Claims
- 1. A dielectric filter, comprising:
- a dielectric block including a plurality of elongated sub-blocks each having a pair of longitudinally opposing end faces and an outer surface, said sub-blocks being disposed adjacent one another;
- a plurality of longitudinally extending through-holes, at least one through-hole being formed between each corresponding pair of opposing end faces of the respective sub-blocks;
- a plurality of inner conductors, one inner conductor being formed on each of the inner surfaces of said plurality of through-holes, said plurality of inner conductors each having two opposing ends;
- an outer conductor formed on the outer surface of said is dielectric block such that (i) the outer conductor is not electrically coupled to the respective ends of the inner conductor of every other sub-block such that the ends of those inner conductors are open-circuited, and (ii) the outer conductor is electrically coupled to the respective ends of the inner conductor of the remaining sub-blocks such that the ends of those inner conductors are short-circuited;
- a plurality of connection conductors through which respective parts of the inner conductors located between corresponding open-circuited opposing ends are connected to said outer conductor; and
- a respective electromagnetic coupling preventing structure formed between each adjacent pair of sub-blocks and extending from one end face of each of said sub-blocks toward a central part of said sub-blocks between the two opposing end faces,
- wherein said dielectric filter produces a band elimination transfer function over some frequencies and a band pass transfer function over other frequencies in use.
- 2. The dielectric filter of claim 1, wherein respective distances between corresponding pairs of opposing end faces define respective lengths of the sub-blocks, the lengths of the sub-blocks being substantially equal.
- 3. The dielectric filter of claim 9, wherein the adjacent sub-blocks are not substantially longitudinally shifted from one another.
- 4. The dielectric filter of claim 1, wherein each of the sub-blocks having inner conductors with open-circuited ends further comprises a laterally disposed hole extending from a substantially central part of its longitudinally extending through-hole to its outer surface, the laterally disposed hole including a respective one of said plurality of connection conductors which electrically communicates with the inner conductor of the longitudinally extending through-hole and the outer conductor of the dielectric block.
- 5. The dielectric filter of claim 4, wherein each of the sub-blocks having inner conductors with short-circuited ends further comprises a gap in the respective inner conductor such that the inner conductor is open-circuited between its ends.
- 6. The dielectric filter of claim 5, wherein each gap separates respective first and second portions of the respective inner conductors.
- 7. The dielectric filter of claim 6, wherein each gap defines a capacitor coupled between the first and second portions of the respective inner conductors.
- 8. The dielectric filter of claim 6, wherein each gap is defined by an absence of conductive material in the respective inner conductors.
- 9. The dielectric filter of claim 6, wherein each gap is defined by an isolation wall formed from the dielectric material of the respective sub-block.
- 10. The dielectric filter of claim 9, wherein each isolation wall interrupts the respective longitudinally extending through hole and defines respective closed ends of the first and second portions of the respective inner conductors.
- 11. The dielectric filter of claim 6, comprising:
- a first of said plurality of sub-blocks having an inner conductor with open-circuited ends and a first laterally disposed hole extending from substantially central part of its longitudinally extending through-hole to its outer surface, the first laterally disposed hole including a connection conductor which electrically connects the inner conductor with the outer conductor of the dielectric block; and
- an adjacent second of said plurality of sub-blocks having an inner conductor with short-circuited ends, the adjacent sub-block having a second laterally disposed hole extending from a substantially central part of its respective longitudinally extending through-hole to its respective outer surface, the second laterally disposed hole being substantially transverse with respect to the first laterally disposed hole and including a connection conductor which electrically communicates with the first portion of the inner conductor of its longitudinally extending through-hole but does not electrically connect to the outer conductor of the dielectric block.
- 12. The dielectric filter of claim 11, wherein the electromagnetic coupling preventing structure is disposed substantially adjacent to the second portion of the inner conductor of the second sub-block.
- 13. The dielectric filter of claim 12, wherein the electromagnetic coupling preventing structure is defined by a longitudinal slit extending from one end face of each of said adjacent sub-blocks toward the central part of said sub-blocks.
- 14. The dielectric filter of claim 13, wherein the longitudinal slit terminates at a position substantially adjacent to the gap.
- 15. The dielectric filter of claim 11, further comprising a conductive electrode disposed on and covering a portion of the outer surface of the second sub-block and connected to the connecting conductor of the second laterally disposed hole but electrically insulated from the outer conductor.
- 16. The dielectric filter of claim 15, wherein the conductive electrode is an output electrode.
- 17. The dielectric filter of claim 11, further comprising an electrically conductive electrode disposed on and covering a portion of one of the end faces of the first sub-block, the electrode being proximate to the respective through-hole at the end face and being electrically connected to the respective inner conductor of the through-hole but electrically insulated from the outer conductor.
- 18. The dielectric filter of claim 17, wherein the conductive electrode is an input electrode.
- 19. The dielectric filter of claim 11, wherein:
- the open-circuited end of the inner conductor of the first sub-block opposite the electromagnetic coupling preventing structure is an input; and
- the connection conductor of the second laterally disposed hole of the second sub-block is an output.
- 20. The dielectric filter of claim 11, wherein each of the sub-blocks having inner conductors with open-circuited ends includes:
- a first part extending from one end face to about the laterally disposed hole defining a first resonator; and
- a second part extending from the other end face to about the laterally disposed hole defining a second resonator, the first and second resonators being in series and joined at a common node;
- the laterally disposed hole and connection conductor defining a shunt inductor coupled from the common node to the outer conductor.
- 21. The dielectric filter of claim 20, wherein each of the sub-blocks having inner conductors with short-circuited ends includes:
- a first part extending from one end face to about the gap defining a first resonator;
- a capacitor defined by the gap;
- a second part extending from the other end face to about the second laterally disposed hole defining a second resonator, the first and second resonators being in series and joined by the capacitor;
- the second disposed hole and connection conductor defining a output.
- 22. The dielectric filter of claim 21, wherein the resonators of adjacent sub-blocks are coupled together via respective phase shifters.
- 23. The dielectric filter of claim 13, comprising:
- a first of said plurality of sub-blocks having an inner conductor with open-circuited ends and a first laterally disposed hole extending from a central part of its longitudinally extending through-hole to its outer surface, the first laterally disposed hole including a connection conductor which electrically connects the inner conductor with the outer conductor of the dielectric block;
- a second of said plurality of sub-blocks having an inner conductor with short-circuited ends and being disposed adjacent to the first sub-block; and
- a third of said plurality of sub-blocks having an inner conductor with open-circuited ends and a second laterally disposed hole extending from a central part of its longitudinally extending through-hole to its outer surface, the second laterally disposed hole including a connection conductor which electrically connects the inner conductor with the outer conductor of the dielectric block, the third sub-block being disposed adjacent to the second sub-block.
- 24. The dielectric filter of claim 23, further comprising an electromagnetic coupling preventing structure disposed substantially adjacent to the second portion of the inner conductor of the second sub-block between each of the first and third sub-blocks, respectively.
- 25. The dielectric filter of claim 24, wherein the electromagnetic coupling preventing structures are defined by respective longitudinal slits extending from one end face of each of said adjacent sub-blocks toward the central part of said sub-blocks.
- 26. The dielectric filter of claim 25, wherein the longitudinal slits terminate at a location substantially adjacent to the gap of the second sub-block.
- 27. The dielectric filter of claim 23, further comprising an electrically conductive electrode disposed on and covering a portion of one of the end faces of the first sub-block, the electrode being proximate to the respective through-hole at the end face and being electrically connected to the respective inner conductor of the through-hole but electrically insulated from the outer conductor.
- 28. The dielectric filter of claim 27, wherein the conductive electrode is an input electrode.
- 29. The dielectric filter of claim 27, further comprising an electrically conductive electrode disposed on and covering a portion of one of the end faces of the third sub-block, the electrode being proximate to the respective through-hole at the end face and being electrically connected to the respective inner conductor of the through-hole but electrically insulated from the outer conductor.
- 30. The dielectric filter of claim 29, wherein the conductive electrode is an output electrode.
- 31. The dielectric filter of claim 23, wherein:
- the open-circuited end of the inner conductor of the first sub-block opposite the electromagnetic coupling preventing structure is an input; and
- the open-circuited end of the inner conductor of the third sub-block opposite the electromagnetic coupling preventing structure is an output.
- 32. The dielectric filter of claim 23, wherein each of the sub-blocks having inner conductors with open-circuited ends includes:
- a first part extending from one end face to about the laterally disposed hole defining a first resonator; and
- a second part extending from the other end face to about the laterally disposed hole defining a second resonator, the first and second resonators being in series and joined at a common node;
- the laterally disposed hole and connection conductor defining a shunt inductor coupled from the common node to the outer conductor.
- 33. The dielectric filter of claim 32, wherein each of the sub-blocks having inner conductors with short-circuited ends includes:
- a first part extending from one end face to about the gap defining a first resonator;
- a capacitor defined by the gap;
- a second part extending from the other end face to about the second laterally disposed hole defining a second resonator, the first and second resonators being in series and joined by the capacitor;
- the second disposed hole and connection conductor defining a output.
- 34. The dielectric filter of claim 33, wherein the resonators of adjacent sub-blocks are coupled together via respective phase shifters.
- 35. A dielectric filter, comprising:
- a dielectric block including a plurality of elongated sub-blocks each having a pair of longitudinally opposing end faces and an outer surface, said sub-blocks being disposed adjacent one another;
- a plurality of longitudinally extending through-holes, at least one through-hole being formed between each corresponding pair of opposing end faces of the respective sub-blocks;
- a plurality of inner conductors, one inner conductor being formed on each of the inner surfaces of said plurality of through-holes, said plurality of inner conductors each having two opposing ends;
- an outer conductor formed on the outer surface of said dielectric block, the outer conductor not being electrically coupled to the respective ends of the inner conductors of the sub-blocks such that they are open-circuited;
- a plurality of connection conductors through which respective parts of the inner conductors located between corresponding open-circuited opposing ends are connected to said outer conductor; and
- a respective electromagnetic coupling preventing structure formed between each adjacent pair of sub-blocks and extending from one end face of each of said sub-blocks toward a central part of said sub-blocks between the two opposing end faces,
- wherein said dielectric filter produces a band elimination transfer function over some frequencies and a band pass transfer function over other frequencies in use.
- 36. The dielectric filter of claim 35, wherein respective distances between corresponding pairs of opposing end faces define respective lengths of the sub-blocks, the lengths of the sub-blocks being substantially equal.
- 37. The dielectric filter of claim 36, wherein the adjacent sub-blocks are not substantially longitudinally shifted from one another.
- 38. The dielectric filter of claim 35, wherein each of the sub-blocks further comprises a laterally disposed hole extending from a substantially central part of its longitudinally extending through-hole to its outer surface, the laterally disposed hole including a respective one of said plurality of connection conductors which electrically communicates with the inner conductor of the longitudinally extending through-hole and the outer conductor of the dielectric block.
- 39. The dielectric filter of claim 38, comprising first, second, and third sub-blocks.
- 40. The dielectric filter of claim 35, wherein the electromagnetic coupling preventing structure is defined by a longitudinal slit extending from one end face of each of said adjacent sub-blocks toward the respective connection conductors.
- 41. The dielectric filter of claim 40, wherein the longitudinal slits terminate at a position substantially adjacent to the respective connection conductors.
- 42. The dielectric filter of claim 35, further comprising an electrically conductive electrode disposed on and covering a portion of one of the end faces of a first one of the sub-blocks, the electrode being proximate to the respective through-hole at the end face and being electrically connected to the respective inner conductor of the through-hole but electrically insulated from the outer conductor.
- 43. The dielectric filter of claim 42, wherein the conductive electrode is an input electrode.
- 44. The dielectric filter of claim 35, further comprising an electrically conductive electrode disposed on and covering a portion of one of the end faces of a third one of the sub-blocks, the electrode being proximate to the respective through-hole at the end face and being electrically connected to the respective inner conductor of the through-hole but electrically insulated from the outer conductor.
- 45. The dielectric filter of claim 44, wherein the conductive electrode is an output electrode.
- 46. The dielectric filter of claim 38, wherein each of the sub-blocks includes:
- a first part extending from one end face to about the laterally disposed hole defining a first resonator; and
- a second part extending from the other end face to about the laterally disposed hole defining a second resonator, the first and second resonators being in series and joined at a common node;
- the laterally disposed hole and the connection conductor defining a shunt inductor coupled from the common node to the outer conductor.
- 47. The dielectric filter of claim 46, wherein the resonators of adjacent sub-blocks are coupled together via respective phase shifters.
Priority Claims (1)
Number |
Date |
Country |
Kind |
7-323154 |
Dec 1995 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 08/761,984, filed Dec. 11, 1996, now U.S. Pat. No. 5,912,603.
US Referenced Citations (6)
Foreign Referenced Citations (6)
Number |
Date |
Country |
0645836 |
Mar 1995 |
EPX |
6-238601 |
Feb 1987 |
JPX |
6-469102 |
Mar 1989 |
JPX |
2241203 |
Aug 1990 |
JPX |
451602 |
Feb 1992 |
JPX |
4150101 |
May 1992 |
JPX |
Non-Patent Literature Citations (1)
Entry |
Patents Abstracts of Japan--E-1257 Sep. 2, 1992, vol. 16/No. 415. |
Divisions (1)
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Number |
Date |
Country |
Parent |
761984 |
Dec 1996 |
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