The present invention relates to a portable electronic device comprising a pair of housings coupled to each other.
As portable electronic devices comprising a pair of housings coupled to each other, conventionally known are portable electronic devices in which each of the housings has an image display surface and both the image display surfaces allow a large volume of information to be provided to the users.
In such a portable electronic device, for example, both housings make a relative movement respectively to each other between: a fully closed state in which the pair of housings are placed one on top of the other and the image display surface (first image display surface) of the lower housing (first housing) is covered with the upper housing (second housing) so that only the image display surface (second image display surface) of the second housing is exposed; and a fully open state in which the second housing is moved in relation to the first housing such that the image display surfaces of both the housings are exposed and the second image display surface is aligned with the first image display surface on the same plane.
In the fully open state, the image display surfaces of both the housings are aligned on the same plane, thereby image display with a large screen is possible by using the two image display surfaces as a single screen.
Incidentally, in a folding-type portable electronic devices including two housings that are openably and closably coupled, it is necessary to electrically connect an electronic component contained in one housing and an electronic component contained in the other housing with each other and, generally, connection by use of a flexible lead is adopted.
In a portable electronic device capable of setting a fully closed state in which a pair of housings are placed one on top of the other and only one image display surface is exposed as described above, and a fully open state in which both the housings make a relative movement such that the two image display surfaces are exposed on the same plane, however, there is a problem in that since the distance between the two electronic components to be connected with each other by the flexible lead significantly varies between the fully closed state and the fully open state, a large margin needs to be set to the length of the flexible lead which extends between both the housings, and a large space to tolerate the bending displacement of the flexible lead is required inside the device main body since the long flexible lead undergoes bending displacement as both the housings relatively move, thus leading to an upsizing of the device.
Moreover, since there is no common portion between an overlapping region of the two housings in a fully closed state and an overlapping region of the two housing in a fully open state, this may cause a problem of exposing the flexible lead, which extends between the two housings, to the outside in association with the shifting between the fully closed state and the fully open state.
Accordingly, a first object of the present invention is to provide a portable electronic device in which a pair of housings are coupled so as to be relatively movable between a fully closed state and a fully open state, and an electronic component contained in one housing and an electronic component contained in the other housing are connected with each other by using a flexible lead, the portable electronic device configured to be able to tolerate a bending displacement of the flexible lead in association with relative movement of both the housings without providing a large space inside the device main body.
A second object of the present invention is to provide a portable electronic device in which a pair of housings are coupled so as to be relatively movable between a fully closed state and a fully open state, and an electronic component contained in one housing and an electronic component contained in the other housing are connected with each other by using a flexible lead, the portable electronic device configured such that the flexible lead will not be exposed to the outside even by an opening/closing action.
In a first portable electronic device relating to the present invention, a first housing and a second housing are coupled with each other via a coupling mechanism, and an image display surface is provided respectively on front faces of both the housings, the portable electronic device configured to be able to selectively set at least two states including: a fully closed state in which the image display surface of the first housing is covered with a back face of the second housing and the image display surface of the second housing is exposed; and a fully open state in which the second housing is moved from the fully closed state and the image display surfaces of both the housings are exposed.
The above described coupling mechanism includes a coupling arm which couples the first housing with the second housing so as to be relatively movable between the fully closed state and the fully open state; an electronic component contained in the first housing, and an electronic component contained in the second housing are electrically connected with each other via a flexible lead; the flexible lead having a belt-like lead portion extending through the inside of the coupling arm; and the coupling arm is formed with a lead accommodating portion for accommodating a bending deformation of the lead portion in association with opening and closing of both the housings.
In a specific embodiment, the first housing and the second housing can be further set in a tilted state in which the second housing is moved from the fully closed state to expose the image display surfaces of both the housings, and the image display surface of the second housing is tilted at an opening angle of not less than 90 degrees and less than 180 degrees with respect to the image display surface of the first housing.
In the above-mentioned portable electronic device, since the flexible lead is configured so that the lead portion extends through the inside of the coupling arm, when the coupling arm pivots in association with a relative movement of both the housings, the lead portion are bent and displaced in association with the pivoting of the coupling arm.
At this time, a slack is generated with respect to the length of flexible lead as both the housings move from the fully closed state to the fully open state, but the slack will be absorbed by bending deformation of the lead portion of the flexible lead generated in the lead accommodating portion of the coupling arm.
In a specific embodiment, the above described coupling arm has an L-shaped geometry which bends into an L-shape on the plane that perpendicularly intersects with the image display surfaces of both the housings, and includes a first arm portion and a second arm portion which intersect with each other at a corner portion of the L-shaped geometry; the end portion of the first arm portion is coupled to the rear end portion of the first housing with a first pivot axis, and the end portion of the second arm portion is coupled to a middle portion of the second housing between the front end portion and the rear end portion with a second pivot axis which is parallel with the first pivot axis; and the lead accommodating portion is formed in the end portion on the second housing side of the second arm portion.
Moreover, the flexible lead is drawn out from the rear end portion of the first housing, further extends along the first arm portion of the coupling arm, and is drawn into the inside of the second housing from the end portion of the second arm portion.
According to the specific embodiment, the lead portion of the flexible lead undergoes a bending deformation in the lead accommodating portion of the coupling arm in association with the shifting from the fully closed state to the fully open state, and undergoes bending deformation into a U-shape changing its course in the lead accommodating portion to be drawn into the inside of the second housing from the end portion of the second arm portion in the fully open state.
In a second portable electronic device relating to the present invention, a first housing and a second housing are coupled with each other via a coupling mechanism, and an image display surface is provided on the front face of each of both the housings, the second portable electronic device configured to be able to selectively set at least two states including: a fully closed state in which the image display surface of the first housing is covered with the back face of the second housing, and the image display surface of the second housing is exposed; and a fully open state in which the second housing is moved from the fully closed state so that both the image display surfaces are exposed.
The above described coupling mechanism comprises a coupling member that couples the first housing with the second housing so as to be relatively movable between the fully closed state and the fully open state described above; an electronic component contained in the first housing and an electronic component contained in the second housing are electrically connected with each other via a flexible lead, the flexible lead extending from the inside of the first housing into the inside of the second housing through inside of the above described coupling member; and the first housing is formed with an opening which is opened and closed by the reciprocating movement of the coupling member in association with the relative movement of both the housings, and is attached with a cover member that reciprocatingly moves in association with the reciprocating movement of the coupling member so that the cover member closes the opening while the coupling member opens the opening.
In a specific embodiment, the cover member is pivotably supported to the first housing and is rotationally biased in the direction to close the opening; and wherein the cover member opens the opening by being pressed by the coupling member in the process that the coupling member closes the opening in association with the shifting from the fully closed state to the fully open state, and the cover member is moved by the rotational biasing to close the opening in the process that the coupling member opens the opening in association with the shifting from the fully open state to the fully closed state.
In a further specific embodiment, the coupling member is configured such that a pair of left and right coupling arm portions are provided at both ends of the arm coupling portion so as to project therefrom; both ends of each coupling arm are coupled to both the housings; the flexible lead extends from the arm coupling portion along one coupling arm, and the opening is opened/closed by the arm coupling portion.
In the above described portable electronic device relating to the present invention, while in the process that the coupling member moves in association with the opening/closing action of the first housing and the second housing to reach a fully closed state from a fully open state, the coupling member will become spaced apart from the opening of the first housing thereby opening the opening; the cover member will approach to the opening in association with the movement of the coupling member, thus closing the opening. Moreover, while in the process to reach the fully open state from the fully closed state, the coupling member will approach to the opening of the first housing thereby closing the opening, the cover member will become spaced apart from the opening thereby closing the opening in association with the movement of the coupling member.
Thus, regardless of the open/closed state of both the housings, the opening of the first housing is closed by either one of the coupling member or the cover member, and the flexible lead, which is located in the inner portion of the opening, will never be exposed to the outside.
According to the first portable electronic device relating to the present invention, it is possible to tolerate the bending deformation of a flexible lead in association with the relative movement of both housings by only forming a lead accommodating portion in the coupling arm for coupling both the housings without providing a space for the bending deformation of the flexible lead in both the housings.
Moreover, according to the second portable electronic device relating to the present invention, the flexible lead will not be exposed to the outside even by the opening/closing action of the first housing and the second housing.
Hereafter, embodiments of the present invention will be specifically described with reference to the drawings.
The portable electronic device relating to the present invention is configured such that a first housing 1 having a first image display surface 11 on its front face and a second housing 2 having a second image display surface 21 on its front face are coupled with each other via a coupling mechanism 3, as shown in
It is noted that when each site of components of the portable electronic device is specified in the following description, the “front (near side)”, “rear”, “left” and “right” when the portable electronic device of
As shown in
Moreover, as shown in
As shown in
As shown in
On the other hand, inside the second housing 2, a second touch panel 23 and a second display 22 are disposed facing the second image display surface 21 as shown in
As shown in
As shown in
The portable electronic device relating to the present invention can be selectively set to four states: a fully closed state in which the front face of the first housing 1 is covered with the back face of the second housing 2, and the front face of the second housing 2 is exposed as shown in
The coupling mechanism 3, which couples the first housing 1 and the second housing 2 with each other, includes: a U-shaped coupling member 32 which includes an arm coupling portion 32a extending to left and right; and a pair of left and right coupling arms 31 and 31 extending in the fore-and-aft direction, the coupling arms 31 and 31 being configured to project from both end portions of the arm coupling portion 32a, respectively.
The coupling arm 31 has an L-shape that bends into an L-shaped geometry on the plane that perpendicularly intersects with the image display surfaces of both the housings, and is made up of a first arm portion 35 and a second arm portion 36 which intersect with each other at the corner portion of the L-shaped geometry.
The proximal end portion of the right-side coupling arm 31 (the proximal end portion of the first arm portion 35) is coupled to the rear end portion of the right-side face of the first housing 1 via a known hinge unit 4 containing a spring and a cam mechanism, and the proximal end portion of the left-side coupling arm 31 (the proximal end portion of the first arm portion 35) is coupled to the rear end portion of the left-side face of the first housing 1 via a dummy hinge unit 41 containing no spring nor cam mechanism.
Moreover, the distal end portion of the right-side coupling arm 31 (the distal end portion of the second arm portion 36) is coupled to a rear-face right end portion of the second housing 2 via a first hinge member 5, and the distal end portion of the left-side coupling arm 31 (the distal end portion of the second arm portion 36) is coupled to the rear-face left end portion of the second housing 2 via the second hinge member 51.
Both the hinge members 5 and 51 are accommodated in the rear portion of the second housing 2 as shown in
The hinge units 4 and 41 make up a first pivot axis that couples the proximal end portion of the coupling arm 31 to the first housing 1, and on the other hand, the hinge members 5 and 51 make up a second pivot axis that couples the distal end portion of the coupling arm 31 to the second housing 2 such that the first pivot axis and the second pivot axis are parallel with each other.
Further, the electronic components (a display, a touch panel, etc.) contained in the first housing 1 and the electronic components (a display, a touch panel, an IC, etc.) contained in the second housing 2 are electrically connected with each other with a flexible lead 7. The flexible lead 7 extends from the inside of the second housing 2 to the inside of the first housing 1 through the inside of the coupling arm 31, and the length thereof is given a margin that can tolerate a relative movement between the first housing 1 and the second housing 2.
As a result of this, the second housing 2 can make a series of relative movements shown in
The hinge unit 4 softly engages the coupling member 32 with respect to the first housing 1 in the tilted state shown in
It is noted that in the pivoting fully open state shown in
As shown in
Moreover, as shown in
On the other hand, accommodating portions 204, 203, and 203, which are to accommodate an arm coupling portion 32a and second arm portions 36 and 36 of the coupling member 32, are provided in a depressed form in the both side portions of the rear face of the second housing 2.
Moreover, as shown in
In the tilted state shown in
As shown in
Further, the sliding guide portions 85 and 85, which are attached to the support arm portions 84 and 84, are sandwiched between the sliding portions 82 and 82 of the support member 81 and the rear face panel 28 as shown in
As a result of this, a slide mechanism 8, which causes the second housing 2 to slide in the fore-and-aft direction with respect to the support arm portions 84 and 84, is made up thus enabling that the second housing 2 slides in the fore-and-aft direction between the pivoting fully open state shown in
Moreover, while a magnet 88 is placed on the rear face panel 28, a frame portion 89 that surrounds the magnet 88 is formed as shown in
As a result of the slide member 83 sliding in the fore-and-aft direction as described above, either one of the pair of projection pieces 86 and 87 will come into contact with the magnet 88 as shown in
As a result of this, either one of the pair of projection pieces 86 and 87 is adhered to the magnet 88 in each of the pivoting fully open state shown in
The rear end face of the first housing 1 and the front end face of the second housing 2, which are to face each other in a pivoting fully open state, are formed with a convex portion 10 and a concave portion 20, which are engageable and disengageable with each other as shown in
As a result of this, in the sliding fully open state shown in the
While a gap T of a sufficient size (for example, of several millimeters) is provided between the metal plate 101 making up the first housing 1, and the metal plate 201 making up the second housing 2 in the pivoting fully open state as shown in
In the sliding fully open state, the dimension of each portion shown in
Where, the dimension a is the distance from the end face of the cabinet to the image display area of the displays 12 and 22; the dimension b is a distance from the end edge of the image display surfaces 11 and 21 to the image display area; the dimension h is the thickness of the metal plates 101 and 201; and the dimension i is the amount of descent of the metal plates 101 and 201 from the cabinet surface.
According to the above described portable electronic device, the following four states can be selectively set: a fully closed state in which the first housing 1 and the second housing 2 are superposed one on top of the other, and only the second image display surface 21 is exposed as shown in
In the fully closed state shown in
Moreover, even in any of the tilted state shown in
As shown in
As a result of this, the second housing 2 will move rearward while the second image display surface 21 remains to face upward or diagonally upward.
Then, at the moment just after the state of
Thus, only by a user pressing the second housing 2 rearward to move it slightly in the fully closed state shown in
Next, if the second housing 2 is pressed rearward in the tilted state shown in
In association with the rotation of the coupling arm 31, the second housing 2 pivots toward reward, eventually resulting in that the first image display surface 11 and the second image display surface 21 are aligned on the same plane.
Further, drawing the second housing 2 toward the first housing 1 from the pivoting fully open state will cause the slide surface 29 of the second housing 2 to slide on the receiving surface 33 of the coupling arm 31 as shown in
As a result of this, the first image display surface 11 and the second image display surface 21 come closer to each other as shown in
In the sliding fully open state, the convex portion 10 of the first housing 1 and the concave portion 20 of the second housing 2 engages with each other as shown in
Since a structure is adopted in which the metal plates 101 and 201 of both the housings 1 and 2 face each other in the sliding fully open state as shown in
Further, when the above described portable electric device is placed on a desk in a tilted state as shown in
In this occasion, the layout of the parts and the L-shaped geometry of the coupling arm 31 for the first housing 1 and the second housing 2 are designed such that the center of gravity G is present on the side of the first housing 1 with respect to the grounding point of the coupling arm 31 as shown in any state, thereby stabilizing the posture of both the housings 1 and 2.
Thus, when placed on a desk in a tilted state as shown in
Moreover, when placed on a desk in a sliding fully open state as shown in
The flexible lead 7 is specifically made up of a first lead portion 7a having a belt-shape and extending inside the first housing 1, a second lead portion 7b having a belt-shape and extending in the coupling member of the coupling mechanism 3, and a third lead portion 7c having a belt-shape and extending inside the second housing 2, in which a first coupling portion 71 to be coupled with a connector (omitted from showing) in the first housing 1 is provided in the end portion of the first lead portion 7a, and a second coupling portion 72 to be coupled with a connector (omitted from showing) in the second housing 2 is provided in the end portion of the third lead portion 7c.
There is a chassis 1c lying between the front cabinet 1a and the rear cabinet 1b, which make up the first housing 1, as shown in
The second lead portion 7b of the flexible lead 7 extends reward toward an arm coupling portion 32a of the coupling member 32 shown in
The third lead portion 7c of the flexible lead 7 extends from the second coupling portion 72 to the left in the front end portion of the second housing 2 in the second housing 2 as shown in
The second arm portion 36 of the coupling arm 31 is formed, on the side of the coupling portion with the second housing 2, with a lead accommodating portion 38 which tolerates the bending deformation of the second lead portion 7b of the flexible lead 7 extending along the second arm portion 36 as shown in
Moreover, a cover member 17 is openably and closably attached to the end portion of the rear cabinet 1b so as to face the second lead portion 7b of the flexible lead 7.
As shown in
The cover member 17 includes, as shown in
In the above described portable electronic device, since the flexible lead 7 is configured such that the second lead portion 7b extends through the inside of the second arm portion 36 of the coupling arm 31, the flexible lead 7 will undergo bending displacement in association with the pivoting of the coupling arm 31 in the process that both the housings 1 and 2 move from the fully closed state to the sliding fully open state via the tilted state and the pivoting fully open state as shown in
In the fully closed state shown in
Thereafter, in the process of the coupling arm 31 further pivoting to shift to the pivoting fully open state via the tilted state as shown in
Thus, when reaching the sliding fully open state as shown in
As described above, in the process of both the housings 1 and 2 shifting from the fully closed state to the sliding fully open state via the tilted state and the pivoting fully open state, the flexible lead 7 undergoes bending displacement in association with the pivoting of the coupling arm 31, and a slack generated in this process is absorbed by the second lead portion 7b undergoing bending deformation in the lead accommodating portion 38 of the coupling arm 31.
Therefore, there is no need of providing a space for tolerating the bending deformation of the flexible lead 7 in the first housing 1 and the second housing 2.
As shown in
Here, if the cover member 17 is not installed, the second lead portion 7b of the flexible lead 7 will be exposed to the outside from the opening 18 as shown in
As shown in
In this state, the arm coupling portion 32a of the coupling member 32 covers the opening 18 of the first housing 1, and the second lead portion 7b of the flexible lead 7 will not be exposed to the outside since it extends inside the arm coupling portion 32a.
It is noted that since the first housing 1 is formed with an opening 18, the second lead portion 7b of the flexible lead 7 can be displaced to the outside of the first housing 1 in association with the movement of the arm coupling portion 32a of the coupling member 32 in the process that the coupling member 32 moves from the position shown in
The configurations of each component of the present invention will not be limited to the above described embodiments, and can be altered within the technical scope according the claims for the patent. For example, the present invention may be practiced as a portable electronic device which is able to selectively set three states including a fully closed state, a pivoting fully open state, and a sliding fully open state, but not including a tilted state.
1 First housing
11 First image display surface
17 Cover member
18 Opening
2 Second housing
21 Second image display surface
29 Slide surface
3 Coupling mechanism
32 Coupling member
31 Coupling arm
35 First arm portion
36 Second arm portion
33 Receiving surface
4 Hinge unit
5 Hinge member
6 Torsion spring
7 Flexible lead
8 Slide mechanism
83 Slide member
Number | Date | Country | Kind |
---|---|---|---|
2009-268394 | Nov 2009 | JP | national |
2009-268395 | Nov 2009 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2010/071107 | 11/26/2010 | WO | 00 | 5/25/2012 |