Dielectric resonator and dielectric filter
US-10164309-B2 · Dec 25, 2018 · US
US9620837B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9620837-B2 |
| Application number | US-201414574255-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 17, 2014 |
| Priority date | Dec 20, 2013 |
| Publication date | Apr 11, 2017 |
| Grant date | Apr 11, 2017 |
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A bandpass filter for microwave-frequency wave which is frequency tunable, comprises at least one resonator. Each resonator comprises a cavity having a conducting wall substantially cylindrical in relation to an axis Z, and at least one dielectric element disposed inside the cavity. The resonator resonates on two perpendicular polarizations having respectively distributions of the electromagnetic field in the cavity that are deduced from one another by a rotation of 90° and according to one and the same frequency. The wall of the cavity comprises an insert section facing the element having a different shape from a section not situated facing the element. The insert section and the element are able to perform a rotation with respect to one another in relation to the axis Z so as to define at least a first and a second relative position differing by an angle substantially equal to 45° to within 20°.
Opening claim text (preview).
The invention claimed is: 1. A bandpass dual mode filter for a microwave-frequency wave, the bandpass dual mode filter being frequency tunable, the bandpass dual mode filter comprising: at least one resonator, each of said at least one resonator including: a respective cavity having a conducting wall shaped substantially cylindrical in relation to an axis Z, and a respective dielectric element disposed inside the corresponding cavity, said at least one resonator resonating at two perpendicular polarizations having respectively distributions of an electromagnetic field in the respective cavity, said distributions of the two perpendicular polarizations being obtained from one another by a rotation of the respective dielectric element by of 90° around an axis of symmetry of the at least one resonator, the conducting wall of the respective cavity including an insert section facing said respective dielectric element, said insert section having a different shape from a shape of a section not facing the respective dielectric element, the insert section and the respective dielectric element being configured to perform a rotation with respect to one another in relation to the axis Z to define at least a first relative position and a second relative position differing by an angle substantially equal to 45° to within 20°. 2. The bandpass dual mode filter according to claim 1 , wherein the respective dielectric element is movable with respect to the corresponding conducting wall. 3. The bandpass dual mode filter according to claim 1 , wherein the shape of the insert section and a shape of the respective dielectric element each include at least two orthogonal symmetry planes intersecting one another along the axis Z. 4. The bandpass dual mode filter according to claim 3 , wherein the first relative position is such that said at least two orthogonal symmetry planes of the insert section coincide with said at least two orthogonal symmetry planes of the respective dielectric element to within 10°. 5. The bandpass dual mode filter according to claim 1 , wherein at least one shape from among the shape of the insert section and a shape of the respective dielectric element has four symmetry planes, two consecutive symmetry planes being separated by an angle of 45°, and intersecting one another along the axis Z. 6. The bandpass dual mode filter according to claim 1 , in which a mode of resonance of the bandpass dual mode filter, an H 113 resonance mode having three maxima of the electromagnetic field in said respective cavity along the axis Z. 7. The bandpass dual mode filter according to claim 1 , in which the respective substantially cylindrical shaped conducting wall has a base chosen from among a circle and a square. 8. The bandpass dual mode filter according to claim 1 , wherein at least one shape from among the shape of the insert section and a shape of the respective dielectric element includes at least two orthogonal symmetry planes intersecting one another along the axis Z. 9. The bandpass dual mode filter according to claim 8 , wherein at least one shape from among the shape of the insert section and the shape of the respective dielectric element has concavities and/or convexities having extrema which are situated in a vicinity of the orthogonal symmetry planes. 10. The bandpass dual mode filter according to claim 1 , wherein the insert section is movable with respect to the corresponding conducting wall. 11. The bandpass dual mode filter according to claim 10 , wherein the movable insert section comprises a respective movable adjustable disk. 12. The bandpass dual mode filter according to claim 1 , wherein the at least one resonator further comprises means of rotation configured to carry out said rotation. 13. The bandpass dual mode filter according to claim 12 , wherein said means of rotation comprise a rod rigidly attached to the respective dielectric element and comprising a dielectric material. 14. The bandpass dual mode filter according to claim 1 , further comprising: a plurality of resonators that include the at least one resonator and coupling means adapted for coupling together two adjacent resonators in the plurality of resonators. 15. The bandpass dual mode filter according to claim 14 , further comprising linking means adapted for making all respective angles of rotation associated with the means of rotation equal. 16. The bandpass dual mode filter according to claim 15 , wherein the linking means comprise a rod rigidly attached to a plurality of dielectric elements disposed along the rod, said plurality of dielectric elements including at least one dielectric element. 17. A microwave circuit comprising at least one of the bandpass dual mode filter according to claim 1 .
with invariable factor of coupling (H01P5/12 takes precedence {choke joints H01P1/04, H01P1/06}) · CPC title
Hollow waveguide filters (H01P1/212, H01P1/213, H01P1/215, H01P1/219 take precedence) · CPC title
Dielectric resonators · CPC title
with dielectric resonators · CPC title
Multimode resonators · CPC title
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