Electronic device bracket

CN224635207UActive Publication Date: 2026-08-14SHENZHEN LANHE TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-12
Publication Date
2026-08-14

AI Technical Summary

Technical Problem

但现有的电子设备支架通常设置支撑件,将电子设备支撑并放置桌面上,该电子设备支架只能应用于桌面上,应用场景单一

Benefits of technology

[0017]本申请的有益效果是:通过将第一磁性件和第二磁性件沿基座厚度方向分别对应顶壁与底壁设置,并利用第二磁性件与电子设备内的磁性件相互磁吸配合,实现了电子设备与支架间的稳固连接。当架体打开并置于桌面时,可与电子设备及桌面共同构成稳定的三角支撑结构,用户无需手持电子设备对其进行操作;当架体闭合时,可通过第一磁性件将整个电子设备支架及电子设备吸附于外部磁吸表面(如冰箱、金属柜门等),从而在无需架体参与的情况下依然可靠固定电子设备。本申请显著拓宽了电子设备支架的适用场景,使用户能够在更多环境中解放双手,同时确保了第一磁性件与外部磁吸表面间磁吸连接的稳固性。

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Abstract

This application provides an electronic device holder, including a base, a frame, a first magnetic component, and a second magnetic component. The base has a top wall and a bottom wall disposed opposite each other along its thickness direction. The top wall is provided with a magnetic attraction portion, the first magnetic component is disposed in the magnetic attraction portion, and the second magnetic component is disposed in the bottom wall. The frame is movably connected to the base and has an open state and a closed state. When the frame is in the open state, it supports the base. When the frame is in the closed state, it is housed in the top wall, and the top surface of the frame is not higher than the magnetic attraction portion. This significantly broadens the applicable scenarios of the electronic device holder, allowing users to free their hands in more environments, while ensuring the stability of the magnetic connection between the first magnetic component and the external magnetic attraction surface.
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Description

Technical Field

[0001] This application relates to the field of electronic device bracket technology, and more particularly to an electronic device bracket. Background Technology

[0002] An electronic device stand is a device used to fix and support electronic devices. By connecting to the electronic device, it allows users to view or operate the device without holding it, thus freeing up the user's hands. However, existing electronic device stands typically have support components to hold the electronic device and place it on a desktop, limiting their application to a single scenario. Utility Model Content

[0003] The main technical problem addressed by this application is the limitation of the application scenarios for electronic devices.

[0004] To solve the above-mentioned technical problems, this application provides an electronic device bracket, including a base, a frame, a first magnetic component, and a second magnetic component; the base has a top wall and a bottom wall disposed opposite to each other along its thickness direction, the top wall is provided with a magnetic attraction portion, the first magnetic component is disposed in the magnetic attraction portion, and the second magnetic component is disposed in the bottom wall;

[0005] The frame is movably connected to the base and has an open state and a closed state. When the frame is in the open state, it supports the base. When the frame is in the closed state, it is stored in the top wall, and the top surface of the frame is not higher than the magnetic suction part.

[0006] Alternatively, the magnetic attraction portion forms a first groove, the top surface of the frame is not higher than the top surface of the first groove, and the first magnetic element is disposed in the first groove.

[0007] Alternatively, the first groove is provided along the periphery of the top wall.

[0008] Further optionally, the top wall is recessed with a support groove; the first groove is arranged circumferentially outward around the support groove, and / or the depth of the support groove is greater than or equal to the thickness of the frame.

[0009] Alternatively, the bracket groove is provided with a protrusion, which surrounds and forms a limiting groove. The shape of the limiting groove matches the frame. When the bracket is in a closed state, the bracket is housed in the limiting groove.

[0010] Alternatively, the first groove is provided along the edge of the top wall in the shape of a frame with an opening, the first magnetic element is provided corresponding to the shape of the first groove, the bracket groove is located in the area enclosed by the first groove, and the other part extends to the opening and penetrates the top wall in the direction of the edge of the top wall.

[0011] Alternatively, the magnetic attraction strength of the first magnetic element is less than that of the second magnetic element.

[0012] Further optionally, the bottom wall is provided with a second groove, and the second magnetic element is disposed in the second groove; the top wall is recessed with a support groove, and the second magnetic element includes a first magnet and a second magnet, the first magnet and the second magnet are connected end to end to form a ring structure, along the thickness direction of the base, the first magnet is located directly below the support groove, the second magnet is located below the first magnetic element, and the thickness of the second magnet is greater than the thickness of the first magnet.

[0013] Alternatively, the depth of the second groove corresponding to the first magnet portion is less than the depth of the second groove corresponding to the second magnet portion.

[0014] Further optionally, the frame has a front end and a rear end that are arranged opposite to each other along its length; the front end is rotatably connected to the base via a pivot, and the front end is located within the area enclosed by the second groove; when the frame is in a closed state, the rear end is located outside the area enclosed by the second groove on the top wall.

[0015] Optionally, the base is provided with a third magnetic element, and the tail end is provided with a fourth magnetic element. When the frame is in a closed state, the fourth magnetic element and the third magnetic element are magnetically attracted to each other.

[0016] Alternatively, the third magnetic element is disposed on the bottom wall, and the third magnetic element is located outside the area enclosed by the second groove. The third magnetic element is also used for magnetic attraction with external electronic devices.

[0017] The beneficial effects of this application are as follows: By setting the first and second magnetic components along the thickness direction of the base to correspond to the top and bottom walls respectively, and utilizing the mutual magnetic attraction between the second magnetic component and the magnetic component inside the electronic device, a stable connection between the electronic device and the bracket is achieved. When the bracket is open and placed on a table, it can form a stable triangular support structure together with the electronic device and the table, allowing the user to operate the electronic device without holding it. When the bracket is closed, the entire electronic device bracket and the electronic device can be attracted to an external magnetic surface (such as a refrigerator or metal cabinet door) by the first magnetic component, thus reliably fixing the electronic device without the need for the bracket. This application significantly expands the applicable scenarios of the electronic device bracket, allowing users to free their hands in more environments, while ensuring the stability of the magnetic connection between the first magnetic component and the external magnetic surface. Attached Figure Description

[0018] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0019] Figure 1 An exploded view of the structure of an electronic device bracket according to one embodiment;

[0020] Figure 2 A schematic diagram of the structure of an electronic device bracket according to one embodiment;

[0021] Figure 3 for Figure 2 Another perspective structural diagram;

[0022] Figure 4 A schematic diagram of the base structure for one embodiment;

[0023] Figure 5 for Figure 4 Another perspective structural diagram;

[0024] Figure 6 This is a schematic diagram of the structure of the second magnetic component in one embodiment.

[0025] Icon description:

[0026] 1. Base; 11. Top wall; 111. First groove; 112. Support groove; 113. Limiting groove; 114. Protrusion; 115. Top plate; 12. Bottom wall; 121. Second groove;

[0027] 2. Frame; 21. Head end; 22. Tail end;

[0028] 3. Spool; 31. Hinge;

[0029] 4. First magnetic component; 41. Opening;

[0030] 5. Second magnetic component; 51. First magnet; 52. Second magnet; 521. First magnet; 522. Second magnet;

[0031] 6. Third magnetic component;

[0032] 7. Fourth magnetic component;

[0033] 8. Iron sheet;

[0034] 91. First protective component; 92. Second protective component; 93. Third protective component; 94. Fourth protective component.

[0035] The realization of the purpose, functional features and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0036] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0037] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in the embodiments of this application are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.

[0038] Furthermore, the use of terms such as "first" and "second" in this application is for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the term "and / or" throughout the text includes three solutions; taking A and / or B as an example, it includes technical solution A, technical solution B, and a technical solution that simultaneously satisfies A and B. Furthermore, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0039] An electronic device stand is a device used to fix and support electronic devices. By connecting to the electronic device or electronic device accessories, it allows users to view or operate the device without holding it in their hands, thus freeing up the user's hands.

[0040] This application provides an electronic device bracket, as detailed in the reference. Figures 1 to 6 The system includes a base 1, a frame 2, a first magnetic element 4, and a second magnetic element 5. The frame 2 is movably connected to the base 1 and can rotate relative to the base 1 to have an open state and a closed state. The base 1 has a top wall 11 and a bottom wall 12 arranged opposite to each other along its thickness direction X. The top wall 11 is provided with a magnetic attraction part (not shown in the figure). The first magnetic element 4 is provided on the base 1 and is arranged corresponding to the magnetic attraction part. The second magnetic element 5 is provided on the base 1 and is arranged corresponding to the bottom wall 12. The second magnetic element 5 is used for magnetic connection with electronic devices or electronic device accessories (e.g., protective cases).

[0041] When the frame 2 is in the open state, the frame 2 is used to support the base 1. The frame 2 and the base 1 together form a support structure for supporting electronic equipment. For example, the frame 2 and the base 1 are at an angle. When the frame 2 is in the closed state, the frame 2 is stored in the side of the top wall 11 away from the bottom wall 12. The top surface of the frame 2 is not higher than the magnetic part. Specifically, the side of the frame 2 away from the top wall 11 is not higher than the top surface of the magnetic part.

[0042] This application features a first magnetic component 4 and a second magnetic component 5 positioned along the thickness direction X of the base 1. The frame 2 and the first magnetic component 4 are positioned on the top wall 11 of the base 1, and the second magnetic component 5 is positioned on the bottom wall 12 of the base 1. The second magnetic component 5 is used to magnetically engage with the magnetic component inside the electronic device. When the frame 2 is open, the frame 2 and the electronic device are placed on a table, forming a stable triangular support structure that allows the user to view or operate the electronic device without holding it. When the frame 2 is closed, the user can attach the magnetic part of the base 1 to the surface of an external magnetic component (such as a refrigerator door, iron cabinet, or metal door), thereby attaching the electronic device to the external magnetic surface. At this time, the first magnetic component 4 and the external magnetic surface are mutually attracted, so that even without opening the frame 2, the electronic device can still be reliably fixed, thus freeing the user's hands in more scenarios. Furthermore, the top surface of the frame 2 is not higher than the magnetic part. This design can prevent the frame 2 from affecting the magnetic attraction between the first magnetic component 4 and the external magnetic surface, thereby ensuring the stability of the magnetic connection between it and the external magnetic component.

[0043] In one implementation, such as Figures 1 to 5 As shown, the frame 2 is elongated, and the base 1 is plate-shaped. The frame 2 and the base 1 are connected by a rotating structure. The frame 2 has a head end 21 and a tail end 22 along its length. The head end 21 of the frame 2 is connected to the base 1 via the rotating structure, which includes, for example, a pivot 3 and a hinge 31. The pivot 3 connects the hinge 31 and the frame 2, and the hinge 31 is fixed to the base 1, thus realizing the relative rotation function between the frame 2 and the base 1. When the frame 2 rotates relative to the base 1, the frame 2 has an open state and a closed state. When the frame 2 is in the open state, the frame 2 and the base 1 are connected at an angle greater than zero. The electronic device bracket is placed on the desktop, and the frame 2, together with the electronic device and the desktop, can form a stable triangular support structure. When the frame 2 is in the closed state, the frame 2 is stored in the top wall 11 on the side away from the bottom wall 12; at this time, the frame 2 overlaps with the top wall 11.

[0044] The base 1 has a top wall 11 and a bottom wall 12 disposed opposite to each other along its thickness direction X. The first magnetic element 4 is disposed corresponding to the position of the top wall 11. When the first magnetic element 4 is disposed inside the base 1, located between the top wall 11 and the bottom wall 12, the area of ​​the top wall 11 directly above the first magnetic element 4 is a magnetic attraction part, and the magnetic attraction part is a magnetic attraction surface that magnetically engages with an external magnetic attraction element. When the top wall 11 is recessed with a first groove 111, the first magnetic element 4 is disposed inside the first groove 111, and the top surface of the first magnetic element 4 (the surface of the first magnetic element 4 exposed to the outside world) does not extend beyond the first groove 111. The area corresponding to the first groove 111 is a magnetic attraction part, and the top surface of the first groove 111 is a magnetic attraction surface that magnetically engages with an external magnetic attraction element.

[0045] Specifically, in this embodiment, the magnetic attraction part forms a first groove 111, and the first magnetic element 4 is disposed within the first groove 111. Along the thickness direction X of the base 1, the thickness of the first magnetic element 4 is less than or equal to the depth of the first groove 111 to ensure that the first magnetic element 4 is accommodated within the first groove 111 and does not protrude from the upper surface of the top wall 11, maintaining the flatness and integrity of the base 1's appearance. The top surface of the frame 2 is not higher than the top surface of the first groove 111 to prevent the top surface of the frame 2 from being higher than the magnetic part, affecting the magnetic attraction between the base 1 and the external magnetic attraction element. A second groove 121 is provided on the side of the bottom wall 12 away from the top wall 11, and the second magnetic element 5 is disposed within the second groove 121. Along the thickness direction X of the base 1, the thickness of the second magnetic element 5 is less than or equal to the depth of the second groove 121, again to maintain the flatness of the appearance. The first groove 111 and the second groove 121 can be disposed individually on the base 1 or together on the base 1; this application does not limit this to a single possibility.

[0046] By providing a first groove 111 in the top wall 11, the first magnetic element 4 is disposed within the first groove 111. The first groove 111 not only limits and fixes the first magnetic element 4, improving connection stability, but also reduces the thickness of the base 1. Similarly, the provision of the second groove 121 also helps to fix the cavityd second magnetic element 5 and reduce the thickness of the base 1.

[0047] Furthermore, when the frame 2 is in a closed state, the top surface of the first magnetic element 4 (the surface of the first magnetic element 4 away from the top wall 11) is not lower than the top surface of the frame 2 (the surface of the frame 2 away from the top wall 11), so as to avoid the frame 2 affecting the magnetic attraction between the first magnetic element 4 and the external magnetic attraction surface.

[0048] In one embodiment, the magnetic attraction strength of the first magnetic element 4 is less than that of the second magnetic element 5. By setting the first magnetic element 4 to a lower magnetic attraction strength, when the electronic device holder fixes the electronic device to an external magnetic surface (such as a refrigerator door, metal partition, etc.), the electronic device holder can be pulled away from the magnetic surface along with the user when removing the electronic device. This design effectively avoids the situation where the user only removes the electronic device and leaves the holder on the external magnetic element, thereby improving the convenience of operation and the overall user experience.

[0049] In one implementation, such as Figure 2 As shown, a support groove 112 is recessed on the side of the top wall 11 opposite to the bottom wall 12. When the frame 2 is in the closed state, the frame 2 is housed within the support groove 112. The shape and size of the support groove 112 can match the frame 2 or be larger than the size of the frame 2, as long as it can accommodate the frame 2. When the frame 2 is in the closed state, it is housed within the support groove 112. This structure not only protects the frame 2, reducing external friction and scratches, but also reliably limits the position of the frame 2, reducing the risk of it wobbling on the surface of the top wall 11.

[0050] refer to Figure 1 and Figure 6 The second magnetic component 5 includes a first magnet 51 and a second magnet 52. The first magnet 51 and the second magnet 52 are connected end to end to form a ring shape. Specifically, the first magnet 51 and the second magnet 52 are concentric arcs. The first magnet 51 and the second magnet 522 are connected to form a complete ring.

[0051] The second magnetic element 5 is disposed in the second groove 121 along the thickness direction X of the base 1. The first magnet 51 is located directly below the support groove 112, and the second magnet 52 is located below the first magnetic element 4. The thickness of the second magnet 52 is greater than the thickness of the first magnet 51. By placing the second magnet 52 on the base 1 in an area that avoids the support groove 112 and increasing the thickness of this part of the magnet, the volume of the second magnetic element 5 can be effectively increased within a limited space, thereby improving the overall magnetic attraction strength of the second magnetic element 5. Since the electronic device bracket needs to meet the requirements of miniaturization and thinness, the thickness of the base 1 is usually small, and the area corresponding to the support groove 112 is even thinner. The first magnet 51 is located directly below the support groove 112; its thickness on the base 1 is correspondingly reduced to match the smaller thickness of the base 1 at this location; the second magnet 52 avoids the support groove 112 area, and can make full use of the thicker part of the base 1 for thickening, thereby significantly enhancing the magnetic attraction performance of the second magnetic element 5 while maintaining the overall structural compactness.

[0052] Furthermore, in the thickness direction X of the base 1, the depth of the portion of the second groove 121 corresponding to the first magnet 51 is less than the depth of the portion of the second groove 121 corresponding to the second magnet 52, so as to adapt to the shape of the second magnetic element 5, so that the second groove 121 can completely accommodate the second magnetic element 5, and the bottom surface of the second magnetic element 5 does not exceed the second groove.

[0053] Furthermore, specifically as follows Figure 6 As shown, the second magnet 52 includes a first magnet 521 and a second magnet 522; the first magnet 521 is radially sleeved on the outside of the second magnet 522 along the second magnetic element 5; or, the first magnet 521 and the second magnet 522 are stacked vertically along their thickness. By setting the second magnet 52 as a combination of the first magnet 521 and the second magnet 522, when the two are attracted, the magnetic resistance at their contact surface is reduced, and the magnetic field lines can more easily form a closed loop through the other magnet (i.e., the magnetic circuit is shortened). This structure optimizes the magnetic circuit design and effectively improves the permeability of the system without increasing the volume of the second magnet 52 or changing its material, enabling the second magnet 52 to generate a higher magnetic field strength within the same volume.

[0054] In other embodiments, refer to Figure 1 The second magnet 52 has an iron sheet 8 on its upper or lower surface in the thickness direction. The shape and size of the iron sheet 8 are adapted to the surface of the second magnet 52 to which it is attached. By adding the iron sheet 8, magnetic field lines can be further concentrated and magnetic circuit resistance can be reduced, thereby enhancing the surface magnetic strength and overall magnetic attraction performance of the second magnetic component 5.

[0055] In one implementation, such as Figure 1 and Figure 2As shown, the frame 2 has a front end 21 and a rear end 22 arranged opposite to each other along its length. The front end 21 is rotatably connected to the base 1 via a pivot 3, and the front end 21 is located within the area enclosed by the second groove 121. It can be understood that the front end 21 is located within the area enclosed by the second magnetic element 5. When the frame 2 is in the closed state, the rear end 22 is located outside the area enclosed by the second groove 121 on the top wall 11. Since the second magnetic element 5 is used to magnetically engage with the magnetic element of the electronic device, the size of the second magnetic element 5 needs to match the size of the magnetic element of the electronic device. When the size of the second magnetic element 5 and the size of the electronic device are fixed, the frame 2 is placed on the base 1. When the frame 2 is open, the length of the frame 2 is insufficient to form a stable triangular support structure with the electronic device. Therefore, the frame 2 needs to be extended. Thus, by connecting the front end 21 to the area enclosed by the second magnetic element 5 and the rear end 22 located outside the area enclosed by the second magnetic element 5 on the base 1, the length of the frame 2 is effectively increased. The base 1 has a first end and a second end along its length. The first magnet 51 is disposed near the first end, and the second magnet 52 is disposed near the second end. The distance from the end of the first magnet 51 at the first end is greater than the distance from the end of the second magnet 52 at the second end. The frame 2 is disposed along the opposite direction of the first end and the second end along its length. The first end 21 of the frame 2 is disposed in the area enclosed by the second magnetic element 5 on the base 1, and the tail end 22 extends along the direction close to the first end. Therefore, the support groove 112 coincides with the orthographic projection of the first magnet 51 on the top wall 11. When the frame 2 is in the closed state, the frame 2 is located directly above the first magnet 51.

[0056] In one implementation, reference Figure 1 and Figure 3 The base 1 is equipped with a third magnetic component 6, and the tail end 22 of the frame 2 is equipped with a fourth magnetic component 7. The fourth magnetic component 7 is positioned corresponding to the third magnetic component 6. When the frame 2 is in the closed state, the fourth magnetic component 7 and the third magnetic component 6 magnetically engage. This magnetic engagement structure can provide guidance and auxiliary attraction force during the process of the frame 2 changing from the open state to the closed state, thereby improving the feel and smoothness of the closing operation. At the same time, this magnetic fixing method can effectively suppress the deformation or warping of the frame 2 that may occur due to long-term use, ensuring that it always remains flat and in close contact with the base 1, improving the durability and appearance consistency of the product.

[0057] In one implementation, reference Figure 1 and Figure 3The third magnetic component 6 is located on the bottom wall 12, outside the area enclosed by the second groove 121. The third magnetic component 6 also serves to magnetically engage with the magnetic components of external electronic devices. For example, taking a mobile phone as an example, the third magnetic component 6 is located on the bottom wall 12 of the base 1. When the second magnetic component 5 engages with the ring-shaped magnetic component built into the mobile phone, the third magnetic component 6 simultaneously engages with the magnetic area (tail magnet) at the tail of the mobile phone and closely adheres to the surface of the mobile phone, thereby significantly enhancing the overall magnetic attraction between the bracket and the mobile phone. The third magnetic component 6 can not only engage with the electronic device to enhance fixation but also engage with the fourth magnetic component 7 when the bracket 2 is closed. This "one-piece, two-purpose" design effectively reduces the number of parts, which helps to reduce the overall complexity and size of the electronic device bracket.

[0058] In one embodiment, a support groove 112 is recessed on the side of the top wall 11 opposite to the bottom wall 12. When the frame 2 is in the closed state, the frame 2 is housed within the support groove 112. The second magnetic element 5 is an open annular shape, and the corresponding second groove 121 is also an open annular shape. The orthographic projection of the opening of the second magnetic element 5 on the top wall 11 overlaps with the support groove 112, and the orthographic projection of the second magnetic element 5 on the top wall 11 is offset from the support groove 112. By providing an opening in the area of ​​the second magnetic element 5 corresponding to the support groove 112, the magnetic element structure and the support groove 112 are spatially mutually avoidant. This design optimizes the internal spatial layout of the electronic device bracket, which is conducive to achieving a thinner product structure and thus improving the user experience.

[0059] In one implementation, such as Figure 1 and Figure 2 As shown, the first magnetic element 4 is arranged along the periphery of the top wall 11, forming a complete closed or open frame structure adapted to the shape of the top wall 11. The first magnetic element 4 is used to achieve magnetic attraction with the external magnetic surface, and its periphery layout helps to enhance the overall adhesion to the external magnetic surface. The electronic device bracket is used to support the electronic device, and the combined gravity of the two is relatively large. The second magnetic element 5 is set to have a higher magnetic attraction strength than the first magnetic element 4. When the electronic device bracket attracts the electronic device to the external magnetic surface, under the action of gravity, the periphery of the electronic device bracket tends to gradually move away from the external magnetic surface, resulting in an increase in the distance between the first magnetic element 4 and the external magnetic surface, weakening the magnetic attraction, and potentially causing the bracket to fall off completely. By setting the first magnetic element 4 as a frame structure along the periphery of the top wall 11, the adhesion between the edge of the bracket and the external magnetic surface can be significantly enhanced, effectively resisting the flipping torque caused by gravity, preventing the periphery of the electronic device bracket from tilting up, thereby improving the reliability and safety of the electronic device bracket's adhesion to the external magnetic surface.

[0060] In one implementation, such as Figure 1 and Figure 2As shown, a support groove 112 is recessed on the side of the top wall 11 opposite to the bottom wall 12. A first groove 111 is arranged around the support groove 112 outwards, and similarly, a first magnetic element 4 is arranged around the support groove 112 outwards. In the thickness direction X of the base 1, the depth of the support groove 112 is greater than or equal to the thickness of the frame 2. By arranging the first groove 111 around the support groove 112 and accommodating the frame 2 inside the support groove 112, and placing the first magnetic element 4 inside the first groove 111 without exceeding the top surface of the first groove 111, the top surface (magnetic attraction part) of the first groove 111 is not lower than the top surface of the frame 2. At the same time, by utilizing the support groove 112 structure where the depth of the support groove 112 is not less than the thickness of the frame 2, it can be ensured that the frame 2 does not protrude from the surface of the top wall 11 when closed. This design not only avoids wear caused by the protrusion of the frame 2, but also helps to prevent the frame 2 from interfering with the magnetic attraction effect between the first magnetic element 4 and the external magnetic attraction surface, thereby maintaining stable adsorption performance.

[0061] In one implementation, reference Figure 1 and Figure 4 The support groove 112 is provided with a protrusion 114, which surrounds and forms a limiting groove 113. The shape of the limiting groove 113 matches the frame 2. When the frame 2 is in the closed state, the frame 2 is housed in the limiting groove 113. By setting the limiting groove 113 in the support groove 112, the left and right swaying of the frame 2 in the closed state can be effectively suppressed, thereby improving the structural stability.

[0062] In one implementation, such as Figure 1 and Figure 2 As shown, the first groove 111 is arranged along the edge of the top wall 11, forming a frame shape with an opening 41. The first magnetic element 4 is arranged corresponding to the shape of the first groove 111. The bracket groove 112 is partially located within the area enclosed by the first groove 111, and the other part extends to the opening 41 and penetrates the top wall 11 towards the edge of the top wall 11. By adopting a layout in which a part of the bracket groove 112 is located within the area enclosed by the first magnetic element 4, and the other part passes through the opening 41 and extends beyond the edge of the top wall 11, the usable length of the frame 2 can be significantly increased while minimizing the size of the base 1, optimizing the internal space allocation and contributing to the miniaturization and compactness of the overall structure of the electronic device bracket.

[0063] In one implementation, reference Figure 1The first magnetic component 4 is exposed on the top wall 11, and a first protective component 91 is provided on the side of the first magnetic component 4 away from the base 1. The second magnetic component 5 and the third magnetic component 6 are exposed on the bottom wall 12, and a second protective component 92 is provided on the side of the second magnetic component 5 away from the base 1, and a third protective component 93 is provided on the side of the third magnetic component 6 away from the base 1. The second protective component 92 and the third protective component 93 can be two separate parts or integrally formed. The fourth magnetic component 7 is provided on the frame 2 and exposed on the surface of the frame 2, and a fourth protective component 94 is provided on the side of the fourth magnetic component 7 away from the frame 2. The first protective component 91, the second protective component 92, the third protective component 93, and the fourth protective component 94 are all, for example, Mylar sheets, and completely enclose the first magnetic component 4, the second magnetic component 5, the third magnetic component 6, and the fourth magnetic component 7, respectively. This protective structure not only provides aesthetic protection for the magnetic components but also effectively prevents the surface of the magnetic components from being scratched or worn during daily use.

[0064] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the concept of this application and the contents of the specification and drawings of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. An electronic device bracket, characterized in that, It includes a base, a frame, a first magnetic component, and a second magnetic component; the base has a top wall and a bottom wall arranged opposite each other along its thickness direction, the top wall is provided with a magnetic attraction part, the first magnetic component is provided in the magnetic attraction part, and the second magnetic component is provided in the bottom wall; The frame is movably connected to the base and has an open state and a closed state. When the frame is in the open state, it supports the base. When the frame is in the closed state, it is stored in the top wall, and the top surface of the frame is not higher than the magnetic suction part.

2. The electronic device bracket according to claim 1, characterized in that, The magnetic attraction part forms a first groove, the top surface of the frame is not higher than the top surface of the first groove, and the first magnetic element is disposed in the first groove.

3. The electronic device bracket according to claim 2, characterized in that, The first groove is provided along the periphery of the top wall.

4. The electronic device bracket according to claim 3, characterized in that, The top wall is recessed with a support groove; the first groove is arranged circumferentially outward around the support groove, and / or the depth of the support groove is greater than or equal to the thickness of the frame.

5. The electronic device bracket according to claim 4, characterized in that, The bracket groove is provided with a protrusion, which surrounds and forms a limiting groove. The shape of the limiting groove matches the frame. When the bracket is in the closed state, the bracket is housed in the limiting groove.

6. The electronic device bracket according to claim 5, characterized in that, The first groove is arranged along the edge of the top wall to present a frame shape with an opening. The first magnetic element is arranged corresponding to the shape of the first groove. The bracket groove is located in the area enclosed by the first groove, and the other part extends to the opening and penetrates the top wall towards the edge of the top wall.

7. The electronic device bracket according to any one of claims 1 to 6, characterized in that, The magnetic attraction strength of the first magnetic component is less than that of the second magnetic component.

8. The electronic device bracket according to any one of claims 1 to 6, characterized in that, The bottom wall is provided with a second groove, and the second magnetic component is disposed in the second groove; the top wall is recessed with a support groove, and the second magnetic component includes a first magnet and a second magnet. The first magnet and the second magnet are connected end to end to form a ring structure. Along the thickness direction of the base, the first magnet is located directly below the support groove, and the second magnet is located below the first magnetic component. The thickness of the second magnet is greater than the thickness of the first magnet.

9. The electronic device bracket according to claim 8, characterized in that, The depth of the second groove corresponding to the first magnet portion is less than the depth of the second groove corresponding to the second magnet portion.

10. The electronic device bracket according to claim 8, characterized in that, The frame has a front end and a rear end that are arranged opposite each other along its length; the front end is rotatably connected to the base via a pivot, and the front end is located within the area enclosed by the second groove; when the frame is in a closed state, the rear end is located outside the area enclosed by the second groove on the top wall.

11. The electronic device bracket according to claim 10, characterized in that, The base is provided with a third magnetic component, and the tail end is provided with a fourth magnetic component. When the frame is in a closed state, the fourth magnetic component and the third magnetic component are magnetically attracted to each other.

12. The electronic device bracket according to claim 11, characterized in that, The third magnetic component is disposed on the bottom wall and is located outside the area enclosed by the second groove. The third magnetic component is also used for magnetic attraction with external electronic devices.