Claims
- 1. A tunable filter comprising:
a fixed substrate having an upper surface; a first plate on the upper surface of said fixed substrate; a movable substrate having a lower surface opposing the upper surface of the fixed substrate; a second plate on the lower surface of the movable substrate, wherein the first plate and second plate define a capacitor having a capacitor gap; and a driver having a first end and a second end, wherein the first end of the driver is mounted on the fixed substrate and the second end of the driver is attached to the movable substrate, and wherein a length change of the driver changes the capacitor gap, affecting a frequency response of said tunable filter.
- 2. The tunable filter of claim 1, wherein the driver is operatively coupled to a tuning signal and the driver changes its length in response to the tuning signal.
- 3. The tunable filter of claim 2, wherein the driver is a piezoelectric driver.
- 4. The tunable filter of claim 1, wherein the first plate comprises a high-temperature superconductor material.
- 5. The tunable filter of claim 1, wherein the second plate comprises a high-temperature superconductor material.
- 6. The tunable filter of claim 1 further comprises an inductor coupled to the first plate.
- 7. A tunable filter comprising:
a fixed substrate having an upper surface; a first plate on the upper surface of the fixed substrate; a second plate on the upper surface of the fixed substrate; a movable substrate having a lower surface opposing the upper surface of the fixed substrate; a floating plate on the lower surface of the movable substrate, wherein the first plate, the second plate and the floating plate define a capacitor having a capacitor gap; and a driver having a first end and a second end, wherein the first end of the driver is mounted on the fixed substrate and the second end of the driver is attached to the movable substrate, and wherein a length change of the driver changes the capacitor gap, affecting a frequency response of said tunable filter.
- 8. The tunable filter of claim 7, wherein the driver is operatively coupled to a tuning signal and the driver changes its length in response to the tuning signal.
- 9. The tunable filter of claim 8, wherein the driver is a piezoelectric driver.
- 10. The tunable filter of claim 7, wherein each of the first plate and the second plate comprises a high-temperature superconductor material.
- 11. The tunable filter of claim 7, wherein the floating plate comprises a high-temperature superconductor material.
- 12. The tunable filter of claim 7 further comprising an inductor coupled between the first plate and the second plate.
- 13. The tunable filter of claim 12, wherein the inductor comprises a high-temperature structure.
- 14. A tunable filter comprising:
a first fixed substrate having an upper surface; a first plate on the upper surface of the first fixed substrate; a second plate on the upper surface of the first fixed substrate; a movable substrate having a lower surface opposing the upper surface of the first fixed substrate; a floating plate on the lower surface of the movable substrate, wherein the first plate, the second plate and the floating plate define a capacitor having a capacitor gap; a second fixed substrate; and a first driver having a first end and a second end, wherein the first end of the first driver is mounted on the second fixed substrate and the second end of the first driver is attached to the movable substrate, and wherein a length change of the driver changes the capacitor gap, affecting a frequency response of said tunable filter.
- 15. The tunable filter of claim 14 further comprises a second driver having a first end and a second end, wherein the first end of the second driver is mounted on the second fixed substrate and the second end of the second driver is attached to the movable substrate.
- 16. The tunable filter of claim 14, wherein the first driver is operatively coupled to a tuning signal and the driver changes its length in response to the tuning signal.
- 17. The tunable filter of claim 16, wherein the first driver is a piezoelectric driver.
- 18. The tunable filter of claim 14, wherein each of the first plate and the second plate comprises a high-temperature superconductor material.
- 19. The tunable filter of claim 14, wherein the floating plate comprises a high-temperature superconductor material.
- 20. The tunable filter of claim 14 further comprising an inductor coupled between the first plate and the second plate.
- 21. The tunable filter of claim 20, wherein the inductor comprises a high-temperature structure.
- 22. A tunable filter comprising:
a first movable substrate having an upper surface; a first plate on the upper surface of the first movable substrate; a second plate on the upper surface of the first movable substrate; a second movable substrate having a lower surface opposing the upper surface of the first movable substrate; a floating plate on the lower surface of the second movable substrate, wherein the first plate, the second plate and the floating plate define a capacitor having a capacitor gap; a first fixed substrate; a first driver having a first end and a second end, wherein the first end of the first driver is mounted on the first fixed substrate and the second end of the first driver is attached to the first movable substrate; a second fixed substrate; and a second driver having a first end and a second end, wherein the first end of the second driver is mounted on the second fixed substrate and the second end of the first driver is attached to the second movable substrate; wherein a length change of each of the first driver and second driver changes the capacitor gap, affecting a frequency response of said tunable filter.
- 23. The tunable filter of claim 22 further comprises:
a third driver having a first end and a second end, wherein the first end of the third driver is mounted on the first fixed substrate and the second end of the third driver is attached to the first movable substrate; and a fourth driver having a first end and a second end, wherein the first end of the fourth driver is mounted on the second fixed substrate and the second end of the fourth driver is attached to the second movable substrate.
- 24. The tunable filter of claim 22, wherein the first driver is a piezoelectric driver.
- 25. The tunable filter of claim 24, wherein the second driver is a piezoelectric driver.
- 26. The tunable filter of claim 22, wherein the second driver is a piezoelectric driver.
- 27. The tunable filter of claim 22, wherein each of the first plate and the second plate comprises a high-temperature superconductor material.
- 28. The tunable filter of claim 22, wherein the floating plate comprises a high-temperature superconductor material.
- 29. The tunable filter of claim 23 further comprising an inductor coupled between the first plate and the second plate.
- 30. The tunable filter of claim 29, wherein the inductor comprises a high-temperature superconductor material.
RELATED APPLICATION
[0001] This is a continuation application of application Ser. No. 09/268,786 (235/269), filed on Mar. 16, 1999.
Continuations (1)
|
Number |
Date |
Country |
Parent |
09268786 |
Mar 1999 |
US |
Child |
10023575 |
Dec 2001 |
US |