AN ARRAY ANTENNA
20230056876 · 2023-02-23
Inventors
Cpc classification
H01Q21/0087
ELECTRICITY
International classification
Abstract
The present disclosure relates to an array antenna extending along a first axis in a first direction in a first plane and a second axis in a second direction in the first plane, the first direction being perpendicular to the second direction, the array antenna including; a substrate having a first side and an opposing second side; a plurality of connectors extending in a third direction from the first side, the third direction being perpendicular to the first plane; an antenna element module having a radiating side and an opposing coupling side, wherein the antenna element module includes a plurality of antenna elements arranged on the radiating side and an electromagnetic shielding structure arranged on the coupling side.
Claims
1. An array antenna extending along a first axis in a first direction in a first plane, and a second axis in a second direction in the first plane, the first direction being perpendicular to the second direction, the array antenna comprising: a substrate having a first side and an opposing second side; a plurality of connectors extending in a third direction from the first side, the third direction being perpendicular to the first plane; and an antenna element module having a radiating side and an opposing coupling side, wherein the antenna element module comprises a plurality of antenna elements arranged on the radiating side and an electromagnetic shielding structure arranged on the coupling side, the electromagnetic shielding structure having a connecting portion arranged to be mounted to the first side of the substrate; wherein the substrate is arranged to be coupled to the antenna element module such that the first side of the substrate faces the coupling side of the antenna element module and such that each connector is coupled to a corresponding antenna element of the plurality of antenna elements, and wherein the connecting portion of the electromagnetic shielding structure is joined to the first side.
2. The array antenna according to claim 1, wherein the electromagnetic shielding structure, extends from the coupling side in a direction opposite to the third direction, wherein the electromagnetic shielding structure comprises a plurality of chambers, each chamber being defined by an inner shielding surface enclosing each chamber.
3. The array antenna according to claim 1, wherein the substrate further comprises at least one electrical component on the first side, and wherein each electrical component is enclosed by a corresponding one of plurality of chambers.
4. The array antenna according to claim 1, wherein the electromagnetic shielding structure further comprises a plurality of connector enclosures, each connector enclosure being defined by an inner enclosure surface, wherein the plurality of connector enclosures each extend in the third direction through the coupling surface, forming a passage to a radiating section.
5. The array antenna according to claim 4, wherein each connector is enclosed by a corresponding one of the plurality of connector enclosures.
6. The array antenna according to claim 1, wherein at least a part of the electromagnetic shielding structure forms a continuous structure.
7. The array antenna according to claim 1, wherein each of the connectors are galvanically isolated from the electromagnetic shielding structure.
8. The array antenna according to claim 1, wherein the antenna elements are at least one of slot antenna elements, notch antenna elements, and dipole antenna elements.
9. The array antenna according to claim 2, wherein the plurality of chambers comprises a tubular and/or any polygonal form extending in a direction perpendicular to the first plane.
10. The array antenna according to claim 4, wherein the plurality of connector enclosures comprises a tubular and/or polygonal form extending in a direction perpendicular to the first plane.
11. The array antenna according to claim 1, wherein there is a distance between the first side of the substrate and the coupling side of the antenna element module in the third direction.
12. The array antenna according to claim 1, wherein the connecting portion of the electromagnetic shielding structure is joined to the first side of the substrate by at least one of adhesive, welding, soldering, and pressure.
13. A method for manufacturing an array antenna extending along a first axis in a first direction in a first plane and a second axis in a second direction in the first plane, the method comprising: providing a substrate having a first side and a second side; forming an antenna element module having a radiating side and an opposing coupling side, the antenna element module comprising a plurality of antenna elements, and an electromagnetic shielding structure having a connecting portion, wherein the plurality of antenna elements are arranged on the radiating side and the electromagnetic shielding structure arranged on the coupling side of the antenna element module; assembling a connector on the first side of the substrate, the connector extending in a third direction being perpendicular to the first plane and; mounting the connecting portion of the electromagnetic shielding structure to the first side of the substrate.
14. The method according to claim 13, further comprising: preceding the step of mounting the connecting portion of the electromagnetic shielding structure to the first side of the substrate, mounting at least one electrical component on the first side of the substrate, wherein the electromagnetic shielding structure comprises a plurality of chambers, and a plurality of connector enclosures, wherein the step of mounting the connecting portion of the electromagnetic shielding structure to the first side of the substrate is performed such that each electrical component is enclosed by a corresponding one of the plurality of chambers and each connector is enclosed by a corresponding one of the plurality of connector enclosures.
15. The method according to claim 13, wherein the antenna element module is formed by additive manufacturing or milling.
16. A vehicle comprising the array antenna according to claim 1.
17. A base station comprising the array antenna according to claim 1.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0043] In the following detailed description, some embodiments of the present disclosure will be described. However, it is to be understood that features of the different embodiments are exchangeable between the embodiments and may be combined in different ways, unless anything else is specifically indicated. Even though in the following description, numerous specific details are set forth to provide a more thorough understanding of the provided array antenna and method for manufacturing the same, it will be apparent to one skilled in the art that the device and method may be realized without these details. In other instances, well known constructions or functions are not described in detail, so as not to obscure the present disclosure.
[0044] In the following description of example embodiments, the same reference numerals denote the same or similar components.
[0045] The term “array antenna” or “array of antenna elements” or “antenna element array” refers to a set of multiple connected antennas which work together as a single antenna. In this disclosure the term “antenna array” refers to at least two antenna elements. The term “RF” refers to radio frequency which is an electromagnetic wave having a frequency. An antenna array may be coupled to a feeding system.
[0046] The term “electromagnetic shielding” or “EM shielding” refers to surrounding electrical components and cables with conductive or magnetic materials to isolate the electrical components and cables from the surroundings. The shielding can reduce the coupling of radio waves, electromagnetic fields and electrostatic fields.
[0047] The term “connector” may for example be a coaxial cable, coaxial pin or a coaxial probe which transmits radio frequency signals between at least two points.
[0048] The term “radiating section” refers to a cavity within the antenna element module that guides electromagnetic waves from the connector to be emitted from the antenna element. The cavity may be filled with air or dielectric material.
[0049]
[0050] As illustrated in
[0051]
[0052] As illustrated in
[0053]
[0054] As illustrated in
[0055] As illustrated in
[0056] As further seen in
[0057] Thus, the chambers 12 are arranged to shield the electrical components 14 and the connector enclosures 12′ are arranged to shield a connector 3 and further allow the connector 3 to extend to the radiating section 15 for transmission of radio frequency signals to the same. Thus, the connector enclosures 12′ fulfil an additional function compared to the chambers 12. The height of the radiating section 15 in the third direction is dependent on the frequency of the array antenna 1.
[0058] The array antenna 1 according to the present disclosure may also have electrical components 14 placed on the second side of the substrate 2.
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[0060] The connecting portion 7 of the electromagnetic shielding structure 6 may be joined to the first side 8 of the substrate 2 by means of adhesive, welding, soldering, mechanical fastening by screws or any other suitable method,
[0061]
[0062] As illustrated in
[0063] Generally, the figures illustrate antenna elements 11 that are slot antenna elements. However, according to some embodiments of the present disclosure the antenna elements 11 may be notch antenna elements, dipole antenna elements or any other suitable antenna element. The connector 3 may be arranged differently depending on the type of antenna element 11 that it is feeding. The connector 3 may be extending in the radiating section 15 without any galvanic connection to the antenna element as seen in
[0064] As further illustrated in
[0065] As schematically illustrated in
[0066] The method may further comprise the step of, preceding the step of mounting the connecting portion 7 of the electromagnetic shielding structure 6 to said first side 8 of said substrate 2; mounting at least one surface mounted component/electrical component 14 on the first side of said substrate 8.
[0067] The antenna element module 4 may be formed by additive manufacturing, moulding or milling.
[0068] Further as illustrated in