Magnetic mobile phone support

The pivot structure design makes the magnetic phone holder compact when not in use, solving the problem of large size and inconvenience in storage and carrying in existing technologies, and achieving portability.

CN224154243UActive Publication Date: 2026-04-21ZHONGSHAN AOFAN TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN AOFAN TECHNOLOGY CO LTD
Filing Date
2025-04-02
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing magnetic phone holders are bulky when folded, making them inconvenient for users to store and carry.

Method used

The pivot structure design allows the second and third legs to be stacked on top of the first leg, and the magnetic components can be stacked on top of the stacked legs to form a compact storage configuration.

Benefits of technology

The size of the stand when not in use has been significantly reduced, making it easier for users to store and carry, thus meeting the need for portability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a magnetic suction mobile phone support, which comprises a pivoting center piece, a first support leg, a second support leg, a third support leg and a magnetic suction assembly, the first connecting end of the first supporting leg is pivoted with the pivoting center piece through a first pivot; the second connecting end of the second supporting leg is pivoted with the pivoting center piece through a second pivot; a third connecting end of the third supporting leg is pivoted with the pivoting center piece through a third pivot; the magnetic attraction assembly is rotatably connected with the pivoting center piece through the connecting mechanism; after folding, the second supporting leg and the third supporting leg can be stacked on the first supporting leg, the magnetic attraction assembly can be stacked on the second supporting leg and the third supporting leg, and a compact storage state is formed. By means of the design, the size of the support in the non-use state is obviously reduced, a user can conveniently store and carry the support, and the requirement of the user for portability is met.
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Description

Technical Field

[0001] This utility model relates to the field of bracket technology, and in particular to a magnetic mobile phone bracket. Background Technology

[0002] Holding mobile phones, tablets, and other electronic devices for extended periods while watching movies or making video calls can easily lead to hand fatigue and negatively impact the user experience. To address this issue, various phone stands have emerged on the market. Traditional phone stands typically use a clip to secure the electronic device, requiring users to pull the clip open to install and remove the phone, which is cumbersome and may cause scratches to the device.

[0003] Magnetic phone holders are gaining popularity due to their convenient attachment and removal features. When users need support for their electronic devices, they can use magnets to attach the holder to the back of the device; when not in use, it can be easily removed, avoiding the inconvenience and potential damage of traditional clamp-on holders.

[0004] However, existing magnetic phone holders, while prioritizing stability, often employ complex structural designs, resulting in a larger folded size that is inconvenient to carry and store. For example, some holders still retain a certain thickness even when folded, taking up additional space. This, to some extent, limits the user experience and willingness to carry the device. Utility Model Content

[0005] Therefore, it is necessary to provide a magnetic phone holder that addresses the problem of existing magnetic phone holders being bulky when folded, making them inconvenient for users to store and carry.

[0006] A magnetic phone holder, comprising:

[0007] The pivotal center member has a first direction, a second direction, and a third direction that are perpendicular to each other;

[0008] The first leg has a first supporting end and a first connecting end, the first connecting end being pivotally connected to the pivot center member via a first pivot and capable of rotating about a first rotation axis parallel to the second direction;

[0009] The second leg has a second supporting end and a second connecting end, the second connecting end being pivotally connected to the pivot center member via a second pivot and capable of rotating about a second rotation axis parallel to a third direction;

[0010] The third leg has a third supporting end and a third connecting end, the third connecting end being pivotally connected to the pivot center member via a third pivot and capable of rotating about a third rotation axis parallel to the third direction; and

[0011] The magnetic attraction assembly is rotatably connected to the pivot center member via a connecting mechanism;

[0012] After folding, the second and third legs can be stacked on top of the first leg, and the magnetic assembly can be stacked on top of the second and third legs to form a compact storage state.

[0013] In one embodiment, the pivot center member is generally elongated and extends along the first direction; along the first direction, the middle part of the pivot center member is pivotally connected to the first connecting end of the first leg via the first pivot, the first end of the pivot center member is pivotally connected to the second connecting end of the second leg and the third connecting end of the third leg via the second pivot and the third pivot, respectively, and the second end of the pivot center member is rotatably connected to the magnetic suction assembly via the connecting mechanism.

[0014] In one embodiment, the first connecting end of the first leg is a fork-shaped structure with a U-shaped groove, a portion of the pivoting center is accommodated in the U-shaped groove, and the two fork arms of the first connecting end are respectively pivotally connected to the middle of the pivoting center through a first pivot, and the axis of the first pivot is parallel to the first rotation axis.

[0015] In one embodiment, the second connecting end of the second leg and the third connecting end of the third leg are arranged side by side along the second direction and are pivotally connected to the first end of the pivoting center member via a second pivot and a third pivot, respectively. The axis of the second pivot is parallel to the second rotation axis, and the axis of the third pivot is parallel to the second rotation axis.

[0016] In one embodiment, the portion of the pivot center member that is pivotally connected to the second connecting end of the second leg and the third connecting end of the third leg has a width in the second direction that is greater than the width of the rest of the pivot center member.

[0017] In one embodiment, the magnetic chuck assembly includes a magnetic base and at least one magnet, the magnetic base having a magnetic end and a fourth connection end; at least one magnet is fixed to the magnetic end.

[0018] In one embodiment, the magnetic end is provided with an annular groove, the magnet is annular and is accommodated in the annular groove, and the magnetic assembly further includes an annular pad, which is fixed at the opening of the annular groove.

[0019] In one embodiment, the width of the magnetic end is greater than the width of the fourth connection end.

[0020] In one embodiment, the connecting mechanism includes a first connecting arm and a second connecting arm. One end of the first connecting arm and the second connecting arm are respectively located on both sides of the second end of the pivoting center member and are pivotally connected to the second end of the pivoting center member via a fourth pivot, the axis of which is parallel to the second rotation axis. The other ends of the first connecting arm and the second connecting arm are respectively located on both sides of the fourth connecting end of the magnetic base and are pivotally connected to the magnetic base via a fifth pivot, the axis of which is parallel to the second rotation axis.

[0021] In one embodiment, the first leg, the second leg, the third leg, and the magnetic suction assembly are all provided with weight-reducing holes.

[0022] The aforementioned magnetic phone holder, through its ingenious pivot structure design, allows the second and third legs to effectively stack on top of the first leg, and the magnetic components can also be compactly stacked on top of the stacked legs. This design significantly reduces the size of the holder when not in use, making it convenient for users to store and carry, thus meeting their needs for portability. Attached Figure Description

[0023] Figure 1 This is a perspective view of the magnetic phone holder in a folded state according to one embodiment of the present invention;

[0024] Figure 2 This is a perspective view of the magnetic phone holder in the open state according to one embodiment of the present invention;

[0025] Figure 3 This is an exploded view of the magnetic phone holder in a folded state according to one embodiment of the present invention.

[0026] Explanation of reference numerals in the attached figures:

[0027] 10: Pivot center component

[0028] 11: The first end of the pivot center component

[0029] 12: The second end of the pivot center component

[0030] 13: The pivot joint between the pivot center member and the second connecting end of the second leg and the third connecting end of the third leg.

[0031] 20: First foot

[0032] 21: First support end

[0033] 22: First connection end

[0034] 22a: U-shaped groove

[0035] 23: First Pivot

[0036] 30: Second leg

[0037] 31: Second support end

[0038] 32: Second connection end

[0039] 33: Second Pivot

[0040] 40: Third leg

[0041] 41: Third support end

[0042] 42: Third connection end

[0043] 43: Third Pivot

[0044] 50: Magnetic assembly

[0045] 51: Magnetic base

[0046] 52: Magnetic end

[0047] 53: Fourth connection end

[0048] 54: Magnet

[0049] 55: Annular groove

[0050] 56: Circular pad

[0051] 60: Connecting mechanism

[0052] 61a: First connecting arm

[0053] 61b: Second connecting arm

[0054] 66: Fourth Pivot

[0055] 67: Fifth Pivot

[0056] 70: Weight reduction hole

[0057] First direction (X-axis)

[0058] Second direction (Y-axis)

[0059] Third direction (Z-axis)

[0060] First axis of rotation A1

[0061] Second axis of rotation A2

[0062] Third axis of rotation A3

[0063] Fourth axis of rotation A4

[0064] Fifth axis of rotation A5 Detailed Implementation

[0065] To make the above-mentioned objectives, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model are described clearly and completely below with reference to the accompanying drawings. Obviously, the specific details described below are only a part of the embodiments of this utility model, and this utility model can be implemented in many other embodiments different from those described herein. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0066] In this document, when an element is referred to as being "fixed to" another element, it can be directly on the other element or there may be an intervening element. When an element is considered to be "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The directional terms such as "front," "back," "up," and "down" are defined based on the location of the components in the accompanying drawings and their relative positions, and are merely for clarity and convenience in expressing the technical solution. It should be understood that the use of these directional terms should not limit the scope of protection claimed by this utility model.

[0067] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

[0068] In this embodiment, we define a three-dimensional Cartesian coordinate system with a first direction (X-axis), a second direction (Y-axis), and a third direction (Z-axis) that are perpendicular to each other. This coordinate system will be referenced in the description of this invention. In the deployed state of the support, it is assumed that the first direction (X-axis)... Figure 1 The middle X-axis direction roughly points vertically, and the second direction ( Figure 1 (in the Y-axis direction) and third direction ( Figure 1 The Z-axis direction (in the middle) roughly points horizontally.

[0069] like Figure 1-3As shown, the magnetic phone holder of this embodiment includes a pivot center member 10, a first leg 20, a second leg 30, a third leg 40, and a magnetic assembly 50. The pivot center member 10 has dimensions along a first direction, a second direction, and a third direction. The first leg 20 has a first support end 21 and a first connecting end 22. The first connecting end 22 is pivotally connected to the pivot center member 10 via a first pivot 23, allowing the first leg 20 to rotate about a first rotation axis A1 parallel to the second direction. The second leg 30 has a second support end 31 and a second connecting end 32. The second connecting end 32 is pivotally connected to the pivot center member 10 via a second pivot 33, allowing the second leg 30 to rotate about a second rotation axis A2 parallel to the third direction. The third leg 40 has a third support end 41 and a third connecting end 42. The third connecting end 42 is pivotally connected to the pivot center member 10 via a third pivot 43, allowing the third leg 40 to rotate about a third rotation axis A3 parallel to the third direction. The magnetic suction assembly 50 is rotatably connected to the pivot center member 10 via the connecting mechanism 60. When folded, the second support leg 30 and the third support leg 40 can be stacked on the first support leg 20, and the magnetic suction assembly 50 can be stacked on the second support leg 30 and the third support leg 40 to form a compact storage state.

[0070] This invention utilizes a clever pivot structure design, allowing the second and third legs to be effectively stacked on top of the first leg, and the magnetic assembly to be compactly stacked on top of the stacked legs. This design significantly reduces the size of the stand when not in use, making it convenient for users to store and carry, thus meeting their portability needs.

[0071] In one embodiment, the pivoting center member 10 is generally elongated and extends along a first direction. Along the first direction, the middle portion of the pivoting center member 10 is pivotally connected to the first connecting end 22 of the first leg 20 via a first pivot 23. The first end 11 of the pivoting center member 10 is pivotally connected to the second connecting end 32 of the second leg 30 and the third connecting end 42 of the third leg 40 via a second pivot 33 and a third pivot 43, respectively. The second end 12 of the pivoting center member 10 is rotatably connected to the magnetic assembly 50 via a connecting mechanism 60. By designing the pivoting center member as elongated and defining the connection position, the component layout is optimized, making the bracket more balanced and stable when deployed, providing a structural basis for subsequent compact storage.

[0072] In one embodiment, the first connecting end 22 of the first leg 20 is a fork-shaped structure with a U-shaped groove 22a. A portion of the pivoting center member 10 is accommodated within the U-shaped groove 22a, and the two fork arms of the first connecting end 22 are respectively pivotally connected to the middle of the pivoting center member 10 via a first pivot 23. In this embodiment, the first pivot 23 is a cylindrical pin, and the axis of the cylindrical pin is parallel to the first rotation axis. The use of a fork-shaped connecting end and a cylindrical pin connection enhances the stability of the connection between the first leg and the pivoting center member, reduces leg wobbling, and improves the overall support strength of the bracket.

[0073] In one embodiment, the second connecting end 32 of the second leg 30 and the third connecting end 42 of the third leg 40 are arranged side by side along the second direction and are pivotally connected to the first end 11 of the pivoting center member 10 via a second pivot 33 and a third pivot 43, respectively. The axis of the second pivot 33 is parallel to the second rotation axis, and the axis of the third pivot 43 is also parallel to the second rotation axis. In this embodiment, the second pivot 33 and the third pivot 43 are flat-head screws. The side-by-side arrangement and independent pivoting of the second and third legs help to provide more uniform support when unfolded and achieve a more compact stacking when folded, thus optimizing the storage performance of the bracket.

[0074] In one embodiment, the portion 13 where the pivot center member 10 is pivotally connected to the second connecting end 32 of the second leg 30 and the third connecting end 42 of the third leg 40 has a width along the second direction greater than the width of the rest of the pivot center member 10. Widening the pivot center member at critical connection points increases the strength and stability of that area, improving the load-bearing capacity and service life of the support.

[0075] In one embodiment, the magnetic suction assembly 50 includes a magnetic base 51 and at least one magnet 54. The magnetic base 51 has a magnetic suction end 52 and a fourth connecting end 53. The fourth connecting end 53 is rotatably connected to the pivot center member via a connecting mechanism. At least one magnet 54 is fixed to the magnetic suction end 52 of the magnetic base 51. The magnetic suction base and the pivot center member are connected by a connecting mechanism, realizing the magnetic attraction function and providing the angle adjustability of the magnetic suction assembly, making it convenient for users to adjust the viewing angle.

[0076] In one embodiment, the magnetic end 52 of the magnetic base 51 is provided with an annular groove 55, the magnet 54 is annular and is accommodated within the annular groove 55, and the magnetic assembly 50 further includes an annular pad 56, which is fixed at the opening of the annular groove 55. The use of an annular groove and an annular magnet, secured by the annular pad, makes the magnet installation more stable, provides better contact with electronic devices, and offers more reliable magnetic attraction. Simultaneously, the annular pad also protects the surface of the device.

[0077] In one embodiment, the width of the magnetic end 52 of the magnetic base 51 is greater than the width of the fourth connecting end 53. The wider magnetic end increases the magnetic area, thereby enhancing the attraction between the magnetic assembly and the electronic device, resulting in a more secure attachment.

[0078] In one embodiment, the connecting mechanism includes a first connecting arm 61a and a second connecting arm 61b. One end of each connecting arm is located on either side of the second end 12 of the pivot center member 10 and is pivotally connected to the second end 12 of the pivot center member 10 via a fourth pivot 66. The axis of the fourth pivot 66 is parallel to the second direction, allowing the first connecting arm 61a and the second connecting arm 61b to rotate about a fourth rotation axis A4. The other ends of each connecting arm are located on either side of the fourth connecting end 53 of the magnetic base 51 and are pivotally connected to the magnetic base 51 via a fifth pivot 67. The axis of the fifth pivot 67 is parallel to the second direction, allowing the magnetic base to rotate about a fifth rotation axis A5. Using dual connecting arms to connect the magnetic assembly and the pivot center member provides a more stable connection and support, effectively reducing the wobbling of the magnetic assembly and improving the stability of the electronic device placement.

[0079] In one embodiment, the first leg 20, the second leg 30, the third leg 40, and the magnetic assembly 50 are all provided with weight-reducing holes 70. By providing weight-reducing holes, the overall weight of the stand is effectively reduced, making the stand lighter and more convenient for users to carry.

[0080] The embodiments described above are merely examples of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these modifications and improvements all fall within the protection scope of this utility model.

Claims

1. A magnetic mobile phone holder, characterized in that, include: The pivotal center member has a first direction, a second direction, and a third direction that are perpendicular to each other; The first leg has a first supporting end and a first connecting end, the first connecting end being pivotally connected to the pivot center member via a first pivot and capable of rotating about a first rotation axis parallel to the second direction; The second leg has a second supporting end and a second connecting end, the second connecting end being pivotally connected to the pivot center member via a second pivot and capable of rotating about a second rotation axis parallel to a third direction; The third leg has a third support end and a third connecting end, the third connecting end being pivotally connected to the pivot center member via a third pivot and capable of rotating about a third rotation axis parallel to the third direction; as well as The magnetic attraction assembly is rotatably connected to the pivot center member via a connecting mechanism; After folding, the second and third legs can be stacked on top of the first leg, and the magnetic assembly can be stacked on top of the second and third legs to form a compact storage state.

2. The magnetic phone holder of claim 1, wherein, The pivot center member is generally elongated and extends along the first direction; along the first direction, the middle part of the pivot center member is pivotally connected to the first connecting end of the first leg via the first pivot, the first end of the pivot center member is pivotally connected to the second connecting end of the second leg and the third connecting end of the third leg via the second pivot and the third pivot, respectively, and the second end of the pivot center member is rotatably connected to the magnetic suction assembly via the connecting mechanism.

3. The magnetic phone holder of claim 2, wherein, The first connecting end of the first leg is a fork-shaped structure with a U-shaped groove. A portion of the pivoting center is accommodated in the U-shaped groove, and the two fork arms of the first connecting end are respectively pivotally connected to the middle of the pivoting center through a first pivot. The axis of the first pivot is parallel to the first rotation axis.

4. The magnetic phone holder according to claim 2, characterized in that, The second connecting end of the second leg and the third connecting end of the third leg are arranged side by side along the second direction and are pivotally connected to the first end of the pivoting center member through the second pivot and the third pivot, respectively. The axis of the second pivot is parallel to the second rotation axis, and the axis of the third pivot is parallel to the second rotation axis.

5. The magnetic phone holder of claim 4, wherein, The portion of the pivoting center member that is pivotally connected to the second connecting end of the second leg and the third connecting end of the third leg has a width in the second direction that is greater than the width of the rest of the pivoting center member.

6. The magnetic phone holder of claim 2, wherein, The magnetic suction assembly includes a magnetic base and at least one magnet. The magnetic base has a magnetic suction end and a fourth connection end; at least one magnet is fixed to the magnetic suction end.

7. The magnetic phone holder of claim 6, wherein, The magnetic end is provided with an annular groove, the magnet is annular and is accommodated in the annular groove, and the magnetic assembly also includes an annular pad, which is fixed at the opening of the annular groove.

8. The magnetic phone holder of claim 6, wherein, The width of the magnetic end is greater than the width of the fourth connecting end.

9. The magnetic phone holder of claim 6, wherein, The connecting mechanism includes a first connecting arm and a second connecting arm. One end of the first connecting arm and the second connecting arm are located on both sides of the second end of the pivoting center member, and are pivotally connected to the second end of the pivoting center member via a fourth pivot. The axis of the fourth pivot is parallel to the second rotation axis. The other end of the first connecting arm and the second connecting arm are located on both sides of the fourth connecting end of the magnetic base, and are pivotally connected to the magnetic base via a fifth pivot. The axis of the fifth pivot is parallel to the second rotation axis.

10. The magnetic phone holder of any one of claims 1 to 9, wherein, The first leg, the second leg, the third leg, and the magnetic suction assembly are all provided with weight reduction holes.