Claims
- 1. A varactor comprising:
a first capacitor plate; a second capacitor plate spaced from and movable towards and away from the first capacitor plate; at least one fixed charge holder with an imbedded charge on at least a portion of the second capacitor plate; and a control electrode spaced from the second capacitor plate.
- 2. The varactor as set forth in claim 1 further comprising at least one first insulator between and connecting the first and second capacitor plates, the at least one first insulator having a first chamber which extends between the first and second capacitor plates.
- 3. The varactor as set forth in claim 2 further comprising at least one second insulator between the second capacitor plate and the control electrode, the at least one second insulator having a second chamber which extends between the second capacitor plate and the control electrode.
- 4. The varactor as set forth in claim 2 further comprising at least one dielectric material on the first capacitor plate and between the first and second capacitor plates.
- 5. The varactor as set forth in claim 3 wherein the second capacitor plate is connected at or adjacent at least one end to the at least one first and second insulators.
- 6. The varactor as set forth in claim 3 wherein the second capacitor plate is connected at or adjacent at least opposing ends to the at least one first and second insulators.
- 7. The varactor as set forth in claim 1 wherein the at least one fixed charge holder comprises at least two insulating layers on at least a portion of the second capacitor plate.
- 8. A method of using a varactor, the varactor having a first capacitor plate spaced from a second capacitor plate, at least one fixed charge holder with an imbedded charge on at least a portion of the second capacitor plate, and a control electrode spaced from the second capacitor plate, the method comprising:
applying a first potential with a first polarity to the control electrode; and moving the second capacitor plate towards or away from the first capacitor plate based on the first polarity of the applied first potential.
- 9. The method as set forth in claim 8 further comprising:
applying a second potential with a second polarity to the control electrode; and moving the second capacitor plate towards or away from the first capacitor plate based on the second polarity of the applied first potential.
- 10. The method as set forth in claim 9 further comprising providing a varactor housing with a chamber, the first capacitor plate is connected to the housing in the chamber, the second capacitor plate is connected at or adjacent one end to the housing in the chamber, and the control electrode is connected to the housing.
- 11. A method of making a varactor, the method comprising:
providing a first capacitor plate; providing a second capacitor plate spaced from and movable towards and away from the first capacitor plate; forming at least one fixed charge holder on at least a portion of the second capacitor plate; imbedding charge in the at least one fixed charge holder; and providing a control electrode spaced from the second capacitor plate.
- 12. The method as set forth in claim 11 further comprising providing at least one first insulator between and connecting the first and second capacitor plates, the at least one first insulator having a first chamber which extends between the first and second capacitor plates.
- 13. The method as set forth in claim 12 further comprising providing at least one second insulator between the second capacitor plate and the control electrode, the at least one second insulator having a second chamber which extends between the second capacitor plate and the control electrode.
- 14. The method as set forth in claim 12 further comprising at least one dielectric material on the first capacitor plate and between the first and second capacitor plates.
- 15. The method as set forth in claim 13 wherein the second capacitor plate is connected at or adjacent one end to the at least one first and second insulators.
- 16. The method as set forth in claim 13 wherein the second capacitor plate is connected at or adjacent at least opposing ends to the at least one first and second insulators.
- 17. The method as set forth in claim 11 wherein the at least one fixed charge holder comprises at least two insulating layers on at least a portion of the second capacitor plate.
- 18. A method for making a varactor, the method comprising:
filling a first trench in a first insulating material with a first conductive material to form a first capacitor plate; depositing a second insulating material on at least a portion of the first insulating material; forming a second trench in a portion of the second insulating material which extends to the first insulating material and is located over at least a portion of the first capacitor plate; filling the second trench with a first sacrificial material; depositing a second conductive material over at least a portion of the first sacrificial material and the second insulating material to form a second capacitor plate; depositing a charge holder over at least a portion of the second capacitor plate; depositing a third insulating material over at least a portion of the charge holder; forming a third trench in a portion of the third insulating material which extends to the charge holder; filling the third trench with a second sacrificial material; depositing a third conductive material over at least a portion of the second sacrificial material and the third insulating material to form a control electrode; imbedding charge on the charge holding film; and removing the first and second sacrificial materials to form a chamber.
- 19. The method as set forth in claim 18 further comprising depositing a fourth insulating material on at least a portion of the first conductive material and the first insulating material to form at least one dielectric between the first and second capacitor plates.
- 20. The method as set forth in claim 18 wherein depositing a charge holder further comprises:
depositing a fifth insulating material over at least a portion of the second conductive material; and depositing a sixth insulating material over at least a portion of the fifth insulating material, the depositing the third insulating material is on the sixth insulator.
- 21. The method as set forth in claim 18 wherein imbedding charge in the charge holding film comprises applying a potential to the charge holder and the control electrode.
- 22. The method as set forth in claim 18 wherein imbedding charge in the charge holder comprises using a ballistic energy source for the imbedding of the charge.
Parent Case Info
[0001] The present invention claims the benefit of U.S. Provisional Patent Application Serial No. 60/275,288, filed Mar. 13, 2001, which is hereby incorporated by reference in its entirety.
Provisional Applications (1)
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Number |
Date |
Country |
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60275288 |
Mar 2001 |
US |