Ultrathin embedded wall switch

By adjusting and rotating the components, the problem of protruding plugs when appliances are plugged into ultra-thin recessed wall switches has been solved, achieving stable recessed design and a simple aesthetic, thus improving user experience and device lifespan.

CN223552415UActive Publication Date: 2025-11-14LONGSHENG ELECTRICS CO LTD
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Patent Information

Application Number
CN202423165010.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-21
Publication Date
2025-11-14
Estimated Expiration
2034-12-21

AI Technical Summary

Technical Problem

Existing ultra-thin recessed wall switches cannot close their protective shells when appliances are plugged in, causing the plug to protrude from the wall or furniture surface, resulting in a cluttered overall design.

Method used

The adjustment components include a push button and a spring. The push button controls the position of the switch body in the limit hole on the bracket. Combined with the heat dissipation component and the rotation component, the embedded state adjustment of the switch body is realized. The operation of the protective cover is simplified by magnetic buckle and rubber pad.

Benefits of technology

It achieves stable embedding of the switch body, improves space utilization efficiency and aesthetics, ensures stability and safety in use, simplifies the operation process, and improves ease of use and equipment lifespan.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an ultrathin embedded wall switch, relates to wall switch technical field, including support, protective cover, switch main part, adjusting subassembly, heat dissipation subassembly and rotating subassembly, the protective cover is provided on the support, the heat dissipation subassembly is provided on the protective cover, the rotating subassembly is provided on the support, the adjusting subassembly is provided on the switch main part, and the rotating subassembly is provided on the support. The adjusting assembly comprises a pressing piece and a spring, a transmission hole is formed in the switch body, the spring is arranged on the switch body through the transmission hole, the pressing piece is arranged at the end, away from the switch body, of the spring, and a plurality of limiting holes are formed in the support. According to the utility model, the switch main body can be in an embedded state through the adjusting assembly, and the required embedded depth of the switch main body can be adjusted according to different plug depths, so that the problems that the protective shell cannot be closed and the plug protrudes out of the wall surface are solved; and the overall design is tidier.
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Description

Technical Field

[0001] This application relates to the field of wall switch technology, and more particularly to an ultra-thin embedded wall switch. Background Technology

[0002] Ultra-thin recessed wall switches are a modern and space-saving type of switch commonly used in interior design. Their ultra-thin design makes the switch look more modern and simple, suitable for various interior design styles. Due to their thin design, these switches do not protrude too much from the wall during installation, making them suitable for environments with limited space. They also feature multiple safety characteristics, such as protection against electric shock and overload protection, ensuring safe use. Because of their smooth surface and lack of complex structure, they are very easy to clean.

[0003] Currently, Chinese utility model patent application CN 219936924U, published on October 31, 2023, discloses a wall switch with a protective structure, including a switch body. Two symmetrical mounting plates are fixedly connected to one side of the switch body, and each mounting plate has a through-hole on one side. A protective shell is rotatably mounted on one side of the switch body. Z-shaped limiting rods are rotatably mounted on the inner walls of both sides of the protective shell, and the two limiting rods are movably connected to the two through-holes respectively. A U-shaped first sealing strip is adhered between the inner walls of the two sides and the inner wall of the top of the protective shell. A sealing mechanism is disposed on the inner wall of one side of the protective shell. This utility model can provide good protection for the wall switch in case of accidental contact, preventing damage to the switch body. It can also seal the wall switch to prevent dust from entering the interior of the wall switch, avoiding problems of poor contact.

[0004] In related technologies, wall switches with protective structures have the sockets inside. When an appliance is plugged into the switch socket, the protective shell cannot be closed, thus failing to protect the switch. At the same time, the protective shell also increases the space occupied by the switch, causing the plug to protrude from the wall or furniture surface, making the overall design more cluttered.

[0005] Therefore, it is necessary to provide an ultra-thin recessed wall switch to solve the above problems. Utility Model Content

[0006] This application provides an ultra-thin embedded wall switch to address the technical problem in related technologies where the protective shell cannot be closed when an appliance is plugged into the switch socket, causing the plug to protrude from the wall or furniture surface, resulting in a more cluttered overall design.

[0007] This application provides an ultra-thin embedded wall switch, including a bracket, a protective cover, a switch body, an adjustment component, a heat dissipation component, and a rotation component. The protective cover is mounted on the bracket, the heat dissipation component is mounted on the protective cover, the rotation component is mounted on the bracket, the adjustment component includes a push button and a spring, the switch body has a transmission hole, the spring is mounted on the switch body through the transmission hole, the push button is mounted on the end of the spring away from the switch body, the bracket has several limiting holes, and the switch body is movably mounted on the bracket through the limiting holes and the push button.

[0008] The technical solutions described above in this application embodiment have at least the following technical effects: When using an embedded wall switch, the user can choose different embedded depths for different types of switch plugs. In this way, the user can press the actuating element, which simultaneously compresses the spring in the transmission hole. The actuating element retracts, and the position of the switch body in the upper limit hole of the bracket is controlled according to the required embedded depth. When the required position is reached, the actuating element rebounds through the spring, restricting the movement of the switch body on the bracket.

[0009] The ultra-thin recessed wall switch provided in this application embodiment can be adjusted to make the switch body in a recessed state. At the same time, the required recessed depth of the switch body can be adjusted according to different plug depths. This solves the problem in related technologies where the protective shell cannot be closed when an appliance is plugged into the switch socket, and the plug protrudes from the wall or furniture surface, making the overall design neater.

[0010] In some embodiments, the heat dissipation assembly includes a heat dissipation box, a motor, and a cooling fan. A connection hole is provided on the protective cover. The heat dissipation box is mounted on the protective cover through the connection hole. The motor is mounted on the heat dissipation box. The cooling fan is mounted on the motor. The cooling fan is coaxially driven with the output shaft of the motor. A heat dissipation hole is provided on one end of the heat dissipation box near the connection hole. A heat transfer hole is provided on the other end of the heat dissipation box away from the connection hole.

[0011] In some embodiments, the bracket is provided with heat dissipation strips.

[0012] In some embodiments, the rotating assembly includes a fixed column, a rotating column, and a connecting block. The fixed column is mounted on a bracket and has a circular hole. The rotating column is mounted on the fixed column through the circular hole. The connecting block is mounted on a protective cover and is rotatably connected to the fixed column.

[0013] In some embodiments, the bracket is provided with a wire hole.

[0014] In some embodiments, a rubber pad is provided on the bracket.

[0015] In some embodiments, the protective cover is provided with a first magnetic buckle, and the bracket is provided with a square hole through which a second magnetic buckle is provided. Attached Figure Description

[0016] Figure 1 A three-dimensional structural diagram of an ultra-thin embedded wall switch provided in an embodiment of this application;

[0017] Figure 2 for Figure 1 Enlarged view of point A in the middle;

[0018] Figure 3 An exploded structural diagram of an ultra-thin embedded wall switch provided in an embodiment of this application;

[0019] The following are the labeling elements in the figure:

[0020] 1. Bracket; 11. Threading hole; 2. Protective cover; 21. Rubber pad; 3. Switch body; 4. Adjustment component; 41. Button; 42. Spring; 43. Limiting hole; 44. Transmission hole; 5. Heat dissipation component; 51. Motor; 52. Heat dissipation box; 53. Cooling fan; 54. Heat dissipation hole; 55. Heat transfer hole; 56. Connection hole; 6. Heat dissipation strip; 7. Rotating component; 71. Fixed column; 72. Rotating column; 73. Connecting block; 8. First magnetic snap; 81. Second magnetic snap. Detailed Implementation

[0021] Based on this, in order to improve the technical problem in the related technology that when an appliance is plugged into a switch socket, the protective shell cannot be closed and the plug protrudes from the wall or furniture surface, making the overall design more messy, the embodiments of this application provide the following solution.

[0022] Please refer to the following: Figures 1 to 3 This application provides an ultra-thin embedded wall switch, which includes a bracket 1, a protective cover 2, a switch body 3, an adjustment component 4, a heat dissipation component 5, and a rotation component 7. The protective cover 2 is mounted on the bracket 1, the heat dissipation component 5 is mounted on the protective cover 2, the rotation component 7 is mounted on the bracket 1, and the adjustment component 4 is mounted on the switch body 3.

[0023] In some embodiments, please refer to the following: Figures 1 to 3 The adjustment component 4 includes a pusher 41 and a spring 42. The switch body 3 has a transmission hole 44. The spring 42 is disposed on the switch body 3 through the transmission hole 44. The pusher 41 is disposed on the end of the spring 42 away from the switch body 3. The bracket 1 has a plurality of limiting holes 43. The switch body 3 is movably disposed on the bracket 1 through the limiting holes 43 and the pusher 41.

[0024] This design allows users to adjust the recessed depth of the wall switch depending on the type of plug. By pressing the actuating element 41, which in turn presses against the spring 42 within the transmission hole 44, the actuating element 41 retracts. This retraction depth controls the position of the switch body 3 within the upper limit hole 43 of the bracket 1. When the desired position is reached, the actuating element 41 rebounds via the spring 42, restricting the movement of the switch body 3 on the bracket 1, thus keeping the switch body 3 in a recessed state. This design also adjusts the recessed depth of the switch body 3 according to different plug depths, solving the problem in related technologies where the protective shell cannot close when an appliance is plugged into the switch socket, causing the plug to protrude from the wall or furniture surface. This results in a cleaner overall design, improved space utilization efficiency, and enhanced interior aesthetics. Furthermore, the cooperation between the spring 42 and the upper limit hole 43 ensures the stability and safety of the switch during use, providing users with a more convenient and comfortable experience.

[0025] In some embodiments, please refer to the following: Figures 1 to 3 The heat dissipation assembly 5 includes a heat dissipation box 52, a motor 51, and a cooling fan 53. The protective cover 2 has a connection hole 56. The heat dissipation box 52 is mounted on the protective cover 2 through the connection hole 56. The motor 51 is mounted on the heat dissipation box 52, and the cooling fan 53 is mounted on the motor 51. The cooling fan 53 is coaxially driven with the output shaft of the motor 51. The heat dissipation box 52 has a heat dissipation hole 54 at one end near the connection hole 56 and a heat transfer hole 55 at the other end away from the connection hole 56. The bracket 1 has a heat dissipation strip 6.

[0026] With this setup, after the switch body 3 has been working for a long time, most of the heat generated by the switch body 3 may accumulate. At the same time, the motor 51 starts and drives the cooling fan 53 to rotate. External air enters the heat sink 52 through the heat dissipation holes 54, and the hot air is discharged through the heat transfer holes 55. Meanwhile, the heat dissipation strips 6 on the bracket 1 provide auxiliary heat dissipation. This combination of multiple heat dissipation methods—fan cooling, heat dissipation holes 54 cooling, and heat dissipation strips 6 auxiliary heat dissipation—forms an effective air convection circulation, improving the overall heat dissipation effect. The motor 51 drives the fan to provide active cooling, the heat dissipation holes 54 and heat transfer holes 55 form an effective airflow channel, the heat dissipation strips 6 increase the heat dissipation area, and the protective cover 2 protects the internal components, preventing dust and foreign objects from entering and extending the service life of the equipment. This heat dissipation component 5 design achieves efficient heat dissipation through a reasonable structural layout and the combination of multiple heat dissipation methods, while providing good protection, allowing users to obtain a more stable and reliable user experience.

[0027] In some embodiments, please refer to the following: Figures 1 to 3The rotating assembly 7 includes a fixed column 71, a rotating column 72, and a connecting block 73. The fixed column 71 is mounted on the bracket 1 and has a circular hole. The rotating column 72 is mounted on the fixed column 71 through the circular hole. The connecting block 73 is mounted on the protective cover 2 and is rotatably connected to the rotating column 72. The bracket 1 has a wire hole 11 and a rubber pad 21. The protective cover 2 has a first magnetic snap 8. The bracket 1 has a square hole through which a second magnetic snap 81 is mounted.

[0028] With this design, when the user opens the protective cover 2, they open the first magnetic snap 8 and the second magnetic snap 81 located on the bracket 1 and the protective cover 2. By rotating the protective cover 2, the user can rotate the connecting block 73 on the rotating column 72, making it easy to plug the plug into the switch body 3. The wire on the plug can pass through the wire hole 11, reducing the problem of the wire restricting the closing of the protective cover 2 switch. When closing the protective cover 2, rotating the protective cover 2 causes the connecting block 73 to rotate on the rotating column 72. The protective cover 2 first contacts the rubber pad 21 on the bracket 1 to buffer the pressure, while the first magnetic snap 8 and the second magnetic snap 81 magnetically attract each other. Thus, during the process of opening the protective cover 2, the user can easily rotate the protective cover 2 by separating the first magnetic snap 8 and the second magnetic snap 81. This design simplifies the operation process and makes plugging and unplugging more convenient. When the protective cover 2 rotates, the connecting block 73 rotates synchronously on the rotating column 72. This structure not only ensures the smooth rotation of the protective cover 2 but also increases the smoothness of operation. More importantly, this design allows the wiring on the plug to pass through the wire hole 11, effectively solving the problem that wiring may obstruct the opening and closing of the protective cover 2 in traditional designs, thus improving the convenience and flexibility of use. When closing the protective cover 2, it first contacts the rubber pad 21 on the bracket 1. This design acts as a buffer, reducing the impact and noise during closing and extending the service life of the equipment. This design provides users with a more convenient, safe, and reliable user experience by simplifying operation steps, increasing safety, improving user experience, and enhancing the practicality and durability of the product.

[0029] The implementation principle of an ultra-thin recessed wall switch in this application embodiment is as follows: When using the recessed wall switch, the user needs to adjust the recess depth for different types of switch plugs. The user can press the actuating element 41, which simultaneously compresses the spring 42 within the transmission hole 44. The actuating element 41 retracts, controlling the position of the switch body 3 on the upper limit hole 43 of the bracket 1 according to the required recess depth. When the desired position is reached, the actuating element 41 rebounds via the spring 42, restricting the movement of the switch body 3 on the bracket 1. After prolonged operation, the switch body 3 generates a significant amount of heat, potentially leading to heat accumulation. Simultaneously, the motor 51 starts, driving the cooling fan 53 to rotate. External air enters the heat dissipation box through the heat dissipation hole 54. Inside the 52, hot air is discharged through the heat transfer hole 55, while the heat dissipation strip 6 on the bracket 1 provides auxiliary heat dissipation. When the user opens the protective cover 2, the first magnetic buckle 8 and the second magnetic buckle 81 on the bracket 1 and the protective cover 2 are opened. By rotating the protective cover 2, the protective cover 2 rotates and drives the connecting block 73 to rotate on the rotating column 72, making it convenient for the user to plug the plug into the switch body 3. The connecting wire on the plug can be passed through the wire hole 11, reducing the problem of the protective cover 2 being restricted from closing due to the connecting wire. When closing the protective cover 2, the protective cover 2 is rotated and the connecting block 73 rotates on the rotating column 72. The protective cover 2 first contacts the rubber pad 21 on the bracket 1 to buffer the pressure, while the first magnetic buckle 8 and the second magnetic buckle 81 are magnetically attracted to each other.

[0030] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. An ultra-thin embedded wall switch, characterized in that: The device includes a bracket (1), a protective cover (2), a switch body (3), an adjustment component (4), a heat dissipation component (5), and a rotating component (7). The protective cover (2) is mounted on the bracket (1), the heat dissipation component (5) is mounted on the protective cover (2), and the rotating component (7) is mounted on the bracket (1). The adjustment component (4) includes a pusher (41) and a spring (42). The switch body (3) has a transmission hole (44), and the spring (42) is mounted on the switch body (3) through the transmission hole (44). The pusher (41) is mounted on the end of the spring (42) away from the switch body (3). The bracket (1) has several limiting holes (43), and the switch body (3) is movably mounted on the bracket (1) through the limiting holes (43) and the pusher (41).

2. The ultra-thin embedded wall switch according to claim 1, characterized in that: The heat dissipation assembly (5) includes a heat dissipation box (52), a motor (51), and a cooling fan (53). A connection hole (56) is provided on the protective cover (2). The heat dissipation box (52) is mounted on the protective cover (2) through the connection hole (56). The motor (51) is mounted on the heat dissipation box (52). The cooling fan (53) is mounted on the motor (51). The cooling fan (53) is coaxially driven with the output shaft of the motor (51). A heat dissipation hole (54) is provided on the end of the heat dissipation box (52) near the connection hole (56). A heat transfer hole (55) is provided on the end of the heat dissipation box (52) away from the connection hole (56).

3. The ultra-thin embedded wall switch according to claim 2, characterized in that: The bracket (1) is provided with heat dissipation strips (6).

4. The ultra-thin embedded wall switch according to claim 3, characterized in that: The rotating assembly (7) includes a fixed column (71), a rotating column (72), and a connecting block (73). The fixed column (71) is mounted on the bracket (1) and has a circular hole. The rotating column (72) is mounted on the fixed column (71) through the circular hole. The connecting block (73) is mounted on the protective cover (2) and is rotatably connected to the rotating column (72).

5. The ultra-thin embedded wall switch according to claim 4, characterized in that: The bracket (1) has a wire hole (11).

6. The ultra-thin embedded wall switch according to claim 5, characterized in that: A rubber pad (21) is provided on the bracket (1).

7. The ultra-thin embedded wall switch according to claim 6, characterized in that: The protective cover (2) is provided with a first magnetic buckle (8), and the bracket (1) is provided with a square hole through which a second magnetic buckle (81) is provided.

Citation Information

Patent Citations

  • Wall switch with protection structure

    CN219936924U