An electronic device accessory
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
The existing support shell requires users to manually flip and pry it open to achieve support, which is inconvenient.
By employing a combination of drive components and locking components, the bracket can be automatically unfolded and retracted through the switching of connecting lines and locking components. The drive component includes connecting lines and drive elements, while the locking component is movably mounted on the housing to lock or unlock the drive force area of the drive component.
It enables automatic deployment and storage of the stand, simplifies user operation, reduces the overall structure of the drive components, and promotes the thinning and lightening of electronic device accessories.
Smart Images

Figure CN224555670U_ABST
Abstract
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 drive assembly, the drive assembly including a connecting line, one end of the connecting line being disposed on the bracket and the other end being disposed on the housing, at least a portion of the drive assembly having a driving force to drive the bracket to rotate to the supported state via the connecting line;
[0012] A locking component is movably disposed on the housing. The locking component has a locked state for locking the area of the driving component that has a driving force, and an unlocked state for releasing the lock on the area of the driving component that has a driving force. The locking component is movable to switch between the locked state and the unlocked state.
[0013] In one embodiment, the connecting line is an elastic pull cord. When the bracket is in the retracted state, the elastic pull cord is in the stretched state, and the locking component locks the elastic pull cord to restrict its contraction. When the locking component releases the lock on the elastic pull cord, the elastic pull cord contracts to rotate the bracket to the supported state.
[0014] In one embodiment, the driving assembly further includes a driving member with driving force, one end of the driving member being disposed on the housing, and the other end of the driving member being drivenly connected to the bracket via the connecting line. The locking assembly locks the driving member by abutting against it, and the locking assembly releases the locking of the driving member by moving.
[0015] In one embodiment, the driving component is a driving spring, and when the bracket is in the retracted state, the driving spring is in the stretched state.
[0016] In one embodiment, the end of the drive member connected to the connecting line has a first abutment portion, and the locking component has a second abutment portion; one of the first abutment portion and the second abutment portion is an abutment groove, and the other is an abutment protrusion. The abutment protrusion abuts against the groove wall of the abutment groove by engaging with the abutment groove, thereby locking the drive member by the locking component; the abutment protrusion releases the locking component from the drive member by disengaging from the abutment groove.
[0017] In one embodiment, the locking assembly 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;
[0018] The locking component has a second abutment portion, and the driving component has a third abutment portion. When the bracket is in a supported state, the third abutment portion abuts against the second abutment portion to restrict the button reset.
[0019] In one embodiment, the bracket includes a bracket body and a rotating shaft. The rotating shaft is disposed on the bracket body and connected to the housing. One end of the connecting line connected to the bracket is located on the opposite side of the rotating shaft from the bracket body.
[0020] In one embodiment, the housing has a receiving cavity for accommodating an electronic device, and the bracket is rotatably disposed on the side of the housing opposite to the receiving cavity;
[0021] One end of the connecting line that connects to the support body is located on the side of the support body opposite to the receiving cavity; and / or,
[0022] The rotating shaft is located on the side of the support body near the receiving cavity.
[0023] In one embodiment, the housing has a receiving cavity for accommodating an electronic device, the receiving cavity having a through hole communicating with a side of the housing opposite to the receiving cavity, the bracket being rotatably disposed on the side of the housing opposite to the receiving cavity, a portion of the driving assembly and a portion of the locking assembly being disposed within the receiving cavity, and one end of the connecting line passing through the through hole to be connected to the bracket.
[0024] In one embodiment, a first portion of the cavity wall of the receiving cavity is recessed to form a first mounting groove, and at least a portion of the drive assembly is located within the first mounting groove; and / or,
[0025] A second portion of the cavity wall of the receiving cavity is recessed to form a second mounting groove, and the locking assembly is movably disposed within the second mounting groove; and / or,
[0026] A portion of the housing is recessed to form a wire groove, and the connecting line is movably disposed within the wire groove.
[0027] 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;
[0028] 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,
[0029] 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.
[0030] In one embodiment, the electronic device accessory further includes a locking structure, which includes a first locking part and a second locking part. The first locking part is disposed on the bracket, and the second locking part is disposed on the housing. The first locking part and the second locking part are locked together to lock the bracket in the stored state.
[0031] The locking component releases the lock by moving the first locking part and the second locking part apart; and / or,
[0032] The first locking part and the second locking part separate from each other under the driving force of the driving assembly to release the lock.
[0033] In one embodiment, the first locking part and the second locking part are magnetically attracted components that magnetically engage with each other.
[0034] This application provides an electronic device accessory, including a housing, a bracket, a driving component, and a locking component. The driving component includes a connecting line, one end of which is disposed on the bracket, and the other end on the housing. At least a portion of the driving component has a driving force to drive the bracket to rotate to a supported state via the connecting line. The locking component is movably disposed on the housing and has a locked state for locking the area of the driving component with the driving force, and an unlocked state for releasing the lock on that area. The locking component can switch between the locked and unlocked states by movement. On one hand, a user can trigger the locking component to release the lock on the area of the driving component with the driving force, thereby enabling the driving component to drive the bracket to rotate, switching from a stored state to a supported state. This allows the bracket to be automatically unfolded by triggering the locking component, eliminating the need for manual folding and prying open, making operation more convenient. On the other hand, the bracket is rotated by the connecting line under the driving force of the driving component. Because it uses a connecting line pulling method, it can change the direction of force transmission, which makes it easier to lock the components or other structures of the drive components on the housing. It can also simplify the overall structure of the drive components and make it easier to achieve thinner and lighter electronic device components. Attached Figure Description
[0035] Figure 1 This is a schematic diagram of the structure of an electronic device accessory according to an embodiment of this application; the bracket is in a stowed state in the figure;
[0036] Figure 2 for Figure 1 A structural schematic diagram of electronic device components from another perspective;
[0037] Figure 3 for Figure 1 A partial structural diagram of electronic device components, with some parts of the housing structure omitted from the diagram;
[0038] Figure 4 for Figure 3 A magnified view of a section at point A in the middle;
[0039] Figure 5 for Figure 3 A partial structural diagram of electronic device components;
[0040] Figure 6 for Figure 1 A structural diagram of an electronic device component in another state, in which the bracket is in a supporting state;
[0041] Figure 7 for Figure 6 A structural schematic diagram of electronic device components from another perspective;
[0042] Figure 8 for Figure 7 The structural diagram of some housing areas of the electronic device components is omitted.
[0043] Figure 9 for Figure 6 A partial structural diagram of electronic device components, with some parts of the housing structure omitted from the diagram;
[0044] Figure 10 for Figure 9 A magnified view of a section at point B in the middle;
[0045] Figure 11 for Figure 1 Exploded view of electronic equipment components.
[0046] Explanation of reference numerals in the attached figures
[0047] 10. Housing; 10a. Receiving cavity; 10b. First mounting groove; 10c. Second mounting groove; 10d. Wire groove; 11. Back plate; 20. Bracket; 21. Bracket body; 22. Rotating shaft; 30. Drive assembly; 31. Connecting line; 32. Drive component; 32a. Abutting groove; 40. Locking assembly; 41. Abutting protrusion; 42. Button; 421. Pressing end; 422. Connecting end; 43. Elastic element; 50. Locking structure; 51. First locking part; 52. Second locking part. Detailed Implementation
[0048] One embodiment of this application provides an electronic device accessory; please refer to [link / reference]. Figures 1 to 3 , Figure 11 The electronic device accessories include a housing 10, a bracket 20, a drive assembly 30, and a locking assembly 40.
[0049] Please see Figure 6 The bracket 20 is rotatably mounted on the housing 10 so as to switch between a stored state and a supported state by rotation.
[0050] The drive assembly 30 includes a connecting line 31, one end of which is disposed on the bracket 20 and the other end of which is disposed on the housing 10. At least a portion of the drive assembly 30 has a driving force to drive the bracket 20 to rotate to a supported state via the connecting line 31.
[0051] The locking component 40 is movably disposed on the housing 10. The locking component 40 has a locked state that locks the area of the driving component 30 that has driving force, and an unlocked state that releases the lock on the area of the driving component 30 that has driving force. The locking component 40 can switch between the locked state and the unlocked state by moving.
[0052] 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.
[0053] 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.
[0054] 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°.
[0055] The support state of the bracket 20 is when the bracket 20 is rotated to the support position to support the housing 10. At this time, the angle between the bracket 20 and the housing 10 is larger than the angle in the stored state.
[0056] 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.
[0057] The drive component 30 is a structure with a driving effect. When the locking component 40 releases the lock on the drive component 30, the drive component 30 can drive the bracket 20 to switch from the storage state to the support state.
[0058] Furthermore, in some embodiments, the drive component 30 may consist only of the connecting line 31. Of course, in other embodiments, the drive component 30 may include other drive structures in addition to the connecting line 31.
[0059] It should be noted that the connecting line 31 is a linear structure that can achieve a connecting effect, such as a pull rope, silicone strip, or cloth strip.
[0060] One end of the connecting line 31 is connected to the bracket 20, while the other end is disposed on the housing 10. It should be noted that the end of the connecting line 31 facing away from the bracket 20 can be directly connected to the housing 10, or it can be indirectly connected to the housing 10 through other structures (such as other drive structures). It needs to be determined according to the specific arrangement of the drive assembly 30.
[0061] Depending on the specific circumstances, the drive component 30 may have driving force in only a portion of its area or in all of its areas. Furthermore, the driving force of the drive component 30 varies depending on its structure.
[0062] For example, the connecting line 31 is an elastic rope, and the driving force includes the elastic force of the connecting line 31.
[0063] For example, the drive assembly 30 includes a connecting line 31 and a drive spring, and the driving force includes the elastic force of the drive spring.
[0064] For example, the drive component 30 includes a connecting line 31 and a magnetic structure, and the driving force includes the magnetic attraction force of the magnetic structure.
[0065] The locking component 40 is a structure provided on the housing 10 for locking and unlocking the drive component 30. In fact, the locking component 40 can be triggered by the user so that the locking component 40 can move relative to the housing 10.
[0066] The locking component 40 and the driving component 30 have two different cooperation methods. Specifically, when the user does not trigger the locking component 40, it can lock the area of the driving component 30 that has driving force, thereby restricting the movement of the driving component 30 and preventing the driving component 30 from driving the bracket 20 from the retracted state to the supported state, thus keeping the bracket 20 in the retracted state. When the user needs to unfold the bracket 20, the user triggers the locking component 40, causing it to move and release the locking effect on the area of the driving component 30 that has driving force. Pressing the component 40 does not restrict the movement of the driving component 30, and therefore does not prevent the driving component 30 from driving the bracket 20. Thus, the bracket 20 can automatically rotate from the retracted state to the supported state under the drive of the driving component 30, thereby supporting the housing 10.
[0067] It should be noted that the initial position of the locking component 40 is in the position where the drive component 30 is locked. At this time, the locking component 40 is in the locked state, and the bracket 20 is in the retracted state. The user can trigger the locking component 40 to move it to the position where the drive component 30 is unlocked, thereby preventing the drive component 30 from driving the bracket 20 to rotate. When the user no longer needs to use the bracket 20 for support, the bracket 20 rotates to reset the drive component 30. At this time, the locking component 40 can also be moved back to its initial position to relock the drive component 30.
[0068] It should be noted that the specific method by which the bracket 20 switches from the supported state to the retracted state is not limited. For example, the bracket 20 can be manually closed by the user to rotate it into the retracted state. Of course, depending on the specific cooperation between the locking component 40 and the drive component 30, the bracket 20 can also automatically rotate into the retracted state. For example, the user can trigger the locking component 40 again to make the bracket 20 rotate back to the retracted state, and the drive component 30 will reset.
[0069] In the electronic device accessory of this application embodiment, one end of the connecting line 31 is disposed on the bracket 20, and the other end is disposed on the housing 10. At least a portion of the driving component 30 has a driving force to drive the bracket 20 to rotate to a supported state via the connecting line 31. The locking component 40 is movably disposed on the housing 10. The locking component 40 has a locked state that locks the area of the driving component 30 with the driving force, and an unlocked state that releases the lock on the area of the driving component 30 with the driving force. The locking component 40 can switch between the locked state and the unlocked state by movement. On one hand, the user can trigger the locking component 40 to release the lock on the area of the driving component 30 with the driving force, thereby enabling the driving component 30 to drive the bracket 20 to rotate, switching from a stored state to a supported state. Thus, triggering the locking component 40 can automatically unfold the bracket 20 without the user having to manually fold and pry open the bracket 20, making user operation more convenient. On the other hand, under the driving force of the driving component 30, the bracket 20 is pulled and rotated by the connecting line 31. Because the connecting line 31 is used to pull, the direction of force transmission can be changed, which makes it easier to lock the other structures of the component 40 or the drive component 30 on the housing 10. At the same time, it can simplify the overall structure of the drive component 30 and make it easier to achieve thinner and lighter electronic device accessories.
[0070] In one embodiment, the connecting line 31 is an elastic pull cord. When the bracket 20 is in the retracted state, the elastic pull cord is in the stretched state, and the locking component 40 locks the elastic pull cord to restrict its retraction. When the locking component 40 releases the lock on the elastic pull cord, the elastic pull cord retracts to rotate the bracket 20 to the supported state. This simplifies the structure of the drive component 30, thereby further achieving the thinning and lightening of electronic device components.
[0071] Specifically, the elastic pull cord is a pull cord structure with elastic force. When the bracket 20 is in the retracted state, the elastic pull cord is in a stretched state, and the elastic pull cord applies tension to both the bracket 20 and the housing 10. The locking component 40 locks the elastic pull cord, thereby preventing its movement and thus preventing the bracket 20 from rotating, thereby keeping the bracket 20 in the retracted state.
[0072] When the user triggers the locking component 40, the locking component 40 moves to release the lock on the elastic pull cord. The locking component 40 does not hinder the movement of the elastic pull cord. The elastic pull cord retracts and pulls the bracket 20 to rotate under its own elastic force, thereby causing the bracket 20 to rotate from the storage state to the support state.
[0073] It should be noted that the electronic device accessory can rotate the bracket 20 from the stored state to the supported state solely by the elastic pull cord. Of course, depending on the actual situation, in addition to the elastic pull cord, other drive structures can be added to the electronic device accessory to jointly drive the bracket 20 to rotate.
[0074] In one embodiment, please refer to Figure 2 and Figure 3 The drive assembly 30 also includes a drive member 32 with driving force. One end of the drive member 32 is disposed on the housing 10, and the other end of the drive member 32 is drivenly connected to the bracket 20 through the connecting line 31. The locking assembly 40 locks the drive member 32 by abutting against it, and the locking assembly 40 can release the lock on the drive member 32 by moving.
[0075] In other words, the drive element 32 has a driving force, and the connecting line 31 can transmit the driving force of the drive element 32 to the bracket 20. Please refer to [link / reference]. Figures 7 to 10 When the locking component 40 is in the unlocked position of the drive member 32, the drive member 32 can transmit driving force through the connecting line 31 to drive the bracket 20 to rotate from the stored state to the supported state. When the locking component 40 is in the locked position of the drive member 32, please refer to [link to relevant documentation]. Figures 2 to 4 The locking component 40 can restrict the movement of the drive component 32, thereby preventing the drive component 32 from driving the bracket 20 to rotate via the connecting line 31. This facilitates the rotation of the bracket 20, enabling one-button automatic deployment of the bracket 20 for electronic device accessories.
[0076] It should be noted that the specific structure of the drive component 32 is not limited.
[0077] For example, the driving component 32 is a driving spring. When the bracket 20 is in the retracted state, the driving spring is in the stretched state. That is, the connecting line 31 is connected to the housing 10 through the driving spring. Thus, when the user triggers the locking component 40, the locking component 40 moves to release the lock on the driving spring, causing the driving spring to contract. Under the action of its own elastic force, it drives the connecting line 31 to move, thereby pulling the bracket 20 to rotate. In this way, the transmission of driving force can be achieved well, ensuring the rotation effect of the bracket 20.
[0078] The specific method by which the locking component 40 abuts against the driving component 32 can be set according to the actual situation.
[0079] For example, please see Figure 3 , Figure 4 , Figure 9 and Figure 10 The drive component 32 has a first abutment portion at the end connected to the connecting line 31, and the locking component 40 has a second abutment portion. One of the first and second abutment portions is an abutment groove 32a, and the other is an abutment protrusion 41. The abutment protrusion 41 engages with the groove wall of the abutment groove 32a, thereby locking the drive component 32 by the locking component 40. The abutment protrusion 41 disengages from the abutment groove 32a, thereby releasing the locking component 40 from the drive component 32. Therefore, when the user does not trigger the locking component 40, it provides a good limiting effect on the drive component 32. Simultaneously, when the user triggers the locking component 40, it can easily release the lock from the drive component 32, resulting in a good one-button automatic unfolding effect for the electronic device accessory.
[0080] Specifically, a portion of the locking component 40 may be recessed to form an abutment groove 32a, and a portion of the driving component 32 may be protruding to form an abutment protrusion 41. Alternatively, a portion of the driving component 32 may be recessed to form an abutment groove 32a, and a portion of the locking component 40 may be protruding to form an abutment protrusion 41.
[0081] When the bracket 20 is in its retracted state, at least a portion of the abutment protrusion 41 is located within the abutment groove 32a, and by abutting against the groove wall of the abutment groove 32a, it restricts the drive member 32 from driving the bracket 20 to rotate, thereby locking the drive member 32. When the user triggers the locking component 40, the abutment protrusion 41 can separate from the abutment groove 32a, so that the locking component 40 does not restrict the drive member 32 from driving the bracket 20 to rotate, thereby unlocking the drive member 32.
[0082] For example, when the driving component 32 is a driving spring, one end of the driving spring is connected to the housing 10, and the other end is connected to the connecting line 31, forming an abutment groove 32a. The locking component 40 has an abutment protrusion 41. When the locking component 40 is in its initial position, the abutment protrusion 41 engages with the abutment groove 32a, and the locking component 40 restricts the contraction of the driving spring, thus preventing it from pulling the bracket 20 to rotate via the connecting line 31, thereby locking the driving component 32. When the user triggers the locking component 40, the locking component 40 moves to disengage the abutment protrusion 41 from the abutment groove 32a. This allows the locking component 40 to avoid the contraction of the driving spring, thereby unlocking the driving component 32. The driving spring can then pull the bracket 20 to rotate via the connecting line 31 under its own elastic force.
[0083] In one embodiment, please refer to Figure 2 , Figure 4 , Figure 7 and Figure 10 The locking assembly 40 includes a button 42 and an elastic element 43. The button 42 has a pressing end 421 and a connecting end 422 opposite to the pressing end 421. The elastic element 43 is connected to both the connecting end 422 and the housing 10. Specifically, the pressing end 421 is the end of the button 42 that is pressed by the user. 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, the locking assembly 40 can be easily reset.
[0084] 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).
[0085] 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.
[0086] Of course, in other embodiments, the locking component 40 may also be other triggerable structures.
[0087] For example, the locking component 40 is a pull-type trigger, a rotatable rotation trigger, or a toggle trigger.
[0088] It should be noted that when the bracket 20 is in the supported state, the specific position of the button 42 can be set according to the actual situation.
[0089] For example, when the bracket 20 is in the supported state, the button 42 can be reset to its initial position under the action of the elastic element 43, but at this time the locking component 40 cannot restrict the driving component 30 from applying driving force to the bracket 20. When the user does not need to use the bracket 20, the bracket 20 rotates to the storage state, and the locking component 40 re-engages with the driving component 30 to restrict the driving component 30 from driving the bracket 20 to rotate.
[0090] For example, the locking component 40 has a second abutment portion, and the driving component 30 has a third abutment portion. When the bracket 20 is in a supported state, the third abutment portion abuts against the second abutment portion to restrict the button 42 from resetting. Thus, by the third abutment portion of the driving component 30 abutting against the second abutment portion, the button 42 is restricted from resetting under the action of the elastic member 43, thereby preventing the locking component 40 from interfering with the driving component 30's driving of the bracket 20.
[0091] In one specific embodiment, please refer to Figure 4 and Figure 10The first abutting part is an abutting groove 32a, the second abutting part is an abutting protrusion 41, and the third abutting part is a side abutting surface located outside the abutting groove 32a. When the bracket 20 is in the retracted state, the abutting protrusion 41 is located in the abutting groove 32a to restrict the drive member 32 from driving the bracket 20 to rotate. When the user presses the button 42, the abutting protrusion 41 disengages from the abutting groove 32a, and the drive member 32 pulls the connecting line 31 to drive the bracket 20 to rotate. The abutting groove 32a is displaced from the abutting protrusion 41 as the drive member 32 moves, and the button 42 abuts against the side abutting surface under the action of the elastic member 43. When the bracket 20 rotates back to the retracted state, the drive member 32 resets, and the abutting groove 32a also resets to the position corresponding to the abutting protrusion 41, causing the abutting protrusion 41 to re-engage in the abutting groove 32a.
[0092] In one embodiment, please refer to Figure 5 The bracket 20 includes a bracket body 21 and a rotating shaft 22. The rotating shaft 22 is mounted on the bracket body 21 and connected to the housing 10. One end of the connecting line 31 connected to the bracket 20 is located on a different plane from the rotating shaft 22 within the bracket body 21. In other words, the connection point between the connecting line 31 and the bracket 20 is not located on the same plane as the rotating shaft 22 within the bracket body 21. This allows the connecting line 31 to apply driving force to the bracket body 21 in the form of torque, thereby facilitating the connection line 31 to pull the bracket body 21 to rotate.
[0093] It is understandable that the support body 21 is the frame structure of the support 20, and the support body 21 rotates relative to the shell 10 around the pivot 22.
[0094] It should be noted that the specific structure of the rotating shaft 22 can be set according to the actual situation.
[0095] For example, the rotating shaft 22 is a spring shaft (such as a spring shaft in the form of a watch chain), and the bracket body 21 has a spring shaft at each of its opposite ends along the rotation axis. The housing 10 has two corresponding mounting holes for the spring shafts to be installed. Thus, the bracket 20 can be quickly installed onto the housing 10.
[0096] For example, the pivot 22 is a pin, the bracket body 21 has a pin hole, and the pivot 22 passes through the pin hole.
[0097] For example, the bracket body 21 and the rotating shaft 22 can be integrated into one structure. For instance, the bracket body 21 could be a plastic bracket 20, and the rotating shaft 22 a plastic shaft. This reduces the impact of the bracket 20 on the wireless charging function of electronic devices.
[0098] It should be noted that the specific positions of the ends of the pivot 22 and the connecting line 31 on the bracket body 21 can be set according to the actual situation.
[0099] For example, please see Figure 1 , Figure 2 , Figure 6 and Figure 7 The housing 10 has a receiving cavity 10a for accommodating electronic equipment. The bracket 20 is rotatably disposed on the side of the housing 10 away from the receiving cavity 10a. One end of the connecting line 31 connected to the bracket body 21 is disposed on the side of the bracket body 21 away from the receiving cavity 10a. Thus, the connecting line 31 can easily drive the bracket body 21 to rotate around the pivot 22.
[0100] Specifically, the electronic device is installed in the receiving cavity 10a of the housing 10, and the bracket 20 supports the housing 10 and the electronic device from the side of the housing 10 away from the receiving cavity 10a by rotating.
[0101] The connecting line 31 is connected to the side of the support body 21 away from the receiving cavity 10a. This allows the connecting line 31 to exert a larger torque on the support body 21, thereby facilitating the rotation of the support body 21.
[0102] For example, please refer to Figure 5 The housing 10 has a receiving cavity 10a for accommodating electronic equipment. A bracket 20 is rotatably disposed on the side of the housing 10 away from the receiving cavity 10a, and a rotating shaft 22 is disposed on the side of the bracket body 21 near the receiving cavity 10a. This allows the rotating shaft 22 to be positioned as close as possible to the receiving cavity 10a, facilitating the offsetting of the connecting line 31 from the rotating shaft 22. Furthermore, it allows the bracket body 21 to easily shield the rotating shaft 22, thereby reducing the risk of the rotating shaft 22 being exposed.
[0103] In another embodiment, please refer to Figures 5 to 7 One end of the connecting line 31, which is connected to the support body 21, is located on the side of the support body 21 away from the receiving cavity 10a, while the rotating shaft 22 is located on the side of the support body 21 closer to the receiving cavity 10a. This allows the torque applied by the connecting line 31 to the support body 21 to be as large as possible, so that the connecting line 31 can pull the support body 21 to rotate.
[0104] In one embodiment, the housing 10 has a receiving cavity 10a for accommodating an electronic device, the receiving cavity 10a having a through hole communicating with the side of the housing 10 opposite to the receiving cavity 10a, the bracket 20 being rotatably disposed on the side of the housing 10 opposite to the receiving cavity 10a, a portion of the driving assembly 30 and a portion of the locking assembly 40 being disposed within the receiving cavity 10a, and one end of the connecting line 31 being connected to the bracket 20 through the through hole.
[0105] Specifically, the through hole connects the opposite sides of the housing 10, and one end of the connecting line 31 is located on the side of the housing 10 near the receiving cavity 10a to connect with the housing 10. The other end of the connecting line 31 passes through the through hole and connects to the bracket 20. Thus, on the one hand, it is convenient for the connecting line 31 to pull the bracket 20 to rotate, and on the other hand, it can prevent the drive assembly 30 and the locking assembly 40 from being exposed too much.
[0106] The specific arrangement of the drive component 30 and the locking component 40 on the housing 10 can be set according to the actual situation.
[0107] For example, please see Figure 2 , Figure 7 and Figure 8 A first portion of the cavity wall of the receiving cavity 10a is recessed to form a first mounting groove 10b, within which at least a portion of the drive assembly 30 is located. Thus, by recessing the housing 10 to form the first mounting groove 10b for accommodating the drive assembly 30, the overall thickness of the electronic device component can be reduced. Furthermore, the first mounting groove 10b forms a guide channel for the movement of the drive assembly 30, thereby facilitating the rotation of the drive bracket 20.
[0108] The drive component 30 may have only a portion of its area located within the first mounting slot 10b, or the entire area may be located within the first mounting slot 10b.
[0109] For example, please refer to Figure 2 , Figure 7 and Figure 8 A second portion of the cavity wall of the receiving cavity 10a is recessed to form a second mounting groove 10c, within which the locking assembly 40 is movably disposed. Thus, by recessing the housing 10 to form the second mounting groove 10c for accommodating the locking assembly 40, the overall thickness of the electronic device accessory can be reduced. Furthermore, the second mounting groove 10c forms a guide channel for the movement of the locking assembly 40.
[0110] For example, please refer to Figure 8 A portion of the housing 10 is recessed to form a wire groove 10d, in which the connecting line 31 is movably disposed. In other words, the wire groove 10d is used to allow the connecting line 31 to move, serving both as a guide and preventing the connecting line 31 from coming out.
[0111] 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, and the bracket 20 is rotatably disposed within the mounting cavity.
[0112] 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.
[0113] In other words, when stored, the bracket 20 is housed in the mounting cavity, 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.
[0114] In one embodiment, please refer to Figure 1 and Figure 2 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, and a bracket 20 is rotatably disposed within the mounting cavity. The housing 10 also includes a back plate 11 located between the receiving cavity 10a and the bracket 20, the back plate 11 having a mounting cavity, and the thickness of the back plate 11 being less than or equal to 3 mm. This allows for a thinner and lighter electronic device accessory.
[0115] In one embodiment, please refer to Figure 2 , Figure 3 , Figure 7 and Figure 11 The electronic device accessories also include a locking structure 50, which includes a first locking part 51 and a second locking part 52. The first locking part 51 is disposed on the bracket 20, and the second locking part 52 is disposed on the housing 10. The first locking part 51 and the second locking part 52 are locked together to lock the bracket 20 in the storage state.
[0116] 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 locking part 51 and the second locking part 52, the bracket 20 can be prevented from being accidentally opened in the stowed state, thus improving its stability in this state.
[0117] When the user triggers the locking component 40 to activate it, the first locking part 51 and the second locking part 52 can separate to release the lock, thereby facilitating the drive component 30 to rotate to the support state.
[0118] It should be noted that the specific manner in which the first locking part 51 and the second locking part 52 separate from each other is not limited. For example, the locking assembly 40 can release the lock by moving the first locking part 51 and the second locking part 52. That is, when the user triggers the locking assembly 40, the locking assembly 40 can move and, while avoiding the drive assembly 30 driving the bracket 20, can also drive the first locking part 51 and the second locking part 52 to separate from each other, thereby releasing their locking engagement.
[0119] For example, the first locking part 51 and the second locking part 52 are separated from each other under the driving force of the driving component 30 to release the lock. That is, when the user triggers the locking component 40 to move the locking component 40 and cause the locking component 40 to avoid the driving component 30 driving the bracket 20, the driving component 30 can drive the first locking part 51 and the second locking part 52 to separate from each other, thereby releasing the locking engagement between the two.
[0120] The specific structural form of the first locking part 51 and the second locking part 52 is not limited.
[0121] For example, please see Figure 2 , Figure 3 , Figure 7 and Figure 11 The first locking part 51 and the second locking part 52 are magnetically attracted to each other. That is, when the bracket 20 is in the retracted state, the first locking part 51 and the second locking part 52 can be magnetically connected. When the locking assembly 40 avoids the driving assembly 30 driving the bracket 20, the first locking part 51 and the second locking part 52 disconnect under the driving force of the driving assembly 30, thereby releasing the lock.
[0122] The specific locations of the first locking part 51 and the second locking part 52 can be determined according to actual needs.
[0123] For example, the first locking part 51 is provided at the end of the bracket 20 away from the rotation axis, and the second locking part 52 is provided on the housing 10 in the area corresponding to the first locking part 51.
[0124] In one specific embodiment, the housing 10 includes a housing body having a receiving cavity 10a and a mounting cavity. The housing 10 also includes a guide plate disposed within the mounting cavity, the guide plate having a wire groove and being disposed near the through hole. Thus, after passing through the through hole, the connecting line 31 can extend along the wire groove and connect to the bracket body 21.
[0125] In one embodiment, a button opening communicating with the second mounting groove 10c is formed on the side of the housing 10, and the locking component 40 is disposed at the button opening and extends into the second mounting groove 10c. This allows the user to easily trigger the locking component 40 from the side to unlock the bracket 20.
[0126] In one embodiment, the bottom edge of the housing 10 has a button opening that communicates with the second mounting groove 10c, and the locking component 40 is disposed at the button opening and extends into the second mounting groove 10c. Thus, when a user places an electronic device accessory on a desktop, they can unlock the bracket 20 simply by touching the bottom of the accessory to the desktop.
[0127] 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.
[0128] 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 drive assembly, the drive assembly including a connecting line, one end of the connecting line being disposed on the bracket and the other end being disposed on the housing, at least a portion of the drive assembly having a driving force to drive the bracket to rotate to the supported state via the connecting line; A locking component is movably disposed on the housing. The locking component has a locked state for locking the area of the driving component that has a driving force, and an unlocked state for releasing the lock on the area of the driving component that has a driving force. The locking component is movable to switch between the locked state and the unlocked state.
2. The electronic device accessory according to claim 1, characterized in that, The connecting line is an elastic drawstring. When the bracket is in the retracted state, the elastic drawstring is in the stretched state. The locking component locks the elastic drawstring to restrict its retraction. When the locking component releases the lock on the elastic cord by movement, the elastic cord contracts to rotate the bracket to the supported state.
3. The electronic device accessory according to claim 1, characterized in that, The driving assembly further includes a driving member with driving force, one end of which is disposed on the housing, and the other end of which is drivenly connected to the bracket through the connecting line. The locking assembly locks the driving member by abutting against it, and the locking assembly releases the locking of the driving member by moving.
4. The electronic device accessory according to claim 3, characterized in that, The driving component is a driving spring. When the bracket is in the retracted state, the driving spring is in the stretched state.
5. The electronic device accessory according to claim 3, characterized in that, The drive member has a first abutment portion at one end connected to the connecting line, and the locking component has a second abutment portion; one of the first abutment portion and the second abutment portion is an abutment groove, and the other is an abutment protrusion. The abutment protrusion abuts against the groove wall of the abutment groove by engaging with the abutment groove, thereby locking the drive member by the locking component; the abutment protrusion releases the locking component from the drive member by disengaging from the abutment groove.
6. The electronic device accessory according to any one of claims 1-5, characterized in that, The locking assembly 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. The locking component has a second abutment portion, and the driving component has a third abutment portion. When the bracket is in a supported state, the third abutment portion abuts against the second abutment portion to restrict the button reset.
7. The electronic device accessory according to any one of claims 1-5, characterized in that, The bracket includes a bracket body and a rotating shaft. The rotating shaft is disposed on the bracket body and connected to the housing. One end of the connecting line connected to the bracket is located on the opposite side of the rotating shaft from the bracket body.
8. The electronic device accessory according to claim 7, characterized in that, The housing has a receiving cavity for accommodating an electronic device, and the bracket is rotatably disposed on the side of the housing opposite to the receiving cavity; One end of the connecting line that connects to the support body is located on the side of the support body opposite to the receiving cavity; and / or, The rotating shaft is located on the side of the support body near the receiving cavity.
9. The electronic device accessory according to any one of claims 1-5, characterized in that, The housing has a receiving cavity for accommodating an electronic device, the receiving cavity having a through hole communicating with a side of the housing opposite to the receiving cavity, the bracket being rotatably disposed on the side of the housing opposite to the receiving cavity, a portion of the driving assembly and a portion of the locking assembly being disposed within the receiving cavity, and one end of the connecting line being connected to the bracket through the through hole.
10. The electronic device accessory according to claim 9, characterized in that, A first portion of the cavity wall of the accommodating cavity is recessed to form a first mounting groove, and at least a portion of the drive assembly is located within the first mounting groove; and / or, A second portion of the cavity wall of the receiving cavity is recessed to form a second mounting groove, and the locking assembly is movably disposed within the second mounting groove; and / or, A portion of the housing is recessed to form a wire groove, and the connecting line is movably disposed within the wire groove.
11. The electronic device accessory according to any one of claims 1-5, 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.
12. The electronic device accessory according to any one of claims 1-5, characterized in that, The electronic device accessory also includes a locking structure, which includes a first locking part and a second locking part. The first locking part is disposed on the bracket, and the second locking part is disposed on the housing. The first locking part and the second locking part are locked together to lock the bracket in the storage state. The locking component releases the lock by moving the first locking part and the second locking part apart; and / or, The first locking part and the second locking part separate from each other under the driving force of the driving assembly to release the lock.
13. The electronic device accessory according to claim 12, characterized in that, The first locking part and the second locking part are magnetically attracted components that magnetically engage with each other.