Support Structure for a Slidable Display
20230141376 · 2023-05-11
Inventors
Cpc classification
G06F1/1624
PHYSICS
G06F1/1652
PHYSICS
International classification
Abstract
A support structure for a slidable display comprises a support arrangement configured to slide along a first sliding axis and at least two rotation arrangements. Each rotation arrangement is fixedly arranged along the first sliding axis and configured to rotate around a rotation axis extending substantially perpendicular to the first sliding axis. Furthermore, each rotation arrangement is releasably interconnected to at least one support element of the support arrangement such that each of the at least two rotation arrangements rotates around the rotation axis with a tangential speed equal to a speed with which the support arrangement moves along the first sliding axis.
Claims
1. A support structure for a slidable display comprising: a support arrangement configured to slide along a first sliding axis and comprising at least one support element; and at least two rotation arrangements, wherein each of the at least two rotation arrangements is fixedly arranged along the first sliding axis and configured to rotate around a rotation axis extending substantially perpendicular to the first sliding axis, and wherein each of the at least two rotation arrangements is further releasably interconnected to the at least one support element to enable each of the at least two rotation arrangements to rotate around the rotation axis with a tangential speed equal to a speed with which the support arrangement moves along the first sliding axis.
2. The support structure of claim 1, wherein the support arrangement is further configured to: slide along a second sliding axis extending at an angle to the first sliding axis, wherein the rotation axis further extends substantially perpendicular to the second sliding axis; and fold around a folding axis extending substantially perpendicular to the first sliding axis, the second sliding axis, and the rotation axis, wherein the at least two rotation arrangements are further fixedly arranged along the second sliding axis.
3. The support structure of claim 2, further comprising a folded section extending between the first sliding axis and the second sliding axis and comprising, the at least two rotation arrangements.
4. The support structure of claim 1, wherein a quantity of the at least two rotation arrangements is even and is between 2-40.
5. The support structure of claim 1, wherein each of the at least two rotation arrangements and the at least one support element are further releasably interconnected using partially complementary shapes.
6. The support structure of claim 1, wherein the support arrangement further comprises: a first end interconnected to at least one first rotation arrangement of the at least two rotation arrangements; and a second end interconnected to at least one second rotation arrangement of the at least two rotation arrangements.
7. The support structure of claim 1, further comprising a sheet, wherein the support arrangement further comprises a plurality of support elements, and wherein each of the plurality of support elements comprises a protrusion extending from the sheet.
8. The support structure of claim 1, wherein the support arrangement is further configured to fold around a folding axis, and wherein the support arrangement further comprises: a sheet; and a plurality of support elements, wherein each of the support elements comprises a rod arranged to support the sheet, and wherein center axes of the support elements extend in parallel with each other and with the folding axis.
9. The support structure of claim 2, wherein each of the at least two rotation arrangements and the at least one support element are configured to form a releaseable interconnection that prevents translation of the at least one support element in all directions except along the first sliding axis and the second sliding axis.
10. The support structure of claim 1, wherein each of the at least two rotation arrangements comprises a transmission wheel that is in sliding contact with the at least one support element.
11. The support structure of claim 1, wherein each of the at least two rotation arrangements comprises a transmission wheel comprising a plurality of slots arranged around a circumference of the transmission wheel, and wherein each of the slots is configured to engage with one end of the at least one support element.
12. The support structure of claim 11, further comprising at least one contact point between each of the at least two rotation arrangements and the at least one support element at any moment during an interconnection, wherein at least one contact point achieves a maximum contact area when the rotation axis and a center axis of the at least one support element are aligned.
13. The support structure of claim 11, wherein the slots comprise a first slot and a neighboring second slot wherein the at least one support element comprises a first support element and a neighboring second support element, and wherein the first slot is configured to: engage with the first support element; and disengage from the first support element as the support arrangement slides along the first sliding axis and the at least two rotation arrangements rotate around the rotation axis, and wherein the neighboring second slot is configured to engage with the neighboring second support element as the support arrangement slides along the first sliding axis and the at least two rotation arrangements rotate around the rotation axis.
14. The support structure of claim 11, further comprising a joint shoulder, wherein neighboring slots of the slots are configured to be delimited by the joint shoulder extending into a gap between two neighboring support elements of the at least one support element as the support arrangement slides along the first sliding axis and the at least two rotation arrangements rotate around the rotation axis.
15. The support structure of claim 1, further comprising a motor operatively coupled to the at least two rotation arrangements and configured to drive a sliding movement of the support arrangement via the at least two rotation arrangements.
16. A slidable display arrangement for an electronic device and comprising: a slidable display; and a support structure supporting the slidable display, and configured to: slide the slidable display along a first sliding axis of the support structure; or simultaneously fold the slidable display and a support arrangement of the support structure around a folding axis of the support structure.
17. An electronic device comprising: a housing comprising opposite sides; two end caps arranged at the opposite sides; and a slidable display arrangement comprising: slidable display: and a support structure supporting the slidable display and configured to: slide the slidable display along a first sliding axis of the support structure; or simultaneously fold the slidable display and a support arrangement of the support structure around a folding axis of the support structure.
18. The electronic device according of claim 17, wherein each of the two end caps comprises an outer end cap and an inner end cap, wherein the support structure comprises at least two rotation arrangements, wherein each of the at least two rotation arrangements is partially enclosed between the outer end cap and the inner end cap to enable the support arrangement to interconnect with the two end caps via the at least two rotation arrangements.
19. The electronic device of claim 17, wherein the slidable display arrangement is in one of a retracted position in relation to the housing and the two end caps or an extended position in relation to the housing and the two end caps.
20. The support structure of claim 2, wherein each of the at least two rotation arrangements and the at least one support element are configured to form a releasable interconnection that prevents translation of the at least one support element in all directions except along the first sliding axis or the second sliding axis.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0027] In the following detailed portion of the present disclosure, the aspects, embodiments and implementations will be explained in more detail with reference to the example embodiments shown in the drawings, in which:
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DETAILED DESCRIPTION
[0039]
[0040] The electronic device 3 of the embodiment shown in
[0041] The above-described end cap modules 13 of the electronic device 3 are illustrated in
[0042] As shown in
[0043] The support structure 1 shown in
[0044] Each rotation arrangement 4 is fixedly arranged along the first sliding axis A1a. The placement, in one embodiment, is assisted by the outer end cap 14 and the inner end cap 15, such that no more fixtures are necessary. During the sliding movement, the rotation arrangements 4 rotate around their rotation axes A2. The rotation axes A2 extend substantially perpendicular to the first sliding axis A1a, as is shown in
[0045] As shown in
[0046] In the folded section of the support structure 1, illustrated in
[0047] The number of rotation arrangements 4 in the support structure 1 is, according to one embodiment, an even number, preferably between 2-40. This number depends on the size of the electronic device in which the structure is to be mounted, and on the size, thickness and type of the display. Furthermore, the number of rotation arrangements 4 can vary based on the size of the rotation arrangement 4 as well.
[0048] The rotation arrangement 4 may comprise, or may be, a transmission wheel, a sprocket, a gear, or a pulley wheel, and may be in sliding contact with the support element 7.
[0049] The interconnection between the rotation arrangement 4 and the support element 7 can be achieved by different methods and differently shaped features. Some embodiments are illustrated in
[0050] The support arrangement 5 may also have different parts and/or shape, but preferably two ends of the support arrangement 5 are in contact with at least two rotation arrangements 4, one on each side. In one embodiment, the support arrangement 5 comprises a plurality of support elements 7, each end of each support element 7 comprising a protrusion extending from a sheet 6, the sheet 6 supporting the slidable display 12 and each protrusion interacting with one rotation arrangement 4. An illustration of this embodiment is
[0051] The support arrangement 5 according to the embodiment shown in
[0052] The interconnection between the rotation arrangement 4 and the support element 7 prevents translation of the support element 7 in all directions except along the first sliding axis A1a and/or the second sliding axis A1b.
[0053] The rotation arrangement 4 can have many different forms depending on the interconnection to the support arrangement 5. One possible shape is illustrated in
[0054] The pin may be in sliding contact with the housing 11, as indicated in
[0055] A rotation arrangement 4 having this shape also comprises a plurality of slots 8. These slots 8 are arranged around a circumference of the transmission wheel, and each slot 8 is able to engage with one end of one support element 7. The number of slots 8 in each wheel is preferably 3-10, more preferably 5. The number of slots 8 in the wheels depend on the spacing of support elements 7, and the diameter of the wheel. The slot 8 and the end of the support element 7 may both comprise a square frustum.
[0056] During interconnection, as illustrated in
[0057] In an embodiment as shown in
[0058]
[0059] The sliding movement can be achieved by different solutions, for example by driving the slidable display arrangement 2 and/or the support arrangement 5. This way, the rotation of the rotation arrangements 4 is also started by the slidable display arrangement 2 and/or the support arrangement 5. However, the support structure 1 may comprise a motor. In this case, the motor would be connected to the rotation arrangement 4, thus driving the rotation arrangement 4. Therefore, the sliding movement can be achieved by driving the sliding movement of the support arrangement 5 via the rotation arrangement 4 as well.
[0060] The various aspects and implementations have been described in conjunction with various embodiments herein. However, other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed subject-matter, from a study of the drawings, the disclosure, and the appended claims. In the claims, the word “comprising” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude a plurality. A single processor or other unit may fulfill the functions of several items recited in the claims. The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measured cannot be used to advantage. A computer program may be stored/distributed on a suitable medium, such as an optical storage medium or a solid-state medium supplied together with or as part of other hardware, but may also be distributed in other forms, such as via the Internet or other wired or wireless telecommunication systems.
[0061] The reference signs used in the claims shall not be construed as limiting the scope. Unless otherwise indicated, the drawings are intended to be read (e.g., cross-hatching, arrangement of parts, proportion, degree, etc.) together with the specification, and are to be considered a portion of the entire written description of this disclosure. As used in the description, the terms “horizontal”, “vertical”, “left”, “right”, “up” and “down”, as well as adjectival and adverbial derivatives thereof (e.g., “horizontally”, “rightwardly”, “upwardly”, etc.), simply refer to the orientation of the illustrated structure as the particular drawing figure faces the reader. Similarly, the terms “inwardly” and “outwardly” generally refer to the orientation of a surface relative to its axis of elongation, or axis of rotation, as appropriate.