Claims
- 1. A dielectric filter with surface electromagnetic shielding, comprising;
- a dielectric body comprising dielectric material and having an outer surface including two end faces;
- an external conductor substantially completely covering the outer surface of the dielectric body so as to provide said surface electromagnetic shielding of said dielectric filter; and
- a plurality of holes extending through the dielectric body between said two end faces, each hole having a respective inner surface;
- at least one hole of said plurality of holes having a respective pair of internal conductors provided in the corresponding hole and conductively connected to said external conductor at respective ends of said corresponding hole, a respective non-conductive portion at said inner surface of the corresponding hole being spaced from both ends of said respective hole and thereby separating said corresponding pair of internal conductors and thereby defining a respective capacitance between said corresponding pair of internal conductors; and
- signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from said external conductor for providing capacitive coupling with respective internal conductors of corresponding ones of the plurality of holes, and closely surrounded by said external conductor for providing capacitive coupling with said external conductor;
- wherein one said end face of said dielectric body, where one of said internal conductors in said at least one hole is conductively connected to said external conductor, has a non-conductive portion free of said external conductor, said non-conductive portion being disposed at a location for adjusting at least one of a resonance frequency and a coupling degree of the filter.
- 2. A dielectric resonator described in accordance with claim 1, wherein said plurality of holes consists of at least two said holes.
- 3. A dielectric resonator described in accordance with claim 1, further comprising a second non-conductive portion free of said external conductor on the other said end face, said second non-conductive portion being disposed at a location for adjusting at least one of said resonance frequency and said coupling degree of said filter.
- 4. A dielectric resonator described in accordance with claim 1, wherein said plurality of holes consists of at least two said holes.
- 5. A dielectric filter with surface electromagnetic shielding, comprising:
- a dielectric body comprising dielectric material and having an outer surface including two end faces;
- an external conductor substantially completely covering the outer surface of the dielectric body so as to provide said surface electromagnetic shielding of said dielectric filter; and
- a plurality of holes extending through the dielectric body between said two end faces, each hole having a respective inner surface;
- at least one hole of said plurality of holes having a respective pair of internal conductors provided in the corresponding hole and conductively connected to said external conductor at respective ends of said corresponding hole, a respective non-conductive portion at said inner surface of the corresponding hole being spaced from both ends of said respective hole and thereby separating said corresponding pair of internal conductors and thereby defining a respective capacitance between said corresponding pair of internal conductors; and
- signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from said external conductor for providing capacitive coupling with respective internal conductors of corresponding ones of the plurality of holes, and closely surrounded by said external conductor for providing capacitive coupling with said external conductor;
- wherein one said end face of said dielectric body, where one of said internal conductors in said at least one hole is conductively connected to said external conductor, has a non-conductive portion free of said external conductor and of said dielectric material, said non-conductive portion being disposed at a location for adjusting at least one of a resonance frequency and a coupling degree of the filter.
- 6. A dielectric resonator described in accordance with claim 5, wherein said plurality of holes consists of at least two said holes.
- 7. A dielectric resonator described in accordance with claim 5, further comprising a second non-conductive portion free of said external conductor and said dielectric material on the other said end face, said second non-conductive portion being disposed at a location for adjusting at least one of said resonance frequency and said coupling degree of said filter.
- 8. A dielectric resonator described in accordance with claim 7, wherein said plurality of holes consists of at least two said holes.
- 9. A dielectric filter with surface electromagnetic shielding, comprising:
- a dielectric body comprising dielectric material and having an outer surface including two end faces;
- an external conductor substantially completely covering the outer surface of the dielectric body so as to provide said surface electromagnetic shielding of said dielectric filter; and
- a plurality of holes extending through the dielectric body between said two end faces, each hole having a respective inner surface with a substantially constant cross-sectional shape along an axial direction of the corresponding hole;
- at least one hole of said plurality of holes having a respective pair of internal conductors provided in the corresponding hole and conductively connected to said external conductor at respective ends of said corresponding hole, a respective non-conductive portion at said inner surface of the corresponding hole being spaced from both ends of said respective hole and thereby separating said corresponding pair of internal conductors and thereby defining a respective capacitance between said corresponding pair of internal conductors, a surface of said respective non-conductive portion being substantially flush with the rest of said inner surface of the corresponding hole; and
- signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from said external conductor for providing capacitive coupling with respective internal conductors of corresponding ones of the plurality of holes, and closely surrounded by said external conductor for providing capacitive coupling with said external conductor;
- wherein one said end face of said dielectric body, where one of said internal conductors in said at least one hole is conductively connected to said external conductor, has a non-conductive portion tree of said external conductor and of said dielectric material, said non-conductive portion being disposed at a location for adjusting at least one of a resonance frequency and a coupling degree of the filter.
- 10. A dielectric resonator described in accordance with claim 9, wherein said plurality of holes consists of at least two said holes.
- 11. A dielectric resonator described in accordance with claim 9, further comprising a second non-conductive portion free of said external conductor and said dielectric material on the other said end face, said second non-conductive portion being disposed at a location for adjusting at least one of said resonance frequency and said coupling degree of said filter.
- 12. A dielectric resonator described in accordance with claim 11, wherein said plurality of holes consists of at least two said holes.
- 13. A dielectric filter with surface electromagnetic shielding, comprising:
- a dielectric body comprising dielectric material and having an outer surface including two end faces;
- an external conductor substantially completely covering the outer surface of the dielectric body so as to provide said surface electromagnetic shielding of said dielectric filter; and
- a plurality of holes extending through the dielectric body between said two end faces, each hole having a respective inner surface with a substantially constant cross-sectional shape along an axial direction of the corresponding hole;
- at least one hole or said plurality of holes having a respective pair of internal conductors provided in the corresponding hole and conductively connected to said external conductor at respective ends of said corresponding hole, a respective non-conductive portion at said inner surface of the corresponding hole being spaced from both ends of said respective hole and thereby separating said corresponding pair of internal conductors and thereby defining a respective capacitance between said corresponding pair of internal conductors, a surface of said respective non-conductive portion being substantially flush with the rest of said inner surface of the corresponding hole; and
- signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from said external conductor for providing capacitive coupling with respective internal conductors of corresponding ones of the plurality of holes, and closely surrounded by said external conductor for providing capacitive coupling with said external conductor;
- wherein one said end face of said dielectric body, where one of said internal conductors in said at least one hole is conductively connected to said external conductor, has a non-conductive portion free of said external conductor, said non-conductive portion being disposed at a location for adjusting at least one of a resonance frequency and a coupling degree of the filter.
- 14. A dielectric resonator described in accordance with claim 13, wherein said plurality of holes consists of at least two said holes.
- 15. A dielectric resonator described in accordance with claim 13, further comprising a second non-conductive portion free of said external conductor on the other said end face, said second non-conductive portion being disposed at a location for adjusting at least one of said resonance frequency and said coupling degree of said filter.
- 16. A dielectric resonator described in accordance with claim 15, wherein said plurality of holes consists of at least two said holes.
- 17. A dielectric filter with surface electromagnetic shielding, comprising:
- a dielectric body comprising dielectric material and having an outer surface including two end faces;
- an external conductor substantially completely covering the outer surface of the dielectric body so as to provide said surface electromagnetic shielding of said dielectric filter; and
- at least one hole extending through the dielectric body between said two end faces, said at least one hole having a respective inner surface;
- said at least one hole having a pair of internal conductors respectively provided in the corresponding hole and conductively connected to said external conductor at respective ends of said corresponding hole, a respective non-conductive portion at said inner surface of the corresponding hole being spaced from both ends of said respective hole and thereby separating said corresponding pair of internal conductors and defining a capacitance between said corresponding pair of internal conductors, a surface of said respective non-conductive portion being substantially flush with a remainder of said inner surface of the corresponding hole; and
- signal input and output electrodes provided on the outer surface of the dielectric body and electrically isolated from said external conductor for providing capacitive coupling with at least one internal conductor of said at least one hole, and closely surrounded by said external conductor for providing capacitive coupling with said external conductor;
- wherein one said end faces of said dielectric body where one of said internal conductors in said at least one hole is conductively connected to said external conductor, has a non- conductive portion free of a portion of said external conductor, said non-conductive portion being disposed at a location for adjusting at least one of a resonance frequency and a coupling degree of the filter.
- 18. A dielectric filter described in accordance with claim 17, wherein at said one end face of said dielectric body, said non-conductive portion is free of both said portion of said external conductor and a portion of said dielectric material.
- 19. A dielectric filter described in accordance with claim 18, wherein said respective inner surface of said at least one hole has a substantially constant cross-sectional shape along an axial direction of the corresponding hole.
- 20. A dielectric resonator described in accordance with claim 17, further comprising a second non-conductive portion free of said portion of said external conductor on the other said end face, said second non-conductive portion being disposed at a location for adjusting at least one of said resonance frequency and said coupling degree of said filter.
- 21. A dielectric resonator described in accordance with claim 20, wherein said second non-conductive portion on the other said end face is free of both said portion of said external conductor and a portion of said dieletric material.
- 22. A dielectric filter described in accordance with claim 21, wherein said respective inner surface of said at least one hole has a substantially constant cross-sectional shape along an axial direction of the corresponding hole.
- 23. A dielectric filter described in accordance with claim 20, wherein said respective inner surface of said at least one hole has a substantially constant cross-sectional shape along an axial directional of the corresponding hole.
- 24. A dielectric filter described in accordance with claim 17, wherein said respective inner surface of said at least one hole has a substantially constant cross-sectional shape along an axial direction of the corresponding hole.
Priority Claims (3)
Number |
Date |
Country |
Kind |
4-9207 |
Jan 1992 |
JPX |
|
4-29056 |
Apr 1992 |
JPX |
|
4-312720 |
Oct 1992 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This is a division of application Ser. No. 08/259,568, filed Jun. 14, 1994, now U.S. Pat. No. 5,642,084, which is a continuation of Ser. No. 08/009,308, filed Jan. 22, 1993, abandoned.
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Divisions (1)
|
Number |
Date |
Country |
Parent |
259568 |
Jun 1994 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
009308 |
Jan 1993 |
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