1. Field of the Invention
The present invention relates to a folding electric device, and more particularly, to a folding electric device having perpendicular and horizontal shafts.
2. Description of the Related Art
Conventional structures for electric devices, especially mobile phones, include a straight type and a folding type. Among these, the folding type mobile phone is more widely preferred because it can be stored in a compact manner. Therefore, the demand for this type of structure it is increasing.
In
Mobile phones are now used as a personal digital assistants having not only a telecommunication function but also a browser function such as Internet, transmission and reception of e-mail, schedule control, etc. Therefore, display contents are more varied and include character information, pictures, graphics, etc. As a result, the size of the display section has increased.
In the conventional folding mobile phone, when the user looks at a display section or performs any operation, it is necessary to position the upper and lower units in an open state. Because the upper and lower units must be opened and closed frequently, it is not very convenient for the user. Therefore, there is room for improving the conventional folding mobile phone in order to make it easier to use.
Also in the conventional folding mobile phone, since the display contents are displayed to match a perpendicularity-oriented screen, when displayed characters are read, the number of characters on each line is small. As a result, the user may have difficulty in reading the display contents.
Also, when wide images are displayed, the image must be reduced in size, or the user must scroll back and forth to view the entire image. This is another usability problem with the conventional folding mobile phone.
Furthermore, since the joint member 720 as shown in
In addition to the mobile phone, other folding equipment, such as personal digital assistants (PDAs), in which a display and an operating section are arranged separately in two units connected to each other so as to be capable of being opened and closed in the same manner as described above, generally have the same problems.
Another conventional folding mobile phone is disclosed in the Japanese Patent Application Publication Laid-Open Kokai No. H11-30226.
In
This Publication also discloses a configuration in which a rotation restricting mechanism for restricting rotation at a reversing position and a click locking mechanism for holding the rotation restricted state are provided in pivot 806.
Still another conventional folding mobile phone is disclosed in the Japanese Patent Application Publication Laid-Open Kokai No. H11-215218.
In
Moreover, the Japanese Patent Application Publication Laid-Open Kokai No. 2002-158758 discloses still another convention folding mobile phone. The Publication shows a mobile phone wherein the user can look at a display or can perform simple operations when the upper and lower units are not opened.
The Japanese Patent Application Publication Laid-Open Kokai No. 2001-156893 shows a mobile phone that switches the display from a perpendicular orientation to a horizontal orientation, or vice versa, along with the rotation of the display unit.
The Japanese Patent Application Publication Laid-Open Kokai No. 5-211547 shows a mobile phone wherein a lower unit is pivotally supported on a upper unit and joint face of the units are formed into a curve. Thus a receiver and a transmitter have a distance and an angle suitable for communication.
The object of the present invention is to provide an improved structure of a folding electric device.
In order to achieve the forgoing object, a folding electric device according to the present invention includes: an upper unit; a lower unit; and a hinge that connects said upper unit to the lower unit. The hinge includes: (a) a perpendicular opening and closing shaft to open and close the upper unit with respect to the lower unit; and (b) a horizontal rotation shaft, fixed vertically on the surface of the lower unit, to rotate the upper unit with respect to the lower unit coming in contact with each other. The present invention may further include a winding flexible board, wound around one of the ends of the perpendicular opening and closing shaft, for electrically connecting the upper unit to the lower unit. Also, the present invention may further include an winding flexible board, wound around the horizontal rotation shaft, for electrically connecting the upper unit to the lower unit. Moreover, the present invention may include an operation input section, mounted on the hinge and electrically connected to the winding flexible board so that a user can operate the operation input section when the folding electric device is in a folded state. In the present invention, the folding electric device may be a folding mobile phone.
The present invention may further include a display arranged on the upper unit. Still furthermore, the present invention may include input keys arranged on the lower unit.
Another embodiment of a folding electric device according to the present invention includes: an upper unit; a lower unit; and a hinge that connects the upper unit to the lower unit. The hinge includes: (a) a perpendicular opening and closed shaft to open and close the upper unit with respect to the lower unit; (b) a horizontal rotation shaft to rotate the upper unit with respect to the lower unit; (c) brackets fixed at the right and left of the horizontal rotation shift in a direction perpendicular to the horizontal rotation shaft and connected to the perpendicular opening and closed shaft in the opening and closing shaft direction of said bracket; (d) a base, on which the horizontal rotation shaft is mounted, fixed to the lower unit; and (e) a mount provided between the brackets. The present invention may further include a winding flexible board, wound around one of the ends of said perpendicular opening, for electrically connecting the upper unit to lower unit. The present invention may further include a bobbin, arranged between the horizontal rotation shaft and the base, for winding the winding flexible board around the horizontal rotation shaft. Moreover, the present invention may further include a flexible board fixing member for fixing the flexible board. Still furthermore, the present invention may include an operation input section, mounted on the mount, for electrically connecting to the winding flexible board so that a user can operate the operation input section when the folding electric device is in a folded state. In the present invention, the folding electric device may be a folding mobile phone. The present invention may further include a display arranged on the upper unit. Also, the present invention may further include input keys arranged on the lower unit.
These and other objects, features and advantages of the invention will be become fully apparent from the following detailed description taken in conjunction with accompanying drawings.
a)-2(c) are perspective views of another conventional folding mobile phone.
a) is a perspective view and
Referring to
Upper unit 2 can be opened through 180 degrees with respect to lower unit 3 via hinge portion 6.
As shown in
In this embodiment, display 4 can be exposed as shown in
The details of hinge 6 and the surrounding area of folding mobile phone 1 are explained below.
In
Mount 104 is provided between brackets 102 and 103. Brackets 102 and 103 are fixed at an upper part of horizontal rotation shaft 101, and are connected to each other under mount 104. In the opening and closing shaft direction of bracket 103, perpendicular opening and closing shaft 105 is provided for operating upper unit 2 so it can be opened and closed. Further, flexible board fixing member 110 is provided for fixing flexible board 106 and bobbin 107 for winding flexible board 106 around horizontal rotation shaft 101.
Horizontal rotation shaft 101 is arranged on base 100 so that upper unit 2 is perpendicular to the face of input keys 5 on lower unit 3, and so that it can be turned in the horizontal plane with respect to the face of input keys 5.
Brackets 102 and 103, which are the opening and closing shaft members at the upper part of horizontal rotation shaft 101, and perpendicular opening and closing shaft 105 are fixed to upper unit 2, so that upper unit 2 can be turned horizontally through 180 degrees to the right and left with respect to the face of input keys 5 of lower unit 3 by the rotating operation of horizontal rotation shaft 101.
A space for mounting the aforementioned operation input section 7 is provided on the upper face of mount 104. An input device such as a track ball or a pointing device according to the slide amount of key may be used as operation input section 7. As the pointing device, for example, a device described in Japanese Patent Application Publication Laid-Open Kokai No. 2001-236351 may be used. However, the pointing device is not limited to the devices described in this publication.
Mount 104 may be mounted with an audio input device or an audio output device in addition to operation input section 7. Also, a light emitting element may be mounted on mount 4. The size of mount 104 is expandable in the lengthwise direction according to the device to be mounted thereon, by which a space capable of mounting the device can be secured.
Next, a connecting and attaching method using flexible board 106 for connecting a board of upper unit 2 to a board of lower unit 3 in hinge 6 will be explained. Flexible board 106 extending from a circuit board (not shown) of upper unit 2 is inserted into mount 104 in bracket 102 through a slot provided at an upper part of bracket 102 in a loose state with the flexible board being vertical. Herein, the loose state means the wound state shown in
Bobbin 107 is attached to the periphery of horizontal rotation shaft 101 has guide 108 at its upper part. Bobbin 107 does not rotate together with horizontal rotation shaft 101. Bobbin 107 is fixed to lower unit 3 or base 100. By winding flexible board 106 on bobbin 107, flexible board 106 wound around horizontal rotation shaft 101 can be prevented from shifting in an axial direction.
Flexible board 106 wound on bobbin 107 is bent through 90 degrees so that it can be connected to a board of lower unit 3, and a portion bent through 90 degrees is reinforced for high durability by flexible board fixing member 110, which prevents flexible board 106 from floating. After being fixed by flexible board fixing member 110, flexible board 106 is connected to a circuit board (not shown) of lower unit 3.
Front cover 200 and back cover 201 make up upper unit 2. Front cover engagement portions 202 and 203 are formed separately from each other to connect front cover 200 to hinge 6 at the tip end on the hinge side of front cover 200. Front cover engagement portion 202 is a cylinder having a substantially half moon shaped cross section, and flexible board 106 is arranged therein. Also, front cover engagement portion 202 is attached so that it can be fitted on a bush in the bracket 102. Front cover engagement portion 203 is a cylinder without a notch, and perpendicular opening and closing shaft 105 is fixed therein. Perpendicular opening and closing shaft 105, which is explained below, is inserted from one end of front cover engagement portion 203 from the rear and is fixed in a state in which front cover engagement portions 202 and 203 are connected to each other with brackets 102 and 103 being held therebetween, and is further fixed so that is can be turned with respect to bracket 103.
Side cover portion 213, cover member 212 and front cover engagement portion 202 restrain the movement of flexible board 104, and side cover 211 covers one end of perpendicular opening and closing shaft 105.
In
When front cover engagement portion 202 engages with bush 301, flexible board 106 of hinge portion 6 passes through bush 301 in bracket 102 and is wound in the cylinder of front cover engagement portion 202, and thereby is connected to circuit board of upper unit 2.
In
Referring to
In this embodiment, flexible board 106, in a loose state, is arranged in a space on one side (bracket 102 side) in the opening and closing shaft direction of brackets 102 and 103, which are the opening and closing shaft members, and perpendicular opening and closing shaft 105 is arranged on the other side (bracket 103 side) in the opening and closing shaft direction of brackets 102 and 103. Therefore, flexible board 106 does not need to be wound around the shaft. Also, since flexible board 106 does not interfere with perpendicular opening and closing shaft 105, the diameters of front cover engagement portions 202 and 203 can be decreased, and the diameter of the hinge can be decreased.
Perpendicular opening and closing shaft 105 for perpendicularly rotating (opening and closing) operation of upper unit 2 with respect to lower unit 3 is inserted in the cylindrical portion of the front cover engagement portion 203. In the perpendicularly rotating (opening and closing) operation, upper unit 2 can be turned within 180 degrees with respect to lower unit 3 with a shaft 402 shown in
Cover 408 of perpendicular opening and closing shaft 105 has a non-circular cross section so that the movement of perpendicular opening and closing shaft 105 is directly transmitted to the front cover engagement portion 203 as shown in
Next, the operation of perpendicular opening and closing shaft 105 will be explained. Rotating cam A 404 is fixed to shaft 402 and is rotated together with shaft 402. Fixed cam A 403 fixed to cover 408 and rotating cam A 404 are provided so that rotating cam A 404 and fixed cam A 403 are engaged with each other when upper unit 200 is in a closed (0 degree) state to produce suction torque of the closed side (0 degree). Similarly, fixed cam B 407 fixed to cover 408 and rotating cam B 406 are provided so that rotating cam B 406 and fixed cam B 407 are engaged with each other when upper unit 200 is in an opened (180 degree) state to produce suction torque of the opened side (180 degree).
Next, the assembly of perpendicular opening and closing shaft 105 will be explained. The tip end of shaft 402 is installed in head 401, and shaft 402 is caused to pass through a hole formed in the cover 408, by which an exposed portion of shaft 402 is covered with cover 408. Subsequently, fixed cam A 403, rotating cam A 404, spring 405, rotating cam B 406, and fixed cam B 407 are slipped onto shaft 402 in succession. After all elements are assembled, shaft 402 is caulked, which fixes shaft 402 so that it does not to come off.
The connecting relationship between perpendicular opening and closing shaft 105 and bracket 103 as shown in
In this embodiment, perpendicular opening and closing shaft 105 is fixed to bracket 103 by inserting pin 401 in perpendicular opening and closing shaft 105 fixed to bracket 103 from upper part of bracket 103. However, perpendicular opening and closing shaft 105 may be attached to bracket 103 using pressure by providing perpendicular opening and closing shaft 105 fixing portion on lower unit 3 and by pressing perpendicular opening and closing shaft 105 from the outside.
In the above-described embodiment, since front cover engagement portion 203 of front cover 200 has a closed cylindrical shape as shown in
Also, perpendicular opening and closing shaft 105 may be configured so that it is fixed to back cover 201, and not to front cover 200. In any case, any configuration can be used in which perpendicular opening and closing shaft 105 rotates integrally around an opening and closing shaft along with the opening and closing of upper unit 2.
Also, in this embodiment, the horizontal rotation shaft 101 is arranged so that it is vertical with respect to the face of input key 5 and is provided so that it can be rotated in a horizontal plane with respect to the face of input key 5, and the opening and closing shaft members (brackets 102 and 103) are fixed to horizontal rotation shaft 101. However, the present invention is not limited to this configuration. For example, the configuration may be such that horizontal rotation shaft 101 is not rotated and is fixed to base 101, and brackets 102 and 103, which are opening and closing shaft members, are fixed to horizontal rotation shaft 101 and turn in the horizontal plane around the non-rotating horizontal rotation shaft.
The above description of an embodiment of this invention has been made by taking a mobile phone by way of example. However, the invention is not limited to a mobile phone. The present invention can also be applied to any personal digital assistant in which the operating section and the display section are separated so that they can be foldable and the operation input section can be mounted on the horizontal rotation shaft, and can achieve the same advantages.
The previous description of embodiments is provided to enable a person skilled in the art to make and use the present invention. Moreover, various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles and specific examples defined herein may be applied to other embodiments without the use of inventive faculty. Therefore, the present invention is not intended to be limited to the embodiments described herein but is to be accorded the widest scope as defined by the limitations of the claims and equivalents.
Number | Date | Country | Kind |
---|---|---|---|
2003-085318 | Mar 2003 | JP | national |
Number | Name | Date | Kind |
---|---|---|---|
6347433 | Novin et al. | Feb 2002 | B1 |
6804861 | Hsu | Oct 2004 | B2 |
6813146 | Haraguchi et al. | Nov 2004 | B2 |
6830456 | Obermeyer | Dec 2004 | B2 |
6867961 | Choi | Mar 2005 | B2 |
6876545 | Tseng et al. | Apr 2005 | B2 |
6958902 | Tseng et al. | Oct 2005 | B2 |
20020155740 | Sawada et al. | Oct 2002 | A1 |
20030052857 | Pappas | Mar 2003 | A1 |
20030064758 | Mizuta et al. | Apr 2003 | A1 |
20030083063 | Wang et al. | May 2003 | A1 |
20030153372 | Shimamura et al. | Aug 2003 | A1 |
20030203747 | Nagamine | Oct 2003 | A1 |
20040110529 | Watanabe et al. | Jun 2004 | A1 |
20040127269 | Nonaka | Jul 2004 | A1 |
20040248628 | Taninai | Dec 2004 | A1 |
20050177978 | Satoh et al. | Aug 2005 | A1 |
Number | Date | Country |
---|---|---|
0 588 210 | Mar 1994 | EP |
0 720 339 | Jul 1997 | EP |
1 353 488 | Oct 2003 | EP |
5-211547 | Aug 1993 | JP |
11-30226 | Feb 1999 | JP |
11-215218 | Aug 1999 | JP |
2001-156893 | Jun 2001 | JP |
2002-135380 | May 2002 | JP |
2002-158758 | May 2002 | JP |
Number | Date | Country | |
---|---|---|---|
20040192422 A1 | Sep 2004 | US |