1. Field of the Invention
The present invention relates to a mobile phone with twin rotational shafts, and, more particularly, to a mobile phone with twin rotational shafts and an image sensing unit.
2. Description of Related Art
The telecommunication industry is expanding very quickly, and the wireless telecommunication industry is growing especially rapidly. Every telecommunication company is vying for a larger share of the market. In addition, with the progress in electronic and semiconductor technology, the mobile phone is designed toward a smaller outline and a lighter weight. Further, the functions of the mobile phone change with each passing day, for example, sending newsletters and e-mail, accessing internet and playing games. Furthermore, a powerful mobile phone can be combined with personal digital assistant (PDA) functions.
Currently, a mobile phone with a color display is a mainstream product in the market. The demand for mobile phones combined with digital cameras comes with the tide of fashion. Manufacturing a suitable image sensing unit for installation in the mobile phone is an important objective for mobile phone manufacturers. Therefore, manufacturing technologies and size of the image sensing unit are improved every day. An image sensing unit installed in a mobile phone is not complicated technology because an image sensing unit is designed with a smaller size. Generally speaking, the image sensing unit of the mobile phone is installed in a side opposite the display; for example, the image sensing unit is installed in a back shell of a bar-type unit, or the image sensing unit is installed in a back side of a lower shell and the display is installed on an interior surface of an upper shell of a clamshell-type unit.
However, the image sensing unit installed in a back side of the mobile phone can allow a user to monitor directly the image on the display when taking pictures. Comparing the clamshell-type with the bar-type, some of the clamshell-types can allow the user to look at the display while taking a self-portrait. Therefore, the clamshell-type mobile phone can provide additional conveniences and application scopes.
Although the clamshell-type mobile phone can provide additional conveniences and application scopes, the image sensing unit and the color display of the clamshell-type mobile phone do not completely matched up with each other. Accordingly, a digital camera or digital camcorder on a mobile phone cannot bring all functions into full play.
Currently, a user not only needs a good mobile phone with a good communication function but also need a mobile phone having an easily controlled digital camera or digital camcorder for processing and inputting multimedia images, and a convenient and clear display for monitoring and displaying the images.
One object of the present invention is to provide a rotational shaft structure for a mobile phone to improve the combination structure of the image sensing unit and the display so that the display allows the user to take picture at any position and angle with the image sensing unit.
Another object of the present invention is to provide a rotational shaft structure for a mobile phone, whereby the display cooperates with the image sensing unit for previewing an image captured by the image sensing unit while taking a portrait, a landscape, or a self-portrait. Accuracy of the picture can thus be enhanced.
A further object of the present invention is to provide a mobile phone with a rotational shaft structure to adjust an image content of a picture captured by the image sensing unit according to a view angle of the display, so that the display completely cooperates with the image sensing unit.
To accomplish the above objectives, the present invention provides a mobile phone with twin rotational shafts. The mobile phone has a rear module, a front module, and a first rotational shaft. The rear module has an image sensing unit, and the front module has a display and a second rotational shaft. The first rotational shaft is coupled between the rear module and the front module, and enables the front module to rotate up to about 360 degrees on the rear module. The second rotational shaft is coupled between the display and the first rotational shaft, and enables the display to rotate up to about 360 degrees on the second rotational shaft. Therefore, the display is capable of rotating on the first rotational shaft. A rotation direction of the first rotational shaft is about parallel to a picture-taking direction of the image sensing unit, and perpendicular to a rotation direction of the second rotational shaft.
The rear module further has a keyboard and a movement direction of the keyboard is about parallel to the picture-taking direction of the image sensing unit. The keyboard is, for example, a set of numerical keys for dialing telephone numbers. The image sensing unit is a charge-coupled device (CCD), or a complementary metal oxide semiconductor (CMOS).
Another aspect of the invention is to provide a mobile phone with twin rotational shafts. The mobile phone with twin rotational shafts includes a rear module, a front module, and a first rotational shaft. The rear module includes a set of keys, and the front module includes a display and a second rotational shaft. The first rotational shaft is coupled between the rear module and the front module, and enables the front module to rotate up to about 360 degrees on the rear module. The second rotational shaft is coupled between the display and the first rotational shaft, and enables the display to rotate up to about 360 degrees on the second rotational shaft. Therefore, the display is capable of rotating on the first rotational shaft. A rotation direction of the first rotational shaft is about parallel to a movement direction of the set of keys, and perpendicular to a rotation direction of the second rotational shaft.
The rear module further has an image sensing unit and the movement direction of the set of keys is about parallel to a picture-taking direction of the image sensing unit.
The mobile phone with twin rotational shafts according to the present invention utilizes a first rotational shaft to allow the front module to rotate parallel to the picture-taking direction of the image sensing unit. Furthermore, the second rotational shaft allows the display to rotate in the front module. Therefore, the mobile phone with twin rotational shafts according to the present invention provides a preferred combination structure of the image sensing unit and the display. Accordingly, users can take pictures with more choices of angles of the display and directions for taking pictures so that the mobile phone can provide a better and accurate display image on the display thereof for conveniently taking pictures.
The foregoing aspects and many of the attendant advantages of this invention will be more readily appreciated as the same becomes better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
The following description is of the best presently contemplated mode of carrying out the present invention. This description is not to be taken in a limiting sense but is made merely for the purpose of describing the general principles of the invention. The scope of the invention should be determined by referencing the appended claims.
Referring to
Because the front module 110 can rotate about 360 degrees on the first rotational shaft 130, the display 150 of the front module 110 can also rotate on the first rotational shaft 130. Further, the front module 110 can protect the keys 210. The image sensing unit 160 disposed in the rear side of the mobile phone 100 with twin rotational shafts can take pictures in a direction parallel to the movement direction of the keys 210. Accordingly, the display 150 can rotate about 360 degrees in the direction for taking picture of the image sensing unit 160. Referring to
A conventional clamshell-type mobile phone normally uses a vertical display installed in an upper shell so as to provide a larger display. If the clamshell-type mobile phone selects a horizontal display, the horizontal display is limited by the left-right boundary of the mobile phone, and therefore the display size has to be reduced.
In the mobile phone 100 with twin rotational shafts according to the present invention, the rotation direction 220 of the first rotational shaft 130 is parallel to the picture-taking direction of the image sensing unit 160. Therefore, the picture-taking direction of the image sensing unit 160 is not limited to the direction of the display 150. The display 150 of the front module 110 can rotate along the first rotational shaft 130 to match the image sensing unit 160. Furthermore, the display 150 can adjust and display the image according to the rotational angle thereof to demonstrate a preferred display effect from a different angle.
In the conventional mobile phone, the image sensing unit and the display sometimes fail to match each other, at some particular angles. The mobile phone with twin rotational shafts according to the present invention can provide a more cooperative assembly. The display can be rotated in any direction for the image sensing unit to take pictures, and the display can furthermore be rotated to a better view angle to avoid an unclear display caused by excessive or insufficient light. Therefore, the display of the mobile phone with twin rotational shafts can be set at a better view angle for taking pictures by the image sensing unit.
As is understood by a person skilled in the art, the foregoing preferred embodiments of the present invention are illustrative of the present invention rather than limiting of the present invention. It is intended that various modifications and similar arrangements be included within the spirit and scope of the appended claims, the scope of which should be accorded the broadest interpretation so as to encompass all such modifications and similar structures.
Number | Date | Country | Kind |
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92216781 | Sep 2003 | TW | national |