This application claims the priority benefit of Taiwan application serial no. 102142678, filed on November 22, 2013. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The invention relates to a communication device; more particularly, to a communication device with a coupled-fed multiband antenna element.
2. Description of Related Art
In recent years, communication devices are manufactured in a way of not only providing functions but also focusing on designing appearances for the purpose of offering better video entertainment effects, so as to satisfy demands of consumers. In particular, after the narrow-frame design is incorporated into the communication devices, the visual effects thereof are presented in a more precise and more high-tech way. However, with the narrow-frame design, the thickness of the frame decreases, which makes the available space for the antenna elements become more and more limited.
Hence, how to utilize the limited space to accommodate the antenna elements such that various communication services can be satisfied has become a major issue.
The invention provides a communication device having a small-sized coupled-fed multiband antenna element, and the antenna element has characteristics of a small size and a low profile, and contains a planar structure at the same time. Accordingly, the antenna element is suitable for being applied to a slim tablet communication device, and has characteristics of multiband operations to cover the LTE/WWAN bands.
The communication device of the invention includes a ground element and an antenna element. The antenna element is disposed on a dielectric substrate, and the dielectric substrate is adjacent to an edge of the ground element. The antenna element includes a radiating element, a shorting element and a feeding element. The radiating element has a first open end, a second open end and a shorting point. The radiating element is divided into a first element and a second element by the shorting point, wherein the first element includes the first open end, and the second element includes the second open end. One end of the shorting element is coupled to the shorting point through a first inductive element, and another end of the shorting element is electrically connected to the ground element. The feeding element and the first element are spaced by a coupling gap, and the feeding element is coupled to a signal source through a matching circuit.
To make the aforesaid features and advantages of the invention more comprehensible, several embodiments accompanied with figures are described in detail below to further describe the invention in details.
The accompanying drawings are included to provide a further understanding of the disclosure, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the disclosure and, together with the description, serve to explain the principles of the invention.
The first element 121 includes the first open end 123. The second element 122 includes the second open end 124. One end of the shorting element 13 is coupled to the shorting point 125 through a first inductive element 17, and another end of the shorting element 13 is electrically connected to the ground element 10. The feeding element 14 and the first element 121 are spaced by a coupling gap 16. That is, the feeding element 14 is spaced from the first element 121 by the coupling gap 16. In addition, the feeding element 14 is coupled to a signal source 19 through a matching circuit 18. The radiating element 12 is substantially in an inverted U shape.
The antenna element 11 is operated in at least a first band and a second band, and frequencies of the first band are lower than frequencies of the second band. For example, the antenna element 11 receives a signal from the signal source 19 through the feeding element 14, and the signal from the feeding element 14 is coupled to the radiating element 12 through the coupling gap 16. In other words, the feeding element 14 excites the first element 121 and the second element 122 of the radiating element 12 through coupling. Under the excitation of the feeding element 14, the second element 122 provides a first resonant mode located in the second band. Furthermore, the feeding element 14 provides a second resonant mode located in the second band. Accordingly, an operating bandwidth of the second band can be greatly broadened with a combination of the first resonant mode and the second resonant mode.
On the other hand, the first element 121 is excited by the feeding element 14 through coupling, such that the first element 121 provides a third resonant mode located in the first band. Moreover, the matching circuit 18 allows the antenna element 11 to generate a fourth resonant mode located in the first band. Accordingly, an operating bandwidth of the first band can be greatly increased with a combination of the third resonant mode and the fourth resonant mode. Namely, in the present embodiment, an operating bandwidth of the antenna element 11 is increased with a combination of the coupling feed and the matching circuit 18, and further allowing the antenna element 11 to have characteristics of multiband operations. Additionally, the antenna element 11 further has characteristics of a small size and a low profile, and contains a planar structure at the same time. Therefore, in terms of practical applications, the antenna element 11 is suitable for being applied to a slim tablet communication device, such that the slim tablet communication device satisfies multiple communication services.
It is worth to note that lengths of the first element 121 and the second element 122 may be adjusted by selecting a position of the shorting point 125. For example, in an embodiment, the length of the second element 122 is at least 0.3 times the length of the first element 121. In addition, the first inductive element 17 and the shorting element 13 may be configured to reduce a resonant length of the first element 121 and the second element 122, and may also be configured to adjust a distribution of a resonant mode generated by the antenna element 11.
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It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the disclosed embodiments without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the disclosure cover modifications and variations of this specification provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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102142678 | Nov 2013 | TW | national |