Dual-polarized millimeter wave antenna unit, antenna system, and mobile terminal
11145956 · 2021-10-12
Assignee
Inventors
Cpc classification
H01Q9/0478
ELECTRICITY
International classification
Abstract
A dual-polarized millimeter wave antenna unit, an antenna system, and a mobile terminal are disclosed. The dual-polarized millimeter wave antenna unit comprises a main part, a first feed branch, a second feed branch, and a radiator, wherein the radiator is arranged on the top face of the main part, the first feed branch is arranged on a first side face of the main part, the second feed branch is arranged on a second side face of the main body, the first feed branch and the second feed branch are communicated with the bottom face of the main part, the first side face is perpendicular to the second side face, and a weld region is arranged on the bottom face of the main part. The dual-polarized millimeter wave antenna unit provided by the invention has the advantages of wideband, dual polarization, and low sidelobe, thus being especially suitable for 5G communication.
Claims
1. A dual-polarized millimeter wave antenna unit, wherein the dual-polarized millimeter wave antenna unit comprises a main part, a first feed branch, a second feed branch, and a radiator, the radiator is arranged on a top face of the main part, the first feed branch is arranged on a first side face of the main part, the second feed branch is arranged on a second side face of the main body, the first feed branch and the second feed branch are communicated with a bottom face of the main part, the first side face is perpendicular to the second side face, a weld region is arranged on the bottom face of the main part, and wherein an L-shaped first patch and a second patch are arranged in the weld region and are located at diagonal opposite angles of the bottom face of the main part.
2. The dual-polarized millimeter wave antenna unit according to claim 1, wherein the main part is a rectangular ceramic body.
3. The dual-polarized millimeter wave antenna unit according to claim 1, wherein a third patch conductive with the first feed branch and a fourth patch conductive with the second feed branch are arranged on the bottom face of the main part.
4. An antenna system, comprising a circuit board, wherein the antenna system further comprises a dual-polarized millimeter wave antenna unit, the dual-polarized millimeter wave antenna unit comprise a main part, a first feed branch, a second feed branch, and a radiator, wherein the radiator is arranged on a top face of the main part, the first feed branch is arranged on a first side face of the main part, the second feed branch is arranged on a second side face of the main body, the first feed branch and the second feed branch are communicated with a bottom face of the main part, the first side face is perpendicular to the second side face, and a weld region is arranged on the bottom face of the main part; a ground layer is arranged on a bottom face of the circuit board, and at least one said dual-polarized millimeter wave antenna unit is welded on a top face of the circuit board.
5. The antenna system according to claim 4, wherein the circuit board is provided with a first pad, a first feed port, and a second feed port; the first pad corresponds to the weld region and is conductive with the ground layer, the first feed port is electrically connected with the first feed branch, and the second feed port is electrically connected with the second feed branch; and a first isolation region and a second isolation region are arranged on the ground layer, a terminal of the first feed port is located in the first isolation region, and a terminal of the second feed port is located in the second isolation region.
6. The antenna system according to claim 4, wherein the circuit board is provided with a plurality of circuits and a dual-polarized amplitude-phase control chip, and the first feed branch and the second feed branch are electrically connected with the dual-polarized amplitude-phase control chip through the circuits.
7. The antenna system according to claim 6, wherein the circuits have identical phases.
8. The antenna system according to claim 4, wherein the circuit board is provided with a plurality of circuits and two single-polarized amplitude-phase control chips, the first feed branch is electrically connected with one said single-polarized amplitude-phase control chip through the corresponding circuit, and the second feed branch is electrically connected with the other single-polarized amplitude-phase control chip through the corresponding circuit.
9. The antenna system according to claim 8, wherein the circuits have identical phases.
10. The antenna system according to claim 4, wherein the main part is a rectangular ceramic body.
11. The antenna system according to claim 10, wherein the circuit board is provided with a first pad, a first feed port, and a second feed port; the first pad corresponds to the weld region and is conductive with the ground layer, the first feed port is electrically connected with the first feed branch, and the second feed port is electrically connected with the second feed branch; and a first isolation region and a second isolation region are arranged on the ground layer, a terminal of the first feed port is located in the first isolation region, and a terminal of the second feed port is located in the second isolation region.
12. The antenna system according to claim 10, wherein the circuit board is provided with a plurality of circuits and a dual-polarized amplitude-phase control chip, and the first feed branch and the second feed branch are electrically connected with the dual-polarized amplitude-phase control chip through the circuits.
13. The antenna system according to claim 12, wherein the circuits have identical phases.
14. The antenna system according to claim 10, wherein the circuit board is provided with a plurality of circuits and two single-polarized amplitude-phase control chips, the first feed branch is electrically connected with one said single-polarized amplitude-phase control chip through the corresponding circuit, and the second feed branch is electrically connected with the other single-polarized amplitude-phase control chip through the corresponding circuit.
15. The antenna system according to claim 14, wherein the circuits have identical phases.
16. A mobile terminal, wherein the mobile terminal comprises the antenna system according to claim 14.
17. The mobile terminal according to claim 16, wherein the circuit board is provided with a plurality of circuits and a dual-polarized amplitude-phase control chip, and the first feed branch and the second feed branch are electrically connected with the dual-polarized amplitude-phase control chip through the circuits.
18. The mobile terminal according to claim 16, wherein the circuit board is provided with a plurality of circuits and two single-polarized amplitude-phase control chips, the first feed branch is electrically connected with one said single-polarized amplitude-phase control chip through the corresponding circuit, and the second feed branch is electrically connected with the other single-polarized amplitude-phase control chip through the corresponding circuit.
19. The mobile terminal according to claim 16, wherein the main part is a rectangular ceramic body.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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REFERENCE SIGNS
(19) 1, circuit board; 2, ground layer; 3, dual-polarized millimeter wave antenna unit; 4, main part; 5, first feed branch; 6, second feed branch; 7, radiator; 8, first patch; 9, second patch; 10, first pad; 11, third patch; 12, fourth patch; 13, third pad; 14, fourth pad; 15, first feed port; 16, second feed port; 17, first isolation region; 18, second isolation region; 19, circuit; 20, dual-polarized amplitude-phase control chip; 21, single-polarized amplitude-phase control chip.
DETAILED DESCRIPTION OF THE INVENTION
(20) The technical contents, purposes, and effects of the invention are expounded as follows in combination with the embodiments and accompanying drawings.
(21) Referring to
(22) The structural/operating principle of the invention is briefly described as follows: the first feed branch 5 and the second feed branch 6 are respectively arranged on the two perpendicular side faces and can be coupled to excite the radiator 7 to fulfill a wideband; and during feed, currents of the radiator 7 are kept perpendicular by means of a 90° angle between the first feed branch and the second feed branch, so that dual polarization is fulfilled.
(23) From the above description, the invention has the following beneficial effects: the antenna unit has the advantages of wideband, dual polarization, and low sidelobe, thus being especially suitable for 5G communication; and the antenna unit can be attached to a circuit board 1 by means of a surface-mount technology, is wide in application range, convenient to assemble and capable of improving the production efficiency of an antenna system, meets the requirement for independently testing the initial amplitude and phase of circuits, and reduces the performance debugging difficulty of the antenna system.
(24) Furthermore, the main part 4 is a rectangular ceramic body.
(25) From the above description, the first side face and the second side face are two adjacent side faces of the ceramic body.
(26) Furthermore, an L-shaped first patch 8 and a second patch 9 are arranged in the weld region and are located at diagonal opposite angles of the bottom face of the main part 4.
(27) From the above description, the main part 4 is stably connected with an external member (such as the circuit board 1), so that the structural stability of the antenna system is improved.
(28) Furthermore, a third patch 11 conductive with the first feed branch 5 and a fourth patch 12 conductive with the second feed branch 6 are arranged on the bottom face of the main part 4.
(29) From the above description, the third patch and the fourth patch are configured to make the feed of the antenna unit more stable.
(30) An antenna system comprises a circuit board 1 and the dual-polarized millimeter wave antenna unit 3, wherein a ground layer 2 is arranged on the bottom face of the circuit board 1, and at least one dual-polarized millimeter wave antenna unit 3 is welded on the top face of the circuit board 1.
(31) From the above description, the antenna system at least has all the beneficial effects of the dual-polarized millimeter wave antenna unit 3.
(32) Furthermore, the circuit board is provided with a first pad 10, a first feed port 15, and a second feed port 16; the first pad 10 corresponds to the weld region and is conductive with the ground layer 2, the first feed port 15 is electrically connected with the first feed branch 5, and the second feed port 16 is electrically connected with the second feed branch 6; and a first isolation region 17 and a second isolation region 18 are arranged on the ground layer 2, one terminal of the first feed port 15 is located in the first isolation region 17, and one terminal of the second feed port 16 is located in the second isolation region 18.
(33) From the above description, the first isolation region and the second isolation region are configured to prevent short circuits.
(34) Furthermore, the circuit board is provided with a plurality of circuits and a dual-polarized amplitude-phase control chip, and the first feed branch and the second feed branch are electrically connected with the dual-polarized amplitude-phase control chip through the circuits.
(35) Furthermore, the circuit board is provided with a plurality of circuits and two single-polarized amplitude-phase control chips, the first feed branch is electrically connected with one single-polarized amplitude-phase control chip through the corresponding circuit, and the second feed branch is electrically connected with the other single-polarized amplitude-phase control chip through the corresponding circuit.
(36) Furthermore, the circuits have identical phases.
(37) A mobile terminal comprises the antenna system.
(38) From the above description, the mobile terminal at least has all the beneficial effects of the antenna system.
Embodiment 1
(39) Referring to
(40) Referring to
(41) The first feed branch 5 and the second feed branch 6 are in an I shape or in a T shape. To reduce the height of the main part 4 and reduce the size of the antenna unit, in this embodiment, the first feed branch 5 and the second feed branch 6 are in the T shape. The radiator 7 is a metal patch and is circular regular polygonal. The resonant frequency of an antenna is determined by the size of the metal patch (the radiator 7), the resonant frequency increases with the increase of the area of the metal patch, and vice versa. The size of the T-shaped feed branches determines antenna matching, and good impedance matching of the antenna can be fulfilled through control over the height of vertical sections of the T-shaped feed branches and the length of horizontal sections of the T-shaped feed branches.
(42) As shown in
(43) To improve the connection and conduction stability of the antenna system, a third patch 11 conductive with the first feed branch 5 and a fourth patch 12 conductive with the second feed branch 6 are arranged on the bottom face of the main part 4. Preferably, a third pad 13 welded on the third patch 11 and a fourth pad 14 welded on the fourth patch 12 are arranged on the top face of the circuit board 1. In this embodiment, the third patch 11 and the fourth patch 12 are semi-circular, and the third pad 13 and the fourth pad 14 are circular.
(44) Referring to
(45) Before the dual-polarized millimeter wave antenna unit 3 is attached, the initial phase and amplitude of the feed ports in the circuit board 1 are detected by instruments, the performance of each antenna unit is independently tested, and after it is confirmed that the initial phase and amplitudes of the feed ports and the performance of each antenna unit are correct, the antenna unit is attached to the corresponding pad of the PCB, so that the debugging difficulty of the antenna system is effectively reduced.
(46) As shown in
(47) As shown in
(48) In this embodiment, the circuit board 1 is provided with four dual-polarized millimeter wave antenna units 3 arrayed in one row.
(49) The polarization obtained during feed of the first feed ports 15 is defined as 90° polarization, and the polarization obtained during feed of the second feed ports 16 is defined as 0° polarization. A 90° polarization pattern of the antenna system can be obtained by synchronous excitation of the four first feed ports 15, and similarly, a 0° polarization pattern of the antenna system can be obtained by synchronous excitation of the four second feed ports 16.
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Embodiment 2
(53) Referring to
(54) Optionally, the circuits 19 have identical phases.
(55) In conclusion, the dual-polarized millimeter wave antenna unit, the antenna system, and the mobile terminal which are provided by the invention have the advantages of wideband, dual polarization, and low sidelobe, thus being especially suitable for 5G communication. The antenna unit can be attached to the circuit board by means of a surface-mount technology, is wide in application range, convenient to assemble and capable of improving the production efficiency of the antenna system, meets the requirement for independently testing the initial amplitude and phase of the circuits, and reduces the performance debugging difficulty of the antenna system.
(56) The above embodiments are only preferred ones of the invention, and are not intended to limit the patent scope of the invention. All equivalent transformations obtained on the basis of the contents in the specification and the accompanying drawings of the invention, or direct or indirect applications to related technical fields should also fall within the patent protection scope of the invention.