1. Field of the Invention
The present invention relates generally to a monopole antenna, and more particularly to a monopole antenna with ultra wide band and suitable for building into an electronic device, such as a notebook.
2. Description of the Prior Art
At present, Ultra Wide Band (UWB) antennas are widely used to receive and send signals in Wireless Personal Area Network (WPAN). UWB technology owns higher transmitting rate, excellent security, and costs lower power and cost than conventional wireless transmitting technology in WPAN. Thus, more and more UWB antennas are integrated in electrical devices. Each conventional printed UWB antenna with monopole-antenna structure usually comprises a radiating portion and a grounding portion respectively arranged on two sides of the printed circuit board. However, the type above is complex.
Hence, in this art, a monopole antenna to overcome the above-mentioned disadvantages of the prior art should be provided.
A primary object, therefore, of the present invention is to provide a monopole antenna with simple structure and ultra wide band.
In order to implement the above object, the monopole antenna includes a base board with a first side and a second side, a radiating element, a grounding element and a feeding line. The radiating element and the grounding element are located on the first side of the base board. The grounding element is two times longer than the radiating element. The feeding line includes an inner conductor connected to the radiating element and an outer conductor connected to the grounding element.
Other objects, advantages and novel features of the invention will become more apparent from the following detailed description of a preferred embodiment when taken in conjunction with the accompanying drawings.
Reference will now be made in detail to a preferred embodiment of the present invention.
Reference to
The radiating element 200 is of rectangular shape, and comprises a proximal end 202 facing to the grounding element 300 and a far end 204 far from the grounding element 300. A pair of longer first sides 210, the length of which are 12 mm, connects the proximal end 202 with the far end 204. A pair of shorter second sides 220, the length of which are 10 mm, is respectively located on the proximal end and the far end. Thus, the radiating element 200 has a length of 12 mm and a width of 10 mm.
The grounding element 300 is rectangular, and comprises a first end 302 adjacent to the radiating element 200 and a second end 304 far from the radiating element 200. A pair of longer first sides 310, the length of which are 30 mm, connects the first end 302 with the second end 304. A pair of shorter second sides 320, the length of which are 10 mm, is located on the first end 302 and the second end 304. Thus, the grounding element 300 has a length of 30 mm and a width of 10 mm.
The feeding line 400 comprises an inner conductor 410 connected to the radiating element 200 and an outer conductor 420 connected to the grounding element 300.
The radiating element 200 is separated from the grounding element 300, and a certain distance is between the radiating element 200 and the grounding element 300. In this embodiment, the length of the distance is 1 mm. The grounding element 300 has a longer length than the radiating element 200 and a width equal to the width of the radiating element 200.
The monopole antenna 1 resonates a first higher frequency band on 7 GHz and a second lower frequency band on 3.5 GHz. The total length of the radiating element 200 and the grounding element 300, which is of 42 mm, is equal to half a wavelength of the 3.5 GHz frequency. Thus, the radiating element 200 together with the grounding element 300 resonates the lower frequency band of 3.5 GHz. The length of the radiating element 200 equals to a quarter of wavelength of the 7 GHz frequency. Thus, the radiating element 200 resonates the higher frequency band of 7 GHz. In addition, the radiating element 200 and the grounding element 300 together produce a double frequency effect, which serves as a complementarity for the higher frequency. The higher frequency band and the lower frequency band are connected to each other to form an ultra wide band. Referencing to
In other embodiments, the width and structure of the radiating element 200 and the grounding element 300 can be changed to adapt for different needs, but the length of the radiating element 200 and the grounding element 300 can not be changed. Through the change of the radiating element 200 and the grounding element 300, the monopole antenna 1 can achieve higher frequency.
Referencing to
Referencing to
It is to be understood, however, that even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and function of the invention, the disclosure is illustrative only, and changes may be made in detail, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.
Number | Date | Country | Kind |
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097113433 | Apr 2008 | TW | national |
Number | Name | Date | Kind |
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6864842 | Hung et al. | Mar 2005 | B2 |
Number | Date | Country | |
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20090256770 A1 | Oct 2009 | US |