The present invention relates to a slidable-type portable terminal in which one enclosure slides with respect to the other enclosure.
In a communication device, such as a portable phone in which one enclosure slides with respect to the other enclosure (hereinafter referred to as a “slidable-type portable terminal”), circuit boards in the respective enclosures are electrically connected together by means of a flexible cable. The flexible cable connects; for instance, an antenna provided in one enclosure, to a circuit board for signal processing purpose provided in the other enclosure.
At least a slide distance between the enclosures must be assured as a length of the flexible cable. Depending on a location of a connector on a circuit board to which a terminal of the flexible cable is to be connected, the flexible cable must be made further longer. However, when the flexible cable is long, a corresponding electrical length also becomes long. For this reason, variations arise in impedance characteristic of an antenna during sliding action, which in turn affects antenna performance.
Therefore, in a slidable-type portable phone described in connection with Patent Document 1, an intermediate portion of a flexible cable 10 interconnecting connector terminal areas 23A and 23B is electrically connected to an ground connection 25 connected to a ground layer of a substrate 17, as shown in
Patent Document 1; JP-A-2006-93998
Patent Document 2; JP-A-2006-333387
Patent Document 3: JP-A-2006-203806
However, depending on locations of the connector terminal areas 23A and 23B, the slidable-type portable phone shown in
Further, as shown in
Specifically, in the slidable-type portable phone shown in
An objective of the present invention is to provide a slidable-type portable terminal in which one enclosure slides with respect to the other enclosure and which achieves high antenna gain.
The present invention provides a slidable-type portable terminal comprising: a first enclosure; a second enclosure; a first board arranged in the first enclosure; a second board arranged in the second enclosure; an antenna electrically connected to the first board; a connecting unit that electrically connects together the first board and the second board; a plurality of sliding units that slidably connects the first enclosure to the second enclosure; and a conductor for electrically connecting the connecting unit to one of the plurality of sliding units, wherein the one of the plurality of sliding units is electrically connected to a ground of the connecting unit by means of the conductor.
In the slidable-type portable terminal, a sliding unit electrically unconnected to the connecting unit, among the plurality of sliding units, is electrically connected to a ground of the first board.
In the slidable-type portable terminal, the slidable unit and the connecting unit are electrically connected or the slidable unit and the first board are electrically connected together by way of a reactance element.
In a slidable-type portable terminal of the present invention, antenna gain is improved.
100 UPPER ENCLOSURE
200 LOWER ENCLOSURE
101 CIRCUIT BOARD (UPPER BOARD)
201 CIRCUIT BOARD (LOWER BOARD)
103
a,
103
b RAIL
203
a,
203
b SLIDER
105, 205a, 205b SHEET-METAL
115, 215a, 215b SCREW
207 REACTANCE ELEMENT
209 BUILT-IN ANTENNA
301 FLEXIBLE CABLE
An embodiment of the present invention is hereunder described by reference to the drawings. An embodiment described hereunder provides an explanation about a communication device in which one enclosure slides with respect to the other enclosure (hereinafter referred to as a “slidable-type portable terminal”), such as a portable phone.
As shown in
The rails 103a and 103b on the upper enclosure 100 are provided at right and left ends on a surface of the upper enclosure 100 that slides with respect to the lower enclosure 200; namely, a back side of the upper enclosure 100. The sliders 203a and 203b on the lower enclosure 200 are provided at right and left ends on a surface of the lower enclosure 200 that slides with respect to the upper enclosure 100; namely, a front side of the lower enclosure 200. Since the sliders 203a and 203b are slidably fitted into respective grooves of the rails 103a and 103b, the upper enclosure 100 and the lower enclosure 200 can slide with respect to each other. Incidentally, the rails 103a, 103b and the sliders 203a, 203b are formed from a conductor, such as metal.
In the embodiment, the sheet-metal 205a is screwed to one of the sliders (the slider 203a shown in
The sheet-metal 205b is screwed to the other slider (the slider 203b shown in
As mentioned above, in the embodiment, the rail 103a provided in the upper enclosure 100 remains in electrical conduction with the ground layer 211 of the lower board 201 of the lower enclosure 200 having the built-in antenna 209, by way of conductors such as the slider 203a, the ground line of the flexible cable 301, and the metal plate 205a. The rail 103b also remains in electrical conduction with the ground layer 211 of the lower board 201 by way of conductors such as the slider 203b and the sheet-metal 205a. In addition, the ground layer 111 of the upper board 101 is also in electrical conduction with the ground layer 211 of the lower board 201 by way of the ground line of the flexible cable 301. Therefore, as shown in
The reactance element 207 is interposed between the rail 103b and the ground layer 211 of the lower board 201. Insertion of the reactance element 207 enables changing of an impedance and the phase of the antenna current flowing into the upper board; therefore, antenna gain at a desired frequency band can be enhanced further. The reactance element 207 can be interposed between the slider 203a and the ground line of the flexible cable 301, too.
Furthermore, as shown in
The embodiment has provided the descriptions about the method using the screw for electrical connection between the slider and the sheet-metal. However, the electrical connection is not limited to that method, and a connection employing a method using a conductive cushion, or the like, yields a similar advantage, so long as the method enables realization of an electrical connection between the slider and the sheet-metal.
The method for grounding the rails 103a, 103b and the upper board 101 also includes several conceivable methods, such as a connection made by a sheet-metal and a connection made by a conductive cushion. Moreover, insertion of a reactance element is also acceptable. A grounding location may also be a location between an upper end of the rail and the upper board 101, a location between a lower end of the rail and the upper board 101, one of both rails, and both of the rails.
The method for connecting the flexible cable 301 to the ground of the board may also be any of (1) a method for connecting the flexible cable 301 to the screw 215a and connecting the ground of the board to the screw 215b, (2) a method for connecting the flexible cable 301 to the screw 215b and connecting the ground of the board to the screw 215a, (3) a method for connecting the flexible cable 301 to both the screw 215a and the screw 215b, (4) a method for connecting the flexible cable 301 solely to the screw 215a, and (5) a method for connecting the flexible cable 301 solely to the screw 215b.
The upper enclosure 100 and the lower enclosure 200 employed in the previously-described embodiment correspond to a first enclosure and a second enclosure of claims. The upper board 101 and the lower board 201 also correspond to a first board and a second board, respectively. The rails 103a, 103b and the sliders 203a, 203b correspond to a plurality of sliding units. The sheet-metal 205a also corresponds to a conductor. Moreover, the flexible cable 301 corresponds to a connecting unit. The present invention is not limited to that described in connection with the embodiment and expected to be susceptible to alterations and applications contrived by the skilled in the art on the basis of the descriptions of the present patent application and well-known techniques. The alterations and applications shall fall within a range where protection of the present invention is to be sought.
Although the present invention has been described in detail and by reference to the specific embodiment, it is manifest to those skilled in the art that the present invention be susceptible to various alterations and modifications without departing the spirit and scope of the present invention.
The present patent application is based on Japanese Patent Application (Application No. 2008-20757) filed on Jan. 31, 2008, the entire subject matter of which is incorporated herein by reference.
The slidable-type portable terminal of the present invention is useful as a communication device, such as a slidable-type portable phone having rails formed from a conductor and a slider formed from a conductor.
Number | Date | Country | Kind |
---|---|---|---|
2008-020757 | Jan 2008 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2008/003902 | 12/22/2008 | WO | 00 | 7/29/2010 |