The present invention relates to an antenna technology, and more particularly to a planar antenna module that has high gain.
With the rapid development of wireless communication, such as wireless local area network (LAN) or mobile communication products, it is necessary to use wireless communication for signal transmission. Therefore, the demand for wireless signal bandwidth and data transmission rate is increasing day by day. Therefore, how to provide a planar antenna module with high gain and high wireless signal transmission rate is one of the efforts to develop and innovate.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide a planar antenna module that has high gain.
To achieve this and other objects of the present invention, a planar antenna module comprises a plurality of planar antennas, a first transmission line electrically connected to the planar antennas, and at least one gain enhancement structure formed on at least one lateral edge of the first transmission line, wherein each gain enhancement structure includes a plurality of spaced apart toothed portions.
In an embodiment, the first transmission line has a plurality of first subsections and a first main section. Each first subsection has one end connected to one respective planar antenna, and another end thereof connected to the first main section.
In an embodiment, two gain enhancement structures are provided and respectively formed on the two opposite lateral edges of the first main section.
In an embodiment, the at least one gain enhancement structure is formed on the lateral edges of the first subsections.
In an embodiment, two gain enhancement structures are provided and respectively formed on the lateral edges of two of the first subsections. The two first subsections that carry the gain enhancement structures are connected to the same end of the first main section.
In an embodiment, a ratio of a length to a width of each toothed portion is between 0.15 and 12; the length of each toothed portion is between 0.3 mm and 3 mm, and the width of each toothed portion is between 0.25 mm and 3 mm.
To achieve this and other objects of the present invention, a planar antenna module comprises a plurality of planar antennas each having a first side and a second side adjacent to each other; a first transmission line electrically connected to the first sides of the planar antennas; a second transmission line electrically connected to the second sides of the planar antennas; and at least one gain enhancement structure formed on at least one lateral edge of at least one of the first transmission line and the second transmission line, wherein each gain enhancement structure has a plurality of spaced apart toothed portions.
In an embodiment, the first transmission line has a plurality of first subsections and a first main section. Each first subsection has one end thereof connected to the first sides of the planar antennas, and another end thereof connected to the first main section. The second transmission line has a plurality of second subsections and a second main section. Each second subsection has one end thereof connected to the second sides of the planar antennas, and another end thereof connected to the second main section.
In an embodiment, the gain enhancement structure is formed on a lateral edge of the first main section.
In an embodiment, two gain enhancement structures are provided and formed on the lateral edges of two of the first subsections.
In an embodiment, the gain enhancement structure is formed on a lateral edge of the second main section.
In an embodiment, two gain enhancement structures are further provided and formed on the lateral edges of two of the second subsections.
In an embodiment, a ratio of a length to a width of each toothed portion is between 0.15 and 12; the length of each toothed portion is between 0.3 mm and 3 mm, and the width of each toothed portion is between 0.25 mm and 3 mm.
With the design of the abovementioned gain enhancement structure, the gain of the planar antenna module could be enhanced effectively.
The present invention will be best understood by referring to the following detailed description of some illustrative embodiments in conjunction with the accompanying drawings, in which
Referring to
In this embodiment, the planar antenna module a includes four planar antennas 10 mounted or printed on a circuit board (not shown). A reflective plate R1 under the circuit board is connected to the circuit board. The reflective plate R1 is spaced apart from the circuit board by a predetermined distance and is adapted as a ground. However, the number of planar antennas and the circuit structure are not a limitation of the present invention.
The first transmission line 20 is electrically connected to the planar antennas 10 for accumulating the gain of each planar antenna 10. In this embodiment, the first transmission line 20 comprises a plurality of first subsections 22 and a first main section 24. Each first subsection 22 has an end connected to one planar antenna 10 respectively and another end connected to the first main section 24. In this embodiment, one end of the first main section 24 is connected to two first subsections 22 and the other end of the first main section 24 is connected to the other two first subsections 22. Further, the first main section 24 has a feed point 26 for feeding signals. More specifically, the first subsections 22 are respectively connected to the same side of each planar antenna 10, as shown in
At least two gain enhancement structures 30 are formed on the first transmission line 20. Each gain enhancement structure 30 has a plurality of spaced apart toothed portions 30a. In this embodiment, the planar antenna module a includes two gain enhancement structures 30 respectively formed on two opposite lateral edges of the first transmission line 20 and facing opposite directions. More specifically, the two gain enhancement structures 30 are respectively formed on the two opposite lateral edges 24a, 24b of the first main section 24.
Referring to
Referring to
In this embodiment, the planar antenna module c includes four planar antennas 40. The planar antennas 40 are mounted or printed on a circuit board (not shown). A reflective plate R2 under the circuit board is connected to the circuit board. The reflective plate R2 is spaced apart from the circuit board by a predetermined distance and could be used as a ground. However, the number of planar antennas and the circuit structure are not a limitation of the present invention. Each planar antenna 40 has a first side 42 and a second side 44 adjacent to each other. In this embodiment, in the direction shown in
The first transmission line 50 is electrically connected to the planar antennas 40 for accumulating the gain of each planar antenna 40. In this embodiment, the first transmission line 50 comprises a plurality of first subsections 52 and a first main section 54. Each first subsection 52 has an end connected to the first side 42 of each planar antenna 40 respectively and another end thereof connected to the first main section 54. In this embodiment, one end of the first main section 54 is connected to two first subsections 52 and the other end of the first main section 54 is connected to the other two first subsections 52. Further, the first main section 54 has a first feed point 56 for feeding signals. In this embodiment, the first feed point 56 is a perforation as an example. Preferably, the first feed point 56 is located at a middle of the first main section 54. Further, a turning area of the first subsections 52 could provide with a lead angle 52a, thereby to enhance the antenna gain value.
The second transmission line 60 is electrically connected to the planar antennas 40 for accumulating the gain of each planar antenna 40. In this embodiment, the second transmission line 60 comprises a plurality of second subsections 62 and a second main section 64. Each second subsection 62 has an end connected to the second side 44 of one respective planar antenna 40 and another end thereof connected to the second main section 64. In this embodiment, one end of the second main section 64 is connected to two second subsections 62 and the other end of the second main section 64 is connected to the other two second subsections 62. Further, the second main section 64 has a second feed point 66 for feeding signals. In this embodiment, the second feed point 66 is a perforation as an example. In particular, the second transmission line 60 surrounds two of the planar antennas 40 such that the two planar antennas 40 are located between the second main section 64 of the second transmission lines 60. As shown in
The at least two gain enhancement structures 70 are formed on at least one of the first transmission line 50 and the second transmission line 60. Each gain enhancement structure 70 has a plurality of spaced apart toothed portions 70a (as shown in
Referring to
As shown in
In addition, referring to the following Table III, the experimental group is the planar antenna module c, and the control group is an antenna module having almost the same structures as the planar antenna module c except two gain enhancement structures 70. As can be seen from Table III, the design of the gain enhancement structure 70 of the planar antenna module of the present invention could effectively increase the gain of the antenna.
Referring to
Referring to
Referring to
The planar antenna module of the present invention could further increase the cumulative gain of the planar antenna and increase the gain value of the overall planar antenna module by using the above gain enhancement structures, which could improve the signal transmission rate of the planar antenna module.
In addition, the planar antenna, first transmission line, second transmission line, and gain enhancement structures described above could be made of a metal material such as gold, silver, copper, etc. In addition, preferably, the gain enhancement structure is integrally formed with the first transmission line or the second transmission line as a monolithic unit. Preferably, the planar antenna, the first transmission line, the second transmission line, and the gain enhancement structure are integrally formed as a monolithic unit.
It must be pointed out that the embodiments described above are only some preferred embodiments of the present invention. All equivalent structures which employ the concepts disclosed in this specification and the appended claims should fall within the scope of the present invention.
Number | Date | Country | Kind |
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201821468159.6 | Sep 2018 | CN | national |