CAVITY-BASED DUAL-BAND FILTERING BALUN
20210384604 · 2021-12-09
Assignee
Inventors
Cpc classification
H01P1/208
ELECTRICITY
International classification
Abstract
The invention discloses a cavity-based dual-band filtering balun, which includes a first cavity resonator and a second cavity resonator which are connected by a metal plate, the first cavity resonator is provided with an input PCB board, a metal ground layer of the input PCB board is provided with an input trough line, the other side of the input PCB board is provided with an input microstrip line, and the first cavity resonator is provided with an input slot corresponding to a position of the input trough line; and two opposite outside surfaces of the second cavity resonator which are adjacent to the metal plate are each provided with an output PCB board, metal ground layers of the two output PCB boards are respectively provided with an output trough line, the other sides of the two output PCB boards are each provided with an output microstrip line, and the second cavity resonator is provided with an output slot corresponding to a position of the output trough line and communicated with the output trough line. A main body of the dual-band filtering balun includes two cavity resonators, its structure is high in quality factor and low in insertion loss, and meanwhile, the requirement of two passbands is realized by using two fundamental modes of the cavity resonators, thus reducing a size of a circuit.
Claims
1. A cavity-based dual-band filtering balun, wherein the filtering balun comprises a cavity resonator, the cavity resonator is divided into a first cavity resonator and a second cavity resonator by an intermediate metal plate, edges of the intermediate metal plate are connected to inner walls of the cavity resonator, an outside wall of the first cavity resonator that faces the intermediate metal plate is provided with an input PCB board, and a metal ground layer of the input PCB board is contacted with the first cavity resonator; the metal ground layer on one side of the input PCB board is provided with an input trough line, the other side of the input PCB board which is a top layer is provided with an input microstrip line, and one side of the first cavity resonator contacted with the input PCB board is provided with an input slot completely corresponding to a position of the input trough line and communicated with the input trough line; two opposite outside surfaces of the second cavity resonator that are adjacent to the intermediate metal plate are each provided with an output PCB board, and metal ground layers of the two output PCB boards are close to side surfaces of the second cavity resonator; the metal ground layers of the two output PCB boards are respectively provided with an output trough line, the other sides of the two output PCB boards which are top layers are each provided with an output microstrip line, and two sides of the second cavity resonator that are close to the output PCB boards are respectively provided with an output slot completely corresponding to a position of the output trough line and communicated with the output trough line.
2. The cavity-based dual-band filtering balun according to claim 1, wherein the intermediate metal plate comprises a metal partition plate and a rectangular slit opened in the metal partition plate, and the rectangular slit is parallel to the input trough line and the input slot; two output trough lines are provided, which are respectively a first output trough line and a second output trough line, two output slots are provided, which are respectively a first output slot and a second output slot, the first output trough line is parallel to the first output slot, the second output trough line is parallel to the second output slot, and the first output trough line and the first output slot are parallel to the second output trough line and second output slot; two output microstrip lines are provided, which are respectively a first output microstrip line and a second output microstrip line, and the first output microstrip line is in central symmetry with the second output microstrip line; and two output PCB boards are provided, which are respectively a first output PCB board and a second output PCB board.
3. The cavity-based dual-band filtering balun according to claim 2, wherein an input dielectric substrate of the input PCB board has a dielectric constant of 2.55.
4. The cavity-based dual-band filtering balun according to claim 2, wherein the first output PCB board comprises a first output dielectric substrate, a first output metal ground layer and the first output microstrip line, and the first output trough line is arranged on the first output metal ground layer; and the second output PCB board comprises a second output dielectric substrate, a second output metal ground layer and the second output microstrip line, and the second output trough line is arranged on the second output metal ground layer.
5. The cavity-based dual-band filtering balun according to claim 4, wherein both the first output dielectric substrate and the second output dielectric substrate have a dielectric constant of 2.55.
6. The cavity-based dual-band filtering balun according to claim 2, wherein the input trough line is inclined at an included angle θ.sub.1 to a horizontal direction; and the first output trough line and the second output trough line are both inclined at an included angle θ.sub.2 to the horizontal direction, the first output trough line deviates upwardly from a center position of the first output PCB board, the second output trough line deviates downwardly from a center position of the second output PCB board, and the first output trough line and the second output trough line deviate by a same distance.
7. The cavity-based dual-band filtering balun according to claim 2, wherein the input microstrip line is located at a middle position of the input PCB board, one end of the input microstrip line is flush with a bottom end edge of the input PCB board, and the other end of the input microstrip line extends upwardly along a vertical direction to be staggered with the input trough line and passes over the input trough line; one end of the first output microstrip line is flush with a bottom end edge of the first output PCB board, and the other end of the first output microstrip line extends upwardly along the vertical direction to be staggered with the first output trough line and passes over the first output trough line; and one end of the second output microstrip line is flush with a top end edge of the second output PCB board, the other end of the second output microstrip line extends downwardly along the vertical direction to be staggered with the second output trough line and passes over the second output trough line, and the first output microstrip line is in central symmetry with the second output microstrip line.
8. The cavity-based dual-band filtering balun according to claim 2, wherein the rectangular slit of the intermediate metal plate is inclined at an included angle θ.sub.1 to a horizontal direction, and the input trough line is parallel to the rectangular slit.
9. The cavity-based dual-band filtering balun according to claim 1, wherein a characteristic impedance of the input microstrip line and a characteristic impedance of the output microstrip line are both 50Ω.
10. The cavity-based dual-band filtering balun according to claim 1, wherein the first cavity resonator, the second cavity resonator and the intermediate metal plate are made of a silver-plated aluminum substrate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0034] The accompanying drawings are for illustrative purpose only and cannot be construed as limiting the patent. To better describe the embodiment, some parts can be omitted, enlarged or shrunk in the accompanying drawings, which does not represent the size of the actual product. It is understandable for those skilled in the art that some well-known structures in the accompanying drawings and the descriptions thereof may be omitted. The positional relationship illustrated in the accompanying drawings is for illustrative purpose only and cannot be construed as limiting the present invention.
[0035] A cavity-based dual-band filtering balun is shown in
[0036] In the embodiment, one input trough line 5 is provided, one input slot 6 is provided, the intermediate metal plate 7 includes a rectangular slit 72 and a metal partition plate 71, and the rectangular slit 72 is parallel to the input trough line 5, such that all input signals can be coupled to the second cavity resonator 2 from the first cavity resonator 1. Two output trough lines are provided, and the first output trough line is parallel to the second output trough line, such that the output trough line can receive signals with equal amplitude. One input microstrip line is provided, two input microstrip lines are provided, and the first output microstrip line is in central symmetry with the second output microstrip line, such that the output microstrip line can receive currents with reverse phase and equal amplitude, that is, the output PCB board can output signals with reverse phase and equal amplitude. One input PCB board is provided, and two output PCB boards are provided, which are respectively a first output PCB 111 and a second output PCB 112, and form an output feed network.
[0037] In the embodiment, the input PCB board 3 includes an input dielectric substrate and an input port metal ground arranged on a side surface of one side of the input dielectric substrate close to the first cavity resonator 1, the input trough line 5 is arranged on the input metal ground, and the input microstrip line 4 is arranged on a side surface of one side of the input dielectric substrate far away from the first cavity resonator 1. The first output PCB board 111 includes a first output dielectric substrate and a first output metal ground arranged on a side surface of one side of the first output dielectric substrate close to the second cavity resonator 2, the output trough line 101 is arranged on the first output metal ground, and the first output microstrip line 91 is arranged on a side surface of one side of the first output dielectric substrate far away from the second cavity resonator 2. The second output PCB board 112 includes a second output dielectric substrate and a second output metal ground arranged on a side surface of one side of the second output dielectric substrate close to the second cavity resonator 2, the output trough line 102 is arranged on the second output metal ground, and the second output microstrip line 92 is arranged on a side surface of one side of the second output dielectric substrate far away from the second cavity resonator. The input dielectric substrate and the output dielectric substrate both have a dielectric constant of 2.55.
[0038] As shown in
[0039] As shown in
[0040] In the embodiment, a characteristic impedance of the input microstrip line 4 and a characteristic impedance of the output microstrip lines are both 50Ω.
[0041] In the embodiment, the first cavity resonator 1, the second cavity resonator 2 and the intermediate metal plate 7 are made of silver-plated aluminum.
[0042] As shown in
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[0044] Obviously, the above embodiment of the present invention is only example for clearly describing the present invention, and doesn't limit the implementation of the present invention. For those having ordinary skills in the art, other different forms of changes or variations can also be made on the basis of the description above. All implementations need not and cannot be exhaustive here. All modifications, equivalents, and improvements made within the spirit and principle of the present invention shall be included within the scope of protection of the claims of the present invention.