HINGE ASSEMBLY FOR ELECTRONIC DEVICE
20170269637 ยท 2017-09-21
Inventors
- YU-KANG LIN (Taipei, TW)
- YEN-CHUNG CHEN (Taipei, TW)
- CHUNG-CHIEH HUANG (Taipei, TW)
- CHIEN-HSUN CHEN (Taipei, TW)
Cpc classification
G06F1/1615
PHYSICS
F16C11/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E05D11/087
FIXED CONSTRUCTIONS
G06F1/1626
PHYSICS
International classification
Abstract
A hinge assembly adapted to an electronic device is provided. The hinge assembly comprises a fixing member, a sliding shaft, a connecting member, a rotating shaft and a rotating member. A curved guide rail is formed at the side plate. When the sliding shaft is located at a first position and a force applies on the rotating member, the sliding shaft moves from the first position to a second position along the curved guide rail, when the sliding shaft is located at the second position of the curved guide rail and the force applies on the rotating member continuously, the rotating member rotates around the rotating shaft.
Claims
1. A hinge assembly adapted to an electronic device, the hinge assembly comprising: a fixing member fixed to a casing of the electronic device and including a side plate and two fixing plates, wherein the two fixing plates extends along a direction from two end portions of the side plate, respectively, and a curved guide rail is formed at the side plate; a sliding shaft slidably configured to the curved guide rail of the side plate; a connecting member, wherein one end of the connecting member passes through the sliding shaft; a rotating shaft fixed to a back plate of the electronic device and passing through an other end of the connecting member; and a rotating member, wherein the rotating shaft passes through the rotating member; wherein when the sliding shaft is located at a first position and a force applies on the rotating member, the sliding shaft moves from the first position to a second position along the curved guide rail, when the sliding shaft is located at the second position of the curved guide rail and the force applies on the rotating member continuously, the rotating member rotates around the rotating shaft.
2. The hinge assembly according to claim 1, wherein the sliding shaft includes a first torsion device, and the rotating shaft includes a second torsion device.
3. The hinge assembly according to claim 1, wherein the first torsion device and the second torsion device include at least one elastic sheet and at least one nut, respectively.
4. The hinge assembly according to claim 1, further comprising a sliding member and a stopping sheet, wherein the sliding member is slidably configured to the connecting member, the sliding shaft passes through the stopping sheet and the stopping sheet selectively abuts against the sliding member.
5. The hinge assembly according to claim 4, wherein the sliding member includes a positioning protrusion, a positioning recess is formed at an end of the rotating shaft, when the stopping sheet abuts against the sliding member, the positioning protrusion is restricted at the positioning recess.
6. The hinge assembly according to claim 1, wherein the side plate further includes a guiding member, the sliding shaft includes a guiding recess recessed at an end portion, and the guiding recess abuts against the guiding member.
7. The hinge assembly according to claim 6, wherein the shape of the guiding recess corresponds to the shape of the curved guide rail.
8. The hinge assembly according to claim 1, wherein the side plate further includes a recess, the recess is located above the curved guide rail, the sliding shaft further includes a positioning member, and the positioning member is slidably configured within the recess.
9. The hinge assembly according to claim 8, wherein the shape of the recess corresponds to the shape of the curved guide rail.
10. The hinge assembly according to claim 1, wherein the hinge assembly further comprises a stopping member, the rotating shaft passes through the stopping member, the rotating member includes a protrusion, and the protrusion selectively abuts against the stopping member.
11. An electronic device comprising: a casing; a back plate; a hinge assembly, includes: a fixing member fixed to a casing of the electronic device and including a side plate and two fixing plates, wherein the two fixing plates extends along a direction from two end portions of the side plate, respectively, and a curved guide rail is formed at the side plate; a sliding shaft slidably configured to the curved guide rail of the side plate; a connecting member, wherein one end of the connecting member passes through the sliding shaft; a rotating shaft fixed to a back plate of the electronic device and passing through an other end of the connecting member; and a rotating member, wherein the rotating shaft passes through the rotating member; wherein when the sliding shaft is located at a first position and a force applies on the rotating member, the sliding shaft moves from the first position to a second position along the curved guide rail, when the sliding shaft is located at the second position of the curved guide rail and the force applies on the rotating member continuously, the rotating member rotates around the rotating shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] These and other features, aspects and advantages of the disclosure will become better understood with regard to the following embodiments and accompanying drawings.
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] Please refer to
[0028] The sliding shaft 20 passes through the curved guide rail 111 and is slidable within the curved guide rail 111 of the side plate 11. In the embodiment, the sliding shaft 20 includes an end portion 21, and the size of the end portion 21 along the width direction of the curved guide rail 111 is larger than the width of the curved guide rail 111. Thus, the sliding shaft 20 is restricted and slidable within the curved guide rail 111. To avoid the deviation of the sliding shaft 20 when the sliding shaft 20 moves along the curved guide rail 111, the side plate 11 further includes a guiding member 112 and a recess 113. The sliding shaft 20 further includes a positioning member 22 and a guiding recess 23 recessed at a periphery of the end portion 21. In an embodiment, the positioning member 22 is an individual component which is fixed to and sleeved on the sliding shaft 20. In another embodiment, the positioning member 22 and the sliding shaft 20 are formed in one piece, which is not limited herein.
[0029] As shown in
[0030] As shown in
[0031] Please refer to
[0032] In the embodiment, when a force drives the rotating member 50 to move, the rotating member 50 has a first travel with the movement of the sliding shaft 20 along the curved guide rail 111, then, the rotating member 50 rotates to have a second travel via the rotating shaft 40. In the embodiment, the sliding shaft 20 further includes a first torsion device 24. The rotating shaft 40 includes a second torsion device 41. The first torsion device 24 includes three elastic sheets 241 and a nut 242. The second torsion device 41 includes two elastic sheets 411 and a nut 412. In the embodiment, the number of the elastic sheets and nuts are exemplified only for description. In other embodiments, the number of the elastic sheets and nuts are changed according to the practice requirements, which is not limited herein.
[0033] The first torsion device 24 is configured at and fixed to an end portion of the sliding shaft 20 opposite to the end portion 21. The torsion force from the first torsion device 24 is changed by adjusting the fastening of the nut 242. Similarly, the second torsion device 41 is configured at and fixed to an end of the rotating shaft 40, and the torsion force from the second torsion device 41 is changed by adjusting the fastening of the nut 412. Therefore, to make the sliding shaft 20 move before the rotating shaft 40 rotates, the torsion force from the first torsion device 24 is less than that from the second torsion device 41. In such a way, when a force drives the rotating member 50 to move, the sliding shaft 20 moves (the first travel) first with the above small torsion force. When the sliding shaft 20 moves to the end and the force applies continuously on the rotating member 50, the rotating member 50 then rotates (the second travel) via the rotating shaft 40.
[0034] Please refer to
[0035] In the embodiment, the hinge assembly 1 is assembled to the casing and the back plate of the electronic device, the rotating member 50 is assembled to the back plate and the fixing member 10 is fixed to the casing. In an embodiment, the back plate rotates to a desired angle relative to the casing via the hinge assembly 1 to serve as a support for the electronic device. In an embodiment, the back plate is fully opened to facilitate the replacement or repair of the components inside the casing. In the embodiment, the hinge assembly 1 is assembled inside the casing instead of being exposed. As a result, the hinge assembly 1 is not easily damaged under external impacts. Thus, the serve life of the hinge assembly 1 is prolonged. Additionally, the hinge assembly 1 rotate by a larger rotatable angle via the two-stage rotation.
[0036] Please refer to
[0037] In the embodiment, the hinge assembly 1 further includes a sliding member 60 and a stopping sheet 70. The sliding member 60 is slidably configured on the connecting member 30, and the stopping sheet 70 is configured to allow the sliding shaft 20 to pass through. The stopping sheet 70 selectively abuts against or not against the sliding member 60. When the sliding shaft 20 is located at the first position P1, the stopping sheet 70 is pushed by the side plate 11 of the fixing member 10 to be compressed toward the connecting member 30. At the time, the stopping sheet 70 abuts against the sliding member 60 to keep the sliding member 60 fixed.
[0038]
[0039] Please refer to
[0040] Please refer to
[0041] Please refer to
[0042] As shown in
[0043] In the embodiment, when the sliding shaft 20 moves to the second position P2 of the curved guide rail 111, the stopping sheet 70 disengages from the side plate 11 and is not pushed by the side plate 11. The stopping sheet 70 returns to the uncompressed state toward the side plate 11 via the elastic energy and does not abut against the sliding member 60. Then, the sliding member 60 moves downwardly by the gravity to make the positioning protrusion 61 of the sliding member 60 disengage from the positioning recess 42. At the time, when the force applies on the back plate 102 continuously, the back plate 102 is driven to rotate about the rotating shaft 40 (as shown in
[0044] In sum, with the hinge assembly in embodiments, the back plate rotates by a large angle (from 0 degree to 180 degrees) via the two-stage rotation. During the rotation of the back plate, the back plate stops rotating at any position to serve as a support for the electronic device. On the other hand, since the back plate rotates by a large angle to expose the space under the back plate, it is convenient to replace or repair the inside components.
[0045] Although the disclosure has been disclosed with reference to certain embodiments thereof, the disclosure is not for limiting the scope. Persons having ordinary skill in the art may make various modifications and changes without departing from the scope of the disclosure. Therefore, the scope of the appended claims should not be limited to the description of the embodiments described above.