1. Field of the Invention
The present invention generally relates to a portable apparatus, and especially relates to a portable apparatus that includes an antenna apparatus for UWB (ultra-wide band).
2. Description of the Related Art
In recent years and continuing, UWB radio communication technologies have attracted attention for their capabilities of RADAR positioning and large capacity transmission. Especially, since the approval by the U.S. FCC (Federal Communication Commission) in 2002 of UWB for public uses in a frequency band between 3.1 and 10.6 GHz, developments are being actively undertaken for the utilization of UWB.
Since UWB uses a super-wide band, the antenna apparatus for UWB must be capable of super-wideband transmission and reception.
Further, as applications of the antenna apparatus, portable apparatuses used outdoors can be considered.
An antenna for use at the FCC approved 3.1-10.6 GHz band is proposed by Non-Patent Reference 1; the antenna includes a ground plane and a feeder.
The antenna apparatus 20 includes a feeder 22 in the shape of a teardrop, configured by a circular cone 22a and a sphere 22b inscribed in the circular cone 22a. The feeder 22 is arranged on the ground plane 11.
[Non-Patent Reference 1]
“An omnidirectional and low-VSWR antenna for the FCC-approved UWB frequency band” by T. Taniguchi and T. Kobayashi (Tokyo Denki University) in 2003 IEEE AP-S International Symp., volume: 3, pp. 460-463, Jun. 22-27, 2003. (Disclosure on March 22 at B201 classroom).
[Patent Reference 1] JPA 2000-196327.
The conventional antenna apparatuses tend to require a great volume because of the feeder of the circular cone or the teardrop on the ground plane; accordingly, miniaturization and a thinner shape are desired.
Applicant hereto has applied for patenting a UWB flat antenna apparatus 30 with JPA 2005-378396, the basic composition of which antenna apparatus 30 is shown by
The UWB flat antenna apparatus 30 includes a substrate 31, made of a dielectric material, having an upper surface 31a and a bottom surface 31b. On the upper surface 31a, an antenna element pattern 32 shaped like a home plate and a micro strip line 33 that extends from the antenna element pattern 32 are formed. On the bottom surface 31b, a ground plane 34 is formed countering the micro strip line 33.
The UWB flat antenna apparatus 30 is made smaller and thinner than the antenna apparatuses 10 and 20. Nevertheless, space sufficient to accommodate the UWB flat antenna apparatus 30 has to be provided in a portable apparatus so that further miniaturization and thinner configuration are required by portable apparatuses.
The present invention provides a portable apparatus that substantially obviates one or more of the problems caused by the limitations and disadvantages of the related art.
Features of embodiments of the present invention are set forth in the description that follows, and in part will become apparent from the description and the accompanying drawings, or may be learned by practice of the invention according to the teachings provided in the description. Problem solutions provided by an embodiment of the present invention may be realized and attained by a portable apparatus particularly pointed out in the specification in such full, clear, concise, and exact terms as to enable a person having ordinary skill in the art to practice the invention.
To achieve these solutions and in accordance with an aspect of the invention, as embodied and broadly described herein, an embodiment of the invention provides a portable apparatus as follows.
The portable apparatus includes a battery for operations, a surface of which battery constitutes ground potential, and a cover attached to the main body of the portable apparatus for covering the battery. The cover is configured to serve as a flat antenna element, and the surface of the battery serves as a ground plane. The cover and the surface of the battery are closely arranged.
Since the surface of the battery serves as the ground plane, the portable apparatus can be made thinner than where an independent antenna apparatus is used.
Further, since the surface of the battery serves as the ground electric potential when the battery is installed in the portable apparatus, connection of a coaxial cable is dispensed with, simplifying the configuration of the portable apparatus.
In the following, embodiments of the present invention are described with reference to the accompanying drawings.
The portable telephone 50 includes a loudspeaker 52, a liquid crystal panel 53, an operating unit 54, and a microphone 55, which are arranged on an upper surface 51a of a body 51. On an undersurface 51b of the body 51, a camera unit 56, a battery holding section 57, and a connector 58 are arranged. Further, the battery holding section 57 holds the battery 80, and a battery cover 60 covers the battery 80. A shielding member 59 is arranged inside of the body 51.
The connector 58 is arranged near the battery holding section 57 as shown in
The portable telephone 50 according to Embodiment 1 is different from the conventional portable telephone in that the former includes the UWB communication unit 70 and the connector 58 as shown in
The battery 80 is constituted by a battery element 82 contained in a battery box 81 made of a steel plate in the shape of a flat square as shown in
The battery cover 60 is made by molding resin in the shape of a plate as shown in
The size (length) of the battery cover 60 is greater than the size (length) of the battery holding section 57; the size of the wire-element part 92 is equivalent to the battery holding section 57. That is, the antenna element unit 91 is prolonged in the Y2 direction beyond the battery holding section 57. The battery cover 60 is attached to the body 51 with the antenna element unit 91 arranged immediately next to the battery holding section 57 in the Y2 direction.
Where the battery 80 is installed in the battery holding section 57, and the battery cover 60 is attached to the undersurface 51b of the body 51 to cover the battery 80 as shown in
As described above, the UWB flat antenna apparatus 100 is constituted by the antenna element unit 91, the wire-element part 92, and the surface 83, where the surface 83 serves as a ground element (ground plane). Since the battery 80 is installed in the battery holding section 57, and the battery box 81 is electrically connected to the shielding member 59, it becomes unnecessary to connect a coaxial cable to the UWB flat antenna apparatus 100, simplifying the structure of the UWB flat antenna apparatus 100.
The portable telephone 50 employs the UWB flat antenna apparatus 100 wherein the surface 83 of the battery 80 serves as the ground element, and accordingly, is made smaller, especially thinner than conventional portable telephones that employ an independent UWB flat antenna apparatus.
With the structure described above, a surface 83A of the battery 80A functions as a ground element, and a UWB flat antenna apparatus 100A is constituted by an antenna element unit 91A, the surface 83A, and a wire-element part 92A.
Since the digital camera 110 employs the UWB flat antenna apparatus 100A wherein the surface 83A of the battery 80A serves as the ground element, the digital camera 110 is made smaller, especially thinner than conventional digital cameras that employ an independent UWB flat antenna apparatus.
Further, the present invention is not limited to these embodiments, but variations and modifications may be made without departing from the scope of the present invention.
The present application is based on Japanese Priority Application No. 2006-108872 filed on Apr. 11, 2006 with the Japanese Patent Office, the entire contents of which are hereby incorporated by reference.
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