An electronic device accessory
By designing an automatically driven bracket assembly and triggering assembly, the problem of requiring manual flipping of existing bracket housings has been solved, resulting in electronic device accessories that offer convenient operation and good support.
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
- 2026-07-31
AI Technical Summary
The existing support shell requires users to manually flip and pry it open to achieve support, which is inconvenient.
Design an electronic device accessory, including a housing, a bracket assembly, a drive assembly, and a trigger assembly. The trigger assembly drives the bracket assembly to switch from a stored state to a supported state. The bracket assembly includes multiple movably connected support parts and automatically unfolds using a magnetic locking structure and a drive rope.
The support components unfold automatically, eliminating the need for manual folding by the user. This makes operation more convenient, provides excellent support, is aesthetically pleasing, and offers high stability.
Smart Images

Figure CN224583218U_ABST
Abstract
Description
[0001] Cross-referencing
[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 support assembly is movably disposed on the housing and includes a plurality of movably connected support portions; when the support assembly is movable relative to the housing, at least some of the support portions are movable relative to each other, so that the support assembly switches between a retracted state and a supported state.
[0011] A drive component is driven to the bracket assembly;
[0012] A trigger component, movably disposed on the housing, is provided to drive the support assembly from the stored state to the supported state via the drive component.
[0013] In one embodiment, the drive assembly further includes a locking structure and a drive member, the drive member being driven to the bracket assembly; at least a portion of the locking structure is disposed on the bracket assembly for locking the bracket assembly in the stowed state;
[0014] The triggering component is driven to the locking structure. The triggering component reduces the locking effect of the locking structure on the bracket assembly by moving the locking component, so that the driving component drives the bracket assembly.
[0015] In one embodiment, the locking structure includes a first magnetic member and a second magnetic member. The first magnetic member is disposed on the bracket assembly, and the second magnetic member magnetically engages with the first magnetic member to lock the bracket assembly in the stored state. The magnetic attraction force between the second magnetic member and the first magnetic member is greater than the driving force of the driving member.
[0016] 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 assembly to rotate from the storage state to the support state.
[0017] In one embodiment, the driving assembly includes a driving member, which is a driving rope. The two ends of the driving rope are correspondingly driven connected to the two support portions. When the bracket assembly is in the retracted state, the driving rope is in a stretched state. The triggering assembly moves to make the support portions move relative to each other under the elastic force of the driving rope.
[0018] In one embodiment, the support assembly includes a first support portion and a second support portion that are movably connected. The opposite sides of the first support portion and the second support portion are respectively movably connected to the housing. One end of the drive rope is driven to the opposite side of the first support portion and the other end is driven to the opposite side of the second support portion. During the process of the support assembly switching from the storage state to the support state, the drive rope drives the first support portion and the second support portion to rotate relative to each other to form a support angle.
[0019] In one embodiment, the support assembly includes a third support portion and a fourth support portion that are movably connected. The fourth support portion is disposed on the housing, and the opposite sides of the third support portion are movably connected to the second support portion and the fourth support portion, respectively.
[0020] During the process of the support assembly switching from the stored state to the supported state, the drive rope contracts to cause the third support portion to flip relative to the fourth support portion toward the side closer to the first support portion.
[0021] In one embodiment, the electronic device accessory further includes a third magnetic chuck, which is disposed on the third support portion;
[0022] The electronic device accessory further includes a fourth magnetic attractor disposed on the fourth support portion, wherein when the bracket assembly is in the supported state, the third magnetic attractor and the fourth magnetic attractor are magnetically attracted to each other; and / or
[0023] The electronic device accessory also includes a fifth magnetic component disposed on the housing. When the bracket assembly is in the stored state, the third magnetic component and the fifth magnetic component magnetically engage.
[0024] 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 assembly is movably disposed within the mounting cavity;
[0025] In the retracted state, the outer surface of the support assembly facing away from the receiving cavity is flush with the outer surface of the housing facing away from the receiving cavity; and / or,
[0026] The electronic device accessory also includes an annular magnet, wherein a portion of the bottom wall of the accommodating cavity is recessed to form an annular groove, and the annular magnet is disposed in the annular groove.
[0027] In one embodiment, the support assembly further includes a leather sleeve comprising a plurality of connected leather segments, each of the support portions being disposed in the respective leather segment, and adjacent support portions being spaced apart and movably connected by the leather sleeve.
[0028] In one embodiment, the triggering component includes a button body and an elastic element, wherein the button body is movably disposed on the housing along a first direction;
[0029] The elastic element includes a spring arm, one end of which is connected to the housing, and the other end of which is connected to one side of the button body along a second direction, the second direction being perpendicular to the first direction; and / or,
[0030] The elastic element includes an elastic strip, and the triggering component further includes a fixing plate fixed on the housing. The fixing plate is disposed on one side of the button body along the first direction and is spaced apart from the button body to form an interval space. The elastic strip is disposed in the interval space and its opposite ends are respectively connected to the button body and the fixing plate.
[0031] This application provides an electronic device accessory, which includes a housing, a support assembly, a drive assembly, and a trigger assembly. On one hand, the drive assembly is driven to the support assembly, and the trigger assembly is movably disposed on the housing. This trigger assembly, through movement, allows the drive assembly to switch the support assembly from a retracted state to a supported state. Thus, a user can trigger the trigger assembly to cause the drive assembly to move the support assembly, switching it from the retracted state to the supported state. This allows the trigger assembly to automatically unfold the support assembly, eliminating the need for manual folding and unfolding, making operation more convenient. On the other hand, the support assembly includes multiple movably connected support parts. When the support assembly moves relative to the housing, at least some of the support parts move relative to each other, allowing the support assembly to switch between the retracted and supported states. Therefore, because the support assembly includes multiple movably connected support parts, during the switch to the supported state, the relative movement between the support parts forms a predetermined support shape, and the interaction between the support parts provides support for the housing. This results in a support assembly with both good support performance and aesthetic appeal. Attached Figure Description
[0032] Figure 1 This is a schematic diagram of the structure of an electronic device accessory according to an embodiment of this application, in which the bracket assembly is in a stored state;
[0033] Figure 2 for Figure 1 A structural diagram of another state of electronic device components, in which the bracket assembly is in a supporting state;
[0034] Figure 3 for Figure 2 Exploded view of electronic device components;
[0035] Figure 4 for Figure 1 Schematic diagram of the fit between the inner housing and the triggering component;
[0036] Figure 5 for Figure 2 A schematic diagram of the leather sleeve of the middle support assembly;
[0037] Figure 6 for Figure 2 A schematic diagram showing the relationship between the various support parts and the drive rope of the central support assembly;
[0038] Figure 7 for Figure 1 A schematic diagram showing the relationship between the various support parts and the drive rope of the central support assembly;
[0039] Figure 8 for Figure 4 A schematic diagram of the structure of the trigger component;
[0040] Figure 9 for Figure 1 A schematic diagram of the middle shell structure.
[0041] Explanation of reference numerals in the attached drawings: 10. Housing; 10a. Receiving cavity; 10b. Mounting cavity; 10c. Annular groove; 20. Bracket assembly; 21. Support part; 22. First support part; 23. Second support part; 24. Third support part; 25. Fourth support part; 26. Leather sleeve; 261. Leather segment; 30. Drive assembly; 31. Locking structure; 311. First magnetic clasp; 312. Second magnetic clasp; 32. Drive rope; 40. Trigger assembly; 41. Button body; 41a. Interval space; 42. Elastic element; 421. Spring arm; 422. Elastic strip; 43. Fixing plate; 50. Third magnetic clasp; 51. Fourth magnetic clasp; 52. Fifth magnetic clasp; 60. Annular magnet; 70. Liner plate. Detailed Implementation
[0042] In this application, the orientation or positional relationship of "first direction" and "second direction" is based on the appendix. Figure 8 The 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.
[0043] In the description of the embodiments of this application, technical terms such as "first," "second," and "third" are used only to distinguish different objects and should not be construed as indicating or implying relative importance or implicitly specifying the number, specific order, or primary and secondary relationship of the indicated technical features. In the description of the embodiments of this application, "multiple" means two or more, unless otherwise explicitly defined.
[0044] In this document, the term "embodiment" means that a particular feature, structure, or characteristic described in connection with an embodiment may be included in at least one embodiment of this application. The appearance of this phrase in various places throughout the specification does not necessarily refer to the same embodiment, nor is it a separate or alternative embodiment mutually exclusive with other embodiments. It will be explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.
[0045] One embodiment of this application provides an electronic device accessory; please refer to [link / reference]. Figures 1 to 3 The electronic device accessories include a housing 10, a bracket assembly 20, a drive assembly 30, and a trigger assembly 40.
[0046] The bracket assembly 20 is movably disposed on the housing 10 and includes a plurality of movably connected support portions 21; when the bracket assembly 20 is movable relative to the housing 10, at least some of the support portions 21 are movable relative to each other, so that the bracket assembly 20 switches between a retracted state and a supported state.
[0047] The drive assembly 30 is connected to the bracket assembly 20 via a drive connection.
[0048] The trigger component 40 is movably disposed on the housing 10 so as to drive the drive component 30 to switch the support component 20 from the storage state to the support state.
[0049] 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.
[0050] In fact, the housing 10 is used to mount electronic equipment. By moving the bracket assembly 20, the bracket assembly 20 is extended to a supporting state, thereby supporting the housing 10 and the electronic equipment.
[0051] The stowed state of the bracket assembly 20 is when the bracket assembly 20 is stowed onto the housing 10. At this time, the included angle between the bracket assembly 20 and the housing 10 is the smallest.
[0052] For example, when the support assembly 20 is in its retracted state, all the support portions 21 are in the same plane. It should be noted that "all the support portions 21 are in the same plane" means that in the retracted state, the support assembly 20 is housed as a single support plate, and the support portions 21 do not form supporting angles but are located on the same side (back) of the housing 10. This allows the support assembly 20 to be sufficiently flat, with an angle of 0° between it and the back of the housing 10.
[0053] The support state of the bracket assembly 20 is such that some or all of the support parts 21 are moved to the support position to support the housing 10. At this time, some or all of the support parts 21 of the bracket assembly 20 can form a set angle with the housing 10, thereby jointly supporting the housing 10.
[0054] For example, when the bracket assembly 20 is in a supported state, at least some of the support portions 21 are arranged on opposite sides. That is, at least some of the support portions 21 are not located on the same side (back) of the housing 10.
[0055] During the switching between the storage state and the support state, the support assembly 20 may move relative to each other only in some of the support parts 21 or all of the support parts 21 may move relative to each other, thereby allowing the support assembly 20 to switch between the storage state in the initial position and the support state in the support position.
[0056] The support assembly 20 is not formed from a single rigid plate, but includes multiple relatively movable support sections 21.
[0057] The drive component 30 is a structure with a driving effect. The drive component 30 is driven to connect with the bracket component 20. When the trigger component 40 is triggered by the user, it can drive the bracket component 20 to move relative to the housing 10, thereby allowing some or all of the support parts 21 to move relative to each other, and thus enabling the bracket component 20 to switch from the storage state to the support state.
[0058] It should be noted that when the user does not trigger the trigger component 40, the trigger component 40 does not move relative to the housing 10, and therefore the drive component 30 will not drive the support component 20 to switch from the storage state to the support state. The specific implementation method is not limited.
[0059] For example, the drive component 30 includes a drive element that is driven and connected to the support component 20. The trigger component 40 has a locked state for locking the drive element and an unlocked state for unlocking the drive element. The trigger component 40 can switch between the locked and unlocked states by movement. When the trigger component 40 is not triggered by the user, it locks the drive element, preventing it from driving the support component 20. When the user triggers the trigger component 40, it unlocks the drive element by movement, allowing the drive element to drive the support component 20 to a supported state. In other words, the trigger component 40 switches from locking to unlocking the drive element by movement, thereby enabling the drive element to drive the support component 20. This allows the user to easily unlock the support component 20 with a single click.
[0060] For example, please refer to Figure 1 , Figure 3 and Figure 4 The drive assembly 30 also includes a locking structure 31 and a drive member, the drive member being driven to the bracket assembly 20; at least a portion of the locking structure 31 is disposed on the bracket assembly 20 for locking the bracket assembly 20 in a stowed state.
[0061] The trigger component 40 is driven to connect with the locking structure 31. The trigger component 40 reduces the locking effect of the locking structure 31 on the bracket assembly 20 by moving, so that the driving component drives the bracket assembly 20. Therefore, it is easier for the user to unlock the bracket assembly 20 with one click.
[0062] Specifically, the trigger component 40 does not lock the drive component, but is driven to connect with the locking structure 31 so as to reduce the locking effect of the locking structure 31 on the support component 20 by moving, thereby making it easier for the drive component to drive the support component 20 to move to the support state.
[0063] The locking structure 31 can be provided on the bracket assembly 20 in only a part of the area, or it can be provided on the bracket assembly 20 in the entire area.
[0064] The locking structure 31 is a structure that can lock the bracket assembly 20 onto the housing 10 to achieve a locking function. Its specific structure is not limited, such as a magnetic locking structure, a snap-fit locking structure, a sliding locking structure, etc.
[0065] The trigger component 40 allows the user to apply force, enabling the drive component 30 to drive the support component 20 to switch to the support state. The trigger component 40 can be a pressable button, a pull-type trigger, a rotatable trigger, or a toggle trigger.
[0066] 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.
[0067] In the electronic device accessory of this application embodiment, on one hand, the driving component 30 is drivenly connected to the bracket assembly 20, and the trigger component 40 is movably disposed on the housing 10 so that the driving component 30 can drive the bracket assembly 20 to switch from a stored state to a supported state. Thus, the user can trigger the trigger component 40 to cause the driving component 30 to drive the bracket assembly 20 to move, switching from a stored state to a supported state. This allows the trigger component 40 to automatically unfold the bracket assembly 20 without requiring the user to manually fold or pry it open, making user operation more convenient. On the other hand, the bracket assembly 20 includes multiple movably connected support portions 21. When the bracket assembly 20 moves relative to the housing 10, at least some of the support portions 21 move relative to each other, allowing the bracket assembly 20 to switch between a stored state and a supported state. Therefore, since the support assembly 20 includes multiple movable support parts 21, the support assembly 20 can form a set support shape through the relative movement between each support part 21 during the process of switching to the support state, and can support the shell 10 through the interaction between each support part 21, so that the support assembly 20 has a good support effect and also has a good aesthetic performance.
[0068] In one embodiment, please refer to Figures 1 to 4 The locking structure 31 includes a first magnetic member 311 and a second magnetic member 312. The first magnetic member 311 is disposed on the bracket assembly 20. The second magnetic member 312 magnetically engages with the first magnetic member 311 to lock the bracket assembly 20 in a stored state. The magnetic attraction between the second magnetic member 312 and the first magnetic member 311 is greater than the driving force of the driving member.
[0069] The trigger component 40 is driven to connect with the second magnetic member 312. The trigger component 40 drives the second magnetic member 312 to move so that the magnetic attraction between the second magnetic member 312 and the first magnetic member 311 is less than the driving force of the driving member. The driving member drives the bracket assembly 20 to rotate from the storage state to the support state.
[0070] In other words, the user can trigger the trigger component 40, which in turn moves the second magnetic component 312, reducing the magnetic attraction between the second magnetic component 312 and the first magnetic component 311 to less than the driving force of the driving component. This allows the driving component to move the support assembly 20 from the stored state to the supported state. Thus, the support assembly 20 can be automatically unfolded by triggering the trigger component 40, eliminating the need for manual folding or prying, making operation more convenient. On the other hand, when the user does not trigger the trigger component 40, the second magnetic component 312 and the first magnetic component 311 are magnetically engaged, and the magnetic attraction between them is greater than the driving force of the driving component, locking the support assembly 20 in the stored state. This improves the stability of the support assembly 20 in the stored state and reduces the risk of accidental opening.
[0071] It should be noted that the driving component is a structure capable of providing driving force for the movement of the support assembly 20. For example, the driving component is an elastic element capable of elastic deformation, and its specific type can be set according to the actual situation.
[0072] For example, the driving element includes at least one of the following: driving rope 32, torsion spring, spring sheet, and spring. That is, the driving element can be any one of the driving rope 32, torsion spring, spring sheet, and spring, or a combination of the above structures.
[0073] Specifically, the driving component is driven to the bracket assembly 20. When the bracket assembly 20 is in the retracted state, the driving component applies a driving force to the bracket assembly 20. However, its driving force is less than the locking effect of the locking structure 31 on the bracket assembly 20, and therefore it cannot drive the bracket assembly 20 to rotate when the locking structure 31 locks the bracket assembly 20. The bracket assembly 20 can only be moved after the locking structure 31 is unlocked.
[0074] The locking structure 31 is designed to improve the connection stability between the bracket assembly 20 and the housing 10. Through the cooperation of the first magnetic member 311 and the second magnetic member 312, the bracket assembly 20 can be prevented from being accidentally opened in the stowed state, thus improving the stability of the bracket assembly 20 in the stowed state.
[0075] When the user triggers the trigger component 40 to make the trigger component 40 active, the second magnetic member 312 can move, thereby reducing the magnetic attraction between it and the first magnetic member 311, which makes it easier for the drive component to drive the bracket assembly 20 to move to the support state.
[0076] The first magnetic component 311 is disposed on the bracket assembly 20, and the first magnetic component 311 can move with the bracket assembly 20. The installation method of the first magnetic component 311 on the bracket assembly 20 is not limited.
[0077] For example, a portion of the support assembly 20 is recessed to form a recessed area, and the first magnetic member 311 is engaged in the recessed area.
[0078] It should be noted that the trigger component 40 and the second magnetic attractor 312 can be directly connected for driving, or they can be connected via a transmission component for driving.
[0079] The second magnetic member 312 and the first magnetic member 311 are magnetic structures that can be attracted together by magnetic attraction, such as magnets. The second magnetic member 312 and the first magnetic member 311 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 assembly 20.
[0080] The widths of the first magnetic 311 and the second magnetic 312 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 311 and the second magnetic 312 are the same, and the widths are greater than or equal to 1 mm and less than or equal to 2 mm.
[0081] The number of the first magnetic component 311 and the second magnetic component 312 can be set according to actual needs; there can be only one or multiple components.
[0082] The trigger component 40 drives the second magnetic member 312 to move, so that the magnetic attraction force between the second magnetic member 312 and the first magnetic member 311 is less than the driving force of the driving component. It can be understood that, under the drive of the trigger component 40, the magnetic connection between the second magnetic member 312 and the first magnetic member 311 can be directly disconnected, or the magnetic attraction force between them can be weakened, and then, under the drive of the driving component, the magnetic attraction force between them can disappear. The specific setting can be configured according to the actual situation.
[0083] For example, the first magnetic chuck 311 and the second magnetic chuck 312 are magnetically attracted to each other along a third direction; the trigger assembly 40 drives the second magnetic chuck 312 to move along a fourth direction, so that the second magnetic chuck 312 and the first magnetic chuck 311 are misaligned along a third direction, so that the magnetic attraction force between the second magnetic chuck 312 and the first magnetic chuck 311 is less than the driving force of the driving member, and the fourth direction is perpendicular to the third direction. Thus, the magnetic connection between the two can be broken by misaligning the second magnetic chuck 312 and the first magnetic chuck 311.
[0084] Specifically, the first magnetic attractor 311 and the second magnetic attractor 312 are arranged along a third direction and are magnetically connected together along the third direction.
[0085] By triggering the trigger component 40, the user can move the second magnetic member 312 along the fourth direction. The second magnetic member 312 is offset from the first magnetic member 311 along the fourth direction, thereby reducing the magnetic attraction between the second magnetic member 312 and the first magnetic member 311.
[0086] For example, the first magnetic member 311 and the second magnetic member 312 are magnetically attracted to each other along a third direction. The trigger component 40 drives the second magnetic member 312 to move along a third direction away from the first magnetic member 311, so that the magnetic attraction between the second magnetic member 312 and the first magnetic member 311 is less than the driving force of the driving component. In other words, by triggering the trigger component 40, the user can move the second magnetic member 312 away from the first magnetic member 311 along a third direction, thereby weakening or eliminating the magnetic attraction between them.
[0087] In one embodiment, please refer to Figure 2 , Figure 3 , Figure 6 and Figure 7 The drive assembly 30 includes a drive member, which is a drive rope 32. The two ends of the drive rope 32 are connected to two corresponding support portions 21. When the bracket assembly 20 is in the retracted state, the drive rope 32 is in a stretched state. The trigger assembly 40 moves to cause the support portions 21 to move relative to each other under the elastic force of the drive rope 32. This allows for better driving of the support portions 21 and simplifies the structure of the drive assembly 30, thereby simplifying the structure of electronic device components.
[0088] Specifically, the driving rope 32 is an elastic rope or elastic band with driving force. Its cross-sectional shape is not limited, such as a circular cross-section elastic rope or a flat cross-section elastic rope.
[0089] The two ends of the drive rope 32 are respectively connected to different support parts 21. It can be understood that the drive rope 32 can be directly connected to the support part 21, or the drive rope 32 can be indirectly connected to the support part 21 through other structures.
[0090] For example, the bracket assembly 20 includes a leather sleeve 26 that is fitted over the support portion 21, and the two ends of the drive rope 32 are connected to the outer leather sleeve 26 of the corresponding support portion 21, which can also achieve a drive connection with the support portion 21.
[0091] In fact, when the support assembly 20 is in its retracted state, the drive rope 32 is in a stretched state and possesses elastic potential energy. When the user triggers the trigger component 40, the drive rope 32 contracts, thereby pulling the support part 21 to move relative to the housing 10, thus switching the support assembly 20 to the supporting state. Simultaneously, under the tension of the drive rope 32, the support assembly 20 provides good support and effectively supports the housing 10.
[0092] It should be noted that the bracket assembly 20 needs to overcome the tension of the drive cord 32 to switch from the supported state to the retracted state. This can be achieved by the user manually pressing the bracket assembly 20 to overcome the tension of the drive cord 32 and return it to the retracted state. Of course, depending on the structure of the electronic device accessories, it can also be achieved in other ways, such as the user triggering the trigger component 40 again to switch the bracket assembly 20 from the supported state to the retracted state.
[0093] In one embodiment, please refer to Figure 2 , Figure 3 , Figure 6 and Figure 7 The support assembly 20 includes a first support portion 22 and a second support portion 23 that are movably connected. The opposite sides of the first support portion 22 and the second support portion 23 are movably connected to the housing 10. One end of a drive rope 32 is driven to the side of the first support portion 22 opposite to the second support portion 23, and the other end is driven to the side of the second support portion 23 opposite to the first support portion 22. During the transition of the support assembly 20 from a stowed state to a supported state, the drive rope 32 drives the first support portion 22 and the second support portion 23 to rotate relative to each other, forming a support angle. This allows the support assembly 20 to better support the housing 10 under the drive of the drive rope 32.
[0094] Specifically, in the supported state, the first support portion 22 and the second support portion 23 can form a support angle to support the housing 10. A triangular support structure can be formed between the first support portion 22, the second support portion 23 and the drive rope 32, thereby enabling the bracket assembly 20 to have a better support effect.
[0095] The two ends of the drive rope 32 are respectively driven to be connected to the opposite sides of the first support 22 and the second support 23. This allows the elastic force of the drive rope 32 to be as large as possible when the bracket assembly 20 is in the retracted state, so as to facilitate the movement of the bracket assembly 20.
[0096] The movable connection between the second support part 23 and the housing 10 is not limited.
[0097] For example, please see Figure 2 , Figure 3 , Figure 6 and Figure 7 The bracket assembly 20 includes a third support portion 24 and a fourth support portion 25 that are movably connected. The fourth support portion 25 is disposed on the housing 10. The opposite sides of the third support portion 24 are movably connected to the second support portion 23 and the fourth support portion 25, respectively.
[0098] During the transition of the support assembly 20 from its stowed state to its supported state, the drive rope 32 retracts, causing the third support portion 24 to flip relative to the fourth support portion 25 towards the side closer to the first support portion 22. This facilitates relative rotation between the first support portion 22 and the second support portion 23, allowing them to form a support angle. It also facilitates the movable connection of the second support portion 23 to the housing 10, resulting in better connection stability.
[0099] In other words, the side of the second support 23 that is away from the first support 22 is movably connected to the fourth support 25 through the third support 24, and is then connected to the housing 10 through the fourth support 25.
[0100] In fact, the fourth support portion 25 is attached to the back of the housing 10, and one side of the third support portion 24 is rotatably mounted on the fourth support portion 25, while the other side is rotatably connected to the second support portion 23. When the user triggers the trigger assembly 40, the drive rope 32 pulls the second support portion 23 towards the side closer to the first support portion 22 under its own elastic force, and the third support portion 24 flips relative to the fourth support portion 25, thereby enabling a support angle to be formed between the first support portion 22 and the second support portion 23.
[0101] It should be noted that the material of each support part 21 of the bracket assembly 20 can be set according to the actual situation. For example, each support part 21 can be made of non-metallic material, which can make the charging efficiency greater than that of the traditional bracket shell when the user uses wireless charging.
[0102] In one embodiment, please refer to Figure 2 , Figure 3 , Figure 6 and Figure 7 The electronic device accessories also include a third magnetic 50, which is disposed on the third support portion 24.
[0103] The electronic device accessory also includes a fourth magnetic member 51 disposed on the fourth support portion 25. When the bracket assembly 20 is in the supported state, the third magnetic member 50 and the fourth magnetic member 51 magnetically engage. Thus, when the bracket assembly 20 is in the supported state, the third magnetic member 50 can magnetically engage with the fourth magnetic member 51, thereby improving the connection stability between the third support portion 24 and the fourth support portion 25, and further improving the support stability of the bracket assembly 20 in the supported state.
[0104] The number of the third magnetic component 50 and the fourth magnetic component 51 is unlimited. They can be in a one-to-one correspondence.
[0105] In one embodiment, please refer to Figure 2 , Figure 3 , Figure 6 and Figure 7 The electronic device accessories also include a third magnetic 50, which is disposed on the third support portion 24.
[0106] The electronic device accessory also includes a fifth magnetic member 52 disposed on the housing 10. When the bracket assembly 20 is in the retracted state, the third magnetic member 50 and the fifth magnetic member 52 magnetically engage. Thus, when the bracket assembly 20 is in the retracted state, the third magnetic member 50 can magnetically engage with the fifth magnetic member 52, thereby improving the connection stability between the third support portion 24 and the housing 10, and further improving the connection stability of the bracket assembly 20 in the retracted state.
[0107] The number of the third magnetic component 50 and the fifth magnetic component 52 is unlimited. They can be in a one-to-one correspondence.
[0108] In one embodiment, please refer to Figure 1 and Figure 2 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 assembly 20 is movably disposed within the mounting cavity 10b.
[0109] In the stowed state, the outer surface of the bracket assembly 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.
[0110] In other words, in the stored state, the bracket assembly 20 is housed in the mounting cavity 10b, and the outer surface of the bracket assembly 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 receiving cavity 10a is less prone to accumulating dirt and grime, and has a higher aesthetic appeal and better performance.
[0111] In one embodiment, please refer to Figure 1 , Figure 2 and Figure 9The 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 assembly 20 is movably disposed within the mounting cavity 10b.
[0112] The electronic device component also includes a ring magnet 60. A portion of the bottom wall of the accommodating cavity 10a is recessed to form an annular groove 10c, and the ring magnet 60 is disposed in the annular groove 10c. This effectively reduces the overall thickness of the electronic device component, enabling a thinner and lighter design.
[0113] Specifically, by setting up a ring magnet 60, it is possible to facilitate the attachment of electronic device accessories to external devices with magnetic structures, such as forming magnetic coupling with external devices that support magnetic wireless chargers, car mounts, wallets or electronic devices.
[0114] The annular magnet 60 is disposed in the annular groove 10c, which can reduce the space occupied by the annular magnet 60, so as to reduce the overall thickness of the electronic device components.
[0115] In one embodiment, please refer to Figure 3 and Figure 5 The bracket assembly 20 also includes a leather sleeve 26, which comprises multiple interconnected leather segments 261. Each support portion 21 is disposed in each leather segment 261, and adjacent support portions 21 are spaced apart and movably connected by the leather sleeve 26. This allows for a flexible connection between the support portions 21 through the foldable nature of the leather sleeve 26, and enables the support portions 21 to form a single unit, facilitating quick and easy opening of the bracket by the user.
[0116] In one specific embodiment, each support portion 21 is encapsulated in a leather sleeve 26 using a pressing process, so that the overall thickness of the support assembly 20 is greater than or equal to 0.8 mm and less than or equal to 1.2 mm. This reduces the overall thickness of the support assembly 20.
[0117] In one specific embodiment, the spacing between adjacent support portions 21 is greater than or equal to 3 mm and less than or equal to 6 mm. This allows for easy connection between adjacent support portions 21 while ensuring good support function of the bracket assembly 20.
[0118] In one specific embodiment, the area of the leather sleeve 26 located on one side of the first support portion 22 passes through the housing 10 and is fixed within a groove inside the housing. This improves the connection stability between the leather sleeve 26 and the housing 10.
[0119] In one embodiment, please refer to Figure 3 , Figure 2 and Figure 8The trigger component 40 includes a button body 41 and an elastic element 42. The button body 41 is movably disposed on the housing 10 along a first direction.
[0120] The elastic element 42 includes a spring arm 421, one end of which is connected to the housing 10, and the other end is connected to one side of the button body 41 along a second direction, which is perpendicular to the first direction. Thus, when the user presses the button body 41, the button body 41 causes the drive assembly 30 to drive the support assembly 20 to switch to a supported state, and the spring arm 421 undergoes elastic deformation and stores elastic force. When the user releases the pressure on the button body 41, the button body 41 returns to its original position under the elastic force of the spring arm 421, allowing for subsequent pressing of the button body 41.
[0121] It should be noted that the spring arm 421 and the button body 41 can be integrally formed or separately formed.
[0122] The number of spring arms 421 can be set is unlimited.
[0123] For example, a spring arm 421 is provided on each of the opposite sides of the button body 41 along the second direction.
[0124] In one embodiment, please refer to Figure 3 , Figure 4 and Figure 8 The trigger component 40 includes a button body 41 and an elastic element 42. The button body 41 is movably disposed on the housing 10 along a first direction.
[0125] The elastic element 42 includes an elastic strip 422, and the trigger assembly 40 also includes a fixing plate 43 fixed to the housing 10. The fixing plate 43 is disposed on one side of the button body 41 along the first direction and forms an interval space 41a with the button body 41. The elastic strip 422 is disposed in the interval space 41a, and its opposite ends are respectively connected to the button body 41 and the fixing plate 43. This facilitates the reset of the button body 41.
[0126] Specifically, when the user presses the button body 41, the button body 41 enables the drive component 30 to drive the support component 20 to switch to the support state, and the elastic strip 422 undergoes elastic deformation and stores elastic force. When the user releases the press of the button body 41, the button body 41 resets under the action of the elastic force of the elastic strip 422, so that the button body 41 can be pressed again in the future.
[0127] There is no limit to the number of elastic bars 422 that can be set.
[0128] For example, multiple elastic strips 422 are provided between the button body 41 and the fixing plate 43, and each elastic strip 422 is spaced apart along the second direction.
[0129] In one embodiment, 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, a bracket assembly 20 is rotatably disposed within the mounting cavity 10b, and the housing 10 further includes a back plate located between the receiving cavity 10a and the bracket assembly 20, the back plate having the mounting cavity 10b, and the thickness of the back plate being less than or equal to 4 mm. This allows for a thinner and lighter electronic device accessory.
[0130] In one embodiment, the first magnetic member 311 and the second magnetic member 312 have the same width, which is greater than or equal to 1 mm and less than or equal to 2 mm. Thus, by triggering the trigger component 40, the user can cause the first magnetic member 311 and the second magnetic member 312 to be misaligned by 1 mm to 2 mm, which will cause the bracket assembly 20 to spring up due to the elastic force of the elastic rope.
[0131] In one embodiment, the electronic device accessory has two modes: horizontal support and vertical support, which can realize the horizontal and vertical placement of the electronic device and meet the usage needs in a variety of situations.
[0132] In one embodiment, please refer to Figure 3 The electronic device accessories also include a liner 70, and the trigger assembly 40 is disposed within the receiving cavity 10a of the housing 10. The liner 70 covers the side of the trigger assembly 40 facing away from the bracket assembly 20. As a result, when the second magnetic member 312 is provided on the trigger assembly 40, the mutual interference between the second magnetic member 312 and the electronic device can be reduced.
[0133] 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.
[0134] 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 support assembly is movably disposed on the housing and includes a plurality of movably connected support portions; when the support assembly is movable relative to the housing, at least some of the support portions are movable relative to each other, so that the support assembly switches between a retracted state and a supported state. A drive component is driven to the bracket assembly; A trigger component, movably disposed on the housing, is provided to drive the support assembly from the stored state to the supported state via the drive component.
2. The electronic device accessory of claim 1, wherein, The drive assembly further includes a locking structure and a drive member, the drive member being drivenly connected to the bracket assembly; at least a portion of the locking structure is disposed on the bracket assembly for locking the bracket assembly in the stowed state. The triggering component is driven to the locking structure. The triggering component reduces the locking effect of the locking structure on the bracket assembly by moving the locking component, so that the driving component drives the bracket assembly.
3. The electronic device accessory of claim 2, wherein, The locking structure includes a first magnetic attractor and a second magnetic attractor. The first magnetic attractor is disposed on the bracket assembly, and the second magnetic attractor is magnetically attracted to the first magnetic attractor to lock the bracket assembly in the storage state. The magnetic attraction force 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 assembly to rotate from the storage state to the support state.
4. The electronic device accessory of claim 1, wherein, The drive assembly includes a drive member, which is a drive rope. The two ends of the drive rope are driven to the two support parts respectively. When the bracket assembly is in the retracted state, the drive rope is in the stretched state. The triggering component moves to make the support parts move relative to each other under the action of the elastic force of the drive rope.
5. The electronic device accessory of claim 4, wherein, The support assembly includes a first support part and a second support part that are movably connected. The opposite sides of the first support part and the second support part are respectively movably connected to the shell. One end of the drive rope is driven to the side of the first support part that is opposite to the second support part, and the other end is driven to the side of the second support part that is opposite to the first support part. During the process of the bracket assembly switching from the stored state to the supported state, the drive rope drives the first support part and the second support part to rotate relative to each other to form a support angle.
6. The electronic device accessory of claim 5, wherein, The bracket assembly includes a third support portion and a fourth support portion that are movably connected. The fourth support portion is disposed on the housing. The opposite sides of the third support portion are movably connected to the second support portion and the fourth support portion, respectively. During the process of the support assembly switching from the stored state to the supported state, the drive rope contracts to cause the third support portion to flip relative to the fourth support portion toward the side closer to the first support portion.
7. The electronic device accessory of claim 6, wherein, The electronic device accessory also includes a third magnetic component, which is disposed on the third support portion; The electronic device accessory also includes a fourth magnetic attractor disposed on the fourth support portion. When the bracket assembly is in the supported state, the third magnetic attractor and the fourth magnetic attractor are magnetically attracted to each other. And / or, The electronic device accessory also includes a fifth magnetic component disposed on the housing. When the bracket assembly is in the stored state, the third magnetic component and the fifth magnetic component magnetically engage.
8. The electronic device accessory of claim 5, wherein, 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 assembly is movably disposed within the mounting cavity; In the retracted state, the outer surface of the support assembly facing away from the receiving cavity is flush with the outer surface of the housing facing away from the receiving cavity; and / or, The electronic device accessory also includes an annular magnet, wherein a portion of the bottom wall of the accommodating cavity is recessed to form an annular groove, and the annular magnet is disposed in the annular groove.
9. The electronic device accessory of any one of claims 1-8, wherein, The support assembly also includes a leather sleeve, which comprises a plurality of connected leather segments. Each of the support portions is disposed in each of the leather segments, and adjacent support portions are spaced apart and movably connected by the leather sleeve.
10. The electronic device accessory of any one of claims 1-8, wherein, The triggering component includes a button body and an elastic element, wherein the button body is movably disposed on the housing along a first direction; The elastic element includes a spring arm, one end of which is connected to the housing, and the other end is connected to one side of the button body along a second direction, which is perpendicular to the first direction. And / or, The elastic element includes an elastic strip, and the triggering component further includes a fixing plate fixed on the housing. The fixing plate is disposed on one side of the button body along the first direction and is spaced apart from the button body to form an interval space. The elastic strip is disposed in the interval space and its opposite ends are respectively connected to the button body and the fixing plate.