The present invention relates to an antenna apparatus to constitute a wideband antenna that reduces the current flow on a ground plate.
A planar-inverted F antenna (PIFA) is known as an antenna to mount on a small mobile terminal (see, for example, patent literature 1). With the antenna disclosed in patent literature 1, a ground plate is connected with a conductor ground plate through metallic wiring and is fed power from a power feeding point through metallic wiring. Also, one end of a conductor wall is electrically connected with the ground plate, and an electromagnetic coupling adjusting plate is electrically connected with the other end of the conductor wall. The electromagnetic coupling adjusting plate is placed a certain gap apart from the conductor ground plate, so that a capacitor is formed between the electromagnetic coupling adjusting plate and the conductor ground plate. By this means, it is possible to make an antenna's frequency characteristics to support wideband characteristics.
However, with the antenna disclosed in patent literature 1, when this antenna oscillates, a large amount of current flows on the ground plate of a mobile terminal, due to the electromagnetic coupling adjusting plate. Consequently, when the user holds the casing of the mobile terminal, the current flowing on the ground plate changes significantly, and, furthermore, the human body influences as a dielectric and causes an impedance mismatch in the antenna. As a result of this, there is a problem that intended antenna characteristics cannot be achieved and the mobile terminal suffers deterioration of wireless communication quality.
a) shows voltage standing wave ratio (VSWR) characteristics in the event a mobile terminal is placed in free space, and
In
Consequently, even if design is made to match the desired frequency of a mobile terminal in free space, due to the influence of the human body and so on, impedance matching cannot be seen at that desired frequency. As a result of this, there is a problem of instability of communication, and communication might even be disconnected in the worst scenario. In particular, when a large amount of current flows on the ground plate, the above problem becomes more obvious.
It is therefore an object of the present invention to provide an antenna apparatus that can minimize the influence of the human body and make antenna characteristics at a desired frequency good.
An antenna apparatus according to the present invention adopts a configuration having: a ground plate; a power feeding section that is provided in the ground plate; and an antenna element having a power-fed section where power is fed from the power feeding section, a grounding section that is grounded to the ground plate, and a main body section that is formed by bending back a conductor plate in the middle so that the conductor plate has mutually opposing surfaces, the antenna element having an inverted F shape connecting the power-fed section, the ground section, and the main body section, and being placed in an edge section of the ground plate.
With the present invention, it is possible to reduce the influence of the human body and make antenna characteristics at a desired frequency good.
Now, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
From
Ground plate 101 has power feeding section 102. Ground plate 101 is formed with, for example, a conductive case, a circuit board on which a ground pattern is printed, and so on.
Power feeding section 102 is provided on ground plate 101.
Antenna element 103 is provided in an edge section of ground plate 101. Also, antenna element 103 is formed by a conductor plate and has an inverted-F shape connecting grounding section 111, power-fed section 112 and main body section 113 as one, and functions as an inverted-F antenna. Also, antenna element 103 is formed by, for example, forming grounding section 111 and main body section 113 as one by processing conductive (metallic, for example) members and furthermore by welding power-fed section 112 to main body section 113.
Grounding section 111 is bent vertically from main body section 113 and is formed as one with main body section 113, and attached vertically with respect to ground plate 101. Also, ground section 111 is grounded by being electrically connected to the ground of ground plate 101.
Power-fed section 112 is attached vertically with respect to main body section 113, electrically and mechanically connected with main body section 113, and attached vertically with respect to ground plate 101. Also, power-fed section 112 is fed power from power feeding section 102. Also, the length of the long side of power-fed section 112 (the vertical direction with respect to ground plate 101) is virtually the same as in grounding section 111, and power-fed section 112 is attached to ground plate 101a predetermined distance apart from grounding section 111 parallel to grounding section 111.
Main body section 113 is formed by bending a conductor plate in the middle so that the conductive plate has opposing surfaces. Also, main body section 113 is placed parallel to ground plate 101.
Next, the configuration of antenna element 103 will be described in detail using
As shown in
Also, as shown in
Also, referring to
The dimensions of the antenna elements shown in
With the present embodiment, main body section 113a of antenna element 103a and main body section 113b of antenna element 103b are symmetric with respect to the line connecting between the middles of opposing short sides of ground plate 101 (the short side to oppose short side 205 is not shown in
Incidentally, in MIMO communication, if part of a plurality of antennas is influenced by the human body, variations in receiving power are produced between antennas (i.e. unequal median value). As a result of this, in MIMO communication, communication performance (transmission rate) lowers due to deterioration of antenna characteristics or deterioration of reception.
Conventionally, in a mobile terminal performing MIMO communication using a plurality of antennas, when a user holds the mobile terminal by his hand, for example, the user's hand is situated near one antenna (antenna #1), and therefore antenna characteristics deteriorate and the receiving power lowers. In this case, power difference ΔG [dB] is produced between antenna #1 and the other antenna (antenna #2). Power difference ΔG results in an unequal median value between antennas, and, if this power difference ΔG increases, MIMO communication performance lowers.
However, with the present embodiment, current distribution is concentrated in antenna elements and the current distribution near the part (area R1) which the user holds by his hand lowers, so that an impedance mismatch due to the user's hand being located near an antenna element of a mobile terminal is less likely to occur. That is to say, with the present embodiment, the influence upon deterioration of antenna characteristics is less and the power difference that is produced between antenna element 103a and antenna element 103b can be alleviated, so that it is possible to achieve good antenna characteristics in MIMO communication and prevent communication performance from lowering.
Antenna apparatus 100 of the present embodiment is applicable to a communication terminal apparatus such as a mobile telephone. By this means, it is possible to provide a communication terminal apparatus to support multi-band communication or MIMO communication.
By this means, with the present embodiment, it is possible to reduce the influence of the human body and so on and make the antenna characteristic at desired frequency good by reducing the current distribution in the ground plate. Also, with the present embodiment, it is possible to achieve good communication performance when performing MIMO communication, by a simple configuration. Also, with the present embodiment, by making an antenna in a simple configuration, it is possible to save space and miniaturize the apparatus.
Antenna apparatus 800 shown in
Short-circuit section 801 is short-circuited by connecting main body section 113a of antenna element 103a and main body section 113b of antenna element 103b electrically. Also, short-circuit section 801 short-circuits the edge sections of the bent-back parts of main body sections 113a and 113b mutually.
Next, a configuration of antenna element 103 and short-circuit section 801 will be described in more detail using
As shown in
Also, as shown in
Antenna apparatus 800 of the present embodiment is applicable to a mobile telephone and suchlike communication terminal apparatuses. By this means, it is possible to provide a communication terminal apparatus to support wideband communication.
By this means, with the present embodiment, in addition to the above advantage of embodiment 1, it is possible to configure an antenna that can oscillate in wideband, and configure a multi-band antenna (wideband antenna) that supports various systems and frequencies, in a simple configuration.
The disclosure of Japanese Patent Application No. 2008-269988, filed on Oct. 20, 2008, including the specification, drawings and abstract, is incorporated herein by reference in its entirety.
An antenna apparatus according to the present invention is suitable to configure a wideband antenna that reduces the current to flow in the ground plate.
Number | Date | Country | Kind |
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2008-269988 | Oct 2008 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2009/004182 | 8/27/2009 | WO | 00 | 4/18/2011 |