COAXIAL FILTER AND COMMUNICATION RADIO FREQUENCY DEVICE
20240039135 ยท 2024-02-01
Assignee
Inventors
Cpc classification
International classification
Abstract
Provided are a coaxial filter and a communication radio frequency device. The communication radio frequency device includes the coaxial filter. The coaxial filter includes a housing having a resonant cavity, a cover plate, and a resonator. The cover plate corresponds to the resonant cavity and covers the housing. The resonator includes plurality of elastic pieces, a connection portion, and a body portion which are sequentially connected from one end to another end. The connection portion is connected to a bottom of the resonant cavity.
Claims
1. A coaxial filter, comprising a housing, a cover plate, and a resonator, wherein the housing has a resonant cavity, the cover plate corresponds to the resonant cavity and covers the housing, the resonator comprises a plurality of elastic pieces, a body portion and a connection portion which are sequentially connected from one end to another end of the resonator, the connection portion is connected to a bottom of the resonant cavity, the plurality of elastic pieces are evenly spaced apart along a circumferential direction of the body portion, and an operation hole corresponding to the resonator is disposed on the cover plate.
2. The coaxial filter according to claim 1, wherein a respective operation hole corresponding to each of the plurality of elastic pieces is disposed on the cover plate.
3. The coaxial filter according to claim 1, wherein the connection portion, the body portion, and the plurality of elastic pieces are integrally formed.
4. The coaxial filter according to claim 1, wherein a disk ring extends at an end of the body portion facing away from the connection portion, and the body portion is connected to the plurality of elastic pieces through the disk ring.
5. The coaxial filter according to claim 1, wherein an extension direction of the plurality of elastic pieces is the same as a direction of a plate surface of the cover plate.
6. The coaxial filter according to claim 1, wherein a mounting protrusion is disposed on a bottom wall of the resonant cavity, wherein the connection portion is connected to the mounting protrusion.
7. The coaxial filter according to claim 1, wherein a plurality of resonant cavities are provided and sequentially communicate with each other, wherein one resonator is disposed in each of the plurality of resonant cavities, a coupling adjustment member is disposed between two communicating ones of the plurality of resonant cavities, and a top end of the coupling adjustment member is connected to the cover plate.
8. The coaxial filter according to claim 7, wherein the coupling adjustment member is a countersunk screw fixed to the cover plate.
9. The coaxial filter according to claim 1, wherein the plurality of elastic pieces are fan-shaped or polygonal.
10. The coaxial filter according to claim 2, wherein the plurality of elastic pieces are fan-shaped or polygonal.
11. The coaxial filter according to claim 3, wherein the plurality of elastic pieces are fan-shaped or polygonal.
12. The coaxial filter according to claim 4, wherein the plurality of elastic pieces are fan-shaped or polygonal.
13. The coaxial filter according to claim 5, wherein the plurality of elastic pieces are fan-shaped or polygonal.
14. The coaxial filter according to claim 6, wherein the plurality of elastic pieces are fan-shaped or polygonal.
15. The coaxial filter according to claim 7, wherein the plurality of elastic pieces are fan-shaped or polygonal.
16. The coaxial filter according to claim 8, wherein the plurality of elastic pieces are fan-shaped or polygonal.
17. A communication radio frequency device, comprising the coaxial filter according to claim 1.
18. The communication radio frequency device of claim 17, wherein a respective operation hole corresponding to each of the plurality of elastic pieces is disposed on the cover plate.
19. The communication radio frequency device of claim 17, wherein the connection portion, the body portion, and the plurality of elastic pieces are integrally formed.
20. The communication radio frequency device of claim 17, wherein a disk ring extends at an end of the body portion facing away from the connection portion, and the body portion is connected to the plurality of elastic pieces through the disk ring.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
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[0023]
REFERENCE LIST
[0024] 1 housing [0025] 11 resonant cavity [0026] 12 opening [0027] 2 cover plate [0028] 21 operation hole [0029] 3 resonator [0030] 31 connection portion [0031] 32 body portion [0032] 33 elastic piece [0033] 34 disk ring [0034] 4 mounting protrusion [0035] 5 coupling adjustment member
DETAILED DESCRIPTION
[0036] In the description of the present disclosure, it is to be noted that orientations or position relations indicated by terms such as center, upper, lower, left, right, vertical, horizontal, in, and out are based on the drawings. These orientations or position relations are intended only to facilitate and simplify the description of the present disclosure and not to indicate or imply that a device or element referred to must have such particular orientations or must be configured or operated in such particular orientations. Thus, these orientations or position relations are not to be construed as limiting the present disclosure. Moreover, terms such as first and second are used only for the purpose of description and are not to be construed as indicating or implying relative importance. Terms first position and second position are two different positions.
[0037] Unless otherwise expressly specified and limited, terms mounted, joined connected, and fixed are to be understood in a broad sense. For example, the term connected may refer to fixedly connected or detachably connected, may refer to mechanically connected or electrically connected, or may refer to connected directly, connected indirectly through an intermediary, connected inside two components, or interaction relations between two components. For those of ordinary skill in the art, specific meanings of the preceding terms in the present disclosure may be understood based on specific situations.
[0038] Unless otherwise expressly specified and limited, when a first feature is described as on or under a second feature, the first feature and the second feature may be in direct contact or be in contact via another feature between the two features. Moreover, when the first feature is described as on, above, or over the second feature, the first feature is right on, above, or over the second feature or the first feature is obliquely on, above, or over the second feature, or the first feature is simply at a higher level than the second feature. When the first feature is described as under, below, or underneath the second feature, the first feature is right under, below, or underneath the second feature or the first feature is obliquely under, below, or underneath the second feature, or the first feature is simply at a lower level than the second feature.
[0039] Technical solutions of the present disclosure are further described below in conjunction with
[0040] This embodiment provides a communication radio frequency device, which may be a duplexer, a combiner, or the like. A specific structure of the radio frequency device is not limited herein. The communication radio frequency device includes a coaxial filter.
[0041] As shown in
[0042] With the coaxial filter in this embodiment, the elastic pieces 33 of the resonator 3 in the resonant cavity 11 can be adjusted through the operation hole 21 so that the elastic pieces 33 are deformed, thereby adjusting the frequency, and it is unnecessary to provide a screw for performing the adjustment, which reduces the volume and can increase the power capacity at the same volume. In addition, generation of metal chips in adjusting the screw is avoided without the screw, which is conducive to ensuring product performance.
[0043] In detail, when the resonator 3 is adjusted, an adjustment rod of a non-metallic material is used to penetrate the operation hole 21 and vertically strikes any elastic piece 33 downward, or a hook of a non-metallic material is used to pull the elastic piece 33 upward so that the elastic piece 33 is deformed, so as to obtain a required frequency.
[0044] Further, the elastic piece 33 in this embodiment is fan-shaped or polygonal. In detail, when the elastic piece 33 is polygonal, as shown in
[0045] As shown in
[0046] In particular, to facilitate the machining of the resonator 3, the connection portion 31, the body portion 32 and the multiple elastic pieces 33 are integrally formed. In this embodiment, the resonator 3 may be formed by stretching.
[0047] Optionally, a disk ring 34 extends at an end of the body portion 32 facing away from the connection portion 31, and the body portion 32 is connected to the multiple elastic pieces 33 through the disk ring 34. The disk ring 34 is disposed so that the connection strength of the elastic pieces 33 can be improved.
[0048] Of course, in other embodiments, as shown in
[0049] Optionally, an extension direction of the multiple elastic pieces 33 is the same as a direction of a plate surface of the cover plate 2, which can save a space and facilitates the adjustment of the elastic piece 33 via the operation holes 21.
[0050] As shown in
[0051] As shown in
[0052] In the related art, the strength of electromagnetic coupling between two adjacent resonant cavities 11 is generally adjusted by a screw threadedly connected to the cover plate 2. To solve the preceding problem, the coupling adjustment member 5 in this embodiment is a countersunk screw fixed to the cover plate 2. Specifically, the depth of the countersunk screw is measured in advance according to a coupling amount compensation requirement and then the countersunk screw is fixed to the cover plate 2 without a subsequent adjustment, so that debugging time can be effectively reduced.
[0053] In this embodiment, the housing 1 may be formed through die casting so that the resonant cavities 11 have the uniform size, and the opening 12 between each two adjacent resonant cavities 11 is also kept the same.
[0054] The technical principle of the present disclosure is described above in conjunction with the embodiments. The description is merely used for explaining the principle of the present disclosure, and cannot be explained as limitations to the scope of the present disclosure in any manner. Based on the explanations herein, other embodiments of the present disclosure conceived by those skilled in the art without creative work fall within the scope of the present disclosure.