Novel wall switch
By incorporating a noise-reducing structure and quick-connect wiring design into the wall switch, the problem of noise diffusion from the jumper transmission components is solved, achieving a quiet operating environment and convenient maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-15
- Publication Date
- 2026-03-10
AI Technical Summary
In the operation of existing wall switches, the gap between the jumper transmission component and the base causes noise to diffuse, affecting the user experience in a quiet environment.
A noise reduction structure, including a concave annular groove and a wrapping part, is set between the springboard transmission component and the base. The sound diffusion is blocked by the gap fit, and the installation and removal of the wires are simplified by the quick-release wiring structure. A detachable panel bracket is designed to connect with the panel body.
It effectively reduces noise during switch use, improves product lifespan and ease of maintenance, ensures a quiet and comfortable operating environment, and simplifies wire handling.
Smart Images

Figure CN223986519U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a wall switch technology field, concretely relates to a novel wall switch. BACKGROUND
[0002] In prior art, the jumper transmission member and the base are usually left with a larger gap, and the jumper transmission member and the base move frequently during the use of the switch, and the sound generated thereby spreads out through the gap without any obstruction, forming obvious noise, which brings bad user experience. Especially in a quiet environment, such as a bedroom, a library and the like, the noise is particularly prominent, which affects people's normal life and rest. SUMMARY
[0003] Therefore, the utility model provides a novel wall switch.
[0004] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:
[0005] A novel wall switch, comprising a base and a panel assembly, the panel assembly is arranged on the base and connected with the base, the panel assembly comprises a panel bracket and a panel body, the panel bracket is detachably connected with the panel body and the base on both sides, respectively, a jumper transmission member is arranged on the base, a jumper assembly is arranged in the base, the jumper assembly is movably connected with the jumper transmission member, a noise reduction structure is arranged between the jumper transmission member and the base, and the noise reduction structure blocks the diffusion of the sound generated during the movement between the jumper transmission member and the jumper assembly.
[0006] Preferably, the base comprises a seat body and a base gland, the noise reduction structure comprises a ring groove formed in the base gland on the side close to the panel assembly and a wrapping part formed on the jumper transmission member corresponding to the position of the ring groove, and the wrapping part extends into the inside of the ring groove and is gap-fitted with the inner ring side groove wall of the ring groove.
[0007] Preferably, the jumper transmission member has a pressing part connected with the panel assembly and a transmission part extending into the inside of the base and connected with the jumper assembly, and the wrapping part is formed on the side of the pressing part close to the ring groove.
[0008] Preferably, a quick-release wiring structure is arranged on the base, the quick-release wiring structure comprises a wire loosening piece arranged on the base and a wire compression assembly arranged in the inside of the base, one end of the wire loosening piece extends into the inside of the base and is rotatably connected with the wire compression assembly, a wire inlet hole for the external wire to enter is formed on the base, a wire compression gap is formed on the wire compression assembly, and the external wire enters the inside of the base through the wire inlet hole and extends into the wire compression gap and is connected with the wire compression assembly.
[0009] Preferably, the wire clamping assembly includes a conductive sheet connecting frame and an elastic clamping member disposed within the conductive sheet connecting frame. Rotary grooves are formed on both side walls of the conductive sheet connecting frame. The wire release member has a rotating end corresponding to the rotating groove. The portion of the wire release member with the rotating end extends into the conductive sheet connecting frame, and the rotating end extends into the rotating groove and is rotatably connected to the conductive sheet connecting frame. The wire clamping gap is formed between the top inner wall of the conductive sheet connecting frame and the elastic clamping member. The elastic clamping member clamps the external wire within the wire clamping gap onto the top inner wall of the conductive sheet connecting frame.
[0010] Preferably, the elastic clamping member has a horizontally placed portion that fits against the bottom inner wall of the conductive sheet connecting frame, and two wire clamping portions that bend towards the center of the top inner wall of the conductive sheet connecting frame on the side of the horizontally placed portion near the wire inlet hole. The wire clamping gap is formed between the wire clamping portion and the top inner wall of the conductive sheet connecting frame. A downward pressing portion protrudes from the opposite side of the two wire clamping portions. The wire release member has a downward pressing end, and the two sides of the downward pressing end are respectively connected to the corresponding downward pressing portion and the downward pressing portion drives the wire clamping portion to detach from the top inner wall of the conductive sheet connecting frame.
[0011] Preferably, the pressing portion extends and bends away from the wire inlet hole, and the bending of the pressing portion provides a support point for the pressing end.
[0012] Preferably, the wire release component has a body portion, a pressing end is provided at the top of the body portion, a pressing end is provided on the side of the body portion near the wire inlet hole, and a rotating end is provided on both sides of the lower part of the body portion.
[0013] Preferably, the panel body is provided with a switch button and a decorative strip, the two sides of the panel body protrude to form a decorative strip fixing structure, the decorative strip fixing structure is provided with a slot, the decorative strip protrudes corresponding to the slot to form a decorative strip buckle end, the decorative strip buckle end extends into the slot and is buckled to the panel body.
[0014] Preferably, the panel body has a disassembly port for separating the panel body and the panel bracket. An external tool is inserted into the disassembly port and pressed against the panel bracket to disassemble and separate the panel body and the panel bracket.
[0015] Preferably, a mounting groove is formed at the center of the panel body, the mounting groove having a base mounting part for connecting with the base and a bracket mounting part for connecting the panel bracket, and the disassembly port is opened on the inner wall of the bracket mounting part.
[0016] The beneficial effects of this invention are as follows: the detachable panel bracket and panel body design not only facilitate the installation and maintenance of the socket but also greatly improve the product's lifespan. When the panel body needs to be replaced or repaired, simply insert an external tool into the disassembly port and easily press against the panel bracket to achieve quick disassembly and separation of the panel body and the panel bracket without damaging the overall structure, thus reducing maintenance costs and time. At the same time, this design also makes cleaning the socket more convenient, effectively preventing the accumulation of dust and dirt, ensuring the socket's cleanliness and safe use. Attached Figure Description
[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Appendix Figure 1 Diagram of a wall switch;
[0019] Appendix Figure 2 This is a diagram showing another angle of the wall switch;
[0020] Appendix Figure 3 This is an exploded view of the wall switch structure.
[0021] Appendix Figure 4 This is a schematic diagram of the noise reduction structure;
[0022] Appendix Figure 5 This is a schematic diagram of the quick-release wiring structure;
[0023] Appendix Figure 6 For the appendix Figure 5 Structural breakdown diagram;
[0024] Appendix Figure 7 This is a schematic diagram of the panel itself. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] The present invention will now be further described with reference to the accompanying drawings.
[0027] This utility model provides the following technical solution:
[0028] As attached Figures 1-7 As shown, this utility model discloses a novel wall switch, including a base 1 and a panel assembly 2. The panel assembly 2 is mounted on and connected to the base 1. The panel assembly 2 includes a panel bracket 3 and a panel body 4. The two sides of the panel bracket 3 are detachably connected to the panel body 4 and the base 1, respectively. A jumper transmission component 20 is provided on the base 1, and a jumper assembly (not shown) is provided inside the base 1. The jumper assembly is a switch jumper in the prior art, so it will not be described in detail here. The jumper assembly is movably connected to the jumper transmission component 20. A noise reduction structure 22 is provided between the jumper transmission component 20 and the base 1. The noise reduction structure 22 blocks the diffusion of sound generated during the movement between the jumper transmission component 20 and the jumper assembly. Specifically, in this design, the base 1 is designed as a combination of a seat body 23 and a base cover 24. The noise reduction structure 22 is cleverly composed of an annular groove 25 formed concavely on the side of the base cover 24 near the panel assembly 2, and a wrapping part 26 protruding on the jumper transmission component 20 corresponding to the annular groove 25. The wrapping part 26 extends into the inside of the annular groove 25 and maintains a clearance fit with the inner annular side wall of the annular groove 25. This design not only ensures the normal movement of the springboard transmission component 20, but also effectively blocks the sound diffusion generated during the movement, achieving the effect of noise reduction.
[0029] Furthermore, the base 1 includes a seat body 23 and a base cover 24. The noise reduction structure 22 includes an annular groove 25 recessed in the base cover 24 near the panel assembly 2 and a wrapping portion 26 protruding from the jump plate transmission component 20 corresponding to the annular groove 25. The wrapping portion 26 extends into the annular groove 25 and is clearance-fitted with the inner annular side wall of the annular groove 25. Specifically, in this embodiment, the design of the annular groove can effectively collect and limit the direction of sound propagation, while the clearance fit between the wrapping portion and the inner wall of the annular groove further reduces sound leakage. The two work together to significantly reduce the noise generated during the use of the switch, providing users with a quieter and more comfortable operating environment.
[0030] Furthermore, the ramp transmission component 20 has a pressing part 27 connected to the panel assembly 2 and a transmission part 28 extending into the base 1 and connecting to the ramp assembly. The wrapping part 26 protrudes from the pressing part 27 on the side near the annular groove 25. Specifically, in this embodiment, the design of the pressing part allows the user to operate the switch with a simple pressing action, while the transmission part is responsible for transmitting the action of the pressing part to the ramp assembly, realizing the opening and closing of the switch. The wrapping part is located on the side of the pressing part near the annular groove. This layout ensures effective cooperation between the wrapping part and the annular groove without affecting the normal operation of the pressing part, reflecting the ingenuity and practicality of the design.
[0031] Furthermore, the panel body 4 has a disassembly port 5 for separating the panel body 4 from the panel bracket 3. An external tool (not shown) is inserted into the disassembly port 5 and pressed against the panel bracket 3 to disassemble and separate the panel body 4 from the panel bracket 3. Specifically, in this design, the detachable connection between the panel bracket 3 and the panel body 4 not only facilitates the installation and maintenance of the socket but also greatly improves the product's service life. When it is necessary to replace or repair the panel body 4, simply insert an external tool into the disassembly port 5 and easily press against the panel bracket 3 to achieve quick disassembly and separation of the panel body 4 from the panel bracket 3 without damaging the overall structure, thus reducing maintenance costs and time. At the same time, this design also makes cleaning the socket more convenient, effectively preventing the accumulation of dust and dirt, and ensuring the cleanliness and safe use of the socket.
[0032] Furthermore, a mounting groove 29 is formed at the center of the panel body 4. The mounting groove 29 has a base mounting part 30 for connecting with the base 1 and a bracket mounting part 31 for connecting with the panel bracket 3. The disassembly port 5 is opened on the inner wall of the bracket mounting part 31. Specifically, in this embodiment, the design of the mounting groove provides a stable foundation for the connection between the panel body and the base and panel bracket. The base mounting part ensures a reliable connection between the panel body and the base, while the bracket mounting part, through the design of the disassembly port, realizes flexible disassembly of the panel body and the panel bracket. This structure not only enhances the overall stability of the switch but also greatly simplifies the installation and maintenance process. Users can complete the replacement or maintenance of the panel body with simple operations, without the need for professional tools or complicated steps, improving the convenience and efficiency of use.
[0033] Furthermore, the base 1 is equipped with a quick-release wiring structure, which includes a wire release component 6 on the base 1 and a wire clamping assembly 7 inside the base 1. One end of the wire release component 6 extends into the base 1 and is rotatably connected to the wire clamping assembly 7. The base 1 has an inlet hole 8 for external wires to enter, and the wire clamping assembly 7 forms a clamping gap 9. The external wire enters the base 1 through the inlet hole 8 and extends into the clamping gap 9 to connect with the wire clamping assembly 7. Specifically, in this embodiment, by pressing the wire release component 6, the wire clamping assembly 7 no longer clamps the external wire in the clamping gap 9, allowing the external wire to be freely pulled out of the clamping gap 9, thus achieving the function of quick wire disassembly. When it is necessary to reconnect the wire, simply insert the wire through the inlet hole 8 into the clamping gap 9 and release the pressure on the wire release component 6. The wire clamping assembly 7 will then automatically clamp and fix the wire under the action of its internal elastic element, ensuring the stability and reliability of the wire connection. This quick-release wiring structure greatly simplifies the installation and removal process of the wires, improves work efficiency, and avoids problems such as poor wire contact or damage caused by frequent plugging and unplugging, further enhancing the overall performance and service life of the socket.
[0034] Furthermore, the wire clamping assembly 7 includes a conductive sheet connecting frame 10 and an elastic clamping member 11 disposed within the conductive sheet connecting frame 10. Rotating grooves 12 are formed on both side walls of the conductive sheet connecting frame 10. The wire release member 6 has a rotating end 13 corresponding to the rotating groove 12. The portion of the wire release member 6 with the rotating end 13 extends into the conductive sheet connecting frame 10, and the rotating end 13 extends into the rotating groove 12 and is rotatably connected to the conductive sheet connecting frame 10. The wire clamping gap 9 is formed between the top inner wall of the conductive sheet connecting frame 10 and the elastic clamping member 11. The elastic clamping member 11 clamps the external wire within the wire clamping gap 9 onto the top inner wall of the conductive sheet connecting frame 10. Specifically, in this embodiment, by forming rotating grooves 12 on both side walls of the conductive sheet connecting frame 10 and allowing the rotating end 13 of the wire release member 6 to extend into the rotating groove 12 to achieve a rotatable connection, this structural arrangement ensures both the flexibility of the wire release member 6's rotation and the stability of its connection with the conductive sheet connecting frame 10. When the wire release component 6 is pressed, the rotating end 13 rotates in the rotating groove 12, causing the elastic clamping component 11 in the conductive sheet connecting frame 10 to move, thereby increasing the wire clamping gap 9 and allowing the external wire to be pulled out freely; after the press is released, the elastic clamping component 11 returns to its original position under its own elastic force, and presses the wire back onto the top inner wall of the conductive sheet connecting frame 10.
[0035] Furthermore, the elastic clamping member 11 has a horizontally placed portion 14 that conforms to the bottom inner wall of the conductive sheet connecting frame 10, and two wire clamping portions 15 that bend towards the center of the top inner wall of the conductive sheet connecting frame 10 on the side of the horizontally placed portion 14 near the wire inlet hole 8. The wire clamping gap 9 is formed between the wire clamping portion 15 and the top inner wall of the conductive sheet connecting frame 10. A downward pressing portion 16 protrudes from the opposite side of each of the two wire clamping portions 15. The wire release member 6 has a downward pressing end 17, and the two sides of the downward pressing end 17 are respectively connected to the corresponding downward pressing portion 16, and the downward pressing portion 16 drives the wire clamping portion 15 to detach from the top inner wall of the conductive sheet connecting frame 10. Specifically, in this embodiment, by setting the horizontally placed portion 14 and the two bent wire clamping portions 15, and forming a downward pressing portion 16 protruding from the opposite side of the wire clamping portion 15, which is connected to the downward pressing end 17 of the wire release member 6, this structural design cleverly realizes the function of wire clamping and releasing. When the lower end 17 of the wire release component 6 is pressed, the lower end 17 drives the wire clamping part 15 downward through the lower part 16, causing it to disengage from the top inner wall of the conductive sheet connecting frame 10, thereby increasing the wire clamping gap 9 and facilitating the extraction of the external wire. After the pressure is released, the elastic clamping component 11, under its own elastic force, presses the wire clamping part 15 back onto the top inner wall of the conductive sheet connecting frame 10, ensuring a stable connection of the wire. This design not only improves the convenience of wire assembly and disassembly but also ensures the reliability and safety of the wire connection.
[0036] Furthermore, the pressing portion 16 extends and bends away from the wire inlet hole 8, providing a support point for the pressing end 17 after bending. Specifically, in this embodiment, the extension and bending of the pressing portion 16 away from the wire inlet hole 8 creates a stable support point for the pressing end 17. This design allows the pressing end 17 to move more stably through the pressing portion 16 to drive the wire clamping portion 15 when the wire release member 6 is pressed, avoiding jamming or damage caused by uneven force. At the same time, the presence of the support point also enhances the overall structural strength of the wire release member 6, making it less prone to deformation or damage during long-term use, thereby ensuring the stability and durability of the quick-release connector structure.
[0037] Furthermore, the wire release component 6 has a body portion 18, with a pressing end 19 at the top of the body portion 18, a lowering end 17 located on the side of the body portion 18 near the inlet hole 8, and rotating ends 13 located on both sides of the lower part of the body portion 18. Specifically, in this embodiment, by providing a pressing end 19 at the top of the body portion 18, it is convenient for the user to perform a pressing operation, thereby realizing the pressing and releasing action of the wire release component 6. The lowering end 17 is located on the side of the body portion 18 near the inlet hole 8, which can more directly and effectively connect with the lowering part 16, thereby driving the wire clamping part 15 to move. The rotating ends 13 are located on both sides of the lower part of the body portion 18 and are rotatably connected to the rotating grooves 12 on the side walls of the conductive sheet connecting frame 10, ensuring the stability and flexibility of the rotation of the wire release component 6.
[0038] Furthermore, the panel body 4 is provided with a switch button 32 and a decorative strip 33. A decorative strip fixing structure 34 protrudes from both sides of the panel body, and a slot 35 is provided on the decorative strip fixing structure. A corresponding decorative strip buckle end 36 protrudes from the decorative strip into the slot and is snapped into the panel body. Specifically, in this embodiment, the switch button on the panel body facilitates user control of the socket's power supply, improving ease of use. The decorative strip design adds aesthetic appeal to the entire socket. By forming a decorative strip fixing structure protruding from both sides of the panel body and providing a slot on this structure for snapping into the corresponding decorative strip buckle end, this connection method is both stable and easy to disassemble. When the decorative strip needs to be replaced or cleaned, it can be easily pulled out of the slot without the need for any tools, greatly simplifying the operation process. At the same time, this snap-fit connection method ensures a tight connection between the decorative strip and the panel body, avoiding problems such as the decorative strip falling off or making abnormal noises due to loosening, and further improving the overall quality and user experience of the socket.
[0039] The above description of the disclosed embodiments enables those skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A novel wall switch, comprising a base and a panel assembly, the panel assembly being mounted on and connected to the base, the panel assembly including a panel bracket and a panel body, the panel bracket being detachably connected to the panel body and the base on both sides respectively, a jump-plate transmission component being disposed on the base, a jump-plate assembly being disposed within the base, the jump-plate assembly being movably connected to the jump-plate transmission component, characterized in that: The noise reduction structure is arranged between the jump plate transmission member and the base, and the noise reduction structure blocks the diffusion of the sound generated during the movement between the jump plate transmission member and the jump plate assembly.
2. The novel wall switch according to claim 1, characterized in that: The base comprises a base body and a base gland, the noise reduction structure comprises a ring groove formed by concave on the side of the base gland close to the panel assembly, and a wrapping part formed by convex on the jump plate transmission member corresponding to the position of the ring groove, the wrapping part extends into the inside of the ring groove and cooperates with the inner ring side groove wall gap of the ring groove.
3. The novel wall switch according to claim 2, characterized in that: The jump plate transmission member has a pressing part connected with the panel assembly and a transmission part extending into the inside of the base and connected with the jump plate assembly, and the wrapping part is formed by convex on the side of the pressing part close to the ring groove.
4. The novel wall switch according to claim 1, characterized in that: The quick release wiring structure is arranged on the base, the quick release wiring structure comprises a wire loosening piece arranged on the base and a wire pressing assembly arranged in the inside of the base, one end of the wire loosening piece extends into the inside of the base and is rotationally connected with the wire pressing assembly, a wire inlet hole is arranged on the base for the external wire to enter, the wire pressing assembly is formed with a wire pressing gap, the external wire enters the inside of the base through the wire inlet hole and extends into the wire pressing gap and is connected with the wire pressing assembly.
5. The novel wall switch according to claim 4, characterized in that: The wire pressing assembly comprises a conductive sheet connecting frame and an elastic pressing piece arranged in the conductive sheet connecting frame, the two side walls of the conductive sheet connecting frame are formed with a rotating groove, the wire loosening piece has a rotating end corresponding to the rotating groove, the part of the wire loosening piece with the rotating end extends into the conductive sheet connecting frame, and the rotating end extends into the rotating groove and is rotationally connected with the conductive sheet connecting frame, the wire pressing gap is formed between the top inner wall of the conductive sheet connecting frame and the elastic pressing piece, and the elastic pressing piece presses the external wire in the wire pressing gap on the top inner wall of the conductive sheet connecting frame.
6. The novel wall switch according to claim 5, characterized in that: The elastic pressing piece has a horizontal placement part abutting against the bottom inner wall of the conductive sheet connecting frame, and two wire pressing parts bent towards the center of the top inner wall of the conductive sheet connecting frame on the side of the horizontal placement part close to the wire inlet hole, the wire pressing gap is formed between the wire pressing parts and the top inner wall of the conductive sheet connecting frame, and a pressing part is formed by convex on the opposite side of each of the two wire pressing parts, the wire loosening piece has a pressing end, the pressing end is connected with the corresponding pressing part on the two sides and drives the wire pressing part to be separated from the top inner wall of the conductive sheet connecting frame through the pressing part.
7. The novel wall switch according to claim 6, characterized in that: The pressing part extends and is arranged by bending on the side away from the wire inlet hole, and the pressing part provides a support point for the pressing end after being bent.
8. The novel wall switch of claim 6, wherein: The wire loosening piece has a body part, the body part is provided with a pressing end at the top end, the pressing end is arranged on the side of the body part close to the wire inlet hole, and the rotating end is arranged on the two sides of the lower part of the body part.
9. The novel wall switch according to claim 1, characterized in that: The panel body is provided with a switch key and a decoration strip, the two sides of the panel body are formed with decoration strip fixing structures by convex, the decoration strip fixing structures are provided with clamping grooves, the decoration strip is provided with decoration strip clamping ends by convex corresponding to the clamping grooves, and the decoration strip clamping ends are clamped and connected with the panel body by extending into the clamping grooves.
10. The novel wall switch according to claim 1, characterized in that: The panel body is provided with a dismounting hole for separating the panel body and the panel support, an external tool extends into the dismounting hole and abuts against the panel support to separate the panel body and the panel support.
11. The novel wall switch according to claim 10, characterized in that: The panel body center forms a mounting groove, the mounting groove has a base mounting part for connecting with the base and a support mounting part for connecting with the panel support, and the dismounting opening is arranged on the inner wall of the support mounting part.