The present invention relates to an antenna apparatus to support a plurality of frequency bands.
For a wireless communication terminal apparatus typified by a mobile telephone (hereinafter “terminal”), there is a demand to have higher functions and there is also a demand for miniaturization, so as to be applicable to multiple wireless communication systems. To meet these demands, an antenna to be incorporated in a terminal is also required to have a wide-band characteristic and be miniaturized to support multiple wireless communication systems. Patent literature 1 and patent literature 2 disclose antennas of this kind.
However, with the antenna disclosed in patent literature 1 described above, the second element that oscillates at a second oscillation frequency requires a new mounting space apart from that of the first element, and therefore the first element has to be made thin and linear and further band-broadening and miniaturization become difficult.
Also, with the antenna disclosed in patent literature 2 described above, due to the fact that the first antenna element has a complex structure, it is difficult to increase the width of elements, and, consequently, further band-broadening and miniaturization are difficult.
It is therefore an object of the present invention to provide an antenna apparatus to allow further miniaturization and band-broadening.
An antenna apparatus according to the present invention employs a configuration having: a box-shaped antenna element having a cuboid shape; a ground point to be connected with a vertex of the box-shaped antenna element; a power feed point to be connected with a vertex forming a same side with the vertex connected with the ground point; and a monopole element to be connected to a vertex that is diagonal to the vertex connected with the ground point in the same plane, having a ¼ wavelength of a first oscillation frequency as a length from the ground point to an open-ended tip, having a ¼ wavelength of a second oscillation frequency higher than the first oscillation frequency as the length from the power feed point to the tip, and being folded back to form a side of a cuboid.
The present invention allows further miniaturization and band-broadening of an antenna apparatus.
Now, embodiments of the present invention will be described below in detail with reference to the accompanying drawings. However, in the embodiments, parts having the same functions will be assigned the same codes and overlapping descriptions will be omitted.
Box-shaped antenna element 102 has a shape of a cuboid with a length of 22 mm, a height of 8 mm, and a width of 5 mm, and, assuming that the plane to face substrate 101 is the bottom plane, amongst the vertices to define the bottom plane, a vertex close to a vertex of substrate 101 is grounded to a ground section of substrate 101 via ground terminal 103 (ground point 104). The vertex forming the same long side with the grounded vertex of box-shaped antenna element 102, is connected to power feed section 106 of substrate 101 via power feed terminal 105. Furthermore, monopole element 107 is connected to the vertex diagonal to the grounded vertex in the bottom plane.
Monopole element 107 has its one end connected to the vertex diagonal to the grounded vertex in the bottom plane of box-shaped antenna element 102, and is folded back so as to form sides of a cuboid having the same size as box-shaped antenna element 102 and arranged in the long-side direction of box-shaped antenna element 102. The tip of monopole element 107 is open-ended.
The length from ground point 104 of box-shaped antenna element 102 to the tip of monopole antenna element 107 is set a ¼ wavelength of the first oscillation frequency, and the length from power feed section 106 to the tip of monopole element 107 is set a ¼ wavelength of a second oscillation frequency.
Next, the principle of operation of the above-described antenna apparatus will be described. Here, the first oscillation frequency is 824 MHz and the second oscillation frequency is 2690 MHz. In the first oscillation frequency, current flows in the tip of monopole element 107, box-shaped antenna element 102, and ground terminal 103, in order, and current is concentrated particularly in box-shaped antenna element 102. In the antenna apparatus configuration described above, the path from the tip of monopole element 107, via box-shaped antenna element 102, to ground point 104, is approximately 108 mm, and the antenna element oscillates as an element of a ¼ wavelength of the 800 MHz band. Thus, although the antenna element oscillates with a ¼ wavelength in the 800 MHz band, but current is then concentrated in the root of box-shaped antenna element 102. Given that current is concentrated in box-shaped antenna element 102 which can secure a wide area as a current distribution range, band-broadening in the lower frequency band is made possible.
On the other hand, in the second oscillation frequency, the current from power feed terminal 105 to monopole element 107 is predominant, and therefore little current flows in box-shaped antenna element 102. Because the gap between power feed terminal 105 and ground terminal 103 functions as a ¼ wavelength short-circuit stub for the 2.6 GHz, current does not flow in box-shaped antenna element 102, and only in monopole element 107 does current flow easily. By this means, band-broadening in the higher frequency band is made possible.
Thus, according to embodiment 1, with an antenna apparatus to which a box-shaped antenna element and a monopole element are connected, the length from a ground point of the box-shaped antenna element to the tip of the monopole element is set a ¼ wavelength of the first oscillation frequency and the length from a power feed point to the tip of the monopole element is set a ¼ wavelength of a second oscillation frequency, so that a plurality of frequency bands can be broadened each and the miniaturization of an antenna cane be realized.
Furthermore, an antenna can be made even smaller by making monopole element 108 a meander shape. Also, as shown in
It is possible, as shown in
Furthermore, it is also possible, as shown in
Although a case has been described with embodiment 1 where the monopole element is linear, a case will be described with embodiment 2 where the monopole element is flat.
Thus, according to embodiment 2, especially the higher frequency band can be broadened by making the monopole element flat.
Upon mounting in a terminal, the above-described box-shaped antenna element is applicable to, for example, a metal component (for example, hinge metal of a folded terminal) having a conductor of substantially the same surface area as the box-shaped antenna element assumed.
The disclosure of Japanese Patent Application No. 2008-221598, filed on Aug. 29, 2008, including the specification, drawings and abstract, is incorporated herein by reference in its entirety.
The antenna apparatus according to the present invention is applicable to wireless communication terminal apparatuses such as mobile telephones.
Number | Date | Country | Kind |
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2008-221598 | Aug 2008 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2009/003865 | 8/11/2009 | WO | 00 | 2/17/2011 |