This invention relates to a portable wireless device such as a cellular phone and a personal digital assistance.
In recent years, there have been proposed, in response to the start of the digital terrestrial broadcasting and the expansion of the way in which portable wireless devices are used with high speed communication services, a wide variety of portable wireless devices of this type, one typical example of which has a main unit and a flip unit including an image display unit, the flip unit being connected with the main unit through a two-axis hinge and the like so that the flip unit is able not only to be open and closed but also to be reversed with respect to the main unit (refer to, for example, Patent Documents 1).
On the other hand, it is known that the portable wireless device comprises an antenna installed in a housing without having an effect on its design (refer to, for example, Patent Documents 2 or 3).
It is estimated that the above mentioned portable wireless device will become more and more popular in response to the start of the digital terrestrial broadcasting and the expansion of the way in which the portable wireless device is used with high speed communication services, and is expected to be often used under the condition that the flip unit (hereinafter referred to as “reversible unit”) has an inner surface provided with a main display unit such as a liquid crystal display, and assumes two different states including an inverted state in which the main display unit provided on the inner surface is visible from the outside, and a non-inverted state in which the main display unit provided on the inner surface is not visible from the outside. The portable wireless device is expected to perform with another device when in the inverted state and when in the non-inverted state.
The conventional portable wireless device, however, encounters such a problem that the performance of the antenna tends to be significantly affected and changed by the difference between the space to be occupied by the antenna when the reversible unit is in the inverted state and the space to be occupied by the antenna when the reversible unit is in the non-inverted state.
It is, therefore, an object of the present invention to provide a portable wireless device that can maintain the performance of an antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around a rotation axis thereof by a specified angle.
The portable wireless device according to the present invention comprises a housing provided with a balanced antenna and a facing section to be faced with the housing, in which the portable wireless device has two states including a first facing state in which the housing is in face to face relationship with the facing section and a second facing state in which the housing rotated around a rotation axis thereof by a predetermined angle is in face to face relationship with the facing section, and the balanced antenna has a shape symmetrical about the rotation axis of the housing.
The portable wireless device thus constructed as previously mentioned can maintain the performance of the antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around the rotation axis thereof by the predetermined angle.
The portable wireless device according to the present invention comprises a housing provided with a balanced antenna and a facing section to be faced with the housing, in which the portable wireless device has two states including a first facing state in which the housing is in face to face relationship with the facing section and a second facing state in which the housing rotated around a rotation axis thereof by a predetermined angle is in face to face relationship with the facing section, the balanced antenna has a shape symmetrical about a predetermined axis pointed in a direction perpendicular to the surface of the facing section, the predetermined axis being perpendicular to the rotation axis, under the condition that the housing is in face to face relationship with the facing section, or under the condition that the housing rotated around the rotation axis by the predetermined angle is in face to face relationship with the facing section.
The portable wireless device thus constructed as previously mentioned can maintain the performance of the antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around the rotation axis thereof by the predetermined angle.
The portable wireless device according to the present invention may comprise a balanced feeder circuit for feeding the balanced antenna on the rotation axis.
The portable wireless device according to the present invention may comprise a balanced-unbalanced transformer and an unbalanced feeder circuit for feeding the balanced antenna through the balanced-unbalanced transformer.
In the portable wireless device according to the present invention, the balanced antenna has a plurality of antenna elements extending from the balanced feeder circuit, each of the plurality of antenna elements being equal in length to or greater in length than a half of a wavelength of a current flowing through each of the plurality of antenna elements.
As the portable wireless device thus constructed as previously mentioned can reduce the peak value of the current flowing through each antenna element, the portable wireless device can prevent unnecessary interference between the antenna elements and the casing and can stabilize the performance of the antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around the rotation axis thereof by the predetermined angle.
The portable wireless device according to the invention may comprise an unbalanced feeder circuit, a ground unit and a matching circuit for connecting said unbalanced feeder circuit and said ground unit with said balanced antenna.
The portable wireless device according to the present invention comprises a housing provided with two unbalanced antennas, a facing section to be faced with the housing, detecting means for detecting the state of the housing with respect to the facing section, switching means for switching one of the two unbalanced antennas to the other one that is used for communications in accordance with a result of the detection performed by the detecting means, in which the portable wireless device has two states including a first facing state in which the housing is in face to face relationship with the facing section and a second facing state in which the housing rotated around a rotation axis thereof by a predetermined angle is in face to face relationship with the facing section, the two unbalanced antennas have a shape symmetrical about the rotation axis of the housing with respect to the facing section.
The portable wireless device thus constructed as previously mentioned can maintain the performance of the antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around the rotation axis thereof by the angle.
The present invention provides a portable wireless device that can maintain the performance of an antenna without being affected by the state of the housing fitted with the antenna even if the housing is rotated around a rotation axis thereof by a specified angle.
The characteristics and advantages of the portable wireless device according to the present invention will be apparent from the following description, taken in conjunction with the accompanying drawings.
a) is a perspective view of a portable wireless device according to a first embodiment of the present invention when an upper casing is in a first facing state.
b) is a perspective view of the portable wireless device shown in
a) is a front elevational view of the portable wireless device shown in
b) is a front elevational view of the portable wireless device shown in
c) is a front elevational view of the portable wireless device shown in
a) is a partial plan view of the portable wireless device shown in
b) is a partial plan view of the portable wireless device shown in
a) is a perspective view of a portable wireless device according to a second embodiment of the present invention when an upper casing is in a first facing state.
b) is a perspective view of the portable wireless device shown in
a) is a perspective view of a portable wireless device according to a third embodiment of the present invention when an upper casing is in a first facing state.
b) is a perspective view of the portable wireless device shown in
10: portable wireless device
21: upper casing (housing)
22a: facing section
23b: rotation axis (reverse axis)
41: balanced transmit-receive radio frequency circuit (balanced feeder circuit)
42: matching circuit
43: balanced antenna
45: balanced-unbalanced transformer
46: unbalanced transmit-receive radio frequency circuit (unbalanced feeder circuit)
47: ground unit
70: portable wireless device
71: axis (predetermined axis)
80: portable wireless device
81, 82: unbalanced antenna
83: switching circuit (switching means)
84: sensor unit (detecting means)
The configuration of a portable wireless device according to the first embodiment will be described.
As shown in
The portable wireless device 10 has a ground substrate 31 (see
The balanced antenna 43 has antenna elements 43a and 43b and a feeder unit 43c disposed on the rotation axis 23b that is an axis (reverse axis) of the reversal of the upper casing 21 with respect to the facing section 22a. The balance antenna 43 is disposed in the upper casing 21 and has a shape with 180-degree rotational symmetry about the rotation axis 23b. Examples of the shapes of the balanced antenna 43 are shown in
Next the operation of the portable wireless device 10 will be described.
The current distribution of the portable wireless device 10 simulated by using a finite difference time domain (FDTD) method is shown in
In
In the second state (not shown) where the upper casing 21 rotated about the rotation axis 23b by 180 degrees is in face to face relationship with the facing section 22a and the antenna element 43b is close to the ground substrate 31, the antenna element 43a separated from the ground substrate 31 greatly contributes as a radiating element for radiating radio waves while the antenna element 43b does not greatly contribute as a radiating element for radiating radio waves due to the effect of the ground substrate 31. Since the balanced antenna 43 has a shape with 180-degree rotational symmetry about the rotation axis 23b, the radiation capacity of the whole balanced antenna 43 is the same before and after the reversal of the balanced antenna 43.
The current distribution of the portable wireless device 10 simulated by using the FDTD method is like the one shown in
In the case that the portable wireless device 10 includes a ground substrate 44 disposed between the antenna elements 43a and 43b in the upper casing 21 as shown in
In the case that the distance between the antenna element 43a and the ground substrate 31 (see
As described above, the portable wireless device 10 can maintain the performance of the balanced antenna 43 regardless of whether the upper casing 21 is in the first facing state or in the second facing state. Thus the portable wireless device 10 can exhibit stable sensitivity when performing communications regardless of whether the upper casing 21 is in the first facing state or in the second facing state.
The portable wireless device 10 comprises the balanced t-receive radio frequency circuit 41 that is a balanced feeder circuit for feeding the balanced antenna The portable wireless device 10, however, may have an unbalanced feeder circuit to feed the balanced antenna 43b. The portable wireless device 10 may include, for example, a balanced-unbalanced transformer 45 and an unbalanced transmit-receive radio frequency circuit 46 as an unbalanced feeder circuit in place of the balanced transmit-receive radio frequency circuit 41 as shown in
The present invention is not limited to the above-described embodiment in which the casing provided with the antenna can be reversed 180 degrees with respect to the other casing and the antenna has the shape with 180-degree rotational symmetry about the reverse axis. Even in the case that the casing provided with the antenna can be rotated through a predetermined angle other than 180 degrees with respect to the other casing, the predetermined angle can be any angle as long as the antenna has a shape with the predetermined angle of rotational symmetry about the rotation axis of the casing provided with the antenna.
The present invention is not limited to the above-described embodiment in which the antenna comprises two antenna elements. The antenna may comprise any number of antenna elements as long as the antenna provided in the casing has a shape with rotational symmetry about the reverse axis of the casing provided with the antenna regardless of whether the portable wireless device is in the state where the casing is in face to face relationship with the facing section or in the state where the casing rotated about the rotation axis thereof by 180 degrees is in face to face relationship with the facing section.
The configuration of a portable wireless device according to the second embodiment will be described.
Some of components of the portable wireless device according to the second embodiment which are similar to those of the portable wireless device 10 according to the first embodiment (see
The position of the balanced antenna 43 disposed in the upper casing 21 of the portable wireless device 70 according to the second embodiment is different from that of the balanced antenna 43 of the portable wireless device 10 as shown in
The balanced antenna 43 of the portable wireless device 70 has the feeder unit 43c disposed on a predetermined axis 71 and has a shape with 180-degree rotational symmetry about the axis 71.
The axis 71 extends in a direction perpendicular to a direction shown by an arrow 70a pointing toward the facing section 22a from the upper casing 21 and to an extension of the rotation axis 23b that is the reverse axis of the upper casing 21 when the portable wireless device 70 is in a first facing state where the upper casing 21 is in face to face relationship with the facing section 22a as shown in
The portable wireless device 70 can maintain the performance of the balanced antenna 43 regardless of whether portable wireless device 70 is in the first facing state or in the second facing state in the same way as the portable wireless device 10 according to the first embodiment, although the radiation pattern of the balanced antenna 43 is reversed with respect to the rotation axis 23b before and after the reversal of the upper casing 21. Thus, the portable wireless device 70 can exhibit stable sensitivity when performing communications regardless of whether the upper casing 21 is in the first state or in the second state.
In the portable wireless device 70, the balanced antenna 43 may have any of the same shapes as in the first embodiment, and the method for feeding the balanced antenna 43 may be used in the same ways as in the first embodiment.
The present invention is not limited to the above-described embodiment in which the casing provided with the antenna can be reversed 180 degrees with respect to the other casing and the antenna has a shape with 180-degree rotational symmetry about the reverse axis of the casing provided with the antenna Even in the case that the casing provided with the antenna can be rotated through a predetermined angle other than 180 degrees with respect to the other casing, the predetermined angle can be any angle as long as the antenna has a shape with rotational symmetry about the rotation axis of the casing provided with the antenna.
The present invention is not limited to the above-described embodiment in which the antenna comprises two antenna elements. The antenna may comprise any number of antenna elements as long as the antenna provided in the casing has a shape with rotational symmetry about the reverse axis of the casing provided with the antenna.
The configuration of a portable wireless device according to the third embodiment will be described.
The components of the portable wireless device according to the present embodiment, which are similar to those of the portable wireless device 10 according to the first embodiment (see
The portable wireless device 80 according to the present embodiment comprises an unbalanced transmit-receive radio frequency circuit 46, unbalanced antennas 81 and 82, a switching circuit 83 as switching means for switching to one of the unbalanced antennas 81 and 82 to be connected with the unbalanced transmit-receive radio frequency circuit 46 and used for communications, a sensor unit 84 as a detecting means for detecting the state of the upper casing 21 with respect to the facing section 22a, and a control unit 85 for causing the switching circuit 83 to switch the state of the connection in accordance with a detection result obtained by the sensor unit 84 in the upper casing 21 as shown in
The unbalanced antennas 81 and 82 have a shape with 180-degree rotational symmetry about the rotation axis 23b that is the reverse axis of the upper casing 21 with respect to the facing section 22a. Since the unbalanced antennas 81 and 82 separately operate, they may be separated from each other. The unbalanced antennas 81 and 82 can also be arranged in various shapes in the same way as the antenna elements 43a and 43b of the portable wireless device 10 according to the first embodiment.
The switching circuit 83 is constructed of PIN (P-Intrinsic-N) diodes, band switching diodes or the like.
The sensor unit 84 is constructed of, for example, a permanent magnet (not shown) provided in the lower casing 22, a magnetometer (not shown) that is a coil and the like provided in the upper casing 21 and is in face to face relationship with the permanent magnet in the lower casing 22.
Next, the operation of the portable wireless device 80 will be described.
The control unit 85 causes either one of the unbalanced antennas 81 and 82 that is farther from the lower casing 22 and the unbalanced transmit-receive radio frequency circuit 46 to be connected with the switching circuit 83 in accordance to the detection result from the sensor unit 84. Thus, in the portable wireless device 80, the unbalanced antenna 82 that is farther from the lower casing 22 is used for communications in the first facing state shown in
As described above, the portable wireless device 80 can maintain the performance of the antenna used for communications with another device, without being affected by the state of the housing fitted with the antenna even if the housing is rotated around the rotation axis thereof by 180 degrees. Thus, the portable wireless device 80 can exhibit stable sensitivity when performing communications regardless of whether the upper casing 21 is in the first state or in the second state.
Also, the portable wireless device 80 has a high antenna efficiency since either one of the unbalanced antennas 81 and 82 which is farther from the lower casing 22, or which is not significantly affected by the ground substrate and the like provided in the lower casing 22, is used for communications.
In the portable wireless device 80, the detecting means has the sensor unit 84. The detecting means, however, may have a component other than the sensor unit 84. The detecting means, for example, may detect the state of the upper casing 21 with respect to the facing section 22a based on the type of an application in use.
The present invention is not limited to the above-described embodiment in which the casing provided with the antenna can be reversed 180 degrees with respect to the other casing and the antenna has a shape with 180-degree rotational symmetry about the reverse axis. Even in the case that the casing provided with the antenna can be rotated through a predetermined angle other than 180 degrees with respect to the other casing, the predetermined angle may be any angle as long as the antenna has a shape with rotational symmetry about the rotation axis of the casing provided with the antenna.
The present invention is not limited to the above-described embodiment in which the antenna comprises two antenna elements. The antenna may comprise three or more antenna elements as long as the antenna provided in the casing has a shape with rotational symmetry about the reverse axis of the casing provided with the antenna without being affected by the state of the casing even if the casing is rotated around the rotation axis thereof by a predetermined angle.
As disclosed above, the portable wireless device according to the present invention is capable of maintaining the performance of the antenna without being affected by the state of the casing even if the casing is rotated around the rotation axis thereof by a predetermined angle, and is useful as a cellular phone, personal digital assistance and the like.
Number | Date | Country | Kind |
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2005-198713 | Jul 2005 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/JP2006/313268 | 7/4/2006 | WO | 00 | 1/2/2008 |