Dielectric cavity resonator and a dielectric cavity filter having the same
The present disclosure relates to a dielectric cavity resonator, comprising: a metallic resonance cavity having a cuboid shape defining three orthogonal axes x, y, z substantially aligned with walls of the metallic resonance cavity and having a central axis extending in the z direction; a dielectric core provided in the metallic resonance cavity, the dielectric core comprising: a central part extending coaxially with respect to the central axis of the metallic resonance cavity; and four columnar parts arranged around the central part and integrally formed with the central part and each extending in the z direction and having a petal-like shape in an x-y cross-section perpendicular to the z direction, every two adjacent columnar parts being spaced by a groove, the dielectric core being centrosymmetric and axisymmetric in each x-y cross-section perpendicular to the z direction, wherein the metallic resonance cavity has a square cross-section, and in each petal-like cross-section, each columnar part extends in a direction of an adjacent corner area of corresponding square cross-section of the metallic resonance cavity, and a height of the central part is not greater than a height of a main body of each columnar part when measured in the z direction. The present disclosure also relates to a dielectric cavity filter comprising the above-mentioned dielectric cavity resonator.
1 . A dielectric cavity resonator, comprising:
a metallic resonance cavity having a cuboid shape defining three orthogonal axes x, y, z substantially aligned with walls of the metallic resonance cavity and having a central axis extending in the z direction;
a dielectric core provided in the metallic resonance cavity, the dielectric core comprising: a central part extending coaxially with respect to the central axis of the metallic resonance cavity; and four columnar parts arranged around the central part and integrally formed with the central part and each extending in the z direction and having a petaloid shape in an x-y cross-section perpendicular to the z direction, every two adjacent columnar parts being spaced by a groove, the dielectric core being centrosymmetric and axisymmetric in each x-y cross-section perpendicular to the z direction,
wherein the metallic resonance cavity has a square cross-section, and in each petaloid cross-section, each columnar part extends in a direction of an adjacent corner area of corresponding square cross-section of the metallic resonance cavity, and a height of the central part is not greater than a height of a main body of each columnar part when measured in the z direction,
wherein the petaloid cross-section of each columnar part is generally square shaped, and
wherein each columnar part is provided with a hole extending in the z direction for receiving a tuning screw.
2 . The dielectric cavity resonator of claim 1 , wherein, in each x-y cross-section, the groove opens towards a center segment of an adjacent side of a corresponding square cross-section of the metallic resonance cavity.
3 . The dielectric cavity resonator of claim 1 , wherein the dielectric core is designed in such a shape that the number of the modes of the dielectric cavity resonator can be reduced by decreasing a ratio of the height of the central part to the height of the main body of the columnar part and/or a ratio of a cross-sectional characterizing dimension of the central part to the height of the central part.
4 . The dielectric cavity resonator of claim 1 , wherein a ratio of the height of the central part to the height of the main body of the columnar part is greater than 60% and no more than 100% and a ratio of a cross-sectional characterizing dimension of the central part to the height of the central part is greater than 100% and the dielectric cavity resonator is a four-mode resonator.
5 . The dielectric cavity resonator of claim 1 , wherein when a ratio of the height of the central part to the height of the main body of the columnar part is greater than 60% and no more than 100% and a ratio of a cross-sectional characterizing dimension of the central part to the height of the central part is greater than 40% and no more than 100% and the dielectric cavity resonator is a three-mode resonator.
6 . The dielectric cavity resonator of claim 1 , wherein when a ratio of the height of the central part to the height of the main body of the columnar part is within 20%-60% and a ratio of a cross-sectional characterizing dimension of the central part to the height of the central part is within 20%-80% and the dielectric cavity resonator is a dual-mode resonator.
7 . The dielectric cavity resonator of claim 1 , wherein, a minimum distance between the dielectric core and walls of the metallic resonance cavity is within 3%-15% of a cross-sectional maximum side length of the dielectric core.
8 . The dielectric cavity resonator of claim 1 , wherein the columnar parts and the central part are molded in one piece and transition portions of the columnar parts that are located between the central part and the main bodies of the columnar parts each have a height same as or different from the height of the main bodies of the columnar parts.
9 . The dielectric cavity resonator of claim 1 , wherein the dielectric core is made of a ceramic material which has a QF value of 8000-100000 and a relative permittivity of 18-100.
10 . The dielectric cavity resonator of claim 1 , wherein the central part is round or square or in other regular shapes in an x-y cross-section perpendicular to the z direction.
11 . The dielectric cavity resonator of claim 1 , wherein the central part has a central hole formed therein as an installation hole or a hole for receiving a tuning screw.
12 . The dielectric cavity resonator of claim 1 , wherein a support member is provided within the metallic resonance cavity for supporting the dielectric core.
13 . A dielectric cavity filter comprising a dielectric cavity resonator according to claim 1 .
14 . The dielectric cavity filter of claim 13 , wherein it comprises a first coaxial resonator and a second coaxial resonator placed on opposite sides of the dielectric cavity resonator, the first and second coaxial resonators being coupled to the dielectric cavity resonator via coupling windows.
15 . The dielectric cavity filter of claim 14 , wherein the coupling windows are in the form of apertures that are opened in the z direction and have at least one concave portion and at least one convex portion provided on their bottoms.