TM dual mode filter
11296393 · 2022-04-05
Assignee
Inventors
Cpc classification
International classification
Abstract
The present disclosure provides a filter comprises an enclosure having two cavities separated by a wall; a first TM dual-mode resonator and a second TM dual-mode resonator, each TM dual-mode resonator having two modes and comprising a body having a central portion with a plurality of arms extending outwardly from the central portion; a gradient aperture formed in the wall for coupling between two TM dual-mode resonators. The filter is capable of forming two transmission zeros between four resonances modes.
Claims
1. A filter comprising: an enclosure having two cavities separated by a wall; a cutting corner at a side of the cavities; a first transverse magnetic (TM) dual-mode resonator and a second TM dual-mode resonator, each TM dual-mode resonator having two modes and comprising a body having a central portion with a plurality of arms extending outwardly from the central portion, wherein the first TM dual-mode resonator has a first arm and a second arm, wherein the second TM dual-mode resonator has a third arm and fourth arm; and a gradient aperture formed in the wall for coupling between the first TM dual-mode resonator and the second TM dual-mode resonator, wherein: the direction of the gradient aperture is against to the cutting corner, the gradient aperture implements transmission zero based on the coupling, a position of the transmission zeros is determined based on at least an angle of the gradient aperture and a length of the gradient aperture, the coupling between the first TM dual-mode resonator and the second TM dual-mode resonator is a coupling between the second arm and the third arm, and the first arm is perpendicular to the second arm and the third arm is perpendicular to the fourth arm.
2. The filter of claim 1, wherein the filter further comprises: a window formed in the wall and a capacity which is across the window.
3. The filter of claim 1, wherein the filter further comprises: input pins respectively distributed in the two cavities.
4. The filter of claim 1, wherein the first TM dual-mode resonator has a first mode and a second mode, and wherein the second TM dual-mode resonator has a third mode and a fourth mode.
5. The filter of claim 4, wherein the coupling between the first TM dual-mode resonator and the second TM dual-mode resonator is a coupling between the first mode and the third mode or a coupling between the second mode and the fourth mode.
6. A network node comprising: a filter, wherein the filter comprises: an enclosure having two cavities separated by a wall; a cutting corner at a side of the cavities; a first transverse magnetic (TM) dual-mode resonator and a second TM dual-mode mode resonator, each TM dual-mode resonator having two modes and comprising a body having a central portion with a plurality of arms extending outwardly from the central portion, wherein the first TM dual-mode resonator has a first arm and a second arm, and wherein the second TM dual-mode resonator has a third arm and a fourth arm; and a gradient aperture formed in the wall for coupling between the first TM dual-mode resonator and the second TM dual-mode resonator, wherein the direction of the gradient aperture is against to the cutting corner, wherein the gradient aperture implements transmission zero based on the coupling, wherein a position of the transmission zeros is determined based on at least an angle of the gradient aperture and a length of the gradient aperture, and wherein the coupling between the first TM dual-mode resonator and the second TM dual-mode resonator is a coupling between the first arm and the fourth arm and a coupling between the second arm and the third arm.
7. The network node of claim 6, wherein the first arm is perpendicular to the second arm and the third arm is perpendicular to the fourth arm.
8. The network node of claim 6, wherein the filter further comprises: a window formed in the wall and a capacity which is across the window.
9. The network node of claim 6, wherein the filter further comprises: input pins respectively distributed in the two cavities.
10. The network node of claim 6, wherein the first TM dual-mode resonator has a first mode and a second mode, and wherein the second TM dual-mode resonator has a third mode and a fourth mode.
11. The network node of claim 10, wherein the coupling between the first TM dual-mode resonator and the second TM dual-mode resonator is a coupling between the first mode and the third mode or a coupling between the second mode and the fourth mode.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above and other objects, features and advantages will be more apparent from the following description of embodiments with reference to the figures, in which:
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DETAILED DESCRIPTION
(8) The embodiments of the disclosure will be detailed below with reference to the drawings. It should be noted that the following embodiments are illustrative only, rather than limiting the scope of the disclosure.
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(10) A first TM dual mode resonator 16 is formed by resonator members 16A, 16B crossing each other at a mid-point to form a “cross” or “X” in cavity 100A. Resonator members 16A, 16B can be described as a first arm 16A and a second arm 16B too. Further, the first arm 16A indicates a first resonance mode and the second arm 16B indicates a second resonance mode. A second TM dual mode resonator 18 is formed by resonator members 18A, 18B crossing each other at a mid-point to form a “cross” or “X” in cavity 100B. The filter case 100 further houses input pins (i.e., 120A, 120B) coupled to coaxial connectors. Resonator members 18A, 18B can be described as a third arm 18A and a fourth arm 18B too. Further, the third arm 18A indicates a fourth resonance mode and the fourth arm 18B indicates a third resonance mode.
(11) In an embodiment, the first arm 16A is perpendicular to the second arm 16B to ensure a good coupling. The third arm 18A is perpendicular to the fourth arm 18B for the same reason.
(12) A gradient aperture 140 is formed in the wall 110 for coupling between two TM dual-mode resonators. The gradient aperture realizes the coupling and cross coupling between two dual-mode cavities, therefore implementing two transmission zeros both beyond and below the passband. The gradient angle, length, position and direction of the aperture control the coupling and cross coupling, and determine the position of transmission zeros, make it near the passband or far from passband.
(13) In an embodiment, coupling between two TM dual-mode resonators mostly means that coupling between the first mode (the first arm 16A) and the third mode (the fourth arm 18B) and coupling between the second mode (the second arm 16B) and the fourth mode (the third arm 18A). However, coupling between two TM dual-mode resonators also means that coupling between the first mode (the first arm 16A) and the fourth mode (the third arm 18A) and coupling between the second mode (the second arm 16B) and the third mode (the fourth arm 18B).
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(16) The gradient angle and length of the aperture 140 also control the coupling between the first mode and the fourth mode. The coupling will be stronger if the angle or the length is larger.
(17) Also, the length of the aperture influences the coupling between the second mode and the third mode.
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(19) The filter 100 provides a square step in the lower corner, which is named as cutting corner 130 in this disclosure for the coupling between the first resonance mode and the second resonance mode or the coupling between the third resonance mode and the fourth resonance mode. Cutting corner 130 can locate in every side of the filter 100, such as the lower-right side which is showed by
(20) In the embodiment indicated by
(21) On the other hand, as indicated by
(22) The embodiments of this disclosure realize two transmission zeros in one filter, but they may overlap because of the strong coupling between the first mode and the fourth mode or the strong coupling between the second mode and the third mode.
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(24) As also can be seen from
(25) In an embodiment, a window is formed in the wall and a capacity is provided which is across the window. As shown in
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(27) As also can be seen from
(28) The present disclosure also provides a network node or a base station, which includes the TM dual mode filter described by the above embodiments. And the network node or base station can be widely implemented in the wireless communication field.
(29) The disclosure has been described above with reference to embodiments thereof. It should be understood that various modifications, alternations and additions can be made by those skilled in the art without departing from the spirits and scope of the disclosure. Therefore, the scope of the disclosure is not limited to the above particular embodiments but only defined by the claims as attached.