1. Technical Field
The present disclosure relates to an antenna module and a communication device using the antenna module.
2. Description of Related Art
Current communication devices often come with more than one wireless transmission system, such as a WI-FI system and a BLUETOOTH system, each of which employs a corresponding internal printed antenna. The areas of the inner printed antennas are limited because of the miniaturization of the communication device, adversely affecting the performance of the antennas.
Therefore, it is desirable to provide an antenna module and a communication device having the same, which can overcome the above-mentioned limitations.
Many aspects of the present disclosure should be better understood with reference to the following drawings. The components in the drawings are not necessarily drawn to scale, the emphasis instead being placed upon clearly illustrating the principles of the present disclosure. Moreover, in the drawings, like reference numerals designate corresponding parts throughout the views.
Embodiments of the present disclosure will now be described in detail with reference to the drawings.
Referring to
The antenna module 100 includes a first antenna 10 and a second antenna 20, which are positioned between the through hole 320 and the right edge of the shell 300. The first antenna 10 includes a first feed portion 12, a first radiation portion 14, and a ground portion 16. The second antenna 20 includes a second feed portion 22 and a second radiation portion 24.
The first radiation portion 14 is an arc-shaped sheet, fittingly surrounding the through hole 320. The second radiation portion 24 is positioned at a side, e.g., the left side, of the first radiation portion 14. The second radiation portion 24 includes an arced edge 242 and is coupled to the first radiation portion 14 by the arced edge 242. As such, the second radiation portion 24 can function as a direction guiding element of the first radiation portion 14 and helps guide the direction of electromagnetic waves radiated from the first radiation portion 14 such that the first radiation portion 14 can efficiently radiate the electromagnetic waves. The first radiation portion 14 can function as a reflective element of the second radiation portion 24 to reflect electromagnetic waves radiated from the second radiation portion 24 so that the radiation effect of the second radiation portion 24 is enhanced.
The first radiation portion 14 forms an arc that subtends an angle of about 2π/3 (e.g., 130°) and includes a first section 142 that is adjacent to the battery groove 310, a second section 144 that extends from the first section 142 to the second slot 334, and a third section 146 that extends from the second section 144 to the first slot 332. The first section 142, the second section 144, and the third section 146 form arcs that subtend angle of about π/9 (e.g., 23°), π/4 (e.g., 45°), and π/3 (e.g., 62°), respectively. The width of the first section 142 is slightly smaller than those of the second section 144 and the third section 146. The arced edge 242 forms an arc that subtends an angle generally equal to that of the second section 144 and aligned with the second section 144. The second radiation portion 24 extends from the arced edge 242 to the right edge of the shell 300 and is generally rectangular.
The first feed portion 12 extends from the first radiation portion 14, the second feed portion 22 extends from the second radiation portion 24, and the first feed portion 12 and the second feed portion 22 are connected to a signal terminal of the PCB of the communication device 200 and configured for feeding in electromagnetic waves. In particular, the first feed portion 12 is a rectangular strip extending from the third section 146 into the first slot 332, and the second feed portion 22 is a rectangular strip extending from the second radiation portion 24 into the second slot 334.
The ground portion 16 extends from the first radiation portion 14 and is configured for connecting the first radiation portion 14 to the ground of the PCB of the communication device 200.
In this embodiment, the first antenna 10 is a BLUETOOTH compliant antenna, working at about 2.4 GHz. As illustrated in
The second antenna 20 is a WI-FI compliant antenna, also working at about 2.4 GHz. As illustrated in
It will be understood that the above particular embodiments and methods are shown and described by way of illustration only. The principles and the features of the present disclosure may be employed in various and numerous embodiment thereof without departing from the scope of the disclosure as claimed. The above-described embodiments illustrate the scope of the disclosure but do not restrict the scope of the disclosure.
Number | Date | Country | Kind |
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201010253524.3 | Aug 2010 | CN | national |