The present invention relates to an antenna and a communication device including the antenna.
Pattern antennas are widely used in which a planar antenna element is formed on a substrate, and power is supplied to the antenna element through a coaxial cable so that the antenna element functions as an antenna.
Patent Literature (hereinafter, referred to as “PTL”) 1, for example, discloses an antenna composed of three components: a substrate having antenna elements formed on its surface; a coaxial cable; and an RF connector which is attached to an end of the coaxial cable for coupling with a receiving circuit.
In this antenna, inner and outer conductors of the coaxial cable are soldered to the antenna elements, respectively. A signal received at the antenna element is then transmitted to the receiving circuit via the coaxial cable.
With the related art disclosed in PTL 1, however, signals are transmitted via the coaxial cable and this leads to difficulty in size reduction of a communication device, lower gain, and increased manufacturing costs. Further, since the antenna and the receiving circuit are connected to each other by a bendable coaxial cable, another member is required for fixing the installation direction of the antenna.
The present invention has been made in view of the aforementioned problem and aims to provide: an antenna which enables easy size reduction, higher gain, lower manufacturing costs, and easy fixing of the installation direction; and a communication device.
An antenna according to the present invention is an antenna to be attached to a radio module including a first substrate, a radio circuit to be fixed to the first substrate, and a first coaxial connector to be fixed to the first substrate and to be connected to the radio circuit, the antenna including: a second substrate; a conductor formed on one surface side of the second substrate; and a second coaxial connector to be fixed to the second substrate in a state where the second coaxial connector is connected to the conductor, and to be detachably coupled to the first coaxial connector, in which the second substrate is fixed parallel to the first substrate in a state where the second coaxial connector is coupled to the first coaxial connector.
A communication device according to the present invention includes the antenna and the radio module.
According to the present invention, it is possible to provide: an antenna which enables easy size reduction, higher gain, lower manufacturing costs, and easy fixing of the installation direction; and a communication device.
In the following, an embodiment of the present invention is described in detail with reference to the accompanying drawings.
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Coaxial connector 8 is a male connector which includes inner conductor 8a having a pin-shaped portion adopted to contact coaxial connector 9 to be described later and outer conductor 8b having a cylindrical portion adopted to contact coaxial connector 9.
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Also, female coaxial connector 9 adopted to couple to coaxial connector 8 of radio module 2 is provided in an area where the two ends of conductor 6 are disposed, and coaxial connector 9 is fixed to substrate 5 in a state of being connected to conductor 6.
In
Coaxial connector 8 and coaxial connector 9 are detachably coupled. When coaxial connector 8 and coaxial connector 9 are coupled, substrate 4 of radio module 2 and substrate 5 of antenna 3 are fixed in parallel.
In the manner described above, detachably coupling coaxial connector 8 and coaxial connector 9 allows an antenna having a conductor pattern different from that of antenna 3 to be used depending on the purpose of use or the use environment, and enables adjusting the directivity and the gain. For example, an antenna having a conductor pattern such as that of a dipole antenna can be used.
Further, since antenna 3 can be fixed to radio module 2, the radiation direction of radio waves can be set to a certain direction, and another member for fixing the installation direction of antenna 3 is unnecessary, which allows for size reduction of communication device 1.
Moreover, double-sided adhesive tape 10, a separate fixing member from coaxial connectors 8 and 9, is used for coupling substrates 4 and 5. Thereby, substrates 4 and 5 are more firmly fixed to each other. Note that it is not always necessary to use double-sided adhesive tape 10, and substrates 4 and 5 may be fixed to each other only by coupling coaxial connectors 8 and 9.
Alternatively, instead of double-sided adhesive tape 10, substrates 4 and 5 may be fixed to each other by a screw, or substrates 4 and 5 may be fixed to each other by accommodating radio module 2 and antenna 3 in a case. Further, substrates 4 and 5 may be fixed by a fixing member other than double-sided adhesive tape 10, a screw, or a case.
Next, the shape and the like of coaxial connector 9 of antenna 3 will be described in detail.
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Connecting coaxial connector 9 and conductor 6 in the manner described above and supplying power from radio module 2 to the end portion of conductor 6 allows antenna 3 to function as a loop-antenna.
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Further, in communication device 1, the radio module and the antenna are not connected using a coaxial cable but are connected by coaxial connectors 8 and 9 unlike the related art, so that communication device 1 can be further reduced in size and the manufacturing costs of communication device 1 can be reduced as well.
Furthermore, in communication device 1, since no coaxial cable is used for coupling radio module 2 and antenna 3, cable loss by the coaxial cable is eliminated, and communication device 1 with higher gain can be obtained.
The present invention is suitable for use in an antenna and a communication device.
Filing Document | Filing Date | Country | Kind |
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PCT/JP2015/000793 | 2/19/2015 | WO | 00 |