Claims
- 1. A narrow band pass filter electronically tunable over a predetermined frequency range by signals issued by an electronic drive, comprising
- a housing bounding a tuned cavity and having two opposite walls one of which has a plurality of through openings;
- a plurality of resonators each extending from the other of said opposite walls toward one of said through openings and each having an extension projecting through the respective opening to the exterior of said tuned cavity;
- a set of tuning capacitors for each of said resonators, including capacitor plates arranged around the respective extension externally of said tuned cavity; and
- means for selectively activating and deactivating said capacitor plates in dependence on said signals to thereby include the respective tuning capacitors of the respective sets in, and exclude the same from, electric circuit with the respective resonators, and thus to vary the tuned frequency band of the filter.
- 2. The filter as defined in claim 1, wherein said housing further bounds a plurality of compartments situated externally of said tuned cavity around the respective through openings, said extensions extending into said compartments, and each of said compartments accommodating at least said capacitor plates of the respective set.
- 3. The filter as defined in claim 2, wherein each of said compartments further accommodates said selectively activating and deactivating means for the respective set of capacitor plates.
- 4. The filter as defined in claim 2, wherein said housing further includes at least one cover wall extending across the respective compartment transversely of and with an axial spacing from said extension of the respective resonator; wherein said extension has a capacitor plate portion facing said cover wall; and further comprising an additional capacitor plate juxtaposed with said capacitor plate portion and forming an intial tuning capacitor therewith that is permanently included in electric circuit with the respective resonator.
- 5. The filter as defined in claim 4, wherein said additional capacitor plate is mounted on said cover wall for movement toward and away from said capacitor plate portion to thereby vary the capacitance of said initial tuning capacitor.
- 6. The filter as defined in claim 5, wherein said cover wall has a threaded bore therein that is aligned with said capacitor plate portion; and wherein said additional capacitor plate includes a threaded plug meshingly received in said threaded bore.
- 7. The filter as defined in claim 6, wherein said additional capacitor plate includes a circular portion juxtaposed with said capacitor plate portion.
- 8. The filter as defined in claim 1, wherein said activating and deactivating means includes, for each of said capacitor plates, an electric switching circuit controlled by the electronic drive and operative for switching the respective capacitor plate in the electric circuit with said resonator in response to said signal and out of the electric circuit in the absence of said signal.
- 9. The filter as defined in claim 8, wherein said electric switching circuit includes a switching diode operative for closing the electric circuit in response to said signal.
- 10. The filter as defined in claim 9, wherein said switching diode is a NIP diode.
- 11. The filter as defined in claim 9, wherein said electric switching circuit further includes a shunting diode arranged in series with said switching diode and between said capacitor plate and the ground.
- 12. The filter as defined in claim 11, wherein said shunting diode is a NIP diode.
- 13. The filter as defined in claim 1, wherein each of said resonators includes a resonator bar and said extension has a plurality of capacitor plate regions respectively juxtaposed with said capacitor plates to constitute said tuning capacitors therewith.
- 14. The filter as defined in claim 13, and further comprising means for adjusting the capacitance of the respective tuning capacitor, including an adjusting section of one of said capacitor plate and the associated capacitor plate region of said extension, having a recess therein, and at least one adjustment part at least partially received in said recess and operative for contributing to the total capacitance of said tuning capacitor.
- 15. The filter as defined in claim 14, wherein said recess is provided in said associated region.
- 16. The filter as defined in claim 14, wherein said adjusting section further has a bore that opens into said recess; and wherein said part is a slug received in said bore for movement therein between different positions in which it extends to a greater or lesser degree into said recess to contribute more or less to the tuning capacitance of said tuning capacitor.
- 17. The filter as defined in claim 15, wherein said bore has an internal thread; and wherein said slug is externally threaded to mesh with said internal thread and to conduct said movement between said different positions in response to the turning of said slug.
- 18. The filter as defined in claim 13, wherein at least said extension of said one resonator bar is cross-sectionally polygonal to present a plurality of flat zones to serve as said associated regions.
- 19. The filter as defined in claim 18, wherein at least one of said capacitor plates is juxtaposed with each of said flat zones to form the respective tuning capacitor with said associated region.
- 20. The filter as defined in claim 19, wherein each of said sets of capacitor plates includes six of said capacitor plates.
- 21. The filter as defined in claim 20, wherein said extension is hexagonal in cross section to form six of said flat zones; and wherein each of said capacitor plates is juxtaposed with one of said six flat zones to form the respective tuning capacitor with said associated region thereof.
- 22. The filter as defined in claim 13, wherein said resonator bar is secured to said other wall and forms a cantilever including said extension; and further comprising means for at least suppressing mechanical oscillations of said resonator bar relative to said capacitor plates with attendant capacitance variations of said tuning capacitors.
- 23. The filter as defined in claim 22, wherein said suppressing means includes spacer means interposed between said capacitor plates and said extension.
- 24. The filter as defined in claim 22, further comprising means for mounting said capacitor plates on said housing for movement toward and away from said extension; and wherein said suppressing means includes means for urging said capacitor plates toward said extension.
- 25. The filter as defined in claim 24, wherein said urging means for each of said capacitor plates includes at least one spring.
- 26. The filter as defined in claim 22, wherein said capacitor plates are stationarily mounted on said housing; and wherein said supressing means includes spacing means interposed between said housing and said resonator bar at said through opening.
- 27. The filter as defined in claim 1, wherein said tuning capacitors are air-gap parallel-plate tuning capacitors.
- 28. The filter as defined in claim 1, wherein the capacitances of said tuning capacitors differ from one another.
- 29. The filter as defined in claim 25, wherein the capacitances of said tuning capacitors are in geometic progression relative to one another.
Government Interests
The Government has rights in this invention pursuant to Contract No. F30602-81-C-0117 awarded by the Department of the Air Force.
US Referenced Citations (2)
| Number |
Name |
Date |
Kind |
|
3889214 |
Petijean et al. |
Jun 1975 |
|
|
4037182 |
Burnett et al. |
Jul 1977 |
|