MOBILE DEVICE POSITIONING STRUCTURE
20230011854 ยท 2023-01-12
Inventors
Cpc classification
F16M13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/028
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M11/041
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The present invention discloses a mobile device positioning structure including, a central magnetic portion on a mounting surface of a fixture for magnetically positioning the back of a mobile device and a ring-shaped magnetic portion formed by two curved clamp arms which are bilaterally symmetrical to each other, and separated and unfolded from each other. After the two curved clamp arms are unfolded relative to the mounting surface, the back of the mobile device is magnetically positioned by the central magnetic portion, and both sides of the mobile device are elastically abutted, clamped and positioned by the two curved clamp arms.
Claims
1. A mobile device positioning structure, comprising a mounting surface defined on a fixture and provided for stacking on the back of the external mobile device, and an underside defined on a surface opposite to the mounting surface and provided for coupling an external stand, characterized in that the mounting surface has a ring-shaped magnetic portion for magnetically attracting the back of the external mobile device, and both sides of the mounting surface have a sliding arm elastically and telescopically installed thereon, and the ring-shaped magnetic portion is formed by two curved clamp arms bilaterally symmetrical and separated from each other, and each of the two curved clamp arms has a magnetic topside and an abutting underside, and the two abutting undersides are stacked on the mounting surface, and each of the two sliding arms on both sides of the mounting surface has a hinge portion, so that after the two curved clamp arms are pivotally rotated from the respective hinge portions, the two curved clamp arms are unfolded relative to the mounting surface, while the sliding arms are driving the two curved clamp arms to elastically stretch and contract, and the abutting undersides of the two curved clamp arms are elastically clamped towards the middle by both sides of the fixture and abutting against both sides of the mobile device to clamp and position the mobile device.
2. The mobile device positioning structure according to claim 1, wherein the mounting surface has a central magnetic portion for magnetically attracting the back of the external mobile device, and the ring-shaped magnetic portion is disposed at the external periphery of the central magnetic portion.
3. The mobile device positioning structure according to claim 2, wherein the two curved clamp arms have at least one first magnetic body disposed therein, and the central magnetic portion has at least one second magnetic body disposed on the mounting surface.
4. The mobile device positioning structure according to claim 1, wherein the fixture has a guide groove formed therein and communicating with both sides of the mounting surface, and the two sliding arms are slidably installed in the guide groove, and the underside of the fixture has a socket connectable to the external stand.
5. The mobile device positioning structure according to claim 4, wherein the two hinge portions comprise a first pivot and a second pivot pivotally coupled to each other, and both ends of the two sliding arms have the first pivot and a rack, and the two curved clamp arms have the second pivot, and the racks of the two sliding arms are guided and transmitted with each other by a gear and a swing member, and at least one spring is installed between the two sliding arms for driving the two sliding arms to stretch and contract relative to each other.
6. The mobile device positioning structure according to claim 5, wherein each of the second pivots of the two curved clamp arms has a protrusion, and each of the first pivots of the two sliding arms has a first positioning slot and a second positioning slot, and the two first positioning slots are provided for embedding the corresponding protrusions to position the two abutting undersides at the stacked positions on the mounting surface, and the two second positioning slots are provided for embedding the corresponding protrusions to position the two curved clamp arms at the unfolded positions relative to the mounting surface respectively.
7. A mobile device positioning structure, comprising a mounting surface defined on a fixture and provided for stacking on the back of the external mobile device, and an underside defined on a surface opposite to the mounting surface and provided for coupling an external stand, characterized in that comprising a mounting surface defined on a fixture and for stacking on and abutting against the back of the external mobile device, and an underside defined as a surface opposite to the mounting surface for coupling an external stand, characterized in that the mounting surface has a central magnetic portion provided for magnetically attracting the back of the external mobile device, and a ring-shaped magnetic portion disposed at the outer periphery of the central magnetic portion and formed by two curved clamp arms which are bilaterally symmetrical and separated from each other, and each of the two curved clamp arms has a magnetic topside and an abutting underside, wherein the two abutting undersides are stacked on the mounting surface, and a hinge portion defined on both sides opposite to the mounting surface, so that after the two curved clamp arms are pivotally coupled to the respective hinge portions, the two curved clamp arms are unfolded relative to the mounting surface, and the abutting undersides of the two curved clamp arms elastically abut against both sides of the mobile device to increase the stability of magnetically attracting the central magnetic portion.
8. The mobile device positioning structure according to claim 7, wherein the fixture has a guide groove formed therein and both sides of the mounting surface have a sliding arm elastically and telescopically installed thereto, and the two hinge portions are disposed on the sliding arms on both sides of the mounting surface respectively, so that the two sliding arms can drive the two curved clamp arms respectively to elastically stretch and contract.
9. The mobile device positioning structure according to claim 8, wherein the two hinge portions comprise a first pivot and a second pivot pivotally coupled to each other, and both ends of the two sliding arms both have the first pivot and a rack respectively, and the two curved clamp arms have the second pivot, and the racks of the two sliding arm are guided and transmitted with each other by a gear and a swing member, and at least one spring is installed between the two sliding arms for driving the two sliding arms to stretch and contract.
10. The mobile device positioning structure according to claim 9, wherein each of the second pivots of the two curved clamp arms has a protrusion, and each of the first pivots of the two sliding arms has a first positioning slot and a second positioning slot, and the two first positioning slots are provided for embedding the corresponding protrusions to position the two abutting undersides at the stacked positions on the mounting surface, and the two second positioning slots are provided for embedding the corresponding protrusions to position the two curved clamp arms at the unfolded positions relative to the mounting surface respectively.
11. The mobile device positioning structure according to claim 7, wherein each of the two curved clamp arms has at least one first magnetic body disposed therein, and the central magnetic portion has at least one second magnetic body disposed on the mounting surface, and the underside of the fixture has a socket connectable to the external stand.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0021] The present invention will become clearer in light of the following detailed description of an illustrative embodiment of this invention described in connection with the drawings.
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0033] With reference to
[0034] In a preferred embodiment, the mounting surface 14 comprises a ring-shaped magnetic portion 20 for magnetically attracting the back of the external mobile device 91, and a sliding arm 3a, 3b elastically and telescopically installed to both sides of the mounting surface 14. The ring-shaped magnetic portion 20 is formed by two curved clamp arms 2a, 2b which are bilaterally symmetrical to and separated from each other, and each of the two curved clamp arms 2a, 2b has a magnetic topside 21 and an abutting underside 22, and the curved clamp arm 2a, 2b has at least one first magnetic body 41 therein, wherein the first magnetic body 41 is a magnet, and the abutting underside 22 of the curved clamp arm 2a, 2b can be stacked on the mounting surface 14.
[0035] In the figure, the two curved clamp arms 2a, 2b separately have a hinge portion A disposed on the sliding arm 3a, 3b opposite to both sides of the mounting surface 14, so that the two curved clamp arms 2a, 2b can be unfolded relative to the mounting surface 14 after the curved clamp arms 2a, 2b are pivoted from the respective hinge portions A. In the meantime, the sliding arms 3a, 3b drive the two curved clamp arms 2a, 2b to elastically stretch and contract, so that the abutting undersides 22 of the two curved clamp arms 2a, 2b can abut against both sides of the mobile device 91 respectively. To provide the friction and buffering effect to the abutting underside 22, an elastic anti-skip plate can be installed to a surface of the abutting underside 22.
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[0046] While the invention has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention set forth in the claims.