This application claims the priority benefit of Chinese Patent Application Serial Number CN202020010544.7, filed on Jan. 3, 2020, the full disclosure of which is incorporated herein by reference.
The present disclosure relates to the technical field of communication technology, and more particularly to a base station antenna.
The base station antenna is a vital connection for mobile communication equipment in the prior arts. The quality and performance of the base station antenna indeed affect the quality and user experience of mobile communication. With the development of the current communication technology, the location of the base station would have influenced the quality of mobile communication. The base station antenna couples with a ¼ wavelength metal feed sheet by a metal die-casting radiator to radiate. However, the size of current base station antennas is too large to be installed, which is not suitable for the current market demand for 4G and 5G low profile antenna.
The embodiments of the present disclosure provide a base station antenna intended to solve the issue that the current size of base station antennas is too large to be installed, which is not suitable for the current market demand for 4G and 5G low profile antenna.
The present disclosure provides a base station antenna comprising a balun support component and a substrate. The balun support component comprises a ground circuit and a balun circuit comprising a plurality of bending parts and a plurality of connecting parts that are alternately connected. Each bending part comprises two wires extending in opposite directions and a bending wire connecting the two wires extending in opposite directions. The substrate comprises a first surface and a second surface opposite to the first surface. The second surface of the substrate is disposed on the balun support component. The first surface comprises an oscillator arm comprising a first end and a second end. The first end is closer to a center of the substrate than the second end. The second surface comprises a metal ring. The balun circuit and the ground circuit are electrically connected to the oscillator arm.
The base station antenna of the present disclosure is provided. The balun circuit is disposed on the support surface of the balun support component in a multiple bending configuration to make the circuit layout of the balun circuit concentrated, which reduces the length and width of the support surface of the balun support component required for the disposing of the balun circuit, and could also reduce the height of the balun support component to satisfy the requirements of low profile antenna.
It should be understood, however, that this summary may not contain all aspects and embodiments of the present invention, that this summary is not meant to be limiting or restrictive in any manner, and that the invention as disclosed herein will be understood by one of ordinary skill in the art to encompass obvious improvements and modifications thereto.
The features of the exemplary embodiments believed to be novel and the elements and/or the steps characteristic of the exemplary embodiments are set forth with particularity in the appended claims. The Figures are for illustration purposes only and are not drawn to scale. The exemplary embodiments, both as to organization and method of operation, may best be understood by reference to the detailed description which follows taken in conjunction with the accompanying drawings in which:
The present invention will now be described more fully hereinafter with reference to the accompanying drawings, in which exemplary embodiments of the invention are shown. This present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this present invention will be thorough and complete, and will fully convey the scope of the present invention to those skilled in the art.
Certain terms are used throughout the description and following claims to refer to particular components. As one skilled in the art will appreciate, manufacturers may refer to a component by different names. This document does not intend to distinguish between components that differ in name but function. In the following description and in the claims, the terms “include/including” and “comprise/comprising” are used in an open-ended fashion, and thus should be interpreted as “including but not limited to”. “Substantial/substantially” means, within an acceptable error range, the person skilled in the art may solve the technical problem in a certain error range to achieve the basic technical effect.
The following description is of the best-contemplated mode of carrying out the invention. This description is made for the purpose of illustration of the general principles of the invention and should not be taken in a limiting sense. The scope of the invention is best determined by reference to the appended claims.
Moreover, the terms “include”, “contain”, and any variation thereof are intended to cover a non-exclusive inclusion. Therefore, a process, method, object, or device that comprises a series of elements not only include these elements, but also comprises other elements not specified expressly, or may include inherent elements of the process, method, object, or device. If no more limitations are made, an element limited by “include a/an . . . ” does not exclude other same elements existing in the process, the method, the article, or the device which comprises the element.
In the following embodiment, the same reference numerals are used to refer to the same or similar elements throughout the invention.
In this embodiment, the balun support component 11 comprises a ground circuit 113 and a balun circuit 111. The balun circuit 111 comprises a plurality of bending parts 112 and a plurality of connecting parts 114 which are alternately connected. Each bending part 112 comprises two wires extending in opposite directions and a bending wire connecting the two wires extending in opposite directions. The substrate 13 comprises a first surface 1301 and a second surface 1302 opposite to the first surface 1301. The second surface 1302 of the substrate 13 is disposed on the balun support component 11. The first surface 1301 comprises an oscillator arm 131 comprising a first end 1312 and a second end 1314. The first end 1312 is closer to the center of the substrate 13 than the second ends 1314. The second surface 1302 comprises a metal ring 133. The balun circuit 111 and the ground circuit 113 are electrically connected to the oscillator arm 131. The electrical connection may be direct (such as physical connection) or indirect (such as electrical coupling).
Refer to
In this embodiment, the metal ring 133 may be a closed circular ring body or a closed rectangular ring body. The metal ring 133 surrounds and crosses the four edges of the substrate 13. While the oscillator arms 131 are projected onto the second surface 1302 forming projection areas, the projection areas partially overlap with the metal ring 133. As shown in
Refer to
The second surface 1302 of the substrate 13 is disposed on the first balun support member 115 and the second balun support member 117. The first balun support member 115 is disposed below the two opposite first oscillator arms 1311. The second balun support member 117 is disposed below the two opposite second oscillator arms 1313. The first balun support member 115 and the second balun support member 117 respectively comprise a first support surface 1101 and a second support surface 1102 opposite to the first support surface 1101. Each first support surface 1101 comprises the ground circuit 113 and the balun circuit 111 electrically connected to the ground circuit 113. Each second support surface 1102 comprises the ground circuit 113. The plurality of ground circuits 113 of the first balun support member 115 is disposed on two sides relative to the second balun support member 117. The balun circuit 111 of the first balun support member 115 is disposed on one side relative to the second balun support member 117. The plurality of the ground circuits 113 of the second balun support member 117 is disposed on two sides relative to the first balun support member 115. The balun circuit 111 of the second balun support member 117 is disposed on one side relative to the first balun support member 115. On the first balun support member 115, the balun circuit 111 of the first support surface 1101 and the ground circuit 113 of the second supporting surface 1102 are disposed on the same side relative to the second balun support member 117. On the second balun support member 117, the balun circuit 111 of the first support surface 1101 and the ground circuit 113 of the second supporting surface 1102 are disposed on the same side relative to the first balun support member 115.
In addition, the substrate 13 comprises a feeding perforation 130 passing through the first ends 1312 of the oscillator arms 131. The first balun support member 115 and the second balun support member 117 respectively comprise two feeding protrusions 110. The ground circuits 113 are respectively extended to the surfaces of the corresponding feeding protrusions 110. The feeding protrusions 110 passes through the feeding perforation 130. The ground circuits 113 are connected to the corresponding oscillator arms 131.
Refer to
The two wires extending in opposite directions (vertically upward and vertically downward) of the bending parts 112 are spaced from each other and are parallel to each other. The extension direction of the bending wire connecting the two opposite wires is bent from one direction to the opposite direction by 180 degrees. Refer to
Therefore, the bending direction or the direction of the opening of the first bending part 1111 is different from those of the second bending part 1112. The bending direction or the direction of the opening of the second bending part 1112 and those of the third bending part 1113 are the same. The first bending part 1111 is an inverted U-shaped structure with a downward opening. The second bending part 1112 and the third bending part 1113 are inverted C-shaped structure with leftward openings. The first bending part 1111 is connected to the second bending part 1112 by an L-shaped part of the first connecting part 1114. The second bending part 1112 is connected to the third bending part 1113 by an I-shaped part of the second connecting part 1115. The third bending part 1113 is connected to the ground circuit 113 by an upside-down, left-right reversed L-shaped part of the third connection part 1116. In addition, the horizontal width D of the circuit layout of the balun circuit 113 decreases from one end away from the substrate 13 to one end close to the substrate 13.
In this embodiment, the base station antenna 1 converges the beam width of the horizontal plane through the metal ring 133, which greatly broadens the operating frequency band of the oscillator arm (2.3 GHZ to 3.8 GHZ). The balun circuit 111 is disposed on the supporting surfaces of the balun support component 11 in a multiple-bending configuration, so that the balun circuit 111 is concentrated in a partial area. In this way, the area that the balun circuit 111 required to be disposed on can be reduced, hence minimizing the entire volume of the balun support component 11. The width of the wire of the ground circuit 113 decreases from one end away from the substrate 13 to one end close to the substrate 13, improving the cross polarization ratio of high-frequency band at horizontal plane axial and at 60 degrees, further enhancing the antenna radiation performance.
In summary, the present disclosure provides a base station antenna. A balun circuit is disposed on the support surface of a balun support component by in a multiple-bending configuration to make the circuit layout of the balun circuit concentrated, which reduces the length and width of the support surfaces of the balun support component required for the disposing of the balun circuits, and could also reduce the height of the balun support component to meet the requirements of low profile antenna. Furthermore, the substrate and the oscillator arms are produced by the way of circuit board printing to reduce the weight of the product. In addition, the beam width on the horizontal plane is converged by the oscillator arms cooperating with the metal ring to greatly broaden the operating frequency band. The ground circuit is gradually broadened from bottom to top, improving the cross polarization ratio of high-frequency band at horizontal plane axial and at 60 degrees, further improving the antenna radiation performance. The base station antenna of this disclosure can realize the ultra-wideband, high cross polarization, low standing wave, high isolation, and low profile.
It is to be understood that the term “comprises”, “comprising”, or any other variants thereof, is intended to encompass a non-exclusive inclusion, such that a process, method, article, or device of a series of elements not only include those elements but also comprises other elements that are not explicitly listed, or elements that are inherent to such a process, method, article, or device. An element defined by the phrase “comprising a . . . ” does not exclude the presence of the same element in the process, method, article, or device that comprises the element.
Although the present invention has been explained in relation to its preferred embodiment, it does not intend to limit the present invention. It will be apparent to those skilled in the art having regard to this present invention that other modifications of the exemplary embodiments beyond those embodiments specifically described here may be made without departing from the spirit of the invention. Accordingly, such modifications are considered within the scope of the invention as limited solely by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
202020010544.7 | Jan 2020 | CN | national |
Number | Name | Date | Kind |
---|---|---|---|
20200099128 | Yu | Mar 2020 | A1 |
Number | Date | Country |
---|---|---|
105896071 | Aug 2016 | CN |
107069197 | Aug 2017 | CN |
Number | Date | Country | |
---|---|---|---|
20210210840 A1 | Jul 2021 | US |