Electronic device

By introducing sliding components and fasteners into the laptop, the problem of inconvenient battery installation and removal is solved, enabling convenient fixing and removal of the battery assembly and enhancing the fixing strength.

CN224096172UActive Publication Date: 2026-04-07BYD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In the existing technology, the installation and removal of laptop batteries requires tightening multiple screws, which makes the operation inconvenient.

Method used

The design employs sliding components and fasteners, allowing the object to be installed to be easily fixed or detached from the mounting part through sliding insertion or sliding disengagement.

Benefits of technology

It improves the ease of installation and removal of battery components, simplifies the operation process, and enhances the fixing strength.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides electronic equipment, and relates to the technical field of electric appliance installation. The electronic equipment comprises an equipment body, wherein a mounting part is arranged on the equipment body; the to-be-mounted object is arranged on the mounting part; one of the to-be-mounted object and the mounting part is provided with a sliding assembly, and the other one of the to-be-mounted object and the mounting part is provided with a fixing piece; the sliding assembly and the fixing piece are suitable for sliding insertion connection or sliding separation insertion connection, so that the to-be-installed object and the installation part are fixed or separated. According to the electronic equipment provided by the invention, the convenience of fixing the to-be-mounted object is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electrical appliance installation, and in particular to an electronic device. BACKGROUND

[0002] A notebook computer is a portable computer. A battery is an important component of the notebook computer, and the battery can provide power for the notebook computer, so that the notebook computer can be used without connecting a power adapter.

[0003] A notebook computer in the related art comprises a shell and a battery, and a plurality of locking lugs are arranged on the battery in a circumferential direction of the battery, and a screw is arranged on each of the plurality of locking lugs, and the screw can be threadedly connected with the shell, so as to fix the battery in the shell.

[0004] However, the connection of the battery by using the screw needs to screw a plurality of screws, and it is inconvenient to install and dismount the battery. TECHNICAL PROBLEM

[0005] Embodiments of the present application provide an electronic device to solve the technical problem that the related art uses a screw to fix a battery, which is inconvenient to install and dismount the battery.

[0006] Embodiments of the present application provide an electronic device, comprising:

[0007] a device body, wherein an installation portion is arranged on the device body;

[0008] a to-be-installed object, wherein the to-be-installed object is arranged on the installation portion;

[0009] a sliding assembly is arranged on one of the to-be-installed object and the installation portion, and a fixing member is arranged on the other one of the to-be-installed object and the installation portion;

[0010] the sliding assembly and the fixing member are adapted to be slidably inserted or slidably disengaged, so as to fix or disengage the to-be-installed object and the installation portion.

[0011] In some embodiments, the sliding assembly is arranged on the to-be-installed object, and the fixing member is arranged on the installation portion.

[0012] In some embodiments, the sliding assembly comprises a connecting member and a sliding member, the connecting member is connected to the to-be-installed object or the installation portion, and the sliding member is slidably arranged on the connecting member.

[0013] In some embodiments, the sliding member comprises an insertion portion and a sliding portion, the sliding portion is connected to the insertion portion, and the insertion portion is used for being inserted or disengaged with the fixing member.

[0014] In some embodiments, the fixing member comprises a first fixing portion, a fixing slot is arranged on the first fixing portion, and the inserting portion is adapted to be inserted into or disengaged from the fixing slot.

[0015] In some embodiments, the fixing slot extends through the first fixing portion in the extending direction.

[0016] In some embodiments, in the sliding direction, the length of the sliding portion is less than the length of the inserting portion, the distance between the side of the sliding portion close to the fixing member and the fixing member is greater than the distance between the side of the inserting portion close to the fixing member and the fixing member, and the sliding portion abuts against the connecting member when the inserting portion is inserted into the fixing slot.

[0017] In some embodiments, the fixing member further comprises a second fixing portion arranged on one side of the first fixing portion, and an accommodating space is formed between the first fixing portion and the second fixing portion, and the accommodating space is used to accommodate at least part of the connecting member.

[0018] In some embodiments, a sliding hole is arranged on the connecting member, and the sliding portion is inserted and slidably connected in the sliding hole.

[0019] In some embodiments, the sliding hole is a strip-shaped hole.

[0020] In some embodiments, the sliding member comprises a limiting portion, and the connecting member comprises a clamping portion, the limiting portion is used to clamp the clamping portion to prevent the sliding member from disengaging from the connecting member.

[0021] In some embodiments, the limiting portion is arranged on the sliding portion, and the limiting portion is used to clamp the clamping portion to prevent the sliding portion from disengaging from the connecting member.

[0022] In some embodiments, the limiting portion is arranged on the end of the sliding portion away from the inserting portion.

[0023] In some embodiments, the sliding member further comprises a locking portion, and the connecting member comprises a first matching portion and a second matching portion.

[0024] When the locking portion clamps the first matching portion, the sliding member is inserted into the fixing member.

[0025] When the locking portion clamps the second matching portion, the sliding member is disengaged from the fixing member.

[0026] In some embodiments, the sliding member comprises a body and a deformed portion, the locking portion is arranged on the deformed portion, and a deformed space is formed between the deformed portion and the body.

[0027] In some embodiments, the locking portion is arranged on one side of the deforming portion close to the object to be installed.

[0028] In some embodiments, at least one clamping member is arranged on one of the object to be installed and the installation portion, and at least one installation member is arranged on the other of the object to be installed and the installation portion.

[0029] The clamping member is used to clamp or unclamp with the installation member to fix or unfix the object to be installed with the installation portion.

[0030] In some embodiments, the clamping member is arranged on the object to be installed, and the installation member is arranged on the installation portion.

[0031] The clamping member comprises a first clamping portion, and the installation member comprises a first installation portion, and the first clamping portion is used to clamp or unclamp with the first installation portion.

[0032] In some embodiments, the sliding assembly and the clamping member are arranged on at least two opposite sides of the object to be installed, and the fixing member and the installation member are arranged on at least two opposite sides of the installation portion.

[0033] In some embodiments, the sliding assembly and the fixing member are both provided with a plurality of.

[0034] In some embodiments, the sliding assembly and the fixing member are both oppositely arranged relative to the object to be installed.

[0035] In some embodiments, the device body is an electrical device, and the object to be installed is a battery or a battery assembly.

[0036] Embodiments of the present application provide an electronic device. When it is needed to fix an object to be installed on an installation portion of the electronic device, the object to be installed is placed on the installation portion, the sliding assembly is driven to slide, so that the sliding assembly can be inserted with the fixing member. Since the fixing member is arranged in the installation portion, the object to be installed is fixed in the installation portion through the sliding assembly and the fixing member. When it is needed to remove the object to be installed, the sliding assembly is driven to slide reversely, so that the sliding assembly is uninserted with the fixing member. By using the sliding mode to fix or unfix the object to be installed, the object to be installed is conveniently installed and dismounted, and the convenience of installing and dismounting the object to be installed is improved. BRIEF DESCRIPTION OF DRAWINGS

[0037] The accompanying drawings, which are incorporated herein and form a part of the specification, illustrate embodiments consistent with the present application and, together with the description, further serve to explain the principles of the application.

[0038] Figure 1Schematic diagram of the assembly state of the electronic device provided in this application Figure 1 ;

[0039] Figure 2 for Figure 1 Enlarged view of part A in the image;

[0040] Figure 3 for Figure 2 A schematic diagram of the structure of the sliding component;

[0041] Figure 4 for Figure 2 Schematic diagram of the middle connector;

[0042] Figure 5 Schematic diagram of the assembly state of the electronic device provided in this application Figure 2 ;

[0043] Figure 6 for Figure 5 Enlarged view of part B in the image;

[0044] Figure 7 for Figure 6 Schematic diagram of the structure of the card connector;

[0045] Figure 8 for Figure 1 Enlarged view of section C in the image.

[0046] Explanation of reference numerals in the attached figures:

[0047] 100. Sliding assembly; 110. Insertion part; 120. Sliding part; 130. Sliding component;

[0048] 200. Fixing element; 210. First fixing part; 211. Fixing groove; 220. Second fixing part; 230. Accommodating space;

[0049] 300. Connector; 310. Sliding hole; 320. First mating part; 330. Second mating part; 340. Support part; 350. Snap-fit ​​part;

[0050] 400. Limiting part; 410. Inclined surface;

[0051] 500. Locking part;

[0052] 600. Deformable part; 611. First connecting part; 612. Second connecting part; 620. Deformable space;

[0053] 700, snap-fit ​​component; 710, first snap-fit ​​part; 711, first arc-shaped segment; 712, connecting segment; 713, second arc-shaped segment; 714, snap-fit ​​segment; 715, snap-fit ​​groove;

[0054] 720. Second connecting part;

[0055] 800. Mounting component; 810. First mounting part; 820. Second mounting part; 830. Snap-fit ​​space;

[0056] 900, Installation part; 910, Battery; 920, Limit plate.

[0057] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0058] Exemplary embodiments will now be described in detail, examples of which are illustrated in the accompanying drawings. When the following description relates to the drawings, unless otherwise indicated, the same numbers in different drawings denote the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with this application. Rather, they are merely examples of apparatuses and methods consistent with some aspects of this application as detailed in the appended claims.

[0059] The related technology of the laptop includes a casing and a battery. The battery has multiple locking lugs along its circumference, and each locking lug is fitted with a screw that can be threaded into the casing to secure the battery inside the casing.

[0060] However, using screws to connect the battery requires personnel to use tools to tighten multiple screws. When there are many screws, it takes a lot of time to tighten them, making it inconvenient to install and remove the battery.

[0061] The technical solution of this application and how the technical solution of this application solves the above-mentioned technical problems are described in detail below with specific embodiments. These specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described again in some embodiments. The embodiments of this application will now be described with reference to the accompanying drawings.

[0062] Combination Figures 1 to 4 This application provides an electronic device, including:

[0063] The equipment body has an installation section 900 on it.

[0064] The object to be installed 910 is located in the installation section 900;

[0065] A sliding component 100 is provided on one of the object to be installed 910 and the mounting part 900, and a fixing component 200 is provided on the other of the object to be installed 910 and the mounting part 900.

[0066] The sliding component 100 and the fixing component 200 are adapted to slide into or slide out of the mounting part 900, so that the object to be installed 910 is fixed or detached from the mounting part 900.

[0067] In this embodiment, the device body is an electrical device, and the object to be installed 910 is a battery assembly, which is composed of multiple batteries; in other embodiments, the object to be installed 910 may also be a single battery.

[0068] In this embodiment, the power device is a laptop computer; the mounting part 900 is the casing of the laptop computer. In other embodiments, the power device may also be a radio, game console, mobile phone or headphones, etc. The component to be installed 910 may be other parts of the power device, such as a power module or a cover plate.

[0069] In this embodiment, a sliding component 100 is provided on the component to be installed 910, and a fixing component 200 is provided on the mounting part 900.

[0070] In this application, when it is necessary to fix the battery assembly on the mounting part 900, the battery assembly is placed on the mounting part 900, and the sliding component 100 is slid on the battery assembly so that the sliding component 100 can be inserted into the fixing member 200. Since the fixing member 200 is located inside the mounting part 900, the battery assembly is fixed inside the mounting part 900 by the sliding component 100 and the fixing member 200. When it is necessary to remove the battery assembly, the sliding component 100 is slid in the opposite direction so that the sliding component 100 is disengaged from the fixing member 200. By using a sliding method to fix or detach the battery assembly, it is convenient to install and remove the battery assembly, thus improving the convenience of installing and removing the battery assembly.

[0071] Combination Figures 1 to 4 The sliding component 100 includes a connector 300 and a slider 130. The connector 300 is connected to the component 910 to be installed or to the mounting part 900. The sliding component 100 is slidably disposed on the connector 300.

[0072] In this embodiment, the connector 300 is connected to the component 910 to be installed. The fixing member 200, the sliding member 130, and the connector 300 are all plastic parts. There are two of each of the fixing member 200, the sliding member 130, and the connector 300. The two connectors 300 are respectively located on opposite sides of the battery assembly. The two sliding members 130 are slidably mounted on the two connectors 300 in a one-to-one correspondence. The two fixing members 200 are mounted on the mounting part 900 and located on both sides of the battery assembly. The connector 300 can be mounted on the battery assembly by welding, gluing, or integral molding. The connector 300 is rectangular and extends along the length of the edge of the battery assembly. In other embodiments, the connector 300 can be connected to the mounting part 900, and the fixing member 200 can be connected to the object 910 to be installed.

[0073] In this application, by using a connector 300 and sliding the slider 130 onto the connector 300, the connector 300 can drive the slider 130 to slide onto the battery assembly without damaging the battery assembly's own structure, thereby preventing any impact on the use of the battery assembly.

[0074] Combination Figures 1 to 4 The sliding member 130 includes a plug-in portion 110 and a sliding portion 120. The sliding portion 120 is connected to the plug-in portion 110, and the plug-in portion 110 is used to plug into or disengage from the fixing member 200.

[0075] In this embodiment, the plug portion 110 and the sliding portion 120 are integrally formed, which facilitates the integral manufacturing of the plug portion 110 and the sliding portion 120; in other embodiments, the plug portion 110 and the sliding portion 120 can also be fixed by welding or gluing.

[0076] In this embodiment, the plug-in portion 110 is disposed on the upper part of the connector 300, and the sliding portion 120 is disposed on the bottom wall of the plug-in portion 110.

[0077] In this embodiment, the width of the insertion part 110 is smaller than the width of the sliding part 120. When the sliding part 120 slides on the connector 300, the insertion part 110 abuts against the top wall of the connector 300 to prevent the insertion part 110 from disengaging from the connector 300 due to gravity, thereby indirectly improving the sliding effect of the sliding part 130 on the connector 300.

[0078] Combination Figures 1 to 4 The fastener 200 includes a first fixing part 210, on which a fixing groove 211 is provided, and the insertion part 110 is adapted to be inserted into or disengaged from the fixing groove 211.

[0079] The fixing groove 211 extends through the first fixing part 210 in its extending direction.

[0080] In this embodiment, the cross-section of the plug-in portion 110 is rectangular, and the fixing groove 211 is configured to cooperate with the rectangular plug-in portion 110.

[0081] In the sliding direction, the length of the sliding part 120 is less than the length of the insertion part 110. In the sliding direction, the distance between the side of the sliding part 120 near the fixing member 200 and the fixing member 200 is greater than the distance between the side of the insertion part 110 near the fixing member 200 and the fixing member 200. When the insertion part 110 is inserted into the fixing groove 211, the sliding part 120 abuts against the connector 300.

[0082] In this embodiment, in the sliding direction, the distance between the side of the sliding part 120 near the first fixing part 210 and the first fixing part 210 is greater than the distance between the side of the plugging part 110 near the first fixing part 210 and the first fixing part 210. When the plugging part 110 is inserted into the fixing groove 211, the sliding part 120 abuts against the connector 300.

[0083] When the plug-in part 110 moves on the connector 300, the plug-in part 110 can be inserted into the fixing groove 211, thereby preventing the battery assembly from disengaging from the mounting part 900 and fixing the battery assembly to the mounting part 900.

[0084] In other embodiments, the fixing groove 211 may not penetrate the first fixing part 210; the shape of the first fixing part 210 can be adapted as needed, for example, the first fixing part 210 can be set to a circle; the shape of the insertion part 110 can also be adapted as needed, for example, the cross section of the insertion part 110 can be set to a circle, and the fixing groove 211 can be matched with a circular insertion hole.

[0085] Combination Figures 1 to 4 The fastener 200 also includes a second fastening part 220, which is disposed on one side of the first fastening part 210. A receiving space 230 is formed between the first fastening part 210 and the second fastening part 220, which is used to receive at least a portion of the connector 300.

[0086] In this embodiment, the accommodating space 230 is used to accommodate part of the connector 300; the second fixing part 220 is rectangular and is located on the side of the first fixing part 210 away from the battery assembly. The second fixing part 220 is perpendicular to the first fixing part 210, and the first fixing part 210 and the second fixing part 220 are connected. When the battery assembly is placed on the mounting part 900 with the connector 300, part of the connector 300 can move into the accommodating space 230, and the connector 300 can abut against the first fixing part 210 and the second fixing part 220, thereby limiting the connector 300 by the first fixing part 210 and the second fixing part 220, and indirectly limiting the position of the battery assembly on the mounting part 900 by the first fixing part 210 and the second fixing part 220.

[0087] In other embodiments, the first fixing part 210 and the second fixing part 220 may also be spaced apart.

[0088] Combination Figures 1 to 4 The connector 300 is provided with a sliding hole 310, and the sliding part 120 passes through the sliding hole 310 and is slidably connected in the sliding opening 310.

[0089] The sliding hole 310 is a strip hole.

[0090] In this embodiment, a strip-shaped hole is provided on the connector 300 along the length direction of the edge of the battery assembly. The two ends of the strip-shaped hole are closed to prevent the sliding part 120 from disengaging from the strip-shaped hole along the two ends. The top and bottom of the strip-shaped hole are provided through the connector 300 so that the sliding part 120 can pass through the strip-shaped hole and move along the length direction of the strip-shaped hole. By using the strip-shaped hole, the movement of the sliding part 120 on the connector 300 can be guided, so that the sliding part 120 drives the insertion part 110 to be inserted into the fixing part 200 more accurately.

[0091] When the plug-in part 110 moves on the connector 300, the plug-in part 110 can be plugged into the fixing groove 211. At this time, the sliding part 120 can abut against the end of the strip hole near the first fixing part 210. When the plug-in part 110 disengages from the fixing groove 211 in the direction away from the fixing groove 211, the sliding part 120 can abut against the end of the strip hole away from the first fixing part 210.

[0092] In this embodiment, the cross-section of the strip hole is set in an inverted "L" shape, and the sliding part 120 is configured to cooperate with the inverted "L" shaped strip hole. By setting the cross-section of the strip hole to an inverted "L" shape, the sliding part 120 is prevented from tilting when sliding in the strip hole, thereby improving the stability of the sliding part 120 moving in the strip hole.

[0093] In other embodiments, the shape of the sliding hole 310 can be adapted as needed. For example, the cross-section of the sliding hole 310 can be set to a dovetail shape, or the cross-section of the sliding hole 310 can be set to a "T" shape, etc. The sliding hole 310 can also be set as an arc-shaped hole or a curved hole. When the sliding hole 310 is an arc-shaped hole or a curved hole, the sliding direction is the arc-shaped sliding direction of the arc-shaped hole and the curved sliding direction of the curved hole.

[0094] Combination Figures 1 to 4 The slider 130 includes a limiting part 400, and the connector 300 includes a snap-fit ​​part 350. The limiting part 400 is used to connect with the snap-fit ​​part 350 to prevent the slider 130 from disengaging from the connector 300.

[0095] A limiting part 400 is provided on the sliding part 120. The limiting part 400 is used to engage with the engaging part 350 to prevent the sliding part 120 from disengaging from the connector 300. In this embodiment, the limiting part 400 is used to engage with the engaging part 350 to prevent the sliding part 120 from disengaging from the sliding hole 310.

[0096] In other embodiments, the limiting part 400 can also be separated from the sliding part 120. For example, a limiting hole is provided on the sliding part 120, and the locking part 350 is slidably disposed in the limiting hole perpendicular to the limiting hole, which can also prevent the sliding part 120 from disengaging from the sliding hole 310.

[0097] By employing a limiting part 400, this application can connect with the snap-fit ​​part 350 to prevent the sliding part 120 from disengaging from the sliding hole 310. This prevents the insertion part 110 from failing to properly engage with the fixing groove 211 due to the sliding part 120 disengaging from the sliding hole 310, further improving the stability of the sliding member 130 sliding on the connector 300, and indirectly improving the engagement accuracy between the insertion part 110 and the fixing groove 211.

[0098] Combination Figures 1 to 4 The limiting part 400 is located at the end of the sliding part 120 away from the insertion part 110.

[0099] In this embodiment, the limiting part 400 is provided along the length direction of the sliding part 120 and extends in a direction away from the battery assembly. The engaging part 350 is the bottom wall of the connector 300. When the sliding part 120 moves in the sliding hole 310, the insertion part 110 can always engage with the top wall of the connector 300, and the limiting part 400 can always abut against the engaging part 350 of the bottom wall of the connector 300, thereby limiting the sliding part 120 in the sliding hole 310, preventing the sliding part 120 from disengaging from the sliding hole 310, and improving the sliding effect of the sliding part 120 sliding in the sliding hole 310.

[0100] In this embodiment, the limiting part 400 is located on the surface opposite to the insertion part 110 and has inclined surfaces 410 on both sides. The width between the inclined surfaces 410 gradually increases towards the connector 300. When it is necessary to assemble the sliding part 120 with the sliding hole 310, the insertion part 110 drives the sliding part 120 to move from top to bottom toward the sliding hole 310, so that the inclined surfaces 410 on both sides of the limiting part 400 abut against the sides of the sliding hole 310. By continuously driving the sliding part 120 to move downward, the limiting part 400 drives the inclined surfaces 410 on both sides to press the sliding hole 310, so that the limiting part 400 passes through the sliding hole 310, thereby driving the sliding part 120 to move into the sliding hole 310. The inclined surfaces 410 are designed to facilitate the pressing of the sliding hole 310 and drive the limiting part 400 to pass through the sliding hole 310.

[0101] Combination Figures 1 to 4 The sliding member 130 also includes a locking part 500, and the connecting member 300 includes a first mating part 320 and a second mating part 330;

[0102] When the locking part 500 engages with the first mating part 320, the sliding member 130 is inserted into the fixing member 200.

[0103] When the locking part 500 engages with the first mating part 320, the sliding member 130 is disengaged from the fixing member 200.

[0104] In this embodiment, the connector 300 has a support portion 340, which is arranged along the length of the connector 300 and is located on the side of the connector 300 closer to the battery assembly. The first mating portion 320 and the second mating portion 330 are located on the side of the support portion 340 away from the battery assembly. The locking portion 500 is semi-circular, and both the first mating portion 320 and the second mating portion 330 are mated with the semi-circular locking portion 500, thereby facilitating the locking portion 500 to move into or out of the first mating portion 320 and the second mating portion 330. The first mating portion 320 is located between the second mating portion 330 and the first fixing portion 210.

[0105] When the plug-in part 110 is inserted into the fixing groove 211, the plug-in part 110 drives the locking part 500 to move, so that the locking part 500 is inserted into the first mating part 320. This prevents the plug-in part 110 from disengaging from the fixing groove 211, thereby improving the fixing strength of the battery assembly in the mounting part 900. When the plug-in part 110 disengages from the fixing groove 211, the plug-in part 110 drives the locking part 500 to move in the opposite direction, so that the locking part 500 is inserted into the second mating part 330. This prevents the locking part 500 and the second mating part 330 from moving on the connector 300, thereby preventing the plug-in part 110 and the fixing groove 211 from affecting the removal of the battery assembly when it is removed from the mounting part 900.

[0106] In other embodiments, the shape of the locking part 500 can be adaptively adjusted as needed. For example, the locking part 500 can be set as a triangle, and the first mating part 320 and the second mating part 330 can be mated with the triangular locking part 500.

[0107] Combination Figures 1 to 4 The sliding member 130 includes a body and a deformable part 600. A locking part 500 is disposed on the deformable part 600, and a deformable space 620 is formed between the deformable part 600 and the body.

[0108] The locking part 500 is provided on the side of the deformable part 600 near the object 910 to be installed, thereby indirectly reducing the size design of the connector 300.

[0109] In this embodiment, the body includes a sliding part 120 and a plug-in part 110.

[0110] In this embodiment, the deformable portion 600 is configured as a "U" shape. The "U"-shaped deformable portion 600 includes a first connecting portion 611 and two second connecting portions 612. The locking portion 500 is disposed on the side of the first connecting portion 611 away from the insertion portion 110. The two second connecting portions 612 are respectively disposed between the two ends of the first connecting portion 611 and the insertion portion 110. The second connecting portions 612 are disposed perpendicular to the first connecting portion 611. The first connecting portion 611 is disposed along the length direction of the insertion portion 110. The first connecting portion 611 abuts against the support portion 340. The deformation space 620 is disposed between the insertion portion 110 and the deformable portion 600. In other embodiments, the locking portion 500 may also be disposed on the side of the deformable portion 600 away from the object 910 to be installed. The deformation space 620 may be disposed between the sliding portion 120 and the deformable portion 600.

[0111] When the locking part 500 disengages from the first mating part 320 and the second mating part 330, the locking part 500 can squeeze the first connecting part 611, thereby causing the first connecting part 611 to deform toward the deformation space 620. This allows the locking part 500 to better disengage from the first mating part 320 and the second mating part 330. When the locking part 500 moves to the position where the first mating part 320 and the second mating part 330 are located, the locking part 500 can automatically move into the first mating part 320 and the second mating part 330 due to the first connecting part 611 and the second connecting part 612. This prevents the locking part 500 from being deformed and damaged due to the setting of the sliding part 120 and the sliding hole 310, and indirectly extends the service life of the locking part 500.

[0112] In other embodiments, the locking part 500 can be replaced by an elastic element, such as a rubber strip, provided on the insertion part 110. By providing the locking part 500 on the rubber strip, when the locking part 500 is disengaged from the first mating part 320 and the second mating part 330, the locking part 500 can squeeze the rubber strip, thereby causing the rubber strip to deform itself. When the locking part 500 moves to the position where the first mating part 320 and the second mating part 330 are located, the rubber strip can use its own elasticity to drive the locking part 500 to be inserted into the first mating part 320 and the second mating part 330.

[0113] At least one snap-fit ​​element 700 is provided on one of the object to be installed 910 and the mounting part 900, and at least one mounting element 800 is provided on the other of the object to be installed 910 and the mounting part 900.

[0114] The snap-fit ​​component 700 is used to snap into or detach from the mounting component 800 to secure or detach the battery assembly from the mounting portion 900.

[0115] It should be noted that in some embodiments, multiple sliding components 100 and fixing members 200 are provided, which makes the connection between the object to be installed 910 and the device body more secure.

[0116] In some embodiments, both the sliding component 100 and the fixing member 200 are disposed opposite to the object 910 to be installed. This makes it easier to insert or detach the object 910 from the device body.

[0117] The battery assembly has a sliding component 100 and a snap-fit ​​component 700 on at least two opposite sides, and the mounting part 900 has a fixing component 200 and the mounting component 800 on at least two opposite sides.

[0118] In this embodiment, sliding components 100 are provided on both opposite sides of the battery assembly, and fixing members 200 are provided on both opposite sides of the mounting part 900 corresponding to the sliding components 100; snap-fit ​​members 700 are provided on the other opposite sides of the battery assembly, and mounting members 800 are provided on both opposite sides of the mounting part 900 corresponding to the snap-fit ​​members 700.

[0119] In this application, the snap-fit ​​member 700 can snap into or detach from the mounting member 800, allowing the battery assembly to snap into or detach from the mounting part 900. By using snap-fit ​​or detachable snap-fit, the battery assembly is easily and simply fixed, facilitating its installation and removal, and improving the ease of installation and removal. The arrangement of the sliding member 130, the fixing member 200, the snap-fit ​​member 700, and the mounting member 800 can improve the ease of installation and removal of the battery assembly while also increasing the fixing strength of the battery assembly to the mounting part 900.

[0120] Combination Figures 5 to 8 The object to be installed 910 is provided with a snap-fit ​​component 700, and the mounting part 900 is provided with a mounting component 800;

[0121] The snap-fit ​​component 700 includes a first snap-fit ​​portion 710, and the mounting component 800 includes a first mounting portion 810. The first snap-fit ​​portion 710 is used to snap into or disengage from the first mounting portion 810.

[0122] In this embodiment, the first snap-fit ​​portion 710 has a snap-fit ​​groove 715, which is used to snap-fit ​​or disengage from the first mounting portion 810. There are two first snap-fit ​​portions 710 and two first mounting portions 810. The two first snap-fit ​​portions 710 correspond one-to-one with the two first mounting portions 810. Both the two first snap-fit ​​portions 710 and the two first mounting portions 810 are located on the same side of the battery assembly adjacent to the fixing member 200.

[0123] In this embodiment, the first snap-fit ​​portion 710 includes a first arc-shaped segment 711, a connecting segment 712, and a second arc-shaped segment 713. One side of the first arc-shaped segment 711 is connected to the battery assembly, one side of the connecting segment 712 is connected to the other side of the first arc-shaped segment 711, and one side of the second arc-shaped segment 713 is connected to the other side of the connecting segment 712. The first arc-shaped segment 711, the connecting segment 712, and the second arc-shaped segment 713 are arranged sequentially from bottom to top. The first snap-fit ​​portion 710 also includes a snap-fit ​​segment 714, which is disposed on the side of the connecting segment 712 away from the battery assembly. A snap-fit ​​groove 715 is located between the second arc-shaped segment 713 and the snap-fit ​​segment 714, and the bottom of the snap-fit ​​segment 714 is inclined. The first mounting portion 810 is U-shaped, and the notch of the U-shaped first mounting portion 810 faces the inner wall of the mounting portion 900.

[0124] When the battery assembly is placed on the mounting part 900, the first mounting part 810 can abut against the bottom of the snap-fit ​​section 714, causing the first mounting part 810 to move the connecting section 712 toward the battery assembly. This causes the connecting section 712 to move the snap-fit ​​section 714 over the top of the "U"-shaped first mounting part 810, thereby moving the top of the first mounting part 810 into the snap-fit ​​groove 715. The snap-fit ​​groove 715 then snaps into the top of the first mounting part 810, thus fixing the battery assembly in the mounting part 900 through the first snap-fit ​​section 710 and the first mounting part 810. The snap-fit ​​method is convenient and simple, improving the ease of fixing the battery assembly.

[0125] Combination Figures 5 to 8 The snap-fit ​​component 700 also includes a second snap-fit ​​portion 720, and the mounting component 800 also includes a second mounting portion 820. A snap-fit ​​space 830 is formed between the second mounting portion 820 and the mounting portion 900. The second snap-fit ​​portion 720 is used to snap into or disengage from the snap-fit ​​space 830.

[0126] In this embodiment, four second latching portions 720 and four second mounting portions 820 are provided. The four second latching portions 720 and the four second mounting portions 820 correspond one-to-one. The four second latching portions 720 and the four second mounting portions 820 are all located on the side of the battery assembly away from the first latching portion 710 and the first mounting portion 810.

[0127] In this embodiment, the second latching portion 720 is configured as a "U" shape, with all three sides of the "U"-shaped second latching portion 720 connected to the battery assembly. The second mounting portion 820 is configured as an inverted "L" shape, and the latching space 830 is disposed between the second mounting portion 820 and the mounting portion 900. When the battery assembly is placed in the mounting portion 900, by moving the bottom of the "U"-shaped second latching portion 720 into the latching space 830, the second latching portion 720 latches with the latching space 830, thereby preventing the battery assembly from separating from the mounting portion 900 in a direction perpendicular to the bottom wall of the mounting portion 900, thus fixing the battery assembly in the mounting portion 900. The latching method is convenient and simple, improving the ease of fixing the battery assembly.

[0128] Combination Figures 5 to 8 In this embodiment, a limiting plate 920 is provided on the mounting part 900 at the four corners relative to the battery assembly. The limiting plate 920 is set in an "L" shape, and the four "L" shaped limiting plates 920 respectively cooperate with the four corners of the battery assembly, thereby further limiting the position of the battery assembly on the mounting part 900.

[0129] The electronic device provided in this application, when it is necessary to fix the battery assembly, places the battery assembly in the mounting part 900, so that the battery assembly drives the second snap-fit ​​part 720 to move into the snap-fit ​​space 830 between the second mounting part 820 and the mounting part 900. At this time, the battery assembly can drive the snap-fit ​​groove 715 on the first snap-fit ​​part 710 to snap with the first mounting part 810, so that the battery assembly is fixed in the mounting part 900. Fixing the battery assembly by using a snap-fit ​​method is convenient and simple, and facilitates the installation and removal of the battery assembly, thereby improving the convenience of installing and removing the battery assembly.

[0130] By moving the insertion part 110 on the connector 300, the insertion part 110 causes the sliding part 120 to slide within the sliding hole 310. At this time, the insertion part 110 can cause the locking part 500 on the deformable part 600 to disengage from the second mating part 330, causing the locking part 500 to deform the deformable part 600. By continuously moving the insertion part 110, the insertion part 110 is inserted into the fixing groove 211. At this time, the insertion part 110 can cause the locking part 500 on the deformable part 600 to insert into the second mating part 330, thereby fixing the insertion part 110 to the state of being inserted into the fixing groove 211. This makes the battery assembly fixed in the mounting part 900 from all sides, and the fixing method is convenient and simple, improving the convenience of fixing the battery assembly.

[0131] Finally, it should be noted that other embodiments of this utility model will readily occur to those skilled in the art upon consideration of the specification and practice of the utility model disclosed herein. This utility model is intended to cover any variations, uses, or adaptations of this utility model that follow the general principles of this utility model and include common knowledge or customary techniques in the art not disclosed herein, and is not limited to the precise structures described above and shown in the accompanying drawings, and various modifications and changes can be made without departing from its scope. The scope of this utility model is limited only by the appended claims.

Claims

1. An electronic device, characterized in that, include: The equipment body, on which a mounting part (900) is provided; An object to be installed (910) is disposed in the mounting part (900); A sliding component (100) is provided on one of the object to be installed (910) and the mounting part (900), and a fixing component (200) is provided on the other of the object to be installed (910) and the mounting part (900); The sliding assembly (100) and the fixing member (200) are adapted to slide into or slide out of the mounting part, so that the object to be installed (910) is fixed or detached from the mounting part (900).

2. The electronic device according to claim 1, characterized in that, The sliding assembly (100) is provided on the object to be installed (910), and the fixing member (200) is provided on the mounting part (900).

3. The electronic device according to claim 1, characterized in that, The sliding assembly (100) includes a connector (300) and a slider (130). The connector (300) is connected to the object to be installed (910) or to the mounting part (900), and the slider (130) is slidably disposed on the connector (300).

4. The electronic device according to claim 3, characterized in that, The sliding member (130) includes a plug-in portion (110) and a sliding portion (120), the sliding portion (120) being connected to the plug-in portion (110), the plug-in portion (110) being used to plug into or disengage from the fixing member (200).

5. The electronic device according to claim 4, characterized in that, The fastener (200) includes a first fixing part (210), on which a fixing groove (211) is provided, and the insertion part (110) is adapted to be inserted into or disengaged from the fixing groove (211).

6. The electronic device according to claim 5, characterized in that, The fixing groove (211) extends through the first fixing part (210) in its extending direction.

7. The electronic device according to claim 5, characterized in that, In the sliding direction, the length of the sliding part (120) is less than the length of the plug-in part (110). In the sliding direction, the distance between the side of the sliding part (120) near the fixing member (200) and the fixing member (200) is greater than the distance between the side of the plug-in part (110) near the fixing member (200) and the fixing member (200). When the plug-in part (110) is inserted into the fixing groove (211), the sliding part (120) abuts against the connector (300).

8. The electronic device according to claim 5, characterized in that, The fastener (200) further includes a second fastening part (220), which is disposed on one side of the first fastening part (210). A receiving space (230) is formed between the first fastening part (210) and the second fastening part (220), which is used to receive at least a portion of the connector (300).

9. The electronic device according to claim 4, characterized in that, The connector (300) is provided with a sliding hole (310), and the sliding part (120) passes through the sliding hole (310) and is slidably connected in the sliding hole (310).

10. The electronic device according to claim 9, characterized in that, The sliding hole (310) is a strip-shaped hole.

11. The electronic device according to claim 4, characterized in that, The slider (130) includes a limiting part (400), and the connector (300) includes a snap-fit ​​part (350). The limiting part (400) is used to snap into the snap-fit ​​part (350) to prevent the slider (130) from disengaging from the connector (300).

12. The electronic device according to claim 11, characterized in that, The limiting part (400) is provided on the sliding part (120), and the limiting part (400) is used to engage with the locking part (350) to prevent the sliding part (120) from disengaging from the connector (300).

13. The electronic device according to claim 12, characterized in that, The limiting part (400) is disposed at one end of the sliding part (120) away from the plug-in part (110).

14. The electronic device according to any one of claims 3-13, characterized in that, The sliding member (130) further includes a locking part (500), and the connecting member (300) includes a first mating part (320) and a second mating part (330); When the locking part (500) engages with the first mating part (320), the sliding member (130) is inserted into the fixing member (200); When the locking part (500) engages with the second mating part (330), the sliding member (130) is disengaged from the fixing member (200).

15. The electronic device according to claim 14, characterized in that, The sliding member (130) includes a body and a deformable part (600), the locking part (500) is disposed on the deformable part (600), and a deformable space (620) is formed between the deformable part (600) and the body.

16. The electronic device according to claim 15, characterized in that, The locking part (500) is disposed on the side of the deformable part (600) near the object to be installed (910).

17. The electronic device according to any one of claims 1-13, characterized in that, At least one snap-fit ​​member (700) is provided on one of the object to be installed (910) and the mounting part (900), and at least one mounting member (800) is provided on the other of the object to be installed (910) and the mounting part (900). The snap-fit ​​member (700) is used to snap into or detach from the mounting member (800) to fix or detach the object to be installed (910) from the mounting part (900).

18. The electronic device according to claim 17, characterized in that, The object to be installed (910) is provided with the snap-fit ​​member (700), and the mounting part (900) is provided with the mounting member (800); The snap-fit ​​member (700) includes a first snap-fit ​​portion (710), and the mounting member (800) includes a first mounting portion (810). The first snap-fit ​​portion (710) is used to snap into or disengage from the first mounting portion (810).

19. The electronic device according to claim 17, characterized in that, The object to be installed (910) is provided with a sliding component (100) and a snap-fit ​​component (700) on at least two opposite sides, and the mounting part (900) is provided with a fixing component (200) and a mounting component (800) on at least two opposite sides.

20. The electronic device according to any one of claims 1-13, characterized in that, Both the sliding component (100) and the fixing component (200) are provided in multiple forms.

21. The electronic device according to claim 20, characterized in that, Both the sliding component (100) and the fixing component (200) are arranged relative to the object to be installed (910).

22. The electronic device according to any one of claims 1-13, characterized in that, The device body is an electrical device, and the object to be installed (910) is a battery or battery pack.