Battery compartment structure and electronic equipment

By setting up locking components and elastic energy storage components in the battery compartment structure, simple separation of the battery compartment holder and uniform stress of the sealing ring are achieved, which solves the problems of large product volume, asymmetric appearance and poor sealing performance caused by the existing battery compartment structure, and improves the convenience of use and waterproof performance.

CN222953272UActive Publication Date: 2025-06-06WUHAN GUIDE SENSMART TECH CO LTD
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Patent Information

Application Number
CN202421836975.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-06-06
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

The existing battery compartment structural design leads to large longitudinal volume and asymmetrical appearance of the product, and the uneven force of the battery compartment seal ring, resulting in weakening of sealing performance and poor waterproofing effect.

Method used

A battery compartment structure is designed, in which the locking assembly is arranged on both sides of the battery compartment seat, and the elastic energy storage assembly is pushed to separate the battery compartment seat by simply pressing the button, avoiding the method of pulling the compartment cover, and ensuring that the sealing ring is subjected to uniform force.

Benefits of technology

The product structure design is symmetrical left and right, beautiful appearance, improved the convenience of use, and improved the waterproof performance through a uniformly stressed sealing ring.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a battery compartment structure and electronic equipment. The battery compartment structure comprises a cavity; the battery compartment seat is used for accommodating a battery; the bin cover is connected with the battery bin seat; the elastic energy storage assembly is arranged in the cavity and generates acting force through elastic deformation; and a lock catch assembly. The battery compartment seat extends into the cavity, after pressure is applied to the elastic energy storage assembly, the battery compartment seat is locked through the lock catch assembly so as to fix the position of the battery compartment seat, and the elastic energy storage assembly pushes the battery compartment seat to move by triggering the lock catch assembly so as to enable the battery compartment seat to move. And the battery compartment seat is separated from the cavity. The lock catch assemblies are correspondingly arranged on the two side portions of the battery bin base, the battery bin base can be popped out through the elastic energy storage assembly only by simply pressing the button, then the whole battery bin base is easily taken out, the battery bin base does not need to be taken out in a mode of digging and pulling a bin cover, and the use convenience degree is greatly improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of electronic products, in particular to a battery compartment structure and electronic equipment. Background Art

[0002] like Figure 1 As shown, the battery compartment P of a handheld electronic device (including an imaging device) is usually arranged longitudinally on a side of the product, which results in a large longitudinal volume of the product, making it inconvenient to hold, and makes the product appearance asymmetrical, affecting the appearance.

[0003] In addition, in the existing battery compartment structure design, when the battery compartment P is opened, it is necessary to use a finger to pick up the battery cover button P1, and then forcefully pull open the battery cover P2 to separate the battery cover P2 from the buckle. However, the battery cover P1 has only one fixed buckle. The process of picking up the battery cover button P1 and pulling open the battery cover P2 will cause one side of the battery compartment sealing ring P3 to be squeezed to a greater extent, while other parts will be squeezed to a lesser extent, causing uneven force on the battery compartment sealing ring P3, further resulting in weakened sealing performance and poorer waterproof effect. Utility Model Content

[0004] The purpose of the utility model is to provide a battery compartment structure and an electronic device, wherein the locking components are correspondingly arranged on the two sides of the battery compartment seat, and the battery compartment seat can be ejected through the elastic energy storage component by simply pressing a button, and the entire battery compartment seat can be easily taken out, without the need to remove the battery compartment seat by pulling the compartment cover, thereby greatly improving the convenience of use.

[0005] In order to achieve the above purpose, the utility model provides the following technical solutions:

[0006] On the one hand, a battery compartment structure is provided, comprising:

[0007] A cavity is arranged on a body of the electronic device;

[0008] A battery compartment for accommodating batteries;

[0009] A compartment cover connected to the battery compartment seat;

[0010] An elastic energy storage component, which is disposed in the cavity and generates a force through elastic deformation;

[0011] and a locking assembly;

[0012] The battery compartment seat is extended into the cavity, and after pressure is applied to the elastic energy storage component, the battery compartment seat is locked by the locking component to fix the position of the battery compartment seat, and the locking component is triggered so that the elastic energy storage component pushes the battery compartment seat to move, so that the battery compartment seat is separated from the cavity.

[0013] Preferably, the length direction of the battery compartment seat and the length direction of the battery are consistent with the length direction of the fuselage.

[0014] Preferably, there are two groups of locking components, which are respectively arranged on two sides of the battery compartment seat.

[0015] Preferably, the locking assembly comprises:

[0016] A wedge-shaped block having an inclined surface and connected to the cavity;

[0017] A lock buckle is installed on the compartment cover and is provided with a through hole, and a locking position is formed on the top of the lock buckle to be able to abut against and cooperate with the wedge-shaped block;

[0018] A shaft and a torsion spring, wherein the shaft passes through the through hole and the torsion spring at the same time, and the torsion spring abuts against the surface of the lock buckle;

[0019] A button mounting hole is provided on the side of the compartment cover;

[0020] and a button, partly / wholly received in the button mounting hole.

[0021] Preferably, the extension direction of the central axis of the through hole is consistent with the length direction of the battery compartment seat.

[0022] Preferably, the battery compartment structure further includes:

[0023] The sealing ring is installed in a mounting groove provided on the outer wall of the battery compartment seat and is used for sealing the gap between the battery compartment seat and the cavity.

[0024] Preferably, the sealing ring is symmetrically arranged with respect to the battery compartment seat.

[0025] Preferably, the elastic energy storage component includes a spring and / or a spring.

[0026] On the other hand, an electronic device is also provided, which includes a body, a battery and the above-mentioned battery compartment structure.

[0027] Preferably, the electronic device comprises a handheld imaging device.

[0028] In summary, compared with the prior art, the present invention has the following beneficial effects:

[0029] The lock components in the utility model are correspondingly arranged on the two sides of the battery compartment seat, so that the product structure design is bilaterally symmetrical and beautiful in appearance, and the battery compartment seat can be ejected through the elastic energy storage component by simply pressing a button, and then the entire battery compartment seat can be easily taken out, without the need to remove the battery compartment seat by pulling the compartment cover, thereby greatly improving the convenience of use;

[0030] At the same time, when the button is pressed, the sealing rings on both sides can be evenly stressed, thereby avoiding the situation where the waterproof performance deteriorates due to unilateral stress on the sealing ring. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 A structural diagram of a battery compartment on an electronic device in the prior art;

[0032] Figure 2 This is the overall structure diagram of the battery compartment and the body of the utility model after assembly;

[0033] Figure 3 This is a schematic diagram of the separation state of the battery compartment and the body in the first viewing angle in the present invention;

[0034] Figure 4 It is a longitudinal cross-sectional view of the battery compartment and the body of the utility model after being assembled;

[0035] Figure 5 This is a transverse cross-sectional view of the battery compartment and the body of the present invention after being assembled;

[0036] Figure 6 This is the overall structural diagram of the lock in the utility model;

[0037] Figure 7 This is the overall structural diagram of the lock buckle, torsion spring and shaft after assembly in the utility model;

[0038] Figure 8 It is a schematic diagram of the steps of assembling and separating the battery compartment and the body of the present invention;

[0039] Fig. 9 This is a schematic diagram of the separation state of the battery compartment and the body in the second viewing angle in the present invention. DETAILED DESCRIPTION

[0040] The technical solutions in the embodiments of the utility model will be clearly and completely described below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the utility model.

[0041] Example 1

[0042] like Figure 2-4 As shown, this embodiment provides a battery compartment structure, which includes:

[0043] A cavity 1 is arranged at the top or bottom of a body 100 of the electronic device;

[0044] The battery compartment 2 is used to accommodate the battery 200. In this embodiment, the length direction of the battery compartment 2 and the length direction of the battery 200 are consistent with the length direction of the body 100, so that the battery 200 is installed horizontally in the body 100, reducing the longitudinal volume of the electronic device and improving the convenience of using the handheld electronic device;

[0045] A compartment cover 3 connected to the battery compartment seat 2;

[0046] An elastic energy storage component 11, which is arranged in the cavity 1 and generates a force through elastic deformation; in this embodiment, there may be multiple elastic energy storage components 3, and they include components such as springs and / or shrapnel that can accumulate / release energy through elastic deformation to generate a force;

[0047] and a locking assembly;

[0048] After the battery compartment seat 2 extends into the cavity 1 and applies pressure to the elastic energy storage component 11, the battery compartment seat 2 is locked by the locking component to fix the position of the battery compartment seat 2, and the compartment cover 3 closes the cavity 1, and by triggering the locking component, the elastic energy storage component 11 pushes the battery compartment seat 2 to move, and the battery compartment seat 2 is further separated from the cavity 1 by holding the compartment cover 3 by hand.

[0049] Specifically, Figure 5 As shown, there are two sets of lock components in this embodiment, and they are respectively arranged on the two sides of the battery compartment seat 2, so that the product structure design is bilaterally symmetrical and has a beautiful appearance. On this basis, the lock components include:

[0050] A wedge-shaped block 4 having an inclined surface 41 and connected to the outer wall surface of the cavity 1;

[0051] The lock buckle 5 is mounted on the compartment cover 3 and has a through hole 51 (such as Figure 6 As shown), the central axis of the through hole 51 extends in the same direction as the length of the battery compartment seat 2, and at the same time, a clamping position 52 is formed on the top of the lock buckle 5 to be able to abut against the wedge-shaped clamping block 4;

[0052] Shaft 6, torsion spring 7, such as Figure 7 As shown, the shaft 6 passes through the through hole 51 and the torsion spring 7 at the same time, and the torsion spring 7 abuts against the surface of the lock buckle 5; in this embodiment, the shaft 6 includes a shaft workpiece such as a pin and a pin shaft;

[0053] A button mounting hole 8, which is provided on the side of the compartment cover 3;

[0054] A button 9, part of which is / is wholly received in the button mounting hole 8;

[0055] When using, Figure 8 As shown in part (a) of the figure, the battery 200 is first installed in the battery compartment 2, and then the battery compartment 2 is extended into the cavity 1 along the direction indicated by the black arrow, and the engaging position 52 slides upward along the inclined surface 41 until it contacts the block 4 (as shown in FIG. Figure 8 As shown in part (b) of the figure), the engaging position 52 and the engaging block 4 are engaged with each other. At this time, the position of the battery compartment seat 2 is fixed, and the battery compartment seat 2 is in contact with the elastic energy storage component 11, and pressure is applied to the elastic energy storage component 11, so that the elastic energy storage component 11 undergoes elastic deformation such as bending and compression, and the compartment cover 3 simultaneously closes the cavity 1;

[0056] When the battery compartment 2 needs to be separated, Figure 8 As shown in part (c) of the figure, the two buttons 9 on both sides are pressed at the same time, so that the buttons 9 squeeze the lock buckle 5 (such as squeezing the bottom of the lock buckle 5), thereby making the lock buckle 5 rotate around the axis 6 and driving the torsion spring 7 to rotate synchronously, so that the engaged engaging position 52 and the engaging block 4 are separated from each other, and further, the elastic energy storage component 3 that has been deformed releases the thrust to move along the Figure 8 The battery compartment seat 2 is pushed in the direction indicated by the black arrow in part (c) of the cavity 1 until the compartment cover 3 no longer closes the cavity 1, and then the battery compartment seat 2 is completely separated from the cavity 1 by holding the compartment cover 3 (as shown in FIG. Fig. 9 The battery compartment 2 can be taken out.

[0057] Therefore, in this embodiment, only the button 9 needs to be simply pressed to eject the battery compartment seat 2 through the elastic energy storage component 3, and then the entire battery compartment seat 2 can be easily taken out. There is no need to pull the compartment cover to take out the battery compartment seat 2, which greatly improves the convenience of use.

[0058] Embodiment 2:

[0059] The difference between this embodiment and embodiment 1 is that Figure 5 As shown, the battery compartment structure also includes:

[0060] The sealing ring 10 is installed in a mounting groove provided on the outer wall of the battery compartment seat 2 and is symmetrically arranged with respect to the battery compartment seat 2 to seal the gap between the battery compartment seat 2 and the cavity 1 .

[0061] Therefore, when the two buttons 9 on both sides are pressed, the sealing rings 10 on both sides can be subjected to force at the same time, and the force is roughly uniform, so as to avoid the situation where the sealing ring 10 is subjected to force on one side, resulting in deterioration of the waterproof performance.

[0062] Embodiment 3:

[0063] This embodiment provides an electronic device, such as Figure 2-3 As shown, it includes a body 100, a battery 200 and the battery compartment structure described in Example 1 or 2. Preferably, the electronic device includes a handheld imaging device.

[0064] In summary, the lock assembly of the present application is correspondingly arranged on the two sides of the battery compartment seat, so that the product structure design is bilaterally symmetrical and beautiful in appearance, and the battery compartment seat can be ejected through the elastic energy storage assembly by simply pressing a button, and then the entire battery compartment seat can be easily taken out, without the need to remove the battery compartment seat by pulling the compartment cover, thereby greatly improving the convenience of use;

[0065] Furthermore, when the two buttons on both sides are pressed, the sealing rings on both sides can be subjected to force at the same time, and the force is roughly uniform, thereby avoiding the situation where the sealing ring is subjected to force on one side, resulting in deterioration of the waterproof performance.

[0066] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A battery compartment structure, characterized in that: include: A cavity is arranged on a body of the electronic device; A battery compartment for accommodating batteries; A compartment cover connected to the battery compartment seat; An elastic energy storage component, which is disposed in the cavity and generates a force through elastic deformation; and a locking assembly; The battery compartment seat is extended into the cavity, and after pressure is applied to the elastic energy storage component, the battery compartment seat is locked by the locking component to fix the position of the battery compartment seat, and the locking component is triggered so that the elastic energy storage component pushes the battery compartment seat to move, so that the battery compartment seat is separated from the cavity.

2. The battery compartment structure according to claim 1, characterized in that: The length direction of the battery compartment seat and the length direction of the battery are consistent with the length direction of the fuselage.

3. The battery compartment structure according to claim 1, characterized in that: There are two groups of locking components, which are respectively arranged on the two side parts of the battery compartment seat.

4. The battery compartment structure according to claim 3, characterized in that: The lock assembly comprises: A wedge-shaped block having an inclined surface and connected to the cavity; A lock buckle is installed on the compartment cover and is provided with a through hole, and a locking position is formed on the top of the lock buckle to be able to abut against and cooperate with the wedge-shaped block; A shaft and a torsion spring, wherein the shaft passes through the through hole and the torsion spring at the same time, and the torsion spring abuts against the surface of the lock buckle; A button mounting hole is provided on the side of the compartment cover; and a button, partly / wholly received in the button mounting hole.

5. The battery compartment structure according to claim 4, characterized in that: The extension direction of the central axis of the through hole is consistent with the length direction of the battery compartment seat.

6. The battery compartment structure according to claim 1, characterized in that: The battery compartment structure also includes: The sealing ring is installed in a mounting groove provided on the outer wall of the battery compartment seat and is used for sealing the gap between the battery compartment seat and the cavity.

7. The battery compartment structure according to claim 6, characterized in that: The sealing ring is symmetrically arranged with respect to the battery compartment seat.

8. The battery compartment structure according to claim 1, characterized in that: The elastic energy storage component includes a spring and / or a spring.

9. An electronic device, comprising a body and a battery, characterized in that: It also includes the battery compartment structure as described in any one of claims 1-8.

10. The electronic device according to claim 9, characterized in that: The electronic device includes a handheld imaging device.