The present invention relates to an antenna for a radio terminal device and a radio terminal device.
In case of the PDC system, as for a conventional antenna for a radio terminal device, a diversity antenna in combination of a whip antenna 102 and a planar inverted F antenna 103, as shown in
Accordingly, in any states such as telephone call or data communications, there was described an antenna from which good polarization characteristics can be obtained, for example, in JP-A-2001-326514.
In
Meanwhile, there was mentioned a technique to switch the polarization and the directivity of an antenna by switching an antenna to the balanced characteristic and unbalanced characteristic in JP-A-2002-43826.
In
Meanwhile, other than the above JP-A-2002-43826, there was mentioned about controlling the directivity of an antenna by changing the current distribution in JP-A-2001-223514.
In
However, in the conventional method as described in JP-A-2001-326514, there were problems in that an antenna element of approximately 1 wavelength was needed, which could not be installed at the case in view of a configuration of an antenna so that it was difficult to produce a small-sized terminal. Meanwhile, the conversion switch 2202 served as a means to switch an impedance matching circuit and switching at the same frequency band was not considered.
Meanwhile, according to the conventional method as described in JP-A-2002-43826, a small-sized antenna could be produced by using a folded loop antenna, but there was a problem in that the balanced characteristic and unbalanced characteristic could not be switched at the same frequency band as they were switched at the phase circuit.
Also, as for the conventional method as described in JP-A-2001-223514, there was a problem in that many devices such as diodes and the like were needed for the control of the current distribution.
An object of the present invention is to provide an antenna for a radio terminal device and a radio terminal device in which a small-sized product can be realized by configuring with an antenna element that is shorter than 1 wavelength and can be installed at an case, and in which the antenna characteristic can be switched at the same frequency band with a simple component configuration at the same time.
An antenna for a radio terminal device of the present invention comprises an antenna element; and an antenna characteristic switching section for switching between the states in which a current distribution exists only on and in the vicinity of the antenna element and in which a current distribution exists not only on and in the vicinity of the antenna element but also on the other portions.
Meanwhile, an antenna for a radio terminal device of the present invention comprises an antenna element; a conductive substrate arranged close in parallel to the long side of the antenna element with a sufficiently small spacing as compared with the wavelength in a twisted position relationship; and an antenna characteristic switching section, being connected to one end of the antenna element in the vicinity of the conductive substrate, for changing the state of continuity with the conductive substrate.
According to the above configuration, the polarization and the directivity of an antenna can be switched.
Meanwhile, in an antenna for a radio terminal device of the present invention, the antenna characteristic switching section has a switch and a coil connected each other in series and one end of the coil is connected to the antenna element.
Meanwhile, in an antenna for a radio terminal device of the present invention, the antenna characteristic switching section has a diode and a coil connected each other in series.
According to the above configuration, the polarization and the directivity of an antenna can be switched with a simple configuration so that a small-sized antenna can be produced.
Meanwhile, in an antenna for a radio terminal device of the present invention, any one of a loop antenna, dipole antenna, and diversity antenna is used as the antenna element.
Furthermore, in an antenna for a radio terminal device of the present invention, the antenna element is a dipole antenna and also an array antenna configured by two antenna elements.
According to the above configuration, a small-sized antenna can be produced and can be arranged on the case.
Meanwhile, a radio terminal device comprises an antenna element; a conductive substrate arranged close in parallel to the long side of the antenna element with a sufficiently small spacing as compared with the wavelength in a twisted position relationship; an antenna characteristic switching section, being connected to one end of the antenna element in the vicinity of the conductive substrate, for changing the state of continuity with the conductive substrate; and an RF circuit section connected to the other end of the antenna element.
Furthermore, a radio terminal device comprises an antenna element; a conductive substrate arranged close in parallel to the long side of the antenna element with a sufficiently small spacing as compared with the wavelength in a twisted position relationship; a RF circuit section connected to one end of the antenna element; and an antenna characteristic switching section which is connected to the portion in the vicinity of the end connected with the RF circuit section and in proximity to the conductive substrate, for changing the state of continuity with the conductive substrate, wherein the other end of the antenna element in proximity to the conductive substrate is connected to the conductive substrate.
Meanwhile, a radio terminal device comprises an antenna element; a conductive substrate arranged close in parallel to the long side of the antenna element with a sufficiently small spacing as compared with the wavelength in a twisted position relationship; a balanced/unbalanced converter connected to both ends of the antenna element; a RF circuit section connected to the balanced/unbalanced converter; and an antenna characteristic switching section being connected to the antenna element in the vicinity of the conductive substrate, for changing the state of continuity with the conductive substrate.
According to the above configuration, the polarization and the directivity of an antenna can be switched with a simple configuration so that receiving sensitivity can be improved.
Meanwhile, a radio terminal device of the present invention further comprises an operating pattern estimator for discriminating whether the present communication is a telephone call or a data communication, to notify the antenna characteristic switching section, wherein the antenna characteristic switching section performs a predetermined switching on the basis of the notification. According to this configuration, the polarization and the directivity of an antenna can be automatically switched according to the usage pattern of the radio terminal device so that the user can be served with communications without awareness and in a state with much higher sensitivity.
Meanwhile, a radio terminal device of the present invention further comprises a propagation environment estimator for detecting at least any one of a received power, and a polarization or directivity of an arrival radio wave, to notify the antenna characteristic switching section, wherein the antenna characteristic switching section performs a predetermined switching on the basis of the notification. According to this configuration, the polarization and the directivity of an antenna can be automatically switched according to the propagation environment so that the user can be served with communications without awareness and in a state with much higher sensitivity.
Also, a radio terminal device of the present invention further comprises a tilt detector for detecting the tilt angle of the radio terminal device to notify the antenna characteristic switching section, wherein the antenna characteristic switching section performs a predetermined switching on the basis of the notification. According to this configuration, the polarization and the directivity of an antenna can be automatically switched according to the slope of the radio terminal device so that the user can be served with communications without awareness and in a state with much higher sensitivity.
Meanwhile, in a radio terminal device of the present invention, the antenna characteristic switching section has a switch and a coil being connected each other in series, one end of the coil being connected to the antenna element.
Furthermore, in a radio terminal device of the present invention, the antenna characteristic switching section has a diode and a coil being connected each other in series.
According to the above configuration, the polarization and the directivity of an antenna can be switched with a simple configuration so that a small-sized radio terminal device can be produced.
Meanwhile, in a radio terminal device of the present invention, the antenna element is any one of a loop antenna, dipole antenna, and diversity antenna.
Furthermore, in a radio terminal device of the present invention, the antenna element is a dipole antenna and also an array antenna configured by two antenna elements.
According to the above configuration, a small antenna can be arranged at a case so that a small-sized radio terminal device can be produced.
According to the present invention as described above, an antenna in which the directivity thereof at the same frequency band is switched can be realized by a simple configuration. Due to this, a small-sized radio terminal device can be obtained. Meanwhile, by switching the antenna characteristic according to the usage pattern, the propagation environment or the slope of a radio terminal device, the reception characteristic suitable for each situation can be obtained.
Embodiments of the present invention are demonstrated hereinafter with reference to the drawings.
A radio terminal device 301 has an antenna element 302, an antenna characteristic switching section 303 and a RF circuit section 306. More specific configuration example is shown in
The antenna element 302 is, for example, a turned-up dipole antenna 401 of about a half wavelength, placed on a substrate 411 in a symmetrical arrangement. The both ends of the turned-up dipole antenna 401 are brought close each other, wherein one end is connected to the RF circuit section 306 and the other end is connected to a conductive substrate 410 which is formed on all over the backside of the substrate 411 through a through-hole. In this configuration, an unbalanced feeding is performed. The conductive substrate 410 in this case corresponds to a conductive substrate.
The antenna characteristic switching section 303 has a coil 402 and a switch 403. The H terminal of the switch 403 is connected to the conductive substrate 410 through a through-hole. This switch 403 changes selectively whether to connect or disconnect to the conductive substrate 410.
When the switch 403 is connected to the L terminal side, feeding points of the turned-up dipole antenna 401 are connected to the RF circuit section 306 and the conductive substrate 410. Therefore is provided an unbalanced feeding. However, in the case of a configuration of the present embodiment as shown in
On the other hand, when the switch 403 is connected to the H terminal, current flows also onto the conductive substrate 410. This phenomenon destroys the balance of the current distribution which concentrates on and in the vicinity of the turned-up dipole antenna 401. Because of the current distribution existing not only on and in the vicinity of the turned-up dipole antenna 401 but also on the conductive substrate 410, there is shown the same characteristic as in the case of an antenna element which is provided with an unbalanced feeding. Therefore, the polarized wave of the radio terminal device 301 is the one in which the component in the z-axis direction is dominant as represented by Arrow 502 in
As a switch 403, for example, a SPDT(Single Pole Double Throw) switch can be used. Any other devices can be substituted if only they have two or more switching functions. Also, diodes such as a PIN diode can be substituted for the switch 403. Other devices than diodes can be substituted if only they have a function to switch over between connection and disconnection to the conductive substrate 410. Incidentally, grounding of the switch 403 can be provided at a common terminal side as shown in
Furthermore, as shown in
As described above, in the case that the radio terminal device 301 configured in the present embodiment is held in the left hand of a user in a telephone call state, the polarization directivity thereof is like the followings: when the switch 403 is switched to the H terminal side, the horizontal composition is dominant as shown in
Herein, in a radio communication system in which transmission/reception to/from the base station is performed with vertical polarization, polarization loss of the radio terminal device 301 caused is decreased when, in a telephone call mode as shown in
Consequently, when the switch 403 in
As described above, according to the present embodiment, directivities of antenna can be changed in the same frequency band by switching between concentrating the current distribution on and in the vicinity of the antenna element and expanding the current distribution not only on and in the vicinity of the antenna element but also onto the conductive substrate with the use of the switch 403. In doing so, it is possible to enhance the received power characteristic of the radio terminal device 301, in each usage pattern of a telephone call mode and a data communication mode.
Incidentally, the antenna element 302 is not limited to a turned-up dipole antenna. A folded loop antenna and so forth may be substituted. Also, the same effect is obtainable in a configuration in which an antenna is provided with a balanced feeding through a balanced/unbalanced converter 404 as shown in
This operating pattern estimator 304, in accordance with the usage pattern of the radio terminal device, is to determine the characteristic of the antenna element 302 suitable for the usage pattern thereof, outputting signals to an antenna characteristic switching section 303 for switching the antenna characteristic.
For example, the operating pattern estimator 304 estimates whether the usage pattern of the radio terminal device is a telephone call mode or data communication mode. This usage pattern estimation is available before communication starts by, for example, detecting whether or not it's a data communication mode (packet communication mode), whether or not there is a voice input/output through the microphone/speaker, or by detecting the pre-added signals for discriminating communication modes. The operating pattern estimator 304 issues instructions on the basis of these detection results so that the switch 403 can be switched to the L terminal side in a telephone call mode, and to the H terminal side in a data communication mode.
As described above, according to the present embodiment, polarization to be used in communication can be automatically changed over in accordance with its usage pattern. This can reduce the polarization loss in communication while users are not aware of it. As a result, communication with higher sensitivity can be realized.
This propagation environment estimator 305, in accordance with the propagation environment, is to determine the characteristic of the antenna element 302 suitable for the propagation environment, thus outputting a signal to an antenna characteristic switching section 303 for switching the antenna characteristic.
For example, the propagation environment estimator 305 monitors received power, polarization or direction of arrival radio waves and so on.
Incidentally, ability for estimating arrival direction is not limited to this configuration: similar function is available also in a configuration where the propagation environment estimator 305 includes an array antenna.
Meanwhile, in
Next,
This tilt detector 308 is to detect the tilt angle of the radio terminal device 301, determine the characteristic of an antenna element 302 suitable for the tilt angle, then outputting signals to an antenna characteristic switching section 303 in order to change over the connection.
As a tilt detector 308, for example, a tilting switch can be used. What is representative as a tilting switch is a well-closed container including balls and bars inside. When the container tilts by itself, balls and bars inside also tilt together to make electrical contacts ON/OFF.
By using this, polarization can be changed over as follows: when the radio terminal device, turning around the x-axis in
Furthermore, in a usage pattern where telephone call mode and data communication mode are operated simultaneously like a case of videophone or a telephone call while operating a packet communication in parallel, it allows the radio terminal device to improve its communication sensitivity by switching the polarization to be used for communication in response to the tilt angle of the radio communication terminal.
In
For example, in a stand-by mode, the antenna element 2001 with a nearly-nondirectional characteristic is to be used because it is better for the efficiency of transmission/reception to use a nondirectional antenna when the disposition state of the radio communication terminal is not known. In this case, in a telephone call mode, the switch 403 is to be set to the L terminal side and the switch 2002 is to be set to the H terminal side. In a data communication mode, the switch 403 is to be set to the H terminal side and the switch 2002 is to be set to the H terminal side. On the other hand, in a stand-by mode, the switch 403 can be set to either H/L terminal, and the switch 2002 is to be set to the L terminal side in order to change over to the antenna element 2001. In this manner, it is possible to switch antennas in accordance with the three situations.
As described above, configuration with plural antenna elements will make it possible to control the antenna characteristic to be more adaptive to the operating pattern.
Incidentally, it is also possible to use the propagation environment estimator of Embodiment 3 or the tilt detector of Embodiment 4 instead of the operating pattern estimator 304 so that the antenna with the most adaptive reception characteristic can be selected among plural antennas.
In
An antenna configured by the antenna element 401, coil 402, switch 403 and the RF circuit section 306, and an antenna configured by the antenna element 2101, coil 2102, switch 2103 and the RF circuit section 2106 are respectively changed between an unbalanced feeding characteristic and a balanced feeding characteristic by respectively switching the switch 403 and switch 2103. Therefore each antenna can have a different characteristic from the other. In this manner, like the case as shown in
The above configuration can also be applied to antennas for MIMO (Multi Input Multi Output) system by setting the switch 403 to the L terminal side so that the antenna element 401 may be provided with the balanced feeding characteristic and by setting the switch 2103 to the H terminal side so that the antenna element 2101 may be provided with the unbalanced feeding characteristic. Meanwhile, MIMO is exemplified by BLAST (Bell Labs Layered Space-Time).
Also, the present invention can be applied to a multiple polarization system because it can transmit and receive two kinds of polarized waves as shown in
Furthermore, this invention can realize transmission diversity and can also be applied to antennas for receiving or transmitting space and time codes, adaptive array antennas having two antenna elements and so forth.
Further, in a case of using the radio terminal device held in one hand, influence of the hand will be reduced by providing the antenna element closer to the hand with unbalanced feeding characteristic.
Meanwhile, such a configuration is also possible wherein the characteristic of one or both of the antennas are fixed without using switches.
Industrial Applicability
An antenna for a radio terminal device and a radio terminal device according to the present invention are useful in the radio terminal device necessary for switching the antenna characteristic and suitable for reduction in the size.
Number | Date | Country | Kind |
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2002-280994 | Sep 2002 | JP | national |
2003-327822 | Sep 2003 | JP | national |
Filing Document | Filing Date | Country | Kind |
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PCT/JP03/12223 | 9/25/2003 | WO |