Fixing support

By designing a mounting bracket that includes a bracket body, fixing clips, and elastic clip components, the problem of limited installation methods is solved, enabling multiple installation options and improving the compatibility and user experience of electronic devices.

CN223829566UActive Publication Date: 2026-01-23GREE ELECTRIC APPLIANCE INC OF ZHUHAI +1
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Patent Information

Application Number
CN202423188052.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-23
Publication Date
2026-01-23
Estimated Expiration
2034-12-23

AI Technical Summary

Technical Problem

The existing fixed brackets have a single installation method, resulting in low compatibility with various usage scenarios for electronic devices.

Method used

A fixed bracket is designed, comprising a bracket body, a fixed buckle, and an elastic buckle assembly. The bracket limits the electronic device through the accommodating cavity, and the elastic buckle assembly slides and cooperates with the fixed buckle under the action of pushing force to form a clamp, realizing multiple installation methods.

Benefits of technology

It expands the installation scenarios for fixed brackets, improves product applicability, and enhances the installation flexibility and user experience of electronic devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a fixing support, and relates to the technical field of electric appliance installation equipment. The support comprises a support body, a fixing buckle and an elastic buckle assembly, the support body is provided with an accommodating cavity so as to limit the electronic equipment through the accommodating cavity, and the support body is provided with at least two assembly holes. The fixing buckle is fixedly connected with the support body. The elastic buckle assembly is located on the end face, away from the containing cavity, of the support body and connected with the support body in a sliding mode, and the elastic buckle assembly and the fixing buckle are arranged in a spaced mode. The elastic buckle assembly moves in the direction away from the fixing buckle under the action of the pushing force and resets to be matched with the fixing buckle when the pushing force is removed, and the fixing piece is clamped. Therefore, the fixing bracket can be fixed on a wall body through the assembly hole or fixed on a fixing piece, so that the fixing modes of the electronic equipment can be enriched, the installation scene of the fixing bracket is increased, and the product applicability of the fixing bracket is improved.
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Description

Technical Field

[0001] This utility model relates to the field of electrical installation equipment technology, and in particular to a fixed bracket. Background Technology

[0002] In the installation of some electronic devices, such as gateway devices, it is usually necessary to place the electronic device in a fixed bracket. The fixed bracket is used to position the electronic device within its defined space before it is fixedly connected to the mounting surface. For example, the fixed bracket is fixed to a wall, and the fixing method commonly used is to fix the fixed bracket to the mounting surface with screws, expansion bolts, etc. This results in a limited installation method for the fixed bracket, and the limitation of this installation method also reduces the compatibility of the electronic device with different usage scenarios. Utility Model Content

[0003] In view of the problem that the current equipment fixing method is singular and cannot be adapted to various installation scenarios, this utility model is proposed to provide a fixing bracket that overcomes or at least partially solves the above problems.

[0004] This utility model provides a fixing bracket, the fixing bracket comprising:

[0005] The bracket body has a receiving cavity to limit the electronic device through the receiving cavity, and the bracket body has at least two mounting holes.

[0006] A fixing buckle is fixedly connected to the bracket body;

[0007] A resilient latching assembly is located on the end face of the bracket body away from the receiving cavity and is slidably connected to the bracket body. The resilient latching assembly is spaced apart from the fixed latch.

[0008] Under the action of the pushing force, the elastic buckle assembly slides away from the fixed buckle, and when the pushing force is removed, it resets and cooperates with the fixed buckle to clamp the fastener.

[0009] In one optional utility model, the fixing bracket further includes a limiting plate, which is located on the bracket body;

[0010] The elastic snap-fit ​​assembly includes:

[0011] A movable buckle is slidably connected to the bracket body;

[0012] A reset spring is sleeved on the movable buckle, wherein one end of the reset spring abuts against the movable buckle, and the other end of the reset spring abuts against the limiting plate to limit the relative position of the movable buckle and the bracket body;

[0013] Under the action of the pushing force, the movable buckle slides away from the fixed buckle, and the return spring is compressed. When the pushing force is removed, the return spring extends and returns to its original position.

[0014] An optional utility model embodiment, wherein the movable buckle comprises:

[0015] The buckle body is slidably connected to the bracket body;

[0016] The first column is fixedly connected to the buckle body and extends through the limiting plate;

[0017] The second column is fixedly connected to the buckle body, wherein the second column and the first column are coaxially opposite each other, and the two ends of the return spring are respectively sleeved on the first column and the second column.

[0018] An optional utility model includes a mounting groove on the buckle body, wherein the first column, the second column, and the limiting plate are respectively located in the mounting groove.

[0019] One optional utility model involves the limiting plate and the bracket body forming an integral structure.

[0020] In one optional utility model, the fixing bracket further includes a slide rail, which is fixed to the bracket body and has a sliding groove in the vertical direction, and the buckle body is embedded in the sliding groove;

[0021] The movable buckle also includes at least two elastic locking arms, which are distributed on both sides of the buckle body and abut against the sliding groove.

[0022] In one optional utility model, the fixing bracket further includes a limiting block, which is fixed on the slide rail and extends to the sliding groove;

[0023] The movable buckle also includes a limiting flange, which is distributed on the side of the buckle body and abuts against the limiting block, so as to limit the sliding stroke of the movable buckle by the cooperation of the limiting block and the limiting plate.

[0024] An optional utility model embodiment states that the limiting block and the slide rail are an integral structure.

[0025] In one optional utility model, the bracket body protrudes outward from the end face near the receiving cavity to the end face away from the receiving cavity to form a boss, and the mounting hole is formed on the boss.

[0026] In one optional utility model, the boss is configured to contact the slide rail.

[0027] In one optional utility model, a first notch is provided on the end face of the buckle body near the fixing buckle, and a second notch is provided on the end face of the fixing buckle near the buckle body. The first notch, the second notch, and the bracket body cooperate to form a clamping space for accommodating the fixing member.

[0028] An optional utility model embodiment states that the top of the buckle body gradually slopes downwards from the direction close to the first notch to the direction away from the first notch, forming an inclined surface.

[0029] Compared with existing technologies, this utility model includes a bracket body, a fixing buckle, and an elastic buckle assembly. The bracket body has a receiving cavity to limit the movement of electronic devices, and at least two mounting holes are provided on the bracket body. The fixing buckle is fixedly connected to the bracket body. The elastic buckle assembly is located on the end face of the bracket body away from the receiving cavity and is slidably connected to the bracket body. The elastic buckle assembly and the fixing buckle are spaced apart. Under the action of a pushing force, the elastic buckle assembly slides away from the fixing buckle, and when the pushing force is removed, it resets and engages with the fixing buckle to clamp the fastener. Thus, the bracket can be fixed to a wall or to a fastener through the mounting holes, thereby enriching the fixing methods of electronic devices, increasing the installation scenarios of the bracket, and improving the product applicability of the bracket.

[0030] The above description is merely an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, and to make the above and other objects, features and advantages of this utility model more obvious and understandable, specific embodiments of this utility model are given below. Attached Figure Description

[0031] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of preferred embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings.

[0032] In the attached diagram:

[0033] Figure 1 This is a schematic diagram of the back structure of a fixed bracket provided in an embodiment of this utility model;

[0034] Figure 2 This is a schematic diagram of the first three-dimensional structure of a fixed bracket after removing the reset spring, provided by an embodiment of this utility model;

[0035] Figure 3 This is a schematic diagram of the second three-dimensional structure of a fixed bracket after removing the reset spring, provided by an embodiment of this utility model;

[0036] Figure 4 This is a front structural diagram of a fixed bracket provided in an embodiment of the present utility model;

[0037] Figure 5 This is a three-dimensional structural diagram of a fixed bracket after removing one elastic buckle component, according to an embodiment of the present utility model.

[0038] Figure 6 This is an exploded view of an elastic buckle assembly provided in an embodiment of the present invention;

[0039] Figure 7 This is a side view of a fixed bracket provided in an embodiment of the present invention;

[0040] Reference numerals: 1. Bracket body; 101. Accommodating cavity; 102. Assembly hole; 2. Fixing buckle; 201. Second notch; 3. Elastic buckle assembly; 31. Movable buckle; 311. Buckle body; 3111. Assembly groove; 3112. First notch; 312. First column; 313. Second column; 314. Elastic locking arm; 315. Limiting flange; 32. Return spring; 4. Limiting plate; 5. Slide rail; 501. Sliding groove; 6. Limiting block; 7. Boss; 8. Fixing component. Detailed Implementation

[0041] Exemplary embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the present invention are shown in the drawings, it should be understood that the present invention may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that this invention will be thorough and complete, and will fully convey the scope of the invention to those skilled in the art.

[0042] In the installation of some electronic devices, such as gateway devices, it is usually necessary to place the electronic device in a fixed bracket. The fixed bracket is used to position the electronic device within its defined space before it is fixedly connected to the mounting surface. For example, the fixed bracket is fixed to a wall, and the fixing method commonly used is to fix the fixed bracket to the mounting surface with screws, expansion bolts, etc. This results in a limited installation method for the fixed bracket, and the limitation of this installation method also reduces the compatibility of the electronic device with different usage scenarios.

[0043] Based on the aforementioned technical problems, this utility model embodiment is proposed. This utility model embodiment may include a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 is provided with a receiving cavity 101 to limit the movement of electronic devices. The bracket body 1 also has at least two mounting holes 102. The fixing buckle 2 is fixedly connected to the bracket body 1. The elastic buckle assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic buckle assembly 3 is spaced apart from the fixing buckle 2. Under the action of a pushing force, the elastic buckle assembly 3 slides away from the fixing buckle 2, and when the pushing force is removed, it resets and cooperates with the fixing buckle 2 to clamp the fixing member 8. Thus, the bracket can be fixed to a wall or to the fixing member 8 through the mounting holes 102, thereby enriching the fixing methods of electronic devices, increasing the installation scenarios of the bracket, and improving the product applicability of the bracket.

[0044] Reference Figure 1-7 This utility model provides a fixed bracket, which may include a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 is provided with a receiving cavity 101 to limit the electronic device, and the bracket body 1 has at least two mounting holes 102. The fixing buckle 2 is fixedly connected to the bracket body 1. The elastic buckle assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic buckle assembly 3 is spaced apart from the fixing buckle 2. Under the action of a pushing force, the elastic buckle assembly 3 slides away from the fixing buckle 2, and when the pushing force is removed, it resets and cooperates with the fixing buckle 2 to clamp the fixing member 8.

[0045] In this embodiment of the invention, the fixing bracket may include a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 has a receiving cavity 101 with an upward opening, allowing the electronic device to be assembled from top to bottom into the receiving cavity 101, whereby the receiving cavity 101 provides a limiting position for the electronic device. The electronic device may be a gateway device, etc. The electronic device and the bracket body 1 can be fitted with a clearance fit.

[0046] The bracket body 1 may have at least two mounting holes 102, for example, at least two mounting holes 102 are spaced apart on the bracket body 1. In some embodiments, the mounting holes 102 can be through which fasteners such as expansion bolts pass to fix the bracket to the wall. In other embodiments, the mounting holes 102 can be threaded holes, through which fasteners such as screws pass to fix the bracket to the wall.

[0047] The fixing buckle 2 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is fixedly connected to the bracket body 1. For example, when both the fixing buckle 2 and the bracket body 1 are metal, the fixing buckle 2 and the bracket body 1 can be fixed by welding or by integral molding. As another example, when both the fixing buckle 2 and the bracket body 1 are plastic, the fixing buckle 2 and the bracket body 1 can be fixed by integral molding. This ensures the strong connection between the fixing buckle 2 and the bracket body 1.

[0048] The elastic latching assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic latching assembly 3 is spaced apart from the fixed latch 2, thereby fixing the fixed bracket to the fixing member 8 through the space between the elastic latching assembly 3 and the fixed latch 2. For example, the fixing member 8 can be a DIN (Deutsches Institut für Normung) guide rail and a fixing plate, etc. The elastic latching assembly 3 is slidably connected to the bracket body 1. Under external force, the elastic latching assembly 3 can slide away from the fixed latch 2. When the external force is removed, the elastic latching assembly 3, due to its elastic restoring force, slides towards the fixed latch 2, achieving a reset.

[0049] For example, the elastic buckle assembly 3 can be disposed below the fixed buckle 2. Driven by an external force, the elastic buckle assembly 3 can descend along the fixed body, moving away from the fixed buckle 2, thereby increasing the width between the fixed buckle 2 and the elastic buckle assembly 3. This facilitates the assembly of the fastener 8 into the space formed by the fixed buckle 2 and the elastic buckle assembly 3.

[0050] When the bracket body 1 is fixed to the fixing member 8, one side of the fixing member 8 can abut against the fixing buckle 2, and the elastic buckle assembly 3 can be pushed downward. Under the pushing force, the elastic buckle assembly 3 can deform and slide away from the fixing buckle 2, widening the width between the elastic buckle assembly 3 and the fixing buckle 2. Thus, the fixing member 8 can be completely placed between the elastic buckle assembly 3 and the fixing buckle 2. Then, the elastic buckle assembly 3 is released. When the pushing force is removed, the elastic buckle assembly 3, through its deformation recovery force, drives it to rise closer to the fixing buckle 2, resetting its initial position. It then abuts against the other side of the fixing member 8. Thus, through the cooperation of the elastic buckle assembly 3 and the fixing buckle 2, the fixing member 8 is clamped (or snapped), fixing the fixing bracket to the fixing member 8.

[0051] Therefore, the mounting bracket can be fixed to a wall or to the fastener 8 through the mounting hole 102, thereby enriching the fixing methods of electronic devices, increasing the installation scenarios of the bracket, and improving the product applicability of the bracket. For example, users can easily choose a suitable installation method, improving the user experience. Furthermore, for electronic devices, it is not necessary to configure multiple brackets with only one installation method, thus reducing the product packaging size.

[0052] In summary, this utility model discloses a fixing bracket, which may include a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 is provided with a receiving cavity 101 to limit the electronic device. The bracket body 1 also has at least two mounting holes 102. The fixing buckle 2 is fixedly connected to the bracket body 1. The elastic buckle assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic buckle assembly 3 is spaced apart from the fixing buckle 2. Under a pushing force, the elastic buckle assembly 3 slides away from the fixing buckle 2, and when the pushing force is removed, it resets and engages with the fixing buckle 2 to clamp the fixing member 8. Thus, the fixing bracket can be fixed to a wall or to the fixing member 8 through the mounting holes 102, thereby enriching the fixing methods for electronic devices, increasing the installation scenarios of the fixing bracket, and improving the product applicability of the fixing bracket.

[0053] An optional utility model embodiment, referring to... Figure 1 , Figure 5 as well as Figure 6 As shown, the fixed bracket may include a bracket body 1, a fixing buckle 2, an elastic buckle assembly 3, and a limiting plate 4. The bracket body 1 is provided with a receiving cavity 101 to limit the movement of the electronic device, and the bracket body 1 has at least two mounting holes 102. The fixing buckle 2 is fixedly connected to the bracket body 1. The elastic buckle assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is spaced apart from the fixing buckle 2. The limiting plate 4 is located on the bracket body 1. The elastic buckle assembly 3 may include a movable buckle 31 and a return spring 32, and the movable buckle 31 is slidably connected to the bracket body 1.

[0054] The return spring 32 is sleeved on the movable buckle 31, wherein one end of the return spring 32 abuts against the movable buckle 31, and the other end of the return spring 32 abuts against the limiting plate 4, thereby limiting the relative position of the movable buckle 31 and the bracket body 1. Under the action of the pushing force, the movable buckle 31 slides away from the fixed buckle 2, and the return spring 32 is compressed. When the pushing force is removed, the return spring 32 extends and returns to its original position.

[0055] In this embodiment of the invention, the fixing bracket may include a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 has a receiving cavity 101 with an upward opening, allowing the electronic device to be assembled from top to bottom into the receiving cavity 101, whereby the receiving cavity 101 provides a limiting position for the electronic device. The electronic device may be a gateway device, etc. The electronic device and the bracket body 1 can be fitted with a clearance fit.

[0056] The bracket body 1 may have at least two mounting holes 102, for example, at least two mounting holes 102 are spaced apart on the bracket body 1. In some embodiments, the mounting holes 102 can be through which fasteners such as expansion bolts pass to fix the bracket to the wall. In other embodiments, the mounting holes 102 can be threaded holes, through which fasteners such as screws pass to fix the bracket to the wall.

[0057] The fixing buckle 2 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is fixedly connected to the bracket body 1. For example, when both the fixing buckle 2 and the bracket body 1 are metal, the fixing buckle 2 and the bracket body 1 can be fixed by welding or by integral molding. As another example, when both the fixing buckle 2 and the bracket body 1 are plastic, the fixing buckle 2 and the bracket body 1 can be fixed by integral molding. This ensures the strong connection between the fixing buckle 2 and the bracket body 1.

[0058] The elastic latching assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic latching assembly 3 is spaced apart from the fixed latch 2, thereby fixing the fixed bracket to the fixing member 8 through the space between the elastic latching assembly 3 and the fixed latch 2. For example, the fixing member 8 can be a DIN (Deutsches Institut für Normung) guide rail and a fixing plate, etc. The elastic latching assembly 3 is slidably connected to the bracket body 1. Under external force, the elastic latching assembly 3 can slide away from the fixed latch 2. When the external force is removed, the elastic latching assembly 3, due to its elastic restoring force, slides towards the fixed latch 2, achieving a reset.

[0059] For example, the elastic buckle assembly 3 can be disposed below the fixed buckle 2. Driven by an external force, the elastic buckle assembly 3 can descend along the fixed body, moving away from the fixed buckle 2, thereby increasing the width between the fixed buckle 2 and the elastic buckle assembly 3. This facilitates the assembly of the fastener 8 into the space formed by the fixed buckle 2 and the elastic buckle assembly 3.

[0060] In some embodiments, the elastic buckle assembly 3 may include a movable buckle 31 and a return spring 32, wherein the movable buckle 31 is slidably connected to the bracket body 1. Thus, the elastic buckle assembly 3 can slide up and down via the movable buckle 31. The deformation restoring force of the elastic buckle assembly 3 is provided by the return spring 32. The return spring 32 is sleeved on the movable buckle 31, wherein one end of the return spring 32 abuts against the movable buckle 31, and the other end of the return spring 32 abuts against the limiting plate 4. Therefore, both ends of the return spring 32 abut against the movable buckle 31 and the limiting plate 4 respectively, and the abutment between the return spring 32 and the limiting plate 4 locks the relative position of the movable buckle 31 and the bracket body 1 in the absence of external force. For example, the lower end of the return spring 32 abuts against the limiting plate 4, thereby preventing the movable buckle 31 from descending along the bracket body 1 under the spring force.

[0061] Under the downward pushing force, the movable latch 31 compresses the return spring 32, causing the movable latch 31 to slide away from the fixed latch 2. In other words, the movable latch 31 slides downwards, widening the gap between it and the fixed latch 2, allowing the fixing member 8 to be completely positioned between them. The pushing force applied to the movable latch 31 is then removed, and the return spring 32 recovers its shape, extending upwards and driving the movable latch 31 to rise closer to the fixed latch 2, thus returning it to its initial position. This also creates abutment against the other side of the fixing member 8. Therefore, through the cooperation of the movable latch 31 and the fixed latch 2, the fixing member 8 is clamped (or snapped in), securing the fixing bracket to the fixing member 8.

[0062] Therefore, the mounting hole 102 can be used to fix the mounting bracket to the wall or to the fastener 8, thereby enriching the fixing methods of electronic devices, increasing the installation scenarios of the mounting bracket, and improving the product applicability of the mounting bracket.

[0063] An optional utility model embodiment, referring to... Figure 2 , Figure 3 as well as Figure 6 As shown, the movable buckle 31 may include a buckle body 311, a first column 312, and a second column 313. The buckle body 311 is slidably connected to the bracket body 1, the first column 312 is fixedly connected to the buckle body 311, and is disposed through the limiting plate 4. The second column 313 is fixedly connected to the buckle body 311, wherein the second column 313 and the first column 312 are coaxially opposite each other, and the two ends of the return spring 32 are respectively sleeved on the first column 312 and the second column 313.

[0064] In this embodiment of the present invention, the movable buckle 31 may further include a buckle body 311, a first column 312, and a second column 313, wherein the buckle body 311 is slidably connected to the bracket body 1. The first column 312 is fixedly connected to the buckle body 311. For example, the first column 312 extends upward from the buckle body 311 and penetrates the limiting plate 4. The first column 312 is clearance-fitted with the limiting hole on the limiting plate 4, thereby preventing the buckle body 311 from shifting horizontally by limiting it, i.e., achieving radial limiting of the buckle body 311. The second column 313 is fixedly connected to the buckle body 311 and is coaxially opposite to the first column 312. Coaxially opposite arrangement can be understood as the first column 312 and the second column 313 being opposite to each other, and the central axis of the first column 312 coinciding with the central axis of the second column 313. Therefore, the first column 312 and the second column 313 can be combined to form radial limits at both ends of the return spring 32.

[0065] For example, the first column 312 and the second column 313 can be cylindrical structures with the same diameter. The upper part of the return spring 32 is fitted onto the second column 313, forming a clearance fit. The upper end of the return spring 32 can abut against the buckle body 311. The lower part of the return spring 32 is fitted onto the first column 312, forming a clearance fit. The lower end of the return spring 32 can abut against the limiting plate 4. In one example, during the assembly of the return spring 32, the lower end of the return spring 32 can be fitted onto the first column 312, and then the return spring 32 can be compressed so that it can be embedded in the gap between the first column 312 and the second column 313. The pressure on the return spring 32 is then released, and the upper end of the return spring 32 extends upward and is fitted onto the second column 313. In another example, during the assembly of the return spring 32, the upper end of the return spring 32 can be sleeved on the second column 313, and then the return spring 32 can be compressed so that it can be embedded in the gap between the first column 312 and the second column 313. The pressure on the return spring 32 is then released, and the lower end of the return spring 32 extends downward and is sleeved on the second column 313.

[0066] When installing the fixing bracket onto the fixing member 8, the fixing member 8 can be first placed in the clamping space between the fixing buckle 2 and the buckle body 311, and the fixing member 8 is pre-aggregated against the fixing buckle 2. At this time, a downward pushing force is applied to the movable buckle 31. Under the action of the downward pushing force, the return spring 32 is compressed, causing the buckle body 311 to slide away from the fixing buckle 2. That is, the movable buckle 31 slides downward as a whole, thereby widening the width between the buckle body 311 and the fixing buckle 2. Thus, the fixing member 8 can be completely placed between the buckle body 311 and the fixing buckle 2. Subsequently, the pushing force applied to the buckle body 311 is removed, and the return spring 32 recovers its deformation. The return spring 32 extends upward, driving the buckle body 311 to rise towards the fixing buckle 2, realizing the initial position reset. It also forms an abutment on the other side of the fixing member 8. Thus, by cooperating with the buckle body 311 and the fixing buckle 2, the fixing member 8 is clamped (or snapped) to achieve the fixing bracket on the fixing member 8.

[0067] In some preferred embodiments, the first column 312 and the buckle body 311 can be an integral structure, and the second column 313 and the buckle body 311 can be an integral structure. This integral structure improves the connection strength between the first column 312 and the buckle body 311, and also improves the connection strength between the second column 313 and the buckle body 311. It also reduces the processing steps and production costs of the fixing bracket.

[0068] An optional utility model embodiment, referring to... Figure 2 , Figure 3 as well as Figure 6 As shown, the buckle body 311 has an assembly groove 3111, and the first column 312, the second column 313 and the limiting plate 4 are respectively located in the assembly groove 3111.

[0069] In this embodiment of the present invention, the buckle body 311 is further provided with an assembly groove 3111, in which the first column 312 and the second column 313 can be respectively located. Therefore, the assembly groove 3111 facilitates the assembly of the return spring 32, making the assembly of the return spring 32 visible and improving the ease of assembly. It also facilitates the installer in inserting the first column 312 into the limiting plate 4.

[0070] In one optional embodiment of the utility model, the limiting plate 4 and the bracket body 1 are an integral structure.

[0071] In this embodiment of the invention, the limiting plate 4 and the bracket body 1 are an integral structure, which can improve the connection between the limiting plate 4 and the bracket body 1. It can also reduce the processing steps and production costs of the fixed bracket.

[0072] An optional utility model embodiment, referring to... Figure 1 , Figure 2 , Figure 3 , Figure 5 as well as Figure 7 As shown, the fixed bracket further includes a slide rail 5, which is fixed to the bracket body 1 and has a sliding groove 501 in the vertical direction. The buckle body 311 is embedded in the sliding groove 501. The movable buckle 31 also includes at least two elastic buckle arms 314, which are distributed on both sides of the buckle body 311 and abut against the sliding groove 501.

[0073] In this embodiment of the utility model, the fixed bracket may further include a slide rail 5, which is fixed on the bracket body 1 and has a sliding groove 501 formed along the vertical direction of the bracket body 1. The buckle body 311 is embedded in the sliding groove 501 and cooperates with the sliding groove 501 to adapt to the up and down sliding of the buckle body 311 through the sliding groove 501.

[0074] The movable latch 31 may further include at least two elastic latching arms 314, each possessing a certain deformation capacity. At least two elastic latching arms 314 are distributed on both sides of the latch body 311, meaning at least one elastic latching arm 314 is provided on either side of the latch body 311. When the movable latch 31 is horizontally pressed into the sliding groove 501, the elastic latching arms 314 deform, allowing the movable latch 31 to enter the sliding groove 501. After the external pressing force is removed, the elastic latching arms 314 recover their deformation, using their recovery force to abut against the sliding groove 501. Therefore, the elastic latching arms 314 can increase the force between the movable latch 31 and the sliding groove 501, further improving the sliding stability of the movable latch 31 within the sliding groove 501.

[0075] An optional utility model embodiment, referring to... Figure 1 , Figure 2 , Figure 3 as well as Figure 5 As shown, the fixed bracket further includes a limiting block 6, which is fixed to the slide rail 5 and extends to the sliding groove 501. The movable buckle 31 also includes a limiting flange 315, which is distributed on the side of the buckle body 311 and abuts against the limiting block 6, so as to limit the sliding stroke of the movable buckle 31 by the cooperation of the limiting block 6 and the limiting plate 4.

[0076] In this embodiment of the present invention, the fixing bracket may further include a limiting block 6, which is fixed to the slide rail 5 and extends to the opening of the sliding groove 501. The movable buckle 31 may further include a limiting flange 315, which is distributed on the side of the buckle body 311. For example, if there is only one limiting flange 315, it may be located on any side of the buckle body 311. Alternatively, if there are at least two limiting flanges 315, they may be located on any side of the buckle body 311, or they may be located on both sides of the buckle body 311. The limiting flange 315 abuts against the limiting block 6. That is, when the buckle body 311 slides upward, it can no longer slide upward when it abuts against the limiting plate 4. The position of the buckle body 311 when the limiting plate 4 abuts against the buckle body 311 can be taken as the initial position of the buckle body 311.

[0077] When the buckle body 311 slides downwards, it can no longer slide downwards when the limiting block 6 and the limiting flange 315 abut against each other. Thus, the sliding stroke of the movable buckle 31 is limited by the cooperation of the limiting plate 4 and the limiting block 6, ensuring that the return spring 32 is within a reasonable compression range and guaranteeing the service life of the elastic buckle assembly 3.

[0078] When assembling the elastic buckle assembly 3, the limiting flange 315 of the movable buckle 31 and the limiting block 6 can be staggered to allow the movable buckle 31 to be assembled into the sliding groove 501. When the movable buckle 31 is pressed horizontally into the sliding groove 501, the elastic arm 314 deforms, allowing the movable buckle 31 to enter the sliding groove 501. After the external pressing force is removed, the elastic arm 314 recovers its deformation, and the recovery force of the elastic arm 314 abuts against the sliding groove 501. At this time, when the movable buckle 31 is pulled upward, the elastic arm 314 can pass through the bottom of the limiting block 6 and slide upward along the sliding groove 501. When the movable buckle 31 is pulled downward, the limiting flange 315 abuts against the limiting block 6, restricting the downward sliding of the movable buckle 31.

[0079] In some embodiments, the limiting block 6 cannot restrict the sliding of the elastic locking arm 314 mainly because: the limiting block 6 and the elastic locking arm 314 are spaced apart in the thickness direction of the buckle body 311, thereby ensuring that the elastic locking arm 314 can be displaced at the bottom of the limiting block 6. Furthermore, the projected areas of the limiting block 6 and the limiting flange 315 on the horizontal plane at least partially overlap, thereby ensuring that the limiting flange 315 can abut against the limiting block 6 when sliding downwards.

[0080] In one optional embodiment of the utility model, the limiting block 6 and the slide rail 5 are an integral structure.

[0081] In this embodiment of the utility model, the limiting block 6 and the slide rail 5 are an integral structure, which can improve the connection stability between the limiting block 6 and the slide rail 5, and also reduce the processing steps and production costs of the fixed bracket.

[0082] An optional utility model embodiment, referring to... Figure 2 , Figure 3 , Figure 4 as well as Figure 5 As shown, the bracket body 1 protrudes outward from the end face near the accommodating cavity 101 to the end face away from the accommodating cavity 101 to form a boss 7, and the assembly hole 102 is opened on the boss 7.

[0083] In this embodiment of the present invention, the bracket body 1 forms a boss 7 by protruding outward from the end face near the receiving cavity 101 towards the end face away from the receiving cavity 101. That is, the boss 7 is formed by protruding from the front side of the bracket body 1 towards the back side of the bracket body 1. On the one hand, the provision of the boss 7 can provide a certain assembly space for the installation of the fastener 8.

[0084] On the other hand, the mounting hole 102 is formed on the boss 7, and from the front of the bracket body 1 (or the receiving cavity 101), it corresponds to a recess. Therefore, when the fixing bracket is installed using fasteners such as screws and expansion bolts, the fasteners will not occupy the space of the receiving cavity 101; that is, the head of the fastener, such as a screw head, can be embedded in the recess. This avoids occupying the space of the receiving cavity 101 and prevents the fasteners from scratching the surface of the electronic device when it is placed in the receiving cavity 101.

[0085] In some embodiments, a reinforcing rib is also provided in the recess. The reinforcing rib can be arranged around the mounting hole 102, thereby improving the structural strength at the mounting hole 102 and preventing deformation at the mounting hole 102 from affecting the structural stability of the fixing bracket when the fastener passes through the mounting hole 102 and is fixed to the wall.

[0086] In one optional embodiment of the utility model, the boss 7 is configured to contact the slide rail 5.

[0087] In this embodiment of the utility model, the boss 7 has a certain structural strength. The slide rail 5 is in contact with the boss 7, and the boss 7 can form a structural support for the side of the slide rail 5, thereby improving the structural strength of the slide rail 5. This can reduce the risk of deformation of the slide rail 5 during long-term use and help to improve the service life of the fixed bracket.

[0088] In some preferred embodiments, the boss 7 and the slide rail 5 can be an integral structure, which can further improve the structural strength of the slide rail 5 and reduce the processing steps and production costs of the fixed bracket.

[0089] In a preferred embodiment, the number of elastic buckle components 3 can be set to two sets, with the two sets of elastic buckle components 3 respectively disposed on both sides of the boss 7.

[0090] An optional utility model embodiment, referring to... Figure 7 As shown, the buckle body 311 has a first notch 3112 on the end face near the fixed buckle 2, and the fixed buckle 2 has a second notch 201 on the end face near the buckle body 311. The first notch 3112, the second notch 201 and the bracket body 1 cooperate to form a clamping space for accommodating the fixing member 8.

[0091] In this embodiment of the invention, a first notch 3112 is provided on the end face of the buckle body 311 near the fixed buckle 2, and the first notch 3112 is used to fix one side of the fixing member 8. A second notch 201 is provided on the end face of the fixed buckle 2 near the buckle body 311, and the second notch 201 is used to fix the other side of the fixing member 8. Thus, the first notch 3112, the second notch 201, and the bracket body 1 cooperate to form a clamping space for accommodating the fixing member 8. Furthermore, when the movable buckle 31 cooperates with the fixed buckle 2 to clamp the fixing member 8, the first notch 3112 and the second notch 201 can prevent the fixing member 8 from shifting horizontally, thus preventing the fixing bracket from falling off the fixing member 8.

[0092] In one optional embodiment of the utility model, the top of the buckle body 311 gradually slopes downward from the direction close to the first notch 3112 to the direction away from the first notch 3112 to form an inclined surface.

[0093] In this embodiment of the invention, the top of the buckle body 311 gradually slopes downwards from the direction near the first notch 3112 (or the direction where the top of the buckle body 311 is near the bracket body 1) to the direction away from the first notch 3112 (or the direction away from the bracket body 1), forming an inclined surface. Therefore, during the assembly process of fixing the fixed bracket to the fixing member 8, one side of the fixing member 8 can be inserted into the second notch 201 of the fixing buckle 2, and then the fixing member 8 can be pressed downwards, with the other side of the fixing member 8 abutting against the inclined surface. During the downward pressing of the fixing member 8, the abutting force generated by the fixing member 8 against the inclined surface forms a pushing force that drives the movable buckle 31 to slide downwards.

[0094] After the fixing member 8 is fully engaged with the first notch 3112 of the movable buckle 31, the abutting force on the inclined surface disappears, and the pushing force is released. Through the deformation recovery of the return spring 32, the return spring 32 extends upward, driving the buckle body 311 to rise closer to the fixed buckle 2, thus resetting to its initial position. It also forms an abutment on the other side of the fixing member 8. Therefore, through the cooperation of the buckle body 311 and the fixed buckle 2, the fixing member 8 is clamped (or snapped), thus fixing the fixing bracket to the fixing member 8.

[0095] When it is necessary to disassemble the fixed bracket, the buckle body 311 can be pushed down to remove the fixing member 8.

[0096] In summary, this utility model discloses a fixing bracket, which includes a bracket body 1, a fixing buckle 2, and an elastic buckle assembly 3. The bracket body 1 is provided with a receiving cavity 101 to limit the electronic device. The bracket body 1 also has at least two mounting holes 102. The fixing buckle 2 is fixedly connected to the bracket body 1. The elastic buckle assembly 3 is located on the end face of the bracket body 1 away from the receiving cavity 101 and is slidably connected to the bracket body 1. The elastic buckle assembly 3 is spaced apart from the fixing buckle 2. Under a pushing force, the elastic buckle assembly 3 slides away from the fixing buckle 2, and when the pushing force is removed, it resets and engages with the fixing buckle 2 to clamp the fixing member 8. Thus, the fixing bracket can be fixed to a wall or to the fixing member 8 through the mounting holes 102, thereby enriching the fixing methods for electronic devices, increasing the installation scenarios of the fixing bracket, and improving the product applicability of the fixing bracket.

[0097] The various embodiments in this specification are described in a progressive manner, with each embodiment focusing on the differences from other embodiments. The same or similar parts between the various embodiments can be referred to each other.

[0098] It will be readily apparent to those skilled in the art that any combination of the above embodiments is feasible. Therefore, any combination of the above embodiments is an implementation scheme of this utility model. However, due to space limitations, this specification will not describe them in detail here.

[0099] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of the present invention may be practiced without these specific details. In some instances, well-known methods, structures, and techniques have not been shown in detail so as not to obscure the understanding of this specification.

[0100] Similarly, it should be understood that, in order to simplify the present invention and aid in understanding one or more of the various aspects of the invention, in the description of exemplary embodiments of the present invention above, various features of the present invention are sometimes grouped together in a single embodiment, figure, or description thereof.

[0101] Furthermore, those skilled in the art will understand that although some embodiments described herein include certain features but not others included in other embodiments, combinations of features from different embodiments are intended to be within the scope of this invention and form different embodiments. For example, in the claims, any of the claimed embodiments can be used in any combination.

Claims

1. A fixed bracket, characterized in that, The fixing bracket includes: The bracket body (1) is provided with a receiving cavity (101) to limit the electronic device through the receiving cavity (101), and the bracket body (1) is provided with at least two mounting holes (102). A fixing buckle (2) is fixedly connected to the bracket body (1); An elastic buckle assembly (3) is located on the end face of the support body (1) away from the receiving cavity (101) and is slidably connected to the support body (1). The elastic buckle assembly (3) is spaced apart from the fixed buckle (2). The elastic buckle assembly (3) slides away from the fixed buckle (2) under the action of the pushing force, and resets and cooperates with the fixed buckle (2) when the pushing force is removed, forming a clamp on the fixing member (8).

2. The fixing bracket according to claim 1, characterized in that, The fixed bracket also includes a limiting plate (4), which is located on the bracket body (1); The elastic snap-fit ​​assembly (3) includes: Movable buckle (31), the movable buckle (31) is slidably connected to the bracket body (1); A reset spring (32) is sleeved on the movable buckle (31), wherein one end of the reset spring (32) abuts against the movable buckle (31), and the other end of the reset spring (32) abuts against the limiting plate (4) to limit the relative position of the movable buckle (31) and the bracket body (1); Under the action of the pushing force, the movable buckle (31) slides away from the fixed buckle (2), and the return spring (32) is compressed. When the pushing force is removed, the return spring (32) extends and returns to its original position.

3. The fixing bracket according to claim 2, characterized in that, The movable buckle (31) includes: The buckle body (311) is slidably connected to the bracket body (1); The first column (312) is fixedly connected to the buckle body (311) and is disposed through the limiting plate (4); The second column (313) is fixedly connected to the buckle body (311), wherein the second column (313) and the first column (312) are coaxially opposite to each other, and the two ends of the return spring (32) are respectively sleeved on the first column (312) and the second column (313).

4. The fixing bracket according to claim 3, characterized in that, The buckle body (311) is provided with an assembly groove (3111), and the first column (312), the second column (313) and the limiting plate (4) are respectively located in the assembly groove (3111).

5. The fixing bracket according to claim 2, characterized in that, The limiting plate (4) and the bracket body (1) are an integral structure.

6. The fixing bracket according to claim 3, characterized in that, The fixed bracket also includes a slide rail (5), which is fixed on the bracket body (1) and has a sliding groove (501) in the vertical direction. The buckle body (311) is embedded in the sliding groove (501). The movable buckle (31) also includes at least two elastic locking arms (314), which are distributed on both sides of the buckle body (311) and abut against the sliding groove (501).

7. The fixing bracket according to claim 6, characterized in that, The fixed bracket also includes a limiting block (6), which is fixed on the slide rail (5) and extends to the sliding groove (501); The movable buckle (31) also includes a limiting flange (315), which is distributed on the side of the buckle body (311) and abuts against the limiting block (6) so that the sliding stroke of the movable buckle (31) is limited by the cooperation between the limiting block (6) and the limiting plate (4).

8. The fixing bracket according to claim 7, characterized in that, The limiting block (6) and the slide rail (5) are an integral structure.

9. The fixing bracket according to claim 6, characterized in that, The bracket body (1) protrudes outward from the end face near the accommodating cavity (101) to the end face away from the accommodating cavity (101) to form a boss (7), and the assembly hole (102) is opened on the boss (7).

10. The fixing bracket according to claim 9, characterized in that, The boss (7) is positioned in contact with the slide rail (5).

11. The fixing bracket according to claim 3, characterized in that, The buckle body (311) has a first notch (3112) on the end face near the fixed buckle (2), and the fixed buckle (2) has a second notch (201) on the end face near the buckle body (311). The first notch (3112), the second notch (201) and the bracket body (1) cooperate to form a clamping space for accommodating the fixing member (8).

12. The fixing bracket according to claim 11, characterized in that, The top of the buckle body (311) gradually slopes downward from the direction close to the first notch (3112) to the direction away from the first notch (3112) to form an inclined surface.