Disassembly Structure and Electronic Device

By designing a disassembly structure including a bottom shell, a snap device and a pressing device, the problem of inconvenience in disassembly of existing smart electronic products is solved, and the convenient disassembly of the module and the bottom shell is realized, and the convenience of disassembly is improved.

CN115604959BActive Publication Date: 2025-06-27GEER TECH CO LTD
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Patent Information

Application Number
CN202211338769.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-28
Publication Date
2025-06-27
Estimated Expiration
2042-10-28

AI Technical Summary

Technical Problem

The disassembly structure of existing smart electronic products is not convenient to disassemble and requires special tools, which leads to troublesome disassembly.

Method used

A disassembly structure including a bottom case, a snap device and a pressing device are designed. The bottom shell is equipped with an installation station, and the snap device and the installation station are arranged in the length direction of the bottom shell, and are used to snap the module; the pressing device and the installation station are arranged in the width direction of the bottom shell, and the transmission connects the snap device, and the button is driven to separate the snap device from the module through the pressing device to realize disassembly.

Benefits of technology

Through this disassembly structure, the module can be separated from the bottom shell by simply pressing and pressing the pressing device, which can realize disassembly, significantly improving the convenience of disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a disassembly structure and an electronic device. The disassembly structure includes a bottom case, a buckle device, and a pressing device. The bottom case is provided with an installation station for placing a module. The buckle device is installed on the bottom case and arranged in the length direction of the bottom case with the installation station. The buckle device is used for buckling and connecting the module. The pressing device is installed on the bottom case and arranged in the width direction of the bottom case with the installation station. The pressing device is in transmission connection with the buckle device. The pressing device is used for being pressed by a person to unlock the disassembly structure. When the pressing device is pressed, it drives the buckle device to separate from the module, so that the disassembly structure is in an unlocked state. When the pressing device is released, the buckle device resets, so that the disassembly structure is in a locked state. The technical solution of the present invention can facilitate disassembly and improve convenience.
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Description

Technical Field

[0001] The invention relates to the technical field of electronic products, and in particular to a disassembly structure and electronic equipment. Background Art

[0002] At present, most smart electronic products often need to be disassembled. The existing disassembly and assembly structure is not convenient for disassembly. For example, the watch body and wristband of a smart watch are usually connected by a raw ear shaft. The raw ear shaft refers to the steel rod connecting the two wristbands to the watch body respectively, and the two ends of the raw ear shaft are compressible structures. When connecting, the raw ear shaft passes through the wristband, and then the wristband is installed on the watch body by compressing the two ends of the raw ear shaft. When disassembling, special tools are required to disassemble and separate the watch body and the wristband, which is more troublesome. Therefore, a disassembly structure is needed that can facilitate disassembly and improve convenience. Summary of the invention

[0003] The main purpose of the present invention is to provide a disassembly structure and an electronic device, aiming to facilitate disassembly and improve convenience.

[0004] To achieve the above object, the disassembly structure proposed by the present invention includes:

[0005] A bottom shell, wherein the bottom shell is provided with an installation station, and the installation station is used to place the module;

[0006] A snap-fit ​​device, which is mounted on the bottom shell and is arranged with the installation station in the length direction of the bottom shell, and is used for snap-fitting the module; and

[0007] A pressing device, the pressing device is installed on the bottom shell and is arranged with the installation station in the width direction of the bottom shell, the pressing device is transmission-connected with the buckle device, and the pressing device is used for being pressed by a person to unlock the disassembly structure;

[0008] When the pressing device is pressed, the buckle device is driven to separate from the module, so that the disassembly structure is in an unlocked state; when the pressing device is released, the buckle device is reset, so that the disassembly structure is in a locked state.

[0009] Optionally, the buckle device includes two buckle assemblies, both of which are mounted on the bottom shell, one of the buckle assemblies, the mounting station, and the other of the buckle assemblies are arranged in sequence in the length direction of the bottom shell, both of the buckle assemblies are used for buckling connection with the module, and both of the buckle assemblies are transmission-connected with the pressing device;

[0010] The pressing device drives the two buckle assemblies to move simultaneously, so that the two buckle assemblies are separated from the module to unlock the disassembly structure.

[0011] Optionally, the pressing device includes two pressing components, both of which are installed on the bottom case. One pressing component, the installation station, and the other pressing component are arranged in sequence in the width direction of the bottom case. One pressing component is in transmission connection with the two buckle components, and the other pressing component is in transmission connection with the two buckle components;

[0012] Among them, when only one of the pressing components is pressed, only a part of each of the two buckle components can be driven to be separated from the module, and the module cannot be separated from the bottom case;

[0013] When the two pressing components are pressed simultaneously, the two buckle components can be driven to be completely separated from the module at the same time, the module can be separated from the bottom case, and the disassembly structure is in an unlocked state;

[0014] After the two pressing components are reset, the buckle device is reset, and the disassembly structure is in a locked state.

[0015] Optionally, the buckle component includes two buckle parts, both of which are installed on the bottom case and are arranged in sequence in the width direction of the bottom case. The two buckle parts are respectively in transmission connection with the adjacent pressing components;

[0016] Both of the two buckle parts have a clamping state and a decoupling state. When the buckle part is in the clamping state, the buckle part is in clamping connection with the module; when the buckle part is in the decoupling state, the buckle part is separated from the module;

[0017] Among them, any one of the pressing components can drive the two buckle parts adjacent to it and located on both sides of the installation station respectively, so that the corresponding two buckle parts are separated from the module at the same time.

[0018] Optionally, the bottom case includes:

[0019] A first groove structure, the first groove structure is provided with two through holes, the two through holes are respectively located on the opposite side surfaces of the first groove structure in the width direction of the bottom case, and both communicate with the outside; and

[0020] A second groove structure, the second groove structure is installed in the first groove structure, the installation station is arranged in the second groove structure, the second groove structure is provided with two through holes, the two through holes are respectively located on the opposite side surfaces of the second groove structure in the length direction of the bottom case, and communicate with the installation station;

[0021] Both of the two buckle parts of one buckle component are installed on one side of one through hole away from the installation station, and both of the two buckle parts of the other buckle component are installed on one side of the other through hole away from the installation station;

[0022] One of the pressing components is installed between the first groove structure and the second groove structure and protrudes from one of the through holes, and the other pressing component is installed between the first groove structure and the second groove structure and protrudes from the other through hole.

[0023] Optionally, the buckle includes:

[0024] A main body portion installed on a side of the through hole away from the installation station, and the main body portion is in transmission connection with the pressing component;

[0025] An elastic portion located between the main body portion and the inner groove wall of the first groove structure and connected to the main body portion, and one end of the elastic portion away from the main body portion elastically abuts against the inner groove wall of the first groove structure; and

[0026] An abutting portion connected to the main body portion and passing through the through hole for buckling connection with the module;

[0027] Wherein, the pressing component pushes the main body portion to move away from the through hole, the main body portion compresses the elastic portion, and the abutting portion is withdrawn from the through hole to separate from the module.

[0028] Optionally, the main body portion has two opposite side edges in the height direction of the bottom case, one side edge of the main body portion is rotationally connected to the first groove structure and / or the second groove structure, and the other side edge of the main body portion is bent to connect the abutting portion and the elastic portion;

[0029] Wherein, the pressing component pushes the main body portion to swing so that the abutting portion is withdrawn from the through hole.

[0030] Optionally, the pressing component includes:

[0031] A key, the outer end of which passes through the through hole and protrudes outside the first groove structure;

[0032] A connecting rod, on the side wall of which the key is convexly provided; and

[0033] Two wedge-shaped rods are respectively arranged at both ends of the connecting rod and respectively extend towards the two buckle components, and inclined surfaces are provided at the ends of the wedge-shaped rods away from the connecting rod;

[0034] Wherein, when the key is pressed, the key pushes the wedge-shaped rod towards the buckle through the connecting rod to jack up the buckle through the inclined surface, so that the buckle is separated from the module.

[0035] Optionally, the pressing assembly further includes a spring, wherein the spring is clamped between the connecting rod and an outer side surface of the second groove structure and is used to drive the connecting rod to reset.

[0036] Optionally, a through hole is formed on one side wall of the second groove structure in the width direction of the bottom shell;

[0037] A contact portion is protruded from a side wall of the connecting rod facing the through hole;

[0038] Wherein, when the button is pressed, the contact portion passes through the through hole.

[0039] The present invention also provides an electronic device, comprising a module and a disassembly structure, wherein the module is snap-connected to the disassembly structure;

[0040] The disassembly structure comprises:

[0041] A bottom shell, wherein the bottom shell is provided with an installation station, and the installation station is used to place the module;

[0042] A snap-fit ​​device, which is mounted on the bottom shell and is arranged with the installation station in the length direction of the bottom shell, and is used for snap-fitting the module; and

[0043] A pressing device, the pressing device is installed on the bottom shell and is arranged with the installation station in the width direction of the bottom shell, the pressing device is transmission-connected with the buckle device, and the pressing device is used for being pressed by a person to unlock the disassembly structure;

[0044] When the pressing device is pressed, the buckle device is driven to separate from the module, so that the disassembly structure is in an unlocked state; when the pressing device is released, the buckle device is reset, so that the disassembly structure is in a locked state.

[0045] The disassembly structure of the technical solution of the present invention includes a bottom shell, a buckle device and a pressing device. The bottom shell is provided with an installation station, the installation station is used to place the module, the buckle device is installed on the bottom shell, and is arranged with the installation station in the length direction of the bottom shell, and the buckle device is used to buckle the module. The pressing device is installed on the bottom shell, and is arranged with the installation station in the width direction of the bottom shell. The pressing device is transmission-connected with the buckle device, and the pressing device is used for a person to press to unlock the disassembly structure. When the pressing device is pressed, the buckle device is driven to separate from the module, so that the disassembly structure is in an unlocked state, so that the module is separated from the bottom shell. When the pressing device is released, the buckle device is reset to put the disassembly structure in a locked state, so that when disassembling the module, only the pressing device needs to be pressed to separate the module from the bottom shell, thereby realizing disassembly, thereby facilitating disassembly and improving convenience. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can be obtained based on the structures shown in these drawings.

[0047] Figure 1 It is an exploded view of an embodiment in which a module is installed in the disassembly structure of the present invention;

[0048] Figure 2 For Figure 1 a cross-sectional view of the disassembly structure in

[0049] Figure 3 For Figure 2 a partial enlarged view of part A in

[0050] Figure 4 For Figure 1 another cross-sectional view of the disassembly structure in

[0051] Figure 5 For Figure 2 a schematic structural diagram of the buckle assembly in

[0052] Figure 6 For Figure 2 a schematic structural diagram of the buckle in

[0053] Figure 7 For Figure 2 a schematic structural diagram of the pressing assembly in

[0054] Explanation of the reference numerals in the drawings:

[0055] Label Name Label Name 100 Disassembly Structure 10 Bottom Case 10a Installation Station 11 First Groove Structure 11a Through Hole 13 Second Groove Structure 13a Through Hole 13b Penetrating Hole 30 Snap Device 31 Snap Component 311 Snapping Piece 3111 Main Body Part 3113 Elastic Part 3115 Abutting Part 50 Pressing Device 51 Pressing Component 511 Button 513 Connecting Rod 5131 Contact Part 515 Wedge Rod 515a Inclined Plane 517 Spring 200 Module 201 Main Machine Button

[0056] The realization of the object of the present invention, functional features and advantages will be further described in conjunction with the embodiments with reference to the drawings. Detailed implementation manners

[0057] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.

[0058] It should be noted that all directional indications in the embodiments of the present invention (such as up, down, left, right, front, back, etc.) are only used to explain the relative position relationship, movement status, etc. between the components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0059] In addition, the descriptions of "first", "second", etc. in the present invention are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in the field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0060] In view of the technical problems reflected by the background technology, the present invention proposes a disassembly structure, which is intended to facilitate disassembly and improve convenience. The disassembly structure can be used in electronic devices. For example: in a smart watch, the watch body and the watch strap are detachable; in a smart ring, the main body and the ring body are detachable; in a TWS earphone product, the earphone and the charging box are detachable; in a VR / AR product, the main body and the headset are detachable; the micro drone and the charging stand are detachable; the speaker extension speaker and the main body are detachable, etc.

[0061] The specific structure of the disassembly structure proposed by the present invention will be described in the following specific embodiments:

[0062] like Figures 1 to 4 As shown, in an embodiment of the disassembly structure 100 of the present invention, the disassembly structure 100 includes a bottom shell 10, a buckle device 30 and a pressing device 50. The bottom shell 10 is provided with an installation station 10a, and the installation station 10a is used to place the module 200.

[0063] The snap-fit ​​device 30 is installed on the bottom shell 10 and is arranged with the installation station 10a in the length direction of the bottom shell 10. The snap-fit ​​device 30 is used to snap-fit ​​the connection module 200. The pressing device 50 is installed on the bottom shell 10 and is arranged with the installation station 10a in the width direction of the bottom shell 10. The pressing device 50 is transmission-connected with the snap-fit ​​device 30. The pressing device 50 is used for people to press to unlock the disassembly structure 100.

[0064] When the pressing device 50 is pressed, the buckle device 30 is driven to separate from the module 200, so that the disassembly structure 100 is in an unlocked state; when the pressing device 50 is released, the buckle device 30 is reset, so that the disassembly structure 100 is in a locked state.

[0065] In this embodiment, the length direction of the bottom case 10 refers to the extending direction of the bottom case 10, as shown in Figure 1 and Figure 2 the left - right direction therein. The snap - fitting device 30 and the installation station 10a are arranged in the length direction of the bottom case 10, that is, in the left - right direction. If the snap - fitting device 30 has only one snap - fitting component 31, the snap - fitting device 30 can be on the left or right side of the installation station 10a; if the snap - fitting device 30 is composed of two snap - fitting components 31, one snap - fitting component 31 is on the left side of the installation station 10a and one snap - fitting component 31 is on the right side of the installation station 10a. The width direction of the bottom case 10 refers to the front - back direction. The pressing device 50 and the installation station 10a are arranged in the width direction of the bottom case 10, that is, in the front - back direction, as shown in Figure 1 and Figure 2 the front - back direction therein. If the pressing device 50 has only one pressing component 51, the pressing device 50 can be on the front or rear side of the installation station 10a. If the pressing device 50 is composed of two pressing components 51, one pressing component 51 is on the front side of the installation station 10a and one pressing component 51 is on the rear side of the installation station 10a. As shown in Figure 2 If the snap - fitting device 30 is composed of two snap - fitting components 31 and the pressing device 50 is composed of two pressing components 51, then the two snap - fitting components 31 are arranged in the length direction of the bottom case 10, which can fix both ends of the length of the module 200, making the installation of the module 200 on the bottom case 10 more firm and stable. And the two pressing components 51 are arranged in the width direction of the bottom case 10, which can reduce the distance between the two pressing components 51. For small - sized products, such as smart watches, etc., it is convenient to press the two pressing components 51 with one hand simultaneously.

[0066] The installation station 10a refers to a spatial position on the bottom case 10, and its form can be a surface on the bottom case 10, a groove on the bottom case 10, or other forms, which are not listed one by one here.

[0067] The module 200 refers to a functional device, that is, an electronic device that realizes a certain function. For example: in a smart watch, the module 200 is the watch body; in a smart ring, the module 200 is the ring body; in a full - set of TWS earphones, the module 200 is the earphone; in a VR / AR product, the module 200 is the VR / AR main body; in a full - set of miniature drones, the module 200 is the miniature drone; in an extended speaker and a speaker, the module 200 is the extended speaker, etc.

[0068] The snap device 30 is snap-connected to the module 200. Among them, in the first form: the snap device 30 can be a hook-shaped cantilever snap. There is a protrusion on the hook-shaped cantilever snap, and a snap hole is formed on the module 200. The protrusion of the hook-shaped cantilever snap passes through the snap hole, so as to realize the snap connection; in the second form: the snap device 30 can be a sleeve-shaped cantilever snap. There is a snap hole on the sleeve-shaped cantilever snap, and a protrusion is provided on the module 200. The protrusion of the module 200 passes through the snap hole, so as to realize the snap connection; of course, it can also be other snap connection forms, which will not be listed one by one here.

[0069] The pressing device 50 is in transmission connection with the snap device 30. Among them, in the first form: the pressing device 50 is provided with an inclined surface 515a. The inclined surface 515a forms an obtuse angle with the moving direction of the pressing device 50 towards the snap device 30. By moving the pressing device 50 towards the snap device 30, the inclined surface 515a abuts against the snap device 30, so that the snap device 30 moves away from the module 200, so that the module 200 is decoupled, and thus the module 200 and the bottom case 10 can be freely separated to realize disassembly. As Figure 3 shown, in the second form: the snap device 30 is provided with an inclined surface 515a. The inclined surface 515a forms an acute angle with the moving direction of the pressing device 50 towards the snap device 30. By moving the pressing device 50 towards the snap device 30, the pressing device 50 abuts against the inclined surface 515a, so that the snap device 30 moves away from the module 200, so that the module 200 is decoupled, and thus the module 200 and the bottom case 10 can be freely separated to realize disassembly; of course, it can also be other ways to realize the transmission connection between the pressing device 50 and the snap device 30, such as: gear transmission, worm transmission, etc., which will not be listed one by one here. When the pressing device 50 is released, the snap device 30 can be reset. It can be reset by a spring 517, or by a spring piece, or by other effective reset methods.

[0070] It should be noted that the buckle device 30 can be a buckle component 31 or composed of two buckle components 31. Similarly, the pressing device 50 can be a pressing component 51 or composed of two pressing components 51. If the buckle device 30 is a buckle component 31 and the pressing device 50 is a pressing component 51, then the pressing component 51 is drivingly connected to the buckle component 31; if the buckle device 30 is a buckle component 31 and the pressing device 50 is two pressing components 51, then the two pressing components 51 jointly drivingly connect to the buckle component 31; if the buckle device 30 is two buckle components 31 and the pressing device 50 is a pressing component 51, then the pressing component 51 is drivingly connected to the two buckle components 31; if the buckle device 30 is two buckle components 31 and the pressing device 50 is two pressing components 51, then one pressing component 51 is drivingly connected to one buckle component 31, or one pressing component 51 is drivingly connected to the two buckle components 31, and the other pressing component 51 is also drivingly connected to the two buckle components 31.

[0071] The unlocked state of the disassembly structure 100 means the state in which the module 200 can be freely detached from the bottom case 10. The locked state of the disassembly structure 100 means the state in which the module 200 is snap-connected to the buckle device 30 and fixed to the bottom case 10, or the state in which the buckle device 30 is ready to be snap-connected to the module 200 at any time.

[0072] It can be understood that when the pressing device 50 is pressed, it drives the buckle device 30 to separate from the module 200, so that the disassembly structure 100 is in the unlocked state, so that the module 200 can be separated from the bottom case 10. When the pressing device 50 is released, the buckle device 30 resets, so that the disassembly structure 100 is in the locked state. Thus, when disassembling the module 200, only need to press the pressing device 50, then the module 200 can be separated from the bottom case 10, thereby realizing disassembly, and further facilitating disassembly and improving convenience.

[0073] As Figure 1 and Figure 2 shown, in an embodiment of the disassembly structure 100 of the present invention, the buckle device 30 includes two buckle components 31. The two buckle components 31 are both installed on the bottom case 10. One buckle component 31, the installation station 10a, and the other buckle component 31 are arranged in sequence in the length direction of the bottom case 10. The two buckle components 31 are both used for snap-connecting with the module 200, and the two buckle components 31 are both drivingly connected to the pressing device 50;

[0074] Among them, the pressing device 50 simultaneously drives the two buckle components 31 to move, so that the two buckle components 31 are both separated from the module 200 to unlock the disassembly structure 100.

[0075] In this embodiment, a buckle assembly 31, the installation station 10a, and another buckle assembly 31 are arranged in sequence in the length direction of the bottom shell 10, that is, the two buckle assemblies 31 are respectively located on the left and right sides of the installation station 10a. Figure 2 In the embodiment, one buckle assembly 31 is located on the left side of the installation station 10a, and the other buckle assembly 31 is located on the right side of the installation station 10a.

[0076] The two buckle assemblies 31 are both used for buckle connection with the module 200, and the buckle connection method thereof refers to the buckle connection method between the above-mentioned buckle device 30 and the module 200, which will not be repeated here. The two buckle assemblies 31 are both transmission-connected with the pressing device 50, and the transmission connection method thereof refers to the transmission connection method between the above-mentioned pressing device 50 and the buckle device 30, which will not be repeated here.

[0077] The pressing device 50 drives the two buckle assemblies 31 to move at the same time, so that the two buckle assemblies 31 are separated from the module 200 to unlock the disassembly structure 100. Specifically, the pressing device 50 is provided with two pushing parts, which respectively drive the two buckle assemblies 31 to move.

[0078] It should be noted that the pressing device 50 can be a pressing component 51, which is provided with two pushing parts, and the two pushing parts are respectively used to push the two buckle components 31; the pressing device 50 can also be composed of two pressing components 51, one pressing component 51 is used to push one buckle component 31, and the other pressing component 51 is used to push the other buckle component 31; or, the pressing device 50 is composed of two pressing components 51, each pressing component 51 is provided with two pushing parts, and the two pushing parts of the same pressing component 51 are respectively used to push the two buckle components 31.

[0079] It can be understood that by respectively arranging the buckle assemblies 31 on both sides of the installation station 10a, the two buckle assemblies 31 are respectively connected to the pressing device 50 by transmission, so that the pressing device 50 drives the two buckle assemblies 31 to move at the same time, so that the two buckle assemblies 31 are separated from the module 200 to unlock the disassembly structure 100. In this way, the two buckle assemblies 31 can make the buckle connection between the bottom shell 10 and the module 200 more firm and reliable. In addition, the pressing device 50 can drive the two buckle assemblies 31 to move at the same time to unlock the disassembly structure 100, which can improve the unlocking efficiency and be more convenient.

[0080] like Figure 1 and Figure 2As shown, in an embodiment of the disassembly structure 100 of the present invention, the pressing device 50 includes two pressing components 51. Both pressing components 51 are installed on the bottom case 10. One pressing component 51, the installation station 10a, and the other pressing component 51 are arranged in sequence in the width direction of the bottom case 10. One pressing component 51 is in transmission connection with two buckle components 31, and the other pressing component 51 is in transmission connection with two buckle components 31.

[0081] Among them, when only one pressing component 51 is pressed, only a part of each of the two buckle components 31 can be driven to be separated from the module 200, and the module 200 cannot be separated from the bottom case 10.

[0082] When the two pressing components 51 are pressed simultaneously, the two buckle components 31 can be driven to be completely separated from the module 200 at the same time. The module 200 can be separated from the bottom case 10, and the disassembly structure 100 is in an unlocked state.

[0083] After the two pressing components 51 are reset, the buckle device 30 is reset, and the disassembly structure 100 is in a locked state.

[0084] In this embodiment, one pressing component 51, the installation station 10a, and the other pressing component 51 are arranged in sequence in the width direction of the bottom case 10. That is to say, there is one pressing component 51 on the front side of the installation station 10a, and there is another pressing component 51 on the rear side of the installation station 10a. One pressing component 51 is in transmission connection with two buckle components 31 at the same time, and the other pressing component 51 is in transmission connection with two buckle components 31 at the same time. The transmission connection method refers to the transmission connection method between the pressing device 50 and the buckle device 30 described above, and will not be elaborated here.

[0085] When only one pressing component 51 is pressed, only a part of each of the two buckle components 31 can be driven to be separated from the module 200, and the module 200 cannot be separated from the bottom case 10. When the two pressing components 51 are pressed simultaneously, the two buckle components 31 can be driven to be completely separated from the module 200 at the same time, the module 200 can be separated from the bottom case 10, and the disassembly structure 100 is in the unlocked state. After the two pressing components 51 are reset, the buckle device 30 is reset, and the disassembly structure 100 is in the locked state. The first implementation method: The buckle component 31 is a strip-shaped elastic sheet. The middle part of the strip-shaped elastic sheet is fixed on the bottom case 10, and the strip-shaped elastic sheet extends along the width direction of the bottom case 10. A convex part is protruded on one surface of one end of the strip-shaped elastic sheet, and another convex part is protruded on one surface of the other end of the strip-shaped elastic sheet. The two convex parts are both on the same surface of the strip-shaped elastic sheet and both face the installation station 10a. The two convex parts are respectively buckled and connected with the module 200. A butting part 3115 is protruded on one end of the strip-shaped elastic sheet in the height direction of the bottom case 10, and another butting part 3115 is protruded on the other end of the strip-shaped elastic sheet in the height direction of the bottom case 10. Among them, when only one pressing component 51 is pressed, one butting part 3115 is pushed, so that one end of the strip-shaped elastic sheet undergoes elastic deformation and warps, so that the butting part 3115 is separated from the module 200, while the other end of the elastic sheet does not deform and is still buckled and connected with the module 200. Overall, the module 200 cannot be separated from the bottom case 10. When the two pressing components 51 are pressed simultaneously, the two pressing components 51 respectively push the two butting parts 3115, so that the two butting parts 3115 are separated from the module 200, so that the module 200 can be separated from the bottom case 10 to realize disassembly. After the pressing component 51 is released, under the drive of the elastic force, the elastic sheet makes the butting part 3115 reset to be buckled and connected with the module 200 or wait to be buckled and connected with the module 200.

[0086] As Figure 2 and Figure 3As shown, Implementation Method 2: The buckle assembly 31 includes two buckle members 311. Both of the two buckle members 311 are installed on the bottom case 10 and are arranged in sequence in the width direction of the bottom case 10. The two buckle members 311 are respectively in transmission connection with adjacent pressing assemblies 51. The buckle member 311 has an elastic force. Among them, when only one pressing assembly 51 is pressed, one buckle member 311 is pushed, causing the buckle member 311 to undergo elastic deformation and separate from the module 200, while the other buckle member 311 is not affected and remains in buckle connection with the module 200. Overall, the module 200 and the bottom case 10 cannot be separated. When two pressing assemblies 51 are pressed simultaneously, the two pressing assemblies 51 respectively push the two buckle members 311, causing the two buckle members 311 to separate from the module 200, so that the module 200 and the bottom case 10 can be separated to achieve disassembly. After releasing the pressing assembly 51, the buckle member 311 resets under the drive of the elastic force to be in buckle connection with the module 200 or wait to be in buckle connection with the module 200. Of course, there can also be other implementation methods, which will not be listed one by one here.

[0087] The pressing assembly 51 resets. It can be by setting a spring 517. When the pressing assembly 51 is pressed, the spring 517 is compressed to obtain an elastic force. After releasing the pressing, the elastic force of the spring 517 drives the pressing assembly 51 to reset; it can also be by setting a shrapnel. When the pressing assembly 51 is pressed, the shrapnel is compressed to obtain an elastic force. After releasing the pressing, the elastic force of the shrapnel drives the pressing assembly 51 to reset; there can also be other effective reset methods.

[0088] It can be understood that through a pressing assembly 51, an installation station 10a, and another pressing assembly 51 arranged in sequence in the width direction of the bottom case 10, one pressing assembly 51 is in transmission connection with two buckle assemblies 31, and another pressing assembly 51 is in transmission connection with two buckle assemblies 31. Only when the two pressing assemblies 51 are pressed simultaneously can the module 200 and the bottom case 10 be separated. Thus, when one of the pressing devices 50 is accidentally touched, the module 200 and the bottom case 10 cannot be separated, thereby realizing the anti-misoperation function to avoid the module 200 and the bottom case 10 being unlocked unconsciously by the user, thus reducing the risk of loss of the module 200.

[0089] Such as Figure 2 、 Figure 3 and Figure 5 As shown, in an embodiment of the disassembly structure 100 of the present invention, the buckle assembly 31 includes two buckle members 311. Both of the two buckle members 311 are installed on the bottom case 10 and are arranged in sequence in the width direction of the bottom case 10. The two buckle members 311 are respectively in transmission connection with adjacent pressing assemblies 51.

[0090] The two fastening members 311 both have a latched state and a decoupled state. When the fastening member 311 is in the latched state, the fastening member 311 is snap-connected to the module 200; when the fastening member 311 is in the decoupled state, the fastening member 311 is separated from the module 200.

[0091] Wherein, any one of the pressing components 51 can drive the two fastening members 311 adjacent thereto and respectively located on both sides of the installation station 10a, so that the corresponding two fastening members 311 are separated from the module 200 simultaneously.

[0092] In this embodiment, the fastening member 311 can be a hook-shaped cantilever fastening, or a sleeve-shaped cantilever fastening, or also a fastening member 311 in other forms. The two fastening members 311 are both installed on the bottom case 10 and are arranged in sequence in the width direction of the bottom case 10, as Figure 2 shown, the two fastening members 311 are arranged in the front-back direction. One fastening member 311 is in transmission connection with one pressing component 51, and the other fastening member 311 is in transmission connection with the other pressing component 51. The transmission connection manner thereof refers to the transmission connection manner of the above-mentioned pressing device 50 and the fastening device 30.

[0093] The two fastening members 311 both have a latched state and a decoupled state. The latched state means that the fastening member 311 is snap-connected to the module 200. The decoupled state means that the fastening member 311 is separated from the module 200. One of the pressing components 51 can drive the two fastening members 311. One fastening member 311 is located on the left side of the installation station 10a, and the other fastening member 311 is located on the right side of the installation station 10a. These two fastening members 311 are both adjacent to the pressing component 51. That is to say, one pressing component 51 can push the corresponding two fastening members 311 to be separated from the module 200 simultaneously.

[0094] It can be understood that by installing the two fastening members 311 on the bottom case 10 and arranging them in sequence in the width direction of the bottom case 10, and the two fastening members 311 are respectively in transmission connection with the adjacent pressing components 51, the module 200 and the bottom case 10 can be separated only when the two pressing components 51 are pressed simultaneously. In this form of realizing the anti-misoperation function, since the fastening members 311 of the same fastening component 31 are driven separately, when one fastening member 311 is driven to move, it can be not affected by other fastening members 311, so it is more stable and reliable. And when one fastening member 311 in the fastening component 31 fails, since this fastening member 311 is separated from the other fastening member 311 of the same fastening component 31, the faulty fastening member 311 can be replaced separately without replacing the whole fastening component 31, thus the cost can be saved.

[0095] As Figures 1 to 4As shown, in an embodiment of the disassembly structure 100 of the present invention, the bottom case 10 includes a first groove structure 11 and a second groove structure 13. The first groove structure 11 is provided with two through holes 11a, and the two through holes 11a are respectively located on the opposite side surfaces of the first groove structure 11 in the width direction of the bottom case 10, and both communicate with the outside; the second groove structure 13 is installed in the first groove structure 11, an installation station 10a is provided in the second groove structure 13, and the second groove structure 13 is provided with two through holes 13a, and the two through holes 13a are respectively located on the opposite side surfaces of the second groove structure 13 in the length direction of the bottom case 10, and communicate with the installation station 10a.

[0096] Two buckle members 311 of a buckle assembly 31 are both installed on one side of a through hole 13a away from the installation station 10a, and two buckle members 311 of another buckle assembly 31 are both installed on one side of the other through hole 13a away from the installation station 10a.

[0097] A pressing assembly 51 is installed between the first groove structure 11 and the second groove structure 13 and extends out from one through hole 11a, and another pressing assembly 51 is installed between the first groove structure 11 and the second groove structure 13 and extends out from the other through hole 11a.

[0098] In this embodiment, a through hole 11a is opened on the front side surface of the first groove structure 11, and another through hole 11a is opened on the rear side surface of the first groove structure 11. A pressing assembly 51 is installed between the first groove structure 11 and the second groove structure 13 and extends out from this through hole 11a for the user to press. Another pressing assembly 51 is installed between the first groove structure 11 and the second groove structure 13 and extends out from this through hole 11a for the user to press. A through hole 13a is opened on the left side surface of the second groove structure 13, and another through hole 13a is opened on the right side surface of the first groove structure 11. Two buckle members 311 of a buckle assembly 31 are both installed on one side of a through hole 13a away from the installation station 10a. Two buckle members 311 of another buckle assembly 31 are both installed on one side of the other through hole 13a away from the installation station 10a. It should be noted that the second groove structure 13 is installed in the first groove structure 11, which can be integrally injection-molded, welded, or other effective installation methods.

[0099] It can be understood that by installing the second groove structure 13 in the first groove structure 11, an installation station 10a is provided in the second groove structure 13, and the module 200 can be placed or taken out through the notch of the second groove structure 13, so that the installation or disassembly of the module 200 can be facilitated. The two buckle assemblies 31 and the two pressing assemblies 51 are both located in the gap between the first groove structure 11 and the second groove structure 13, which can protect the two buckle assemblies 31 and the two pressing assemblies 51 and facilitate maintenance.

[0100] Such asFigure 2 , Figure 3 and Figure 6 As shown in Figure 3 and Figure 6 , in an embodiment of the disassembly structure 100 of the present invention, the buckle member 311 includes a main body portion 3111, an elastic portion 3113, and an abutting portion 3115. The main body portion 3111 is installed on the side of the through hole 13a away from the installation station 10a, and the main body portion 3111 is in transmission connection with the pressing assembly 51. The elastic portion 3113 is located between the main body portion 3111 and the inner groove wall of the first groove structure 11 and is connected to the main body portion 3111. One end of the elastic portion 3113 away from the main body portion 3111 elastically abuts against the inner groove wall of the first groove structure 11. The abutting portion 3115 is connected to the main body portion 3111 and passes through the through hole 13a for snap connection with the module 200.

[0101] Among them, the pressing assembly 51 pushes the main body portion 3111 to move away from the through hole 13a. The main body portion 3111 compresses the elastic portion 3113 and withdraws the abutting portion 3115 from the through hole 13a to separate from the module 200.

[0102] In this embodiment, the connection between the main body portion 3111, the elastic portion 3113, and the abutting portion 3115 can be a welded connection; it can also be formed by cutting and bending a sheet metal; or it can be other connection methods. The main body portion 3111 is in transmission connection with the pressing assembly 51, and its transmission connection method refers to the transmission connection method of the pressing device 50 and the buckle device 30, which will not be elaborated here. The main body portion 3111 is installed on the side of the through hole 13a away from the installation station 10a. The first installation method: one side edge of the main body portion 3111 is rotationally connected to the second groove structure 13 through a rotating shaft, and in a swinging manner around the rotating shaft, the abutting portion 3115 connecting the main body portion 3111 is disengaged from or inserted into the through hole 13a; the second installation method: there is a bearing platform between the first groove structure 11 and the second groove structure 13, and the main body portion 3111 can slide left and right on the bearing platform to make the abutting portion 3115 connecting the main body portion 3111 disengage from or insert into the through hole 13a; of course, it can also be other installation methods.

[0103] It can be understood that by the end of the elastic portion 3113 away from the main body portion 3111 abutting against the inner groove wall of the first groove structure 11, and the abutting portion 3115 connecting the main body portion 3111 passing through the through hole 13a, when the pressing assembly 51 pushes the main body portion 3111 to move away from the through hole 13a, the abutting portion 3115 is withdrawn from the through hole 13a, and the elastic portion 3113 is elastically deformed by being compressed by the main body portion 3111; when the pressing assembly 51 moves away from the main body portion 3111, the elastic force of the elastic portion 3113 pushes the main body portion 3111 to reset, and the main body portion 3111 pushes the abutting portion 3115 to penetrate into the through hole 13a to reset for snap connection with the module 200 or waiting for snap connection with the module 200. In this way, automatic reset of the buckle member 311 can be achieved, and the structure is stable and reliable.

[0104] like Figure 4 , Figure 5 as well as Figure 6 As shown, in an embodiment of the disassembly structure 100 of the present invention, the main body 3111 has two opposite sides in the height direction of the bottom shell 10, one side of the main body 3111 is rotatably connected to the first slot structure 11 and / or the second slot structure 13, and the other side of the main body 3111 is bent and connected to the abutment portion 3115 and the elastic portion 3113. The pressing assembly 51 pushes the main body 3111 to swing so that the abutment portion 3115 is pulled out of the through hole 13a.

[0105] In this embodiment, the height direction of the bottom shell 10 refers to the up-down direction. One side of the main body 3111 can be rotatably connected to the first slot structure 11, or it can be rotatably connected to the second slot structure 13, or a connecting piece can be set between the first slot structure 11 and the second slot structure 13, and one side of the main body 3111 can be rotatably connected to the connecting piece. Of course, one side of the main body 3111 can be the upper side of the main body 3111, or it can be the lower side of the main body 3111. The first rotation connection method: one side of the main body 3111 is wound to form a connection hole, and a rotating shaft is set to penetrate the connection hole to achieve rotation connection; the second rotation connection method: a rotating shaft is protruded on each of the two sides of the main body 3111 facing each other, and two ears are protruded between the first slot structure 11 or the second slot structure 13 or the first slot structure 11 and the second slot structure 13, each ear is provided with a connection hole, and each rotating shaft is penetrated in a connection hole, so as to achieve rotation connection; other rotation connection methods can also be used. Correspondingly, the other side of the main body portion 3111 is bent to connect the abutting portion 3115 and the elastic portion 3113 .

[0106] It can be understood that, by rotating one side of the main body 3111 with the first slot structure 11 and / or the second slot structure 13, the other side of the main body 3111 is bent and connected to the abutment portion 3115 and the elastic portion 3113, so that the main body 3111 can move in a swinging manner, that is, the main body 3111 drives the abutment portion 3115 to move with the swing amplitude of one side, so that the abutment portion 3115 can be driven in a small space, thereby reducing the space between the first slot structure 11 and the second slot structure 13, making the entire disassembly structure 100 smaller in size. In addition, one side of the main body 3111 that is away from the rotation axis is bent and connected to the abutment portion 3115 and the elastic portion 3113, that is, the abutment portion 3115 and the elastic portion 3113 are arranged side by side along the width direction (front-rear direction) of the bottom shell 10, so that the space in the left-right direction can be further reduced, so that the gap between the first slot structure 11 and the second slot structure 13 is smaller, so that the entire disassembly structure 100 can be smaller in size.

[0107] like Figure 1, Figure 2 and Figure 7 As shown, in an embodiment of the disassembly structure 100 of the present invention, the pressing assembly 51 includes a button 511, a connecting rod 513 and two wedge-shaped rods 515. The outer end of the button 511 passes through the through hole 11a and extends out of the first slot structure 11. The side wall of the connecting rod 513 is convexly provided with a button 511. The two wedge-shaped rods 515 are respectively arranged at both ends of the connecting rod 513 and extend toward the two buckle assemblies 31 respectively. The ends of the wedge-shaped rods 515 away from the connecting rod 513 are provided with inclined surfaces 515a. When the button 511 is pressed, the button 511 pushes the wedge-shaped rods 515 toward the buckle 311 through the connecting rod 513, so as to lift the buckle 311 through the inclined surfaces 515a, so that the buckle 311 is separated from the module 200.

[0108] In this embodiment, the inclined surface 515a is set at an obtuse angle with the direction in which the wedge rod 515 moves toward the buckle 311. The connection between the button 511, the connecting rod 513, and the two wedge rods 515 can be integrally injection molded, welded, or other connection methods.

[0109] It can be understood that a button 511 is protruded from the side wall of the connecting rod 513, and two wedge rods 515 are respectively arranged at both ends of the connecting rod 513, and an inclined surface 515a is arranged at the end of the wedge rod 515 away from the connecting rod 513, so that when the button 511 is pressed, the two wedge rods 515 are driven to move simultaneously through the connecting rod 513, and the inclined surface 515a of the wedge rod 515 lifts the fastener 311 to separate the fastener 311 from the module 200, so that pressing one pressing component 51 can simultaneously drive the two fasteners 311 to separate from the module 200. Such a configuration is not only simple in structure, convenient for processing and manufacturing, and cost-saving, but also stable and reliable.

[0110] like Figure 1 , Figure 2 and Figure 7 As shown, in an embodiment of the disassembly structure 100 of the present invention, the pressing assembly 51 further includes a spring 517. The spring 517 is sandwiched between the connecting rod 513 and the outer side surface of the second slot structure 13 to drive the connecting rod 513 to return to its original position.

[0111] In this embodiment, the spring 517 is located between the connecting rod 513 and the outer side surface of the second groove structure 13, and the spring 517 is telescopically arranged in the width direction of the bottom case 10. The two ends of the spring 517 respectively abut against the connecting rod 513 and the second groove structure 13. When the button 511 is pressed, the button 511 drives the connecting rod 513 to move, the connecting rod 513 compresses the spring 517, the spring 517 undergoes elastic deformation, and the connecting rod 513 drives the two wedge-shaped rods 515 to push the corresponding two fastening members 311, so that the two fastening members 311 are separated from the module 200. When the pressing of the button 511 is released, the elastic force of the spring 517 pushes the connecting rod 513 to reset, the connecting rod 513 pushes the button 511 to reset, the connecting rod 513 drives the two wedge-shaped rods 515 to move away from the corresponding two fastening members 311, the two wedge-shaped rods 515 are reset, and the two fastening members 311 are reset under the drive of their own elastic force to fasten and connect the module 200 or wait to be fastened and connected to the module 200.

[0112] It should be noted that the number of springs 517 can be set to 1, 2, 3, 4, etc., and those skilled in the art can set the appropriate number of springs 517 according to actual needs.

[0113] It can be understood that by sandwiching the spring 517 between the connecting rod 513 and the outer side surface of the second groove structure 13, it is used to drive the connecting rod 513 to reset, so that the automatic reset of the connecting rod 513, the automatic reset of the button 511, and the automatic reset of the two wedge-shaped rods 515 can be realized simultaneously. Moreover, the spring 517 has a simple structure, is stable and reliable, and can extend the service life.

[0114] As Figure 2 shown, in an embodiment of the disassembly structure 100 of the present invention, a through hole 13b is opened on a side wall of the second groove structure 13 in the width direction of the bottom case 10. A contact portion 5131 protrudes from a side wall of the connecting rod 513 facing the through hole 13b. Among them, when the button 511 is pressed, the contact portion 5131 passes through the through hole 13b.

[0115] In this embodiment, the width direction of the bottom case 10 refers to the front-back direction in the figure. The second groove structure 13 has two opposite side walls in the front-back direction, and a through hole 13b is opened on one of the side walls, and the through hole 13b communicates with the installation station 10a. A contact portion 5131 protrudes from a connecting rod 513 close to the through hole 13b, and the contact portion 5131 is arranged opposite to the through hole 13b. Among them, when the corresponding button 511 is pressed, the button 511 drives the connecting rod 513 to move, so that the contact portion 5131 of the connecting rod 513 passes through the through hole and touches the main machine button 201 of the module 200 to trigger the main machine button 201 of the module 200. When the button 511 is released, the connecting rod 513 resets, so that the contact portion 5131 is withdrawn from the through hole, thereby disengaging from the main machine button 201 of the module 200.

[0116] Understandably, a through hole 13b is formed in a side wall of the second slot structure 13 in the width direction of the bottom case 10, and a contact portion 5131 is protruded from a side wall of the connecting rod 513 facing the through hole 13b. Thus, when the button 511 is pressed, the button 511 drives the connecting rod 513 to move, so that the contact portion 5131 of the connecting rod 513 passes through the through hole and touches the main machine button 201 of the module 200. In this way, the disassembly structure 100 can be combined with the function of the main machine button 201 of the module 200 itself. Pressing the button 511 on one side of the unilateral pressing disassembly structure 100 only realizes the function of the button 511, and pressing the buttons 511 on both sides of the disassembly structure 100 simultaneously can disassemble the module 200. In addition, after the module 200 is received in the bottom case 10, if it is desired to trigger the main machine button 201 of the module 200 outside the bottom case 10, it is necessary to additionally provide a button 511 structure on the bottom case 10 to trigger the main machine button 201 of the module 200. However, in the present invention, the button 511 of the disassembly structure 100 is combined with the function of the button 511 of the module 200 itself, which can reduce the number of buttons 511, thereby reducing the volume of the entire disassembly structure 100 and saving costs.

[0117] The present invention further provides an electronic device, which includes a module 200 and a disassembly structure 100, and the module 200 is snap-connected to the disassembly structure 100. The specific structure of the disassembly structure 100 refers to the above embodiments. Since this electronic device adopts all the technical solutions of the above embodiments, it at least has all the beneficial effects brought by the technical solutions of the above embodiments, and will not be described in detail herein.

[0118] The above are only the preferred embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural transformation made by using the content of the specification and drawings of the present invention under the inventive concept of the present invention, or direct / indirect application in other related technical fields, is included in the patent protection scope of the present invention.

Claims

1. A disassembly structure, characterized in that, include: A bottom shell, the bottom shell comprising a first slot structure and a second slot structure, the first slot structure is provided with via holes connected to the outside on two opposite side surfaces in the width direction of the bottom shell, the second slot structure is installed in the first slot structure, an installation station is provided in the second slot structure, the second slot structure is provided with through holes connected to the installation station on two opposite side surfaces in the length direction of the bottom shell, a through hole is provided on one side wall of the second slot structure in the width direction of the bottom shell, the installation station is used to place a module, the module is a functional device, and has a host button; A buckle device, comprising two buckle assemblies, both of which are mounted on the bottom shell and are respectively located on both sides of the installation station along the length direction of the bottom shell, and are both used for buckle connection with the module; The buckle assembly includes two buckles, which are arranged in sequence in the width direction of the bottom shell, the two buckles of one buckle assembly are installed on a side of one through hole away from the installation station, and the two buckles of the other buckle assembly are installed on a side of the other through hole away from the installation station; The buckle comprises a main body, an elastic part and an abutment part, the main body is installed on the side of the through hole away from the installation station, the elastic part is sandwiched between the main body and the inner groove wall of the first groove structure and connected to the main body, the abutment part is connected to the main body and passes through the through hole for buckle connection with the module; and The pressing device comprises two pressing assemblies, the two pressing assemblies are respectively located at two sides of the installation station along the width direction of the bottom shell, one pressing assembly is installed between the first slot structure and the second slot structure, and the other pressing assembly is installed between the first slot structure and the second slot structure, the main body is transmission-connected with the pressing assembly, the pressing assembly comprises a connecting rod, a button and two wedge-shaped rods, the button is convexly arranged on the side wall of the connecting rod, the outer end of the button passes through the through hole and extends out of the first slot structure, the two wedge-shaped rods are respectively arranged at two ends of the connecting rod, and are respectively extended toward the two buckle assemblies, and the ends of the wedge-shaped rods away from the connecting rod are provided with inclined surfaces; The wedge-shaped rod is in transmission connection with the adjacent buckle, and the button is pressed, so that the button pushes the wedge-shaped rod toward the buckle through the connecting rod, so as to push the main body to move away from the through hole through the inclined surface, and the main body compresses the elastic part and causes the abutment part to be pulled out of the through hole to be separated from the module; A connecting rod of one of the pressing components is provided with a contact portion protruding toward a side wall of the through hole, and the contact portion passes through the through hole to trigger the host button by pressing the button; Any of the pressing assemblies can drive the two clips adjacent to it and located on both sides of the installation station, so that the corresponding two clips are separated from the module at the same time; When the two pressing components are pressed simultaneously, the module can be separated from the bottom case, and the disassembly structure is in an unlocked state; after the two pressing components are reset, the buckle device is reset to make the disassembly structure in a locked state.

2. The disassembly structure according to claim 1, characterized in that, The main body portion has two opposite side edges in the height direction of the bottom case. One side edge of the main body portion is rotatably connected to the first groove structure and / or the second groove structure, and the other side edge of the main body portion is bent to connect the abutting portion and the elastic portion; Wherein, the pressing component pushes the main body portion to swing so that the abutting portion is withdrawn from the through hole.

3. The disassembly structure according to claim 1, wherein, The pressing component further includes a spring, and the spring is clamped between the connecting rod and the outer side surface of the second groove structure for driving the connecting rod to reset.

4. An electronic device, characterized in that, It includes a module and the disassembly structure according to any one of claims 1 to 3, and the module is snap-connected to the disassembly structure.

Citation Information

Patent Citations

  • Detachable connecting part and wearable equipment

    CN113229578A