An electronic device accessory

By setting a rotatable bracket and driving component on the bracket, and using a trigger component to control the magnetic attraction force, the bracket is automatically unfolded, which solves the problem of the inconvenience of manually flipping and prying open the bracket in the prior art, and realizes convenient and stable use of the bracket.

CN224555666UActive Publication Date: 2026-07-24SHENZHEN BASEUS TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHENZHEN BASEUS TECH CO LTD
Filing Date
2025-08-15
Publication Date
2026-07-24

AI Technical Summary

Technical Problem

The existing support shell requires users to manually flip and pry it open to achieve support, which is inconvenient.

Method used

The system employs a rotatable bracket and a driving component. A triggering assembly drives the second magnetic component to move, making the magnetic attraction between the second magnetic component and the first magnetic component less than the driving force of the driving component, thereby automatically unfolding the bracket. The bracket is locked in the stored state by magnetic attraction.

Benefits of technology

It enables convenient operation and stable storage of the stand, reduces the risk of accidental opening, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the present application provides an electronic device accessory, a support is rotatably arranged on a shell to be switched between a storage state and a supporting state by rotation. A driving member is connected with the shell and the support respectively to drive the support to rotate relative to the shell, and a triggering assembly is movably arranged on the shell. The locking structure comprises a first magnetic attraction member and a second magnetic attraction member, the first magnetic attraction member is arranged on the support, the triggering assembly is drivingly connected with the second magnetic attraction member, the second magnetic attraction member is magnetically attracted to the first magnetic attraction member to lock the support in the storage state, and the magnetic attraction force between the second magnetic attraction member and the first magnetic attraction member is greater than the driving force of the driving member. The triggering assembly drives the second magnetic attraction member to move, so that the magnetic attraction force between the second magnetic attraction member and the first magnetic attraction member is less than the driving force of the driving member, and the driving member drives the support to rotate from the storage state to the supporting state. The electronic device accessory of the present application is convenient to operate.
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Description

[0001] Cross-references

[0002] This application is based on and claims priority to Chinese Patent Application No. 2025215758190, filed on July 25, 2025, entitled "An Accessory for an Equipment", the entire contents of which are incorporated herein by reference. Technical Field

[0003] This application relates to the field of equipment support technology, and in particular to an electronic device accessory. Background Technology

[0004] The shell structure of the bracket can be used to install electronic devices. By flipping the bracket, the bracket supports the shell structure, allowing the electronic devices to be supported at different angles on various planes.

[0005] In related technologies, the support frame of the bracket shell needs to be manually flipped and pried open by the user in order to support the shell structure and electronic equipment. The operation process is cumbersome and inconvenient for users. Utility Model Content

[0006] In view of this, the main objective of the embodiments of this application is to provide an easy-to-operate electronic device accessory.

[0007] To achieve the above objectives, the technical solution of this application embodiment is implemented as follows:

[0008] This application provides an electronic device accessory, including:

[0009] case;

[0010] A bracket, rotatably mounted on the housing, can be switched between a stowed state and a supported state by rotation;

[0011] A driving component, which is drivingly connected to both the housing and the bracket, for driving the bracket to rotate relative to the housing;

[0012] A triggering component, which is movably disposed on the housing;

[0013] The locking structure includes a first magnetic attractor and a second magnetic attractor. The first magnetic attractor is disposed on the bracket, and the second magnetic attractor is magnetically attracted to the first magnetic attractor to lock the bracket in the storage state. The magnetic attraction between the second magnetic attractor and the first magnetic attractor is greater than the driving force of the driving member.

[0014] The triggering component is driven to connect with the second magnetic component. The triggering component drives the second magnetic component to move so that the magnetic attraction between the second magnetic component and the first magnetic component is less than the driving force of the driving component. The driving component drives the bracket to rotate from the storage state to the support state.

[0015] In one embodiment, the first magnetic attractor and the second magnetic attractor are magnetically attracted to each other along a first direction;

[0016] The triggering component drives the second magnetic component to move along a second direction, so that the second magnetic component and the first magnetic component are misaligned along the second direction, so that the magnetic attraction force between the second magnetic component and the first magnetic component is less than the driving force of the driving component, and the second direction is perpendicular to the first direction; or,

[0017] The triggering component drives the second magnetic member to move along the first direction toward the side opposite to the first magnetic member, so that the magnetic attraction force between the second magnetic member and the first magnetic member is less than the driving force of the driving component.

[0018] In one embodiment, the electronic device accessory further includes a transmission assembly, the second magnetic member being connected to the transmission assembly; the trigger assembly is driven to the transmission assembly to drive the second magnetic member to move by driving the transmission assembly.

[0019] In one embodiment, the transmission assembly includes a connecting rod and a mounting plate. The mounting plate is movably disposed on the housing. The second magnetic attractor is disposed on the mounting plate. The connecting rod is movably connected to the triggering assembly and the mounting plate, respectively. The triggering assembly drives the connecting rod to move, thereby moving the mounting plate and the second magnetic attractor.

[0020] In one embodiment, the connecting rod is hinged to the housing, and one end of the connecting rod is rotatably connected to the trigger assembly, and the other end is rotatably connected to the mounting plate; and / or,

[0021] A portion of the mounting plate near the housing is recessed to form a mounting hole, and the second magnetic member is engaged in the mounting hole.

[0022] In one embodiment, the connecting rod is hinged to the housing;

[0023] The connecting rod has a first connecting portion at one end near the triggering component, and the triggering component has a second connecting portion. One of the first connecting portion and the second connecting portion is a first connecting hole, and the other is a first connecting post. The first connecting post passes through the first connecting hole, and the opening size of the first connecting hole is larger than the cross-sectional size of the first connecting post; and / or,

[0024] The connecting rod has a third connecting portion at one end near the mounting plate, and the mounting plate has a fourth connecting portion. One of the third connecting portion and the fourth connecting portion is a second connecting hole, and the other is a second connecting post. The second connecting post passes through the second connecting hole, and the opening size of the second connecting hole is larger than the cross-sectional size of the second connecting post.

[0025] In one embodiment, the triggering component includes a button and an elastic element, the button having a pressing end and a connecting end opposite to the pressing end, and the elastic element being connected to the connecting end and the housing respectively.

[0026] In one embodiment, the bracket has a first limiting portion at at least one end along the rotation axis, and the housing has a second limiting portion corresponding to the first limiting portion. When the bracket rotates from the stored state to the supported state, the first limiting portion and the second limiting portion abut against each other to restrict the bracket from rotating toward the side away from the housing.

[0027] In one embodiment, one of the first limiting part and the second limiting part is a limiting groove, and the other is a limiting post. The limiting post is movably disposed in the limiting groove. When the bracket rotates from the stored state to the supported state, the limiting post moves to abut against the groove wall of the limiting groove.

[0028] In one embodiment, the bracket is folded at least one end along the rotation axis to form a first abutment wall, a portion of the side of the housing protrudes to form a second abutment wall, the second abutment wall and the first abutment wall are spaced apart to form a gap space, the drive member is disposed in the gap space and abuts against the first abutment wall and the second abutment wall respectively.

[0029] In one embodiment, the driving element is a torsion spring, the torsion spring including a main body and a first pin and a second pin disposed on the main body, a portion of the housing protruding to form a mounting post, the main body being sleeved on the mounting post, the first pin abutting against a first abutting wall, and the second pin abutting against a second abutting wall; and / or,

[0030] A portion of the first abutment wall is recessed to form an abutment groove, and a portion of the drive member extends into the abutment groove and abuts against the groove wall.

[0031] In one embodiment, the housing includes a housing body and a side cover. A portion of the housing body near the support is recessed to form a rotating groove. One end of the support is rotatably connected to the housing body and has a rotating shaft. The rotating shaft is rotatably disposed in the rotating groove. At least one end of the rotating shaft has a fixing hole. The side cover is fixed to the housing body, and a portion of the side cover extends into the fixing hole.

[0032] In one embodiment, the driving element includes at least one of a torsion spring, a leaf spring, and a spring; and / or,

[0033] The electronic device accessory further includes a transmission assembly, the second magnetic element being connected to the transmission assembly; the trigger assembly is driven to the transmission assembly to drive the second magnetic element to move by driving the transmission assembly, the transmission assembly including at least one of a connecting rod, a transmission rope, and a gear structure.

[0034] In one embodiment, along a third direction, one end of the bracket has a rotating edge that is rotatably connected to the housing, and the other end of the bracket has a first supporting edge, and the electronic device accessory has a first supporting mode supported by the first supporting edge;

[0035] The bracket has second support edges on opposite sides along the fourth direction. The electronic device accessory has a second support mode supported by the second support edges. From one side of the first support edge to one side of the rotating edge, the two second support edges are inclined in a direction away from each other. The fourth direction is perpendicular to the third direction.

[0036] In one embodiment, the housing has a receiving cavity for accommodating an electronic device; a portion of the housing on the side opposite to the receiving cavity is recessed to form a mounting cavity, and the bracket is rotatably disposed within the mounting cavity;

[0037] In the retracted state, the outer surface of the bracket facing away from the receiving cavity is flush with the outer surface of the housing facing away from the receiving cavity; and / or,

[0038] The housing also includes a back plate located between the accommodating cavity and the bracket, the back plate having the mounting cavity, and the thickness of the back plate being less than or equal to 3 mm.

[0039] This application provides an electronic device accessory, including a housing, a bracket, a driving component, a triggering component, and a locking structure. The triggering component drives a second magnetic component to move, reducing the magnetic attraction between the second and first magnetic components to less than the driving force of the driving component. The driving component then drives the bracket to rotate from a stored state to a supported state. On one hand, the user can trigger the triggering component, causing it to move the second magnetic component, reducing the magnetic attraction between them to less than the driving force of the driving component. This allows the driving component to drive the bracket to rotate, switching it from a stored state to a supported state. This enables the bracket to automatically unfold by triggering the triggering component, eliminating the need for manual folding and prying, making operation more convenient. On the other hand, when the user does not trigger the triggering component, the second and first magnetic components are magnetically engaged, and the magnetic attraction between them is greater than the driving force of the driving component, locking the bracket in the stored state. This improves the stability of the bracket in the stored state and reduces the risk of accidental opening. Attached Figure Description

[0040] Figure 1 This is a schematic diagram of the structure of an electronic device accessory according to an embodiment of this application; the bracket in the figure is in a supporting state;

[0041] Figure 2 for Figure 1 A structural diagram of another state of electronic device components; the bracket in the diagram is in a stowed state.

[0042] Figure 3 for Figure 1 A structural schematic diagram of electronic device components from another perspective; the side cover is separated from the main body of the shell in the figure;

[0043] Figure 4 for Figure 3 A magnified view of a section at point A in the middle;

[0044] Figure 5 for Figure 2 A structural schematic diagram of electronic device components from another perspective; the side cover is separated from the main body of the shell in the figure;

[0045] Figure 6 for Figure 5 A magnified view of a section at point B in the middle;

[0046] Figure 7 for Figure 2 A structural schematic diagram of electronic device components from another perspective;

[0047] Figure 8 for Figure 7 A magnified view of a section at point C;

[0048] Figure 9 for Figure 7 EE-directed sectional view;

[0049] Figure 10 for Figure 9 A schematic diagram of the structure after the central support has been rotated to the supported position;

[0050] Figure 11 for Figure 3 A structural schematic diagram of electronic device components from another perspective;

[0051] Figure 12 for Figure 11 A magnified view of a section at point E in the middle;

[0052] Figure 13 for Figure 3 Schematic diagram of the middle side cover;

[0053] Figure 14 for Figure 1 Exploded view of electronic device components;

[0054] Figure 15 for Figure 14 Schematic diagram of the main body of the middle shell;

[0055] Figure 16 for Figure 14 A schematic diagram of the structure of the central support.

[0056] Explanation of reference numerals in the attached figures

[0057] 10. Shell; 10a. Receiving cavity; 10b. Mounting cavity; 11. Limiting post; 12. Second abutting wall; 12a. Spacer; 13. Mounting post; 14. Shell body; 14a. Rotating groove; 15. Side cover; 16. Back plate; 20. Bracket; 20a. Limiting groove; 21. First abutting wall; 21a. Abutting groove; 22. Rotating shaft; 22a. Fixing hole; 23. Rotating edge; 24. First supporting edge; 25. Second supporting edge; 30. Driving component; 31. Main body; 32. First pin; 33. Second pin; 40. Trigger assembly; 41. First connecting post; 42. Button; 421. Pressing end; 422. Connecting end; 43. Elastic component; 50. Locking structure; 51. First magnetic component; 52. Second magnetic component; 60. Transmission assembly; 61. Connecting rod; 61a. First connecting hole; 61b. Second connecting hole; 62. Mounting plate; 621. Second connecting post. Detailed Implementation

[0058] In this application, the orientation or positional relationship of "first direction" and "second direction" is based on the appendix. Figure 9 The orientation or positional relationships shown, the "third direction" and "fourth direction" orientation or positional relationships are based on the attached... Figure 2The orientation or positional relationship shown is for illustrative purposes only and is not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this application.

[0059] One embodiment of this application provides an electronic device accessory; please refer to [link / reference]. Figures 1 to 4 as well as Figure 14 The electronic device accessories include a housing 10, a bracket 20, a drive component 30, a trigger assembly 40, and a locking structure 50.

[0060] The bracket 20 is rotatably mounted on the housing 10 so as to switch between a stowed state and a supported state by rotation.

[0061] The drive unit 30 is driven to connect to the housing 10 and the bracket 20 respectively, so as to drive the bracket 20 to rotate relative to the housing 10.

[0062] The trigger component 40 is movably disposed on the housing 10.

[0063] Please refer to 7 to Figure 10 The locking structure 50 includes a first magnetic member 51 and a second magnetic member 52. The first magnetic member 51 is disposed on the bracket 20. The second magnetic member 52 magnetically engages with the first magnetic member 51 to lock the bracket 20 in a stored state. The magnetic attraction between the second magnetic member 52 and the first magnetic member 51 is greater than the driving force of the driving member 30.

[0064] The trigger component 40 is driven to connect with the second magnetic member 52. The trigger component 40 drives the second magnetic member 52 to move so that the magnetic attraction force between the second magnetic member 52 and the first magnetic member 51 is less than the driving force of the drive member 30. The drive member 30 drives the bracket 20 to rotate from the storage state to the support state.

[0065] Specifically, electronic device accessories can be accessory structures for any type of electronic device. For example, a phone stand or case. Of course, depending on the specific situation, it can also be an accessory structure for a tablet, power bank, or other electronic device.

[0066] In fact, the housing 10 is used to install electronic equipment. By rotating the bracket 20, the bracket 20 is extended to a supporting state, thereby supporting the housing 10 and the electronic equipment.

[0067] The stowed state of the bracket 20 is when it is stowed onto the housing 10, at which point the angle between the bracket 20 and the housing 10 is at its minimum. For example, the angle between the bracket 20 and the housing 10 is 0°.

[0068] The support state of the bracket 20 is when it is rotated to the support position to support the housing 10. At this state, the angle between the bracket 20 and the housing 10 is larger than the angle in the folded-up state. For example, the angle between the bracket 20 and the housing 10 is greater than or equal to 30° and less than or equal to 40°. This allows the screen of the electronic device to be positioned at an angle of 60° to 70° relative to the desktop, providing the user with a better viewing angle.

[0069] The bracket 20 is rotatable relative to the housing 10. By rotating, the bracket 20 can switch between a storage state and a support state.

[0070] The driving element 30 is a structure that can provide driving force for the rotation of the support 20. For example, the driving element 30 is an elastic element that can undergo elastic deformation, and its specific type can be set according to the actual situation.

[0071] For example, the drive element 30 includes at least one of a torsion spring, a spring sheet, and a spring. That is, the drive element 30 can be any one of a torsion spring, a spring sheet, and a spring, or a combination of the above structures.

[0072] Of course, the driving component 30 can also adopt other structures that can provide driving force, such as a driving structure that uses the repulsive force of the magnetic attraction component to achieve driving.

[0073] The driving component 30 is drivenly connected to both the housing 10 and the bracket 20. When the bracket 20 is in its retracted state, the driving component 30 exerts a driving force on the bracket 20. However, its driving force is less than the locking effect of the locking structure 50 on the bracket 20, and therefore it cannot drive the bracket 20 to rotate when the locking structure 50 locks the bracket 20. The bracket 20 can only rotate after the locking structure 50 is unlocked.

[0074] The trigger component 40 allows the user to apply force to reduce or release the locking effect of the locking structure 50 on the bracket 20, thereby making the magnetic attraction between the second magnetic member 52 and the first magnetic member 51 less than the driving force of the driving member 50, so that the driving member 50 can drive the bracket 20 to rotate. For example, the trigger component 40 can be a pressable button structure, a pullable pull trigger, a rotatable rotation trigger, or a toggle trigger.

[0075] For example, the trigger component 40 is a button structure provided on the housing 10. In fact, the trigger component 40 can be pressed by the user so that the trigger component 40 can move relative to the housing 10.

[0076] The specific structure of trigger component 40 can be set according to the actual situation.

[0077] For example, please see Figures 7 to 10The trigger component 40 includes a button 42 and an elastic element 43. The button 42 has a pressing end 421 and a connecting end 422 away from the pressing end 421. The elastic element 43 is connected to the connecting end 422 and the housing 10 respectively. Thus, when the user presses the button 42, the button 42 can drive the second magnetic member 52 to move, so that the second magnetic member 52 and the first magnetic member 51 cannot be magnetically attracted together, thereby causing the bracket 20 to unfold. The elastic element 43 undergoes elastic deformation and stores elastic force. When the user releases the press of the button 42, the button 42 resets under the action of the elastic force of the elastic element 43, and the second magnetic member 52 can also reset to its initial position, so that when the bracket 20 switches back to the retracted state, it can magnetically engage with the first magnetic member 51.

[0078] The pressing end 421 is the end of the button 42 that the user can press. The connecting end 422 is the end of the button 42 that is connected to the housing 10 via the elastic element 43. By providing the elastic element 43, it is easy to trigger the component 40 to reset.

[0079] The specific structural form of the elastic element 43 is not limited. For example, the elastic element 43 can be a spring, a sheet, or a spring arm (such as a serpentine spring arm).

[0080] The pressing travel of button 42 can be set according to actual conditions. For example, the pressing travel of button 42 is greater than or equal to 1mm and less than or equal to 2mm.

[0081] The locking structure 50 is designed to improve the connection stability between the bracket 20 and the housing 10. Through the cooperation of the first magnetic member 51 and the second magnetic member 52, the bracket 20 can be prevented from being accidentally opened in the stowed state, thus improving its stability in this state.

[0082] When the user triggers the trigger component 40 to make the trigger component 40 active, the second magnetic suction member 52 can move, thereby reducing the magnetic attraction between it and the first magnetic suction member 51, so that the drive member 30 can drive the bracket 20 to rotate to the support state.

[0083] The first magnetic component 51 is mounted on the bracket 20 and can move as the bracket 20 rotates. The mounting method of the first magnetic component 51 on the bracket 20 is not limited.

[0084] For example, a portion of the bracket 20 is recessed to form a recessed area, and the first magnetic member 51 is engaged in the recessed area.

[0085] It should be noted that the trigger component 40 and the second magnetic member 52 can be directly connected for driving, or they can be driven through a transmission component 60.

[0086] For example, see 8 and Figure 9The electronic device accessories also include a transmission assembly 60, with the second magnetic member 52 connected to the transmission assembly 60; a trigger assembly 40 is driven to the transmission assembly 60, so as to drive the second magnetic member 52 to move by driving the transmission assembly 60. Thus, by connecting the second magnetic member 52 and the trigger assembly 40 through the transmission assembly 60, the driving force of the trigger assembly 40 can be easily transmitted to the second magnetic member 52, thereby driving the second magnetic member 52 to move.

[0087] It should be noted that the transmission assembly 60 is a structure capable of transmitting the driving force of the trigger assembly 40 to the second magnetic attractor 52, and its specific type can be set according to the actual situation. For example, the transmission assembly 60 includes at least one of a connecting rod 61, a transmission rope, and a gear structure. That is to say, the transmission assembly 60 can be a connecting rod 61, a transmission rope, or a gear structure, or it can be a combination of the above structures or other structures.

[0088] The second magnetic attractor 52 is fixedly connected to the transmission assembly 60. The two can be directly connected or indirectly connected through other structures.

[0089] The second magnetic attractor 52 and the first magnetic attractor 51 are magnetic structures that can be attracted together by magnetic attraction, such as magnets. The second magnetic attractor 52 and the first magnetic attractor 51 are magnetically attracted to each other. They can be directly attached together by magnetic attraction, or they can be separated by other structures (such as a part of the housing 10), but they can still be attracted together by magnetic attraction to lock the bracket 20.

[0090] The widths of the first magnetic 51 and the second magnetic 52 can be the same or different. Their specific values ​​can be set according to the actual situation. For example, the widths of the first magnetic 51 and the second magnetic 52 are the same, and the widths are greater than or equal to 1 mm and less than or equal to 2 mm.

[0091] The trigger component 40 drives the second magnetic member 52 to move, so that the magnetic attraction between the second magnetic member 52 and the first magnetic member 51 is less than the driving force of the driving component 30. It can be understood that under the drive of the trigger component 40, the magnetic connection between the second magnetic member 52 and the first magnetic member 51 can be directly disconnected, or the magnetic attraction between them can be weakened, thus causing the magnetic attraction between them to disappear under the drive of the driving component 30. The specific setting can be configured according to the actual situation.

[0092] For example, see 9 and Figure 10The first magnetic attractor 51 and the second magnetic attractor 52 are magnetically attracted together along a first direction. The trigger assembly 40 drives the second magnetic attractor 52 to move along a second direction, so that the second magnetic attractor 52 and the first magnetic attractor 51 are misaligned along the second direction, so that the magnetic attraction force between the second magnetic attractor 52 and the first magnetic attractor 51 is less than the driving force of the drive member 30, and the second direction is perpendicular to the first direction. Thus, by misaligning the second magnetic attractor 52 and the first magnetic attractor 51, the magnetic connection between them can be broken.

[0093] Specifically, the first magnetic attractor 51 and the second magnetic attractor 52 are arranged along the first direction and are magnetically connected together along the first direction.

[0094] By triggering the trigger component 40, the user can move the second magnetic component 52 along the second direction. The second magnetic component 52 is offset from the first magnetic component 51 along the second direction, thereby reducing the magnetic attraction between the second magnetic component 52 and the first magnetic component 51.

[0095] For example, the first magnetic clasp 51 and the second magnetic clasp 52 are magnetically attracted to each other along a first direction. The trigger component 40 drives the second magnetic clasp 52 to move away from the first magnetic clasp 51 along the first direction, so that the magnetic attraction between the second magnetic clasp 52 and the first magnetic clasp 51 is less than the driving force of the drive component 30. In other words, by triggering the trigger component 40, the user can move the second magnetic clasp 52 away from the first magnetic clasp 51 along the first direction, thereby weakening or eliminating the magnetic attraction between them.

[0096] In the electronic device accessory of this application embodiment, the trigger component 40 drives the second magnetic member 52 to move, so that the magnetic attraction between the second magnetic member 52 and the first magnetic member 51 is less than the driving force of the driving member 30. The driving member 30 then drives the bracket 20 to rotate from the storage state to the support state. On one hand, the user can trigger the trigger component 40, causing the trigger component 40 to move the second magnetic member 52, reducing the magnetic attraction between the second magnetic member 52 and the first magnetic member 51 to less than the driving force of the driving member 30. This allows the driving member 30 to drive the bracket 20 to rotate, switching from the storage state to the support state. Thus, the bracket 20 can be automatically unfolded by triggering the trigger component 40, eliminating the need for the user to manually fold and pry open the bracket 20, making user operation more convenient. On the other hand, when the user does not trigger the trigger component 40, since the second magnetic member 52 and the first magnetic member 51 are magnetically engaged, and the magnetic attraction between them is greater than the driving force of the driving member 30, the bracket 20 can be locked in the storage state. This improves the stability of the bracket 20 in its stored state and reduces the risk of the bracket 20 being accidentally opened.

[0097] In one embodiment, please refer to Figure 7 and Figure 8The transmission assembly 60 includes a connecting rod 61 and a mounting plate 62. The mounting plate 62 is movably mounted on the housing 10. The second magnetic attractor 52 is mounted on the mounting plate 62. The connecting rod 61 is movably connected to both the trigger assembly 40 and the mounting plate 62. The trigger assembly 40 drives the connecting rod 61 to move, thereby moving the mounting plate 62 and the second magnetic attractor 52. This allows the connecting rod 61 to effectively transmit the driving force of the trigger assembly 40 to the mounting plate 62, thus effectively moving the second magnetic attractor 52.

[0098] Mounting plate 62 is used for mounting the second magnetic component 52 so as to drive the second magnetic component 52 to move.

[0099] The specific installation method of the second magnetic component 52 on the mounting plate 62 can be set according to the actual situation.

[0100] For example, referring to 9, a portion of the mounting plate 62 near the housing 10 is recessed to form a mounting hole, in which the second magnetic member 52 is engaged. Thus, by forming the mounting hole through the recess, the connection stability of the second magnetic member 52 can be improved, facilitating the movement of the second magnetic member 52 by the mounting plate 62.

[0101] Understandably, the number of mounting holes corresponds to the number of second magnetic components 52. Both can be provided as a single unit or multiple units.

[0102] It should be noted that both the connecting rod 61 and the mounting plate 62 are movable relative to the housing 10. The specific mounting method of the connecting rod 61 and the mounting plate 62 on the housing 10 is not limited.

[0103] For example, the housing 10 has a receiving cavity 10a for accommodating an electronic device, and the bracket 20 is disposed on the side of the housing 10 opposite to the receiving cavity 10a. A portion of the cavity wall of the receiving cavity 10a is recessed to form a guide groove, and the mounting plate 62 is movably disposed in the guide groove. By forming the guide groove, the mounting plate 62 can be better guided to move relative to the housing 10 in a predetermined direction, so as to drive the second magnetic member 52 to move in the predetermined direction.

[0104] For example, the housing 10 has a receiving cavity 10a for accommodating an electronic device, and the bracket 20 is disposed on the side of the housing 10 away from the receiving cavity 10a. A portion of the cavity wall of the receiving cavity 10a is recessed to form a receiving groove, in which the connecting rod 61 is movably disposed. By forming the receiving groove, the range of motion of the connecting rod 61 can be limited, while the space occupied by the connecting rod 61 within the receiving cavity 10a can be reduced.

[0105] It should be noted that the connection method between the connecting rod 61 and the mounting plate 62 and the trigger assembly 40 is not limited.

[0106] For example, see 7 and Figure 8The connecting rod 61 is hinged to the housing 10, with one end rotatably connected to the trigger assembly 40 and the other end rotatably connected to the mounting plate 62. Specifically, the middle region of the connecting rod 61 is hinged to the housing 10, making both ends of the connecting rod 61 rotatable relative to the housing 10. Simultaneously, by rotatably connecting the opposite ends of the connecting rod 61 to the trigger assembly 40 and the mounting plate 62 respectively, the connecting rod 61 can drive the mounting plate 62 to move through rotation, achieving a better force transmission effect.

[0107] For example, please refer to 7 and Figure 8 The connecting rod 61 is hinged to the housing 10. The end of the connecting rod 61 near the trigger assembly 40 has a first connecting portion, and the trigger assembly 40 has a second connecting portion. One of the first and second connecting portions is a first connecting hole 61a, and the other is a first connecting post 41. The first connecting post 41 passes through the first connecting hole 61a, and the opening size of the first connecting hole 61a is larger than the cross-sectional size of the first connecting post 41. This prevents the rotating connection between the connecting rod 61 and the trigger assembly 40 from easily jamming, and allows the connecting rod 61 to rotate relative to the trigger assembly 40.

[0108] Specifically, the first connecting part can be a first connecting hole 61a, and the second connecting part can be a first connecting post 41 (i.e., the connecting rod 61 has a first connecting hole 61a, and the trigger assembly 40 has a first connecting post 41). Alternatively, the second connecting part can be a first connecting hole 61a, and the first connecting part can be a first connecting post 41 (i.e., the trigger assembly 40 has a first connecting hole 61a, and the connecting rod 61 has a first connecting post 41).

[0109] By making the opening size of the first connecting hole 61a larger, it is easier for the first connecting post 41 and the first connecting hole 61a to move relative to each other, which can reduce the risk of jamming.

[0110] The specific shape of the first connecting hole 61a can be set according to the actual situation. For example, the first connecting hole 61a can be an oblong hole. Of course, the first connecting hole 61a can also be a round hole or other types of holes.

[0111] In one embodiment, please refer to 7 and Figure 8 The connecting rod 61 is hinged to the housing 10. The end of the connecting rod 61 near the mounting plate 62 has a third connecting portion, and the mounting plate 62 has a fourth connecting portion. One of the third and fourth connecting portions is a second connecting hole 61b, and the other is a second connecting post 621. The second connecting post 621 passes through the second connecting hole 61b, and the opening size of the second connecting hole 61b is larger than the cross-sectional size of the second connecting post 621. This prevents the rotating connection between the connecting rod 61 and the mounting plate 62 from easily jamming, allowing the connecting rod 61 to rotate relative to the mounting plate 62.

[0112] Specifically, the third connecting part can be the second connecting hole 61b, and the fourth connecting part can be the second connecting post 621 (i.e., the connecting rod 61 has the second connecting hole 61b, and the mounting plate 62 has the second connecting post 621). Alternatively, the fourth connecting part can be the second connecting hole 61b, and the third connecting part can be the second connecting post 621 (i.e., the mounting plate 62 has the second connecting hole 61b, and the connecting rod 61 has the second connecting post 621).

[0113] By making the opening size of the second connecting hole 61b larger, it is easier for the second connecting post 621 and the second connecting hole 61b to move relative to each other, which can reduce the risk of jamming.

[0114] The specific shape of the second connecting hole 61b can be set according to the actual situation. For example, the second connecting hole 61b can be an oblong hole. Of course, the second connecting hole 61b can also be a round hole or other types of holes.

[0115] In one embodiment, please refer to Figures 3 to 6 The bracket 20 has a first limiting portion at at least one end along the rotation axis, and the housing 10 has a second limiting portion corresponding to the first limiting portion. When the bracket 20 rotates from the stored state to the supported state, the first limiting portion and the second limiting portion abut against each other to restrict the bracket 20 from rotating toward the side away from the housing 10. This improves the stability of the bracket 20 in the supported state and prevents the bracket 20 from rotating too much.

[0116] Specifically, the rotation axis of the bracket 20 is the axis on which the bracket 20 rotates relative to the housing 10. Depending on the actual situation, the bracket 20 may have a first limiting part only at one end along the rotation axis, while the housing 10 has a second limiting part formed on the corresponding side. Of course, the bracket 20 may also have a first limiting part at both ends along the rotation axis, while the housing 10 has a second limiting part formed on both sides.

[0117] When the bracket 20 is in the supported state, the first limiting part and the second limiting part are in abutting state, and the abutting of the two can satisfy the requirement to limit the bracket 20 from continuing to rotate toward the side away from the housing 10. Thus, it can prevent the bracket 20 from rotating too much.

[0118] When the bracket 20 is in the retracted state, the specific connection method between the first limiting part and the second limiting part is not limited, as long as it does not affect the rotation of the bracket 20 toward the side away from the housing 10.

[0119] In one specific embodiment, when the bracket 20 is in a supported state, the first limiting part and the second limiting part are in an abutting state, and the included angle between the bracket 20 and the housing 10 is 35°.

[0120] The specific structural forms of the first limiting part and the second limiting part can be set according to the actual situation.

[0121] For example, please see Figures 3 to 6 One of the first and second limiting parts is a limiting groove 20a, and the other is a limiting post 11. The limiting post 11 is movably disposed in the limiting groove 20a. When the bracket 20 rotates from the stored state to the supported state, the limiting post 11 moves to abut against the groove wall of the limiting groove 20a. Thus, by the limiting post 11 passing through the limiting groove 20a and abutting against it, the problem of excessive rotation angle of the bracket 20 can be prevented.

[0122] Specifically, the first limiting part can be a limiting groove 20a, and the second limiting part can be a limiting post 11. Alternatively, the first limiting part can be a limiting post 11, and the second limiting part can be a limiting groove 20a.

[0123] It is understood that the limiting groove 20a has a first groove wall and a second groove wall at its two opposite ends along the extending direction. When the bracket 20 is in the supported state, the limiting post 11 abuts against the first groove wall and is spaced apart from the second groove wall. When the bracket 20 is reset from the supported state to the retracted state, the limiting post 11 separates from the first groove wall, but the limiting post 11 and the second groove wall may abut against each other or remain spaced apart.

[0124] The specific shape of the limiting groove 20a can be set as needed.

[0125] For example, the limiting groove 20a is an arc-shaped groove that extends along the rotation direction of the bracket 20.

[0126] In one embodiment, please refer to Figure 4 and Figure 6 The bracket 20 is folded at least one end along the rotation axis to form a first abutment wall 21. A portion of the side of the housing 10 protrudes to form a second abutment wall 12. The second abutment wall 12 and the first abutment wall 21 are spaced apart to form a gap space 12a. The driving member 30 is disposed at the gap space 12a and abuts against the first abutment wall 21 and the second abutment wall 12 respectively. This facilitates the driving member 30 to drive the bracket 20 to rotate.

[0127] Specifically, the bracket 20 may have a first abutting wall 21 formed by folding at only one end along the rotation axis, or the bracket 20 may have a first abutting wall 21 formed by folding at both opposite ends along the rotation axis.

[0128] The first abutting wall 21 can be folded over to fit against the side of the housing 10, or it can be spaced apart from each other.

[0129] Meanwhile, a second abutment wall 12 protrudes from the side of the housing 10. The second abutment wall 12 and the first abutment wall 21 are located on the same side of the electronic device accessory and are spaced apart. The space 12a between them is used to install the drive component 30.

[0130] When the driving element 30 is an elastic element, and the bracket 20 is in the retracted state, the second abutment wall 12 and the first abutment wall 21 respectively abut against the driving element 30, so that it is in an elastically compressed state, and the driving element 30 has elastic force. When the user triggers the trigger component 40, the locking structure 50 releases the locking of the bracket 20, and the bracket 20 rotates to the supporting state under the action of the elastic force of the driving element 30.

[0131] It should be noted that the specific settings of the driver 30 can be configured according to the actual situation.

[0132] For example, please see Figure 4 The driving component 30 is a torsion spring, which includes a main body 31 and a first pin 32 and a second pin 33 disposed on the main body 31. A portion of the housing 10 protrudes to form a mounting post 13. The main body 31 is sleeved on the mounting post 13. The first pin 32 abuts against the first abutment wall 21, and the second pin 33 abuts against the second abutment wall 12. This improves the installation stability of the driving component 30 and facilitates the driving component 30 in driving the bracket 20 to rotate to the supported state.

[0133] The first pin 32 is attached to and abuts against the first abutting wall 21, while the second pin 33 is attached to and abuts against the second abutting wall 12. This allows the torsion spring to effectively apply its elastic force to the bracket 20, thereby facilitating its rotation.

[0134] The main body 31 is hollow and is fitted onto the mounting post 13, which can improve the installation stability of the torsion spring and prevent the torsion spring from falling off.

[0135] For example, please refer to Figure 11 and Figure 12 A portion of the first abutment wall 21 is recessed to form an abutment groove 21a, and a portion of the drive member 30 extends into the abutment groove 21a and abuts against the groove wall. Thus, by forming the abutment groove 21a, the abutment effect between the drive member 30 and the bracket 20 can be improved, preventing misalignment of the drive member 30. For example, the first pin 32 extends into the abutment groove 21a to abut against the groove wall.

[0136] Of course, in some embodiments, the second abutment wall 12 can also be recessed to form an abutment groove 21a, allowing a portion of the drive member 30 to extend into it. This can improve the abutment effect between the drive member 30 and the second abutment wall 12.

[0137] In one embodiment, please refer to Figure 13 , Figure 15 and Figure 16The housing 10 includes a main body 14 and a side cover 15. A portion of the main body 14 near the support 20 is recessed to form a rotation groove 14a. One end of the support 20 is rotatably connected to the main body 14 and has a rotation shaft 22. The rotation shaft 22 is rotatably disposed in the rotation groove 14a, and at least one end of the rotation shaft 22 has a fixing hole 22a. The side cover 15 is fixed to the main body 14, and a portion of the side cover 15 extends into the fixing hole 22a. This improves the stability of the support 20's rotation.

[0138] Specifically, at the rotatable connection between the shell body 14 and the bracket 20, the shell body 14 has a recessed rotatable groove 14a. The rotatable groove 14a is used to install the rotatable shaft 22 of the bracket 20, thereby facilitating the guidance of the rotatable shaft 22 to rotate.

[0139] The rotating shaft 22 may have a fixing hole 22a formed only at one end along the extension direction, or it may have fixing holes 22a formed at both opposite ends along the extension direction. The ends of the fixing holes 22a are open to allow a portion of the side cover 15 to extend into them.

[0140] The number of side covers 15 corresponds to the number of fixing holes 22a. On the one hand, the side covers 15 are fixedly connected to the shell body 14, and on the other hand, the side covers 15 extend into the fixing holes 22a through a portion of their area, which can serve to fix the bracket 20 without affecting the rotation of the bracket 20.

[0141] It should be noted that the side cover 15 and the shell body 14 are detachably connected, and the specific connection method is not limited.

[0142] For example, a portion of the side cover 15 protrudes to form a fixing post, and a portion of the housing 10 is recessed to form a recessed hole, into which the fixing post is installed. This facilitates the assembly and disassembly of the side cover 15.

[0143] In one embodiment, please refer to Figure 2 and Figure 16 In the third direction, one end of the bracket 20 has a rotating edge 23 that is rotatably connected to the housing 10, and the other end of the bracket 20 has a first support edge 24. The electronic device accessory has a first support mode supported by the first support edge 24.

[0144] The bracket 20 has second support edges 25 on opposite sides along the fourth direction. The electronic device accessory has a second support mode supported by the second support edges 25. From one side of the first support edge 24 to one side of the rotating edge 23, the two second support edges 25 are inclined in a direction away from each other, and the fourth direction is perpendicular to the third direction. Thus, both lateral and vertical support of the electronic device accessory can be achieved, allowing the electronic device to be placed horizontally or vertically, meeting the usage needs in various situations.

[0145] Specifically, when the bracket 20 rotates to the support state around the rotating edge 23, the electronic device accessories can be supported on a plane (such as a desktop) by the first support edge 24 and one side of the housing 10, that is, in the first support mode, thereby supporting the electronic device.

[0146] When the bracket 20 rotates to the supported state around the rotating edge 23, the electronic device accessories can also be supported on a flat surface (such as a desktop) by the second supporting edge 25 and the other side of the housing 10, that is, in the second support mode, thereby supporting the electronic device.

[0147] It should be noted that the two second support edges 25 are inclined in a direction away from each other. That is to say, the two second support edges 25 of the bracket 20 are not parallel to each other, but inclined to each other. Moreover, they are inclined in a direction away from each other along the side closer to the rotating edge 23.

[0148] In one embodiment, please refer to Figures 5 to 7 The housing 10 has a receiving cavity 10a for accommodating an electronic device; a portion of the housing 10 on the side opposite to the receiving cavity 10a is recessed to form a mounting cavity 10b, and the bracket 20 is rotatably disposed within the mounting cavity 10b.

[0149] In the stowed state, the outer surface of the bracket 20 on the side opposite to the receiving cavity 10a is flush with the outer surface of the housing 10 on the side opposite to the receiving cavity 10a.

[0150] In other words, when stored, the bracket 20 is housed in the mounting cavity 10b, and the outer surface of the bracket 20 is relatively flat with the outer surface of the housing 10. As a result, the side of the electronic device accessories away from the housing cavity 10a is less prone to accumulating dirt and grime, and has a higher aesthetic appeal and better performance.

[0151] In one embodiment, please refer to Figures 5 to 7 The housing 10 has a receiving cavity 10a for accommodating electronic devices; a portion of the housing 10 on the side opposite to the receiving cavity 10a is recessed to form a mounting cavity 10b, and a bracket 20 is rotatably disposed within the mounting cavity 10b. The housing 10 also includes a back plate 16 located between the receiving cavity 10a and the bracket 20, the back plate 16 having the mounting cavity 10b, and the thickness of the back plate 16 being less than or equal to 3 mm. This allows for a thinner and lighter electronic device component.

[0152] In one embodiment, a button opening communicating with the receiving cavity 10a is formed on the side of the housing 10, and the trigger component 40 is disposed at the button opening and extends into the receiving cavity 10a. This allows the user to easily trigger the trigger component 40 from the side to unlock the bracket 20.

[0153] In one embodiment, the bottom edge of the housing 10 has a button opening communicating with the receiving cavity 10a, and the trigger component 40 is disposed at the button opening and extends into the receiving cavity 10a. Thus, when the user places the electronic device accessory on the desktop, the stand 20 can be unlocked simply by touching the bottom of the electronic device accessory to the desktop.

[0154] In the description of this application, the references to terms such as "in one embodiment," "in some embodiments," "in a specific embodiment," or "exemplary," etc., refer to a specific feature, structure, material, or characteristic described in connection with that embodiment or example, which is included in at least one embodiment or example of the embodiments of this application. In this application, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Furthermore, without contradiction, those skilled in the art can combine the different embodiments or examples described in this application, as well as the features of the different embodiments or examples.

[0155] The above description is merely a preferred embodiment of this application and is not intended to limit the application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application are included within the scope of protection of this application.

Claims

1. An electronic device accessory, characterized in that, include: case; A bracket, rotatably mounted on the housing, can be switched between a stowed state and a supported state by rotation; A driving component, which is drivingly connected to both the housing and the bracket, for driving the bracket to rotate relative to the housing; A triggering component, which is movably disposed on the housing; The locking structure includes a first magnetic attractor and a second magnetic attractor. The first magnetic attractor is disposed on the bracket, and the second magnetic attractor is magnetically attracted to the first magnetic attractor to lock the bracket in the storage state. The magnetic attraction between the second magnetic attractor and the first magnetic attractor is greater than the driving force of the driving member. The triggering component is driven to connect with the second magnetic component. The triggering component drives the second magnetic component to move so that the magnetic attraction between the second magnetic component and the first magnetic component is less than the driving force of the driving component. The driving component drives the bracket to rotate from the storage state to the support state.

2. The electronic device accessory according to claim 1, characterized in that, The first magnetic attractor and the second magnetic attractor are magnetically attracted to each other along the first direction; The triggering component drives the second magnetic component to move along a second direction, so that the second magnetic component and the first magnetic component are misaligned along the second direction, so that the magnetic attraction force between the second magnetic component and the first magnetic component is less than the driving force of the driving component, and the second direction is perpendicular to the first direction; or, The triggering component drives the second magnetic member to move along the first direction toward the side opposite to the first magnetic member, so that the magnetic attraction force between the second magnetic member and the first magnetic member is less than the driving force of the driving component.

3. The electronic device accessory according to claim 1 or 2, characterized in that, The electronic device accessory also includes a transmission assembly, the second magnetic element being connected to the transmission assembly; the trigger assembly is driven to the transmission assembly to drive the second magnetic element to move by driving the transmission assembly.

4. The electronic device accessory according to claim 3, characterized in that, The transmission assembly includes a connecting rod and a mounting plate. The mounting plate is movably disposed on the housing. The second magnetic attractor is disposed on the mounting plate. The connecting rod is movably connected to the triggering assembly and the mounting plate. The triggering assembly drives the connecting rod to move, thereby moving the mounting plate and the second magnetic attractor.

5. The electronic device accessory according to claim 4, characterized in that, The connecting rod is hinged to the housing, and one end of the connecting rod is rotatably connected to the trigger assembly, and the other end is rotatably connected to the mounting plate; and / or, A portion of the mounting plate near the housing is recessed to form a mounting hole, and the second magnetic member is engaged in the mounting hole.

6. The electronic device accessory according to claim 4, characterized in that, The connecting rod is hinged to the housing; The connecting rod has a first connecting portion at one end near the triggering component, and the triggering component has a second connecting portion. One of the first connecting portion and the second connecting portion is a first connecting hole, and the other is a first connecting post. The first connecting post passes through the first connecting hole, and the opening size of the first connecting hole is larger than the cross-sectional size of the first connecting post; and / or, The connecting rod has a third connecting portion at one end near the mounting plate, and the mounting plate has a fourth connecting portion. One of the third connecting portion and the fourth connecting portion is a second connecting hole, and the other is a second connecting post. The second connecting post passes through the second connecting hole, and the opening size of the second connecting hole is larger than the cross-sectional size of the second connecting post.

7. The electronic device accessory according to claim 1 or 2, characterized in that, The triggering component includes a button and an elastic element. The button has a pressing end and a connecting end opposite to the pressing end. The elastic element is connected to the connecting end and the housing, respectively.

8. The electronic device accessory according to claim 1 or 2, characterized in that, The bracket has a first limiting portion at at least one end along the rotation axis, and the housing has a second limiting portion corresponding to the first limiting portion. When the bracket rotates from the stored state to the supported state, the first limiting portion and the second limiting portion abut against each other to restrict the bracket from rotating toward the side away from the housing.

9. The electronic device accessory according to claim 8, characterized in that, One of the first limiting part and the second limiting part is a limiting groove, and the other is a limiting post. The limiting post is movably disposed in the limiting groove. When the bracket rotates from the storage state to the supporting state, the limiting post moves to abut against the groove wall of the limiting groove.

10. The electronic device accessory according to claim 1 or 2, characterized in that, The bracket is folded at least one end along the rotation axis to form a first abutment wall, and a portion of the side of the housing protrudes to form a second abutment wall. The second abutment wall and the first abutment wall are spaced apart to form a gap space. The drive member is disposed in the gap space and abuts against the first abutment wall and the second abutment wall respectively.

11. The electronic device accessory according to claim 10, characterized in that, The driving component is a torsion spring, which includes a main body and a first pin and a second pin disposed on the main body. A portion of the housing protrudes to form a mounting post, and the main body is sleeved on the mounting post. The first pin abuts against the first abutment wall, and the second pin abuts against the second abutment wall; and / or, A portion of the first abutment wall is recessed to form an abutment groove, and a portion of the drive member extends into the abutment groove and abuts against the groove wall.

12. The electronic device accessory according to claim 1 or 2, characterized in that, The housing includes a main body and a side cover. A portion of the main body near the support is recessed to form a rotating groove. One end of the support is rotatably connected to the main body and has a rotating shaft. The rotating shaft is rotatably disposed in the rotating groove. At least one end of the rotating shaft has a fixing hole. The side cover is fixed to the main body, and a portion of the side cover extends into the fixing hole.

13. The electronic device accessory according to claim 1 or 2, characterized in that, The driving component includes at least one of a torsion spring, a leaf spring, and a spring; and / or, The electronic device accessory further includes a transmission assembly, the second magnetic element being connected to the transmission assembly; the trigger assembly is driven to the transmission assembly to drive the second magnetic element to move by driving the transmission assembly, the transmission assembly including at least one of a connecting rod, a transmission rope, and a gear structure.

14. The electronic device accessory according to claim 1 or 2, characterized in that, Along a third direction, one end of the bracket has a rotating edge that is rotatably connected to the housing, and the other end of the bracket has a first supporting edge. The electronic device accessory has a first supporting mode supported by the first supporting edge. The bracket has second support edges on opposite sides along the fourth direction. The electronic device accessory has a second support mode supported by the second support edges. From one side of the first support edge to one side of the rotating edge, the two second support edges are inclined in a direction away from each other. The fourth direction is perpendicular to the third direction.

15. The electronic device accessory according to claim 1 or 2, characterized in that, The housing has a receiving cavity for accommodating an electronic device; a portion of the housing on the side opposite to the receiving cavity is recessed to form a mounting cavity, and the bracket is rotatably disposed within the mounting cavity; In the retracted state, the outer surface of the bracket facing away from the receiving cavity is flush with the outer surface of the housing facing away from the receiving cavity; and / or, The housing also includes a back plate located between the accommodating cavity and the bracket, the back plate having the mounting cavity, and the thickness of the back plate being less than or equal to 3 mm.