The present invention relates to a foldable wireless electrical device, and more particularly to a foldable wireless electrical device which can improve a detuning phenomenon of receiving and transmitting signals thereof in a closed position.
Referring to
An object of the present invention is to provide a foldable wireless electrical device which can improve a detuning phenomenon of receiving and transmitting signals thereof under its opened and closed positions.
Additionally, another object of the present invention is to provide a pivotable device for improving a detuning phenomenon of receiving and transmitting signals of a foldable wireless electrical device under opened and closed positions.
To fulfill the above-mentioned objects, the present invention provides for a foldable wireless electrical device which comprises a first portion, a second portion, and a shaft. The second portion includes an antenna portion. The shaft is extended between two adjacent ends of the first portion and the second portion for pivotally connecting the first portion and the second portion, and is linked with the first portion. The shaft forms at least one metal section, so that the metal section electrically couples to the antenna portion when the first portion pivots to a predetermined position with respect to the second portion. By this way, properly increase the length of the antenna portion, improve an effect of receiving and transmitting signal of the electrical device in a predetermined position, thereby improving the detuning phenomenon of receiving and transmitting signal of the electrical device.
Additionally, the present invention provides for a foldable wireless electrical device which comprises a first portion, a second portion, and a shaft. The first portion includes a metal section. The second portion includes an antenna portion. The shaft is extended between two adjacent ends of the first portion and of the second portion for pivotally connecting the first portion and the second portion, and is linked with the first portion. The shaft forms at least one coupling portion to electrically connect to the metal section, so that the metal section electrically couples to the antenna portion by the coupling portion when the first portion pivots to a predetermined position with respect to the second portion. By this way, properly increase the length of the antenna portion, and improve an effect of receiving and transmitting signal of the electrical device in a predetermined position, thereby improving the detuning phenomenon of receiving and transmitting signal of the electrical device.
Furthermore, the present invention provides for a pivotable device which is provided on a foldable wireless electrical device, and is used for pivotally connecting a first portion and a second portion of the electrical device. The pivotable device includes a base, an antenna portion and a shaft. The base is disposed on one end of the second portion. The antenna portion is routed on the base. The shaft is pivotally disposed on the base and is provided for fixing the first portion for pivotally connecting the first portion and the second portion. The shaft forms at least one metal section, so that the metal section electrically couples to the antenna portion when the first portion pivots to a predetermined position with respect to the second portion. By this way, properly increase the length of the antenna portion, and improve an effect of receiving and transmitting signal of the electrical device in a predetermined position, thereby improving the detuning phenomenon of receiving and transmitting signal of the electrical device.
Still furthermore, the present invention provides for a pivotable device which is provided on a foldable wireless electrical device, and is used for pivotally connecting a first portion and a second portion of the electrical device. The first portion includes at least one metal section, and the second portion includes an antenna portion. The pivotable device includes a base, an antenna portion and a shaft. The base is disposed on one end of the second portion and has a coupling portion thereon to electrically connect to the antenna portion. The shaft is pivotally disposed on the base and is provided for fixing the first portion, for pivotally connecting the first portion and the second portion. The shaft forms at least one shaft coupling portion to electrically connect to the metal section, so that the antenna coupling portion electrically couples to the shaft coupling portion when the first portion pivots to a predetermined position with respect to the second portion. By this way, properly increase the length of the antenna portion, and improve an effect of receiving and transmitting signal of the electrical device in a predetermined position, thereby improving the detuning phenomenon of receiving and transmitting signal of the electrical device.
The organization and manner of the structure and operation of the invention, together with further objects and advantages thereof, may best be understood by reference to the following description, taken in connection with the accompanying drawings, wherein like reference numerals identify like elements in which:
While the invention may be susceptible to embodiment in different forms, there is shown in the drawings, and herein will be described in detail, a specific embodiment with the understanding that the present disclosure is to be considered an exemplification of the principles of the invention, and is not intended to limit the invention to that as illustrated and described herein.
Referring to
The first portion 21 is a cover portion of the mobile phone 2, and includes a first circuit board 211, a top cover 212 located above the first circuit board 211 and for receiving the first circuit board 211, and a bottom cover 213 located below the first circuit board 211 and for closing with respect to the top cover 212 to limit the first circuit board 211 into the top cover 212.
The second portion 22 is a mainframe portion of the mobile phone, and includes a second circuit board 221, a top shell 222 enclosed above the second circuit board 221, and a bottom shell 223 located below the second circuit board 221 and for receiving the second circuit board 221 and mated with the top shell 222.
The pivot member 23 includes a base 231, an antenna portion 232 and a shaft 233. The base retains one end of the second circuit board 221. The base further defines a recess 241 downwardly formed by the top face of the base 231. Two ends of the recess 241 respectively have a shoulder. One end of the top shell 222 facing the base 231 defines a receiving space 240 for the base 231.
The antenna portion 232 according to the present embodiment is a double-frequency antenna, and is operatable at a frequency band between 900 MHZ and 1800 MHZ. The antenna portion 232 is bent at 90 degrees to wrap on the bottom face 231a of the base 231, and one end thereof is extended from the bottom face 231a of the base 231 toward adjacent side face 230 and to one end of the recess 241 and forms a first mated portion 234 on the one end of the recess 241.
The shaft 233 according to the present invention is a hexagonal cylinder, and two ends thereof are received into the recess 241 of the base 231 to pivot with the recess 241. Referring to
Referring to
Next referring to
Therefore, the electrical coupling between the metal section 235 and the antenna portion 232 makes the length of the antenna portion 232 increase to further overcome the above-mentioned problem of lacking the effective grounding length. Referring to
Next, referring to FIGS. 12 to 14, a second embodiment of the present invention is shown. Simply considering the constructions of the first circuit board 211, the pivot member 31 and the second circuit board 221, the foldable mobile phone of the present embodiment is different from the first embodiment in that the two non-adjacent side faces 32, 33 can also be provided with a first metal section 34 and a second metal section 35, respectively. Two ends of the two metal sections 34, 35 which are faced to the first coupling portion 234 of the base 231 respectively form a second coupling portion 36 and a second coupling portion 37. Accordingly, referring to
Therefore, as seen from the second embodiment, the metal section provided on the shaft 31 is not limited to only one face. Rather, the metal sections may be located on a plurality of metal sections according to the system requirements.
Further, referring to FIGS. 16 to 18, a third preferred embodiment of the present invention is shown therein. Simply considering the constructions of a first circuit board 41, a pivot member 42 (including a base 45 and a shaft 46) and a second circuit board 43, the foldable mobile phone 4 of the present embodiment is different from that of the first embodiment in that an antenna portion 44 is provided (or formed) on the back of the second circuit board 43, and one end of a recess 451 of a base 45 forms a first coupling portion 452. After the base 45 is fixed to the second circuit board 43, then one end of the antenna portion 44 is electrically connected to the first coupling portion 452 (i.e. by soldering or other routing ways). A metal section 47 is formed on the first circuit board 41, and one end of the shaft 46 facing the first coupling portion 452 forms a second coupling portion 461. After the first circuit board 41 is fixed to the shaft 46, then one end of the metal section 47 is electrically connected to the second coupling portion 461 (i.e. by soldering or other routing ways). Thereby, referring to
Therefore, as seen from the third embodiment, the antenna portion 44 and the metal section 47 are not limited to be provided on the base 45 and the shaft 46, respectively, while they may be respectively provided on the first circuit board 41 and the second circuit board 43, or on other usable spaces of the electrical device.
Further referring to FIGS. 19 to 22, a fourth preferred embodiment of the present invention is shown therein and is different from the third embodiment above in that a first circuit board 51 forms a first metal section 511 and a second metal section 512 with different lengths, and referring to
All in all, the foldable wireless electrical device of the present invention forms the first coupling portion on the base of the pivot member, and forms a second coupling portion on a proper position of the shaft pivoted to the base, and the shaft may be directly formed on the first circuit board or be fixed to the first circuit board, the base may be directly formed on the second circuit board or be fixed to the second circuit board, and a metal section may be formed on the first circuit board or on the shaft and is electrically connected to the second coupling portion, furthermore, an antenna portion may be formed on the second circuit board or on the base and is electrically connected to the first coupling portion, which makes the antenna portion electrically coupled to the metal section by the first coupling portion and the second coupling portion when the first circuit board is pivoted to a predetermined position (i.e. the opened position or closed position above) with respect to the second circuit board so as to increase the antenna length of the antenna portion by metal sections. This results in compensating for the reduced grounding area of the mobile phone under the closed position to make the mobile phone 2 have the same effect of receiving and transmitting signal under the opened and closed positions to eliminate the detuning phenomenon of the antenna portion.
While the disclosed embodiments of the present invention are shown and described, it is envisioned that those skilled in the art may devise various modifications of the present invention without departing from the spirit and scope of the appended claims.
Number | Date | Country | Kind |
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200310117913.3 | Nov 2003 | CN | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/US04/38936 | 11/19/2004 | WO | 5/15/2007 |