output coupling metallizations are cross coupled by an inter-pole-and-port cross coupling component.
- 14. The voltage-controlled tunable filter of claim 10, wherein said voltage-controlled tunable filter is a monoblock voltage controlled tunable filter.
- 15. The voltage-controlled tunable filter of claim 10, wherein said voltage-controlled tunable filter is a coaxial block voltage controlled tunable filter.
- 16. The voltage-controlled tunable filter of claim 10, wherein said inter-pole-and-port cross coupling component cross coupling at least two of said plurality of input/output coupling metallizations provides variable capacitive cross coupling.
- 17. The voltage-controlled tunable filter of claim 10, wherein said inter-pole-and-port cross coupling component cross coupling at least two of said plurality of input/output coupling metallizations provides variable inductive cross coupling.
- 18. The voltage-controlled tunable filter of claim 10, wherein said inter-pole-and-port cross coupling component cross coupling at least two of said plurality of input/output coupling metallizations provides variable capacitive and inductive cross coupling.
- 19. An RF filter, comprising:
at least one block of dielectric material; at least one metallized through hole within said at least one block of dielectric material; said at least one block of dielectric material having an electrode pattern that adheres to at least one surface of said block; said electrode pattern consisting of a photodefinable metallization covering at least one surface of said block of dielectric material converted to a photodefined patterned metallization on at least one surface of said dielectric material and wherein said metallization includes at least one input/output coupling metallization and also includes at least one tunable varactor; and an inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one block of dielectric material and said at least one input-output coupling metallization.
- 20. The RF filter of claim 19, further comprising at least one additional block of dielectric material connected via an iris between said block of dielectric material and said at least one additional block of dielectric material.
- 21. The RF filter of claim 19, further comprising at least one DC biasing point for providing voltage to said at least one tunable varactor.
- 22. The voltage-controlled tunable filter of claim 19, wherein inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one block of dielectric material and said at least one input-output coupling metallization provides variable capacitive cross coupling.
- 23. The voltage-controlled tunable filter of claim 19, wherein inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one block of dielectric material and said at least one input-output coupling metallization provides variable inductive cross coupling.
- 24. The voltage-controlled tunable filter of claim 19, wherein inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one block of dielectric material and said at least one input-output coupling metallization provides variable capacitive and inductive cross coupling.
- 25. A method of tuning transmission zeros using a voltage-controlled tunable filter, comprising the steps of:
providing at least one coaxial combline resonator; said at least one coaxial combline resonator includes at least one metallized through-hole and an input/output coupling metallization on at least one surface of said at least one coaxial combline resonator; varying the capacitance of a varactor by using at least one tunable varactor associated with said at least one coaxial combline resonator; and cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization with an inter-pole-and-port cross coupling component.
- 26. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, further comprising providing at least one DC biasing point for providing voltage to said at least one tunable varactor.
- 27. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said at least one tunable varactor is four tunable varactors.
- 28. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said least one input/output coupling metallization on at least one surface of said at least one coaxial combline resonator is two input/output coupling metallization on at least one surface of said at least one coaxial combline resonator.
- 29. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said voltage-controlled tunable filter is a monoblock voltage controlled tunable filter.
- 30. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said voltage-controlled tunable filter is a coaxial block voltage controlled tunable filter.
- 31. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said step of cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization with an inter-pole-and-port cross coupling component provides variable capacitive cross coupling.
- 32. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said step of cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization with an inter-pole-and-port cross coupling component provides variable inductive cross coupling.
- 33. The method of tuning transmission zeros using a voltage-controlled tunable filter of claim 25, wherein said step of cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization with an inter-pole-and-port cross coupling component provides variable capacitive and inductive cross coupling.
- 34. A voltage-controlled tunable filter, comprising:
at least one coaxial combline resonator; said at least one coaxial combline resonator includes and at least one metallized through-hole; an input/output coupling metallization on at least one surface of said at least one coaxial combline resonator; at least one MEM varactor associated with said at least one coaxial combline resonator; and an inter-pole-and-port cross coupling component cross coupling a filter pole of said at least one combline resonator and said at least one input-output coupling metallization.
- 35. The voltage-controlled tunable filter of claim 34, wherein said MEM varactor has an interdigital topology.
- 36. The voltage-controlled tunable filter of claim 34, wherein said MEM varactor has a parallel plate topology.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application claims priority to U.S. Provisional Patent Application Serial No. 60/445,349, “ELECTRONICALLY TUNABLE BLOCK FILTER WITH TUNABLE TRANSMISSION ZEROS” filed Feb. 5, 2003, by Qinghua Kang et al.
Provisional Applications (1)
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Number |
Date |
Country |
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60445349 |
Feb 2003 |
US |