Sliding wall switch

By designing a snap-fit ​​connection and guide groove structure between the sliding button assembly and the copper sheet assembly in the sliding wall switch, the problems of complex structure and high maintenance cost in the prior art are solved, and the stability and convenience are improved.

CN223967147UActive Publication Date: 2026-03-03ZHEJIANG GENO ELECTRICAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-18
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

Existing sliding wall switches have complex structures, are cumbersome to install, have many components, are prone to failure, and have high maintenance costs.

Method used

A sliding wall switch was designed, which uses a sliding button assembly including a sliding button cover, a sliding button guide, a sliding button body, and a sliding button drive component. The sliding button is connected to the copper sheet assembly through a sliding button mounting slot. The sliding button guide is snapped onto the back seat. The sliding button cover and the sliding button body are connected by a snap-fit. The sliding button drive component drives the copper sheet assembly to realize the circuit on/off control.

Benefits of technology

It improves the stability and accuracy of the slider, simplifies the assembly and disassembly process, reduces the risk of poor contact, extends the service life of the equipment, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223967147U_ABST
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Abstract

A sliding type wall switch is characterized in that a sliding knob assembly is arranged in a sliding knob mounting groove in a rear seat, and a sliding knob guide piece in the sliding knob assembly is buckled in the sliding knob mounting groove and is connected with the groove wall of the sliding knob mounting groove, so that the sliding knob guide piece is fixed on the rear seat; a guide groove is formed in the slide knob guide piece, so that a cover body connecting end on the slide knob cover and a body connecting end on the slide knob body can simultaneously extend into the guide groove for connection, and the slide knob body can be driven to synchronously move in the process of pushing the slide knob cover to slide; movement of the sliding knob body is transmitted to the copper sheet assembly through the sliding knob transmission part, and on-off control of a circuit is achieved. Due to the design of the sliding knob guide piece, the stability and accuracy of the sliding knob body in the moving process are ensured, and operation inconvenience caused by unsmooth sliding is avoided. In addition, the connecting structure of the slide knob cover and the slide knob body adopts a buckle type design, so that assembly and disassembly are facilitated, and meanwhile, the firmness of the whole structure is also improved.
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Description

Technical Field

[0001] This utility model relates to the field of wall switch technology, specifically to a sliding wall switch. Background Technology

[0002] In the existing technology, sliding wall switches have a complex structure, are cumbersome to install, and are prone to failure during use due to their numerous components, resulting in high maintenance costs. Summary of the Invention

[0003] In view of this, the present invention provides a sliding wall switch.

[0004] To achieve the above objectives, this utility model provides the following technical solution:

[0005] A sliding wall switch includes a panel and a back seat. A sliding button assembly is disposed between the panel and the back seat. A current-connecting cavity is formed within the back seat, and a copper sheet assembly is disposed within the current-connecting cavity. One end of the sliding button assembly extends into the current-connecting cavity and connects to the copper sheet assembly. The sliding button assembly includes a sliding button cover, a sliding button guide, a sliding button body, and a sliding button transmission component. A sliding button mounting groove is formed on the back seat. The sliding button guide, sliding button body, and sliding button transmission component are sequentially disposed within the sliding button mounting groove from top to bottom. The sliding button mounting groove communicates with the current-connecting cavity. The sliding button transmission component has one end extending into the electrical cavity through the through-hole and connecting to the copper sheet assembly. A guide groove is formed on the sliding button guide component. The sliding button cover and the sliding button body protrude towards the guide groove to form a cover connection end and a body connection end, respectively. The portions of the body connection end and the cover connection end located in the guide groove are connected. Pushing the sliding button cover causes the sliding button body to move within the guide groove. The end of the sliding button body away from the sliding button cover is connected to the sliding button transmission component. During the movement of the sliding button body, the sliding button transmission component is driven to swing.

[0006] Preferably, the slider body has a guide member connecting portion, the body connecting end protruding at the top center of the guide member connecting portion, the slider guide member having a body mounting groove on the side near the slider body, the guide member connecting portion of the slider body extending into the body mounting groove and connecting with the slider guide member, the guide groove being formed on the side wall of the body mounting groove near the slider cover, the guide member connecting portion having cover connecting holes on both sides of the body connecting end and on the body connecting end, at least two cover connecting ends being provided, the cover connecting ends extending into the corresponding cover connecting holes and connecting with the slider body.

[0007] Preferably, the travel of the main body connecting end within the guide groove is 6 mm.

[0008] Preferably, the sliding button transmission component is arranged in a Y-shape, and has a transmission connection part and a rear seat connection part. The transmission connection part has a sliding button transmission groove, and the sliding button body has a transmission component connection part. The transmission component connection part extends into the sliding button transmission groove and connects with the sliding button transmission component. During the movement of the sliding button body, the transmission component connection part is driven to move within the sliding button transmission groove. A rotating end is formed by protrusion on the rear seat connection part. A rotating hole corresponding to the rotating end is opened on the groove wall of the sliding button mounting groove. The rotating end extends into the rotating hole and is rotatably connected with the rear seat. During the movement of the transmission component connection part within the sliding button transmission groove, the sliding button transmission component is driven to swing within the sliding button mounting groove around the rotating end as the axis.

[0009] Preferably, a transmission component connecting groove is provided on the transmission component connecting part, and a spring and a spring are provided in the transmission component connecting groove. The spring is sleeved on the spring, and the end of the spring away from the spring abuts against the groove wall of the transmission component connecting groove. One end of the spring extends out of the transmission component connecting groove and abuts against the groove wall of the sliding button transmission groove.

[0010] Preferably, the transmission connection part protrudes on both sides near the top of the slide button transmission groove to form a limiting end, and the slide button body is provided with reinforcing ribs on both sides near the transmission component connection part. The reinforcing ribs are connected to the limiting end to limit the movement of the transmission component connection part and the swing of the slide button transmission component.

[0011] Preferably, the top of the sliding button guide is recessed to form a cover sliding part, the cover sliding part is connected to the guide groove, and the sliding button cover is disposed in the cover sliding part.

[0012] Preferably, the copper sheet assembly includes a plurality of conductive copper sheets, a switch jumper, and terminals. The conductive copper sheets are electrically connected to the terminals. The switch jumper is disposed between the conductive copper sheets and is connected to a sliding knob drive component. The sliding knob drive component drives the switch jumper to swing on the conductive copper sheets.

[0013] Preferably, the panel is recessed to form a sliding button positioning groove, and one end of the sliding button guide extends into the sliding button positioning groove and connects with the panel.

[0014] The beneficial effects of this utility model are as follows: By setting the sliding button assembly in the sliding button mounting groove on the rear seat, and snapping the sliding button guide in the sliding button assembly into the sliding button mounting groove and connecting it to the groove wall, the sliding button guide is fixed to the rear seat. A guide groove is provided on the sliding button guide so that the cover connecting end on the sliding button cover and the body connecting end on the sliding button body can simultaneously extend into the guide groove for connection. Therefore, when the sliding button cover is pushed to slide, it drives the sliding button body to move synchronously. The movement of the sliding button body is transmitted to the copper sheet assembly through the sliding button transmission component, realizing the on / off control of the circuit. The design of the sliding button guide component ensures the stability and accuracy of the sliding button body during movement, avoiding operational inconvenience caused by poor sliding. Furthermore, the connection structure between the sliding button cover and the sliding button body adopts a snap-fit ​​design, facilitating assembly and disassembly, and also improving the overall structural robustness. The reasonable design of the opening of the sliding button mounting groove ensures reliable connection between the sliding button transmission component and the copper sheet assembly, reducing the risk of poor contact. Attached Figure Description

[0015] 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.

[0016] Appendix Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Appendix Figure 2 This is a cross-sectional view of the present invention;

[0018] Appendix Figure 3 This is a schematic diagram of the slider assembly;

[0019] Appendix Figure 4 An exploded view of the slider assembly;

[0020] Appendix Figure 5 This is an exploded view of the slider assembly from another angle;

[0021] Appendix Figure 6 This is a schematic diagram of another embodiment;

[0022] Appendix Figure 7 This is a schematic diagram of another embodiment. Detailed Implementation

[0023] 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.

[0024] The present invention will now be further described with reference to the accompanying drawings.

[0025] This utility model provides the following technical solution:

[0026] As attached Figure 1-5As shown, this utility model discloses a sliding wall switch, including a panel 1 and a back seat 2. A sliding button assembly 3 is disposed between the panel 1 and the back seat 2. A power receiving cavity 4 is formed inside the back seat 2, and a copper sheet assembly 5 is disposed inside the power receiving cavity 4. One end of the sliding button assembly 3 extends into the power receiving cavity 4 and connects to the copper sheet assembly 5. The sliding button assembly 3 includes a sliding button cover 6, a sliding button guide 7, a sliding button body 8, and a sliding button transmission component 9. A sliding button mounting groove 10 is formed on the back seat 2. The sliding button guide 7, the sliding button body 8, and the sliding button transmission component 9 are arranged sequentially from top to bottom in the sliding button mounting groove 10. The sliding button mounting groove 10 has a communication function. The sliding button transmission component 9 extends into the electrical cavity 4 through the opening and connects to the copper sheet assembly 5. The sliding button guide component 7 has a guide groove 11. The sliding button cover 6 and the sliding button body 8 protrude towards the guide groove 11 to form a cover connection end 12 and a body connection end 13, respectively. The parts of the body connection end 13 and the cover connection end 12 located in the guide groove 11 are connected. Pushing the sliding button cover 6 drives the sliding button body 8 to move in the guide groove 11. The end of the sliding button body 8 away from the sliding button cover 6 is connected to the sliding button transmission component 9. During the movement of the sliding button body 8, the sliding button transmission component 9 is driven to swing. Specifically, in this design, the sliding button assembly 3 is placed in the sliding button mounting groove 10 on the rear seat 2. The sliding button guide 7 in the sliding button assembly 3 is snapped into the sliding button mounting groove 10 and connected to the groove wall of the sliding button mounting groove 10, thereby fixing the sliding button guide 7 to the rear seat 2. A guide groove 11 is opened on the sliding button guide 7 so that the cover connecting end 12 on the sliding button cover 6 and the body connecting end 13 on the sliding button body 8 can simultaneously extend into the guide groove 11 for connection. Thus, when the sliding button cover 6 is pushed to slide, it can drive the sliding button body 8 to move synchronously. The movement of the sliding button body 8 is transmitted to the copper sheet assembly 5 through the sliding button transmission component 9 to realize the on / off control of the circuit. The design of the sliding button guide 7 ensures the stability and accuracy of the sliding button body 8 during movement, avoiding inconvenience caused by poor sliding. In addition, the connection structure between the sliding button cover 6 and the sliding button body 8 adopts a snap-fit ​​design, which is convenient for assembly and disassembly, and also improves the overall structural rigidity. The sliding button mounting groove 10 has a reasonable through-hole design, which ensures reliable connection between the sliding button transmission component 9 and the copper sheet assembly 5 and reduces the risk of poor contact.

[0027] Furthermore, the slider body 8 has a guide member connecting portion 14, and the body connecting end 13 protrudes from the center of the top of the guide member connecting portion 14. The slider guide member 7 has a body mounting groove 15 on one side near the slider body 8. The guide member connecting portion 14 of the slider body 8 extends into the body mounting groove 15 and connects with the slider guide member 7. The guide groove 11 is formed on the side wall of the body mounting groove 15 near the slider cover 6. Cover connection holes 16 are formed on both sides of the guide member connecting portion 14 and on the body connecting end 13. At least two cover connection ends 12 are provided, and each cover connection end 12 extends into the corresponding cover connection hole 16 and connects with the slider body 8. Specifically, in this embodiment, by forming the cover connection holes 16, the connection between the slider cover 6 and the slider body 8 is made more secure, effectively preventing loosening caused by external forces during use. In addition, the design of the cover connection holes 16 facilitates the quick installation and removal of the slider cover 6, improving maintenance efficiency. The precise positioning of the guide groove 11 ensures the smoothness of the sliding cover 6 during sliding, avoiding jamming caused by excessive friction. The overall structural design not only improves the ease of operation but also extends the service life of the equipment, further enhancing product reliability and user experience.

[0028] Furthermore, the travel of the main body connecting end 13 within the guide groove 11 is 6mm. Specifically, in this embodiment, the travel of the main body connecting end 13 within the guide groove 11 is designed to be 6mm. This length has been precisely calculated to ensure that the slider provides sufficient range of motion during operation without causing structural loosening due to excessive travel. The limited travel allows the slider to maintain stable force feedback during sliding, avoiding operational errors caused by improper travel. In addition, the 6mm travel also ensures the precision of the fit between the slider cover 6 and the main body, ensuring accurate positioning with each slide and improving the overall smoothness and precision of operation.

[0029] Furthermore, the sliding button transmission component 9 is arranged in a Y-shape. The sliding button transmission component 9 has a transmission connection part 17 and a rear seat connection part 18. A sliding button transmission groove 19 is formed on the transmission connection part 17. The sliding button body 8 has a transmission component connection part 20. The transmission component connection part 20 extends into the sliding button transmission groove 19 and connects with the sliding button transmission component 9. During the movement of the sliding button body 8, the transmission component connection part 20 is driven to move within the sliding button transmission groove 19. A rotating end 21 protrudes from the rear seat connection part 18. A rotating hole (not shown) corresponding to the rotating end 21 is formed on the groove wall of the sliding button mounting groove 10. The rotating end 21 extends into the rotating hole and is rotatably connected to the rear seat 2. During the movement of the transmission component connection part 20 within the sliding button transmission groove 19, the sliding button transmission component 9 is driven to swing within the sliding button mounting groove 10 around the rotating end 21 as the axis.

[0030] Furthermore, a transmission component connecting groove 23 is formed on the transmission component connecting part 20. A spring element 25 and a spring (not shown) are disposed within the transmission component connecting groove 23. The spring is sleeved on the spring element 25, with the end of the spring away from the spring element 25 abutting against the groove wall of the transmission component connecting groove 23. One end of the spring element 25 extends out of the transmission component connecting groove 23 and abuts against the groove wall of the slider transmission groove 19. Specifically, in this embodiment, the design of the cooperation between the spring element 25 and the transmission component connecting groove 23 allows the spring to be compressed evenly when subjected to external force, thereby providing stable elastic feedback. This structure not only extends the service life of the spring but also further enhances the smoothness of the slider operation. The fact that one end of the spring element 25 extends out of the transmission component connecting groove 23 and abuts against the groove wall of the slider transmission groove 19 effectively prevents the spring from shifting during sliding, ensuring the stability and consistency of the transmission process. In addition, the design of the spring element 25 facilitates subsequent maintenance and replacement, improving the maintainability of the overall device. Through this ingenious design, the slider can maintain precise force control during operation, greatly optimizing the user experience.

[0031] Furthermore, the transmission connection portion 17 protrudes on both sides near the top of the slide button transmission groove 19 to form limiting ends 26. Reinforcing ribs 27 are provided on both sides of the slide button body 8 near the transmission component connection portion 20. The reinforcing ribs 27 connect with the limiting ends 26 to limit the movement of the transmission component connection portion 20 and the swinging of the slide button transmission component 9. Specifically, in this embodiment, the cooperation between the limiting ends 26 and the reinforcing ribs 27 forms a stable limiting structure, effectively preventing excessive movement or deflection of the transmission component connection portion 20 during operation. This design not only improves the overall stability of the device but also ensures that the slide button maintains precise positioning at each stage of operation. The presence of the reinforcing ribs 27 not only enhances the structural strength of the slide button body 8 but also further improves the durability of the transmission system.

[0032] Furthermore, the top of the sliding button guide 7 is recessed to form a cover sliding portion 28, which communicates with the guide groove 11. The sliding button cover 6 is disposed within the cover sliding portion 28. Specifically, in this embodiment, by providing the cover sliding portion 28 on the sliding button guide 7, the movement of the sliding button cover 6 is limited to the range of the cover sliding portion 28, thereby ensuring that the sliding button cover 6 will not deviate from the predetermined trajectory during sliding, thus improving the stability and accuracy of the sliding button operation.

[0033] Furthermore, the copper sheet assembly 5 includes several conductive copper sheets 29, switch jumpers 30, and terminals 31. The conductive copper sheets 29 are electrically connected to the terminals 31. The switch jumpers 30 are disposed between the conductive copper sheets 29 and are connected to a sliding knob drive 9. The sliding knob drive 9 drives the switch jumpers 30 to swing on the conductive copper sheets 29. Specifically, in this embodiment, each conductive copper sheet 29 is connected to a corresponding terminal 31. The conductive copper sheets 29 are connected to an external circuit through the terminals 31 to ensure stable current transmission. Under the drive of the sliding knob drive 9, the switch jumpers 30 can swing flexibly on the conductive copper sheets 29 to achieve circuit on / off control.

[0034] Furthermore, the panel 1 is recessed to form a sliding button positioning groove 32, and one end of the sliding button guide 7 extends into the sliding button positioning groove 32 and connects to the panel 1. Specifically, in this embodiment, one end of the sliding button guide 7 that mounts the sliding button cover 6 extends into the sliding button positioning groove 32 and is displayed on the panel 1 through the sliding button positioning groove 32, facilitating user operation.

[0035] Reference Appendix Figure 6 In other embodiments, the end of the slide cover 6 furthest from the slide body 8 may protrude to form a lever end 33. The lever end 33 is designed to provide a more convenient operating method. Users can achieve precise control of the slide cover 6 by directly pressing or pulling the lever end 33. This design not only increases operational flexibility but also further enhances the user experience.

[0036] Reference Appendix Figure 7 The panel is also equipped with a light-transmitting strip 34, which is 16-50mm in length.

[0037] 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 sliding wall switch, comprising a panel and a back seat, wherein a sliding button assembly is disposed between the panel and the back seat, a current-receiving cavity is formed within the back seat, a copper sheet assembly is disposed within the current-receiving cavity, and one end of the sliding button assembly extends into the current-receiving cavity and connects to the copper sheet assembly, characterized in that: The sliding button assembly includes a sliding button cover, a sliding button guide, a sliding button body, and a sliding button transmission component. A sliding button mounting groove is provided on the rear seat. The sliding button guide, sliding button body, and sliding button transmission component are sequentially arranged in the sliding button mounting groove from top to bottom. The sliding button mounting groove has an opening connecting to a power receiving cavity. One end of the sliding button transmission component extends into the power receiving cavity through the opening and connects to the copper sheet assembly. A guide groove is provided on the sliding button guide. The sliding button cover and the sliding button body protrude towards the guide groove, forming a cover connection end and a body connection end, respectively. The portions of the body connection end and the cover connection end located within the guide groove are connected. Pushing the sliding button cover causes the sliding button body to move within the guide groove. The end of the sliding button body away from the sliding button cover is connected to the sliding button transmission component. During the movement of the sliding button body, the sliding button transmission component swings.

2. The sliding wall switch according to claim 1, characterized in that: The slider body has a guide member connecting part, and the body connecting end protrudes and is formed at the top center of the guide member connecting part. The slider guide member has a body mounting groove on the side near the slider body. The guide member connecting part of the slider body extends into the body mounting groove and connects with the slider guide member. The guide groove is formed on the groove wall of the body mounting groove near the slider cover. The guide member connecting part has cover connecting holes on both sides of the body connecting end and on the body connecting end. At least two cover connecting ends are provided, and the cover connecting ends extend into the corresponding cover connecting holes and connect with the slider body.

3. The sliding wall switch according to claim 1, characterized in that: The travel distance of the main body connection end within the guide groove is 6 mm.

4. The sliding wall switch according to claim 1, characterized in that: The sliding button transmission component is arranged in a Y-shape. It has a transmission connection part and a rear seat connection part. The transmission connection part has a sliding button transmission groove. The sliding button body has a transmission component connection part. The transmission component connection part extends into the sliding button transmission groove and connects with the sliding button transmission component. During the movement of the sliding button body, the transmission component connection part moves within the sliding button transmission groove. The rear seat connection part protrudes to form a rotating end. A rotating hole corresponding to the rotating end is formed on the groove wall of the sliding button mounting groove. The rotating end extends into the rotating hole and rotatably connects with the rear seat. During the movement of the transmission component connection part within the sliding button transmission groove, the sliding button transmission component swings within the sliding button mounting groove around the rotating end as the axis.

5. The sliding wall switch according to claim 4, characterized in that: A transmission component connecting groove is provided on the transmission component connecting part. A spring and a spring are provided in the transmission component connecting groove. The spring is sleeved on the spring. The end of the spring away from the spring abuts against the groove wall of the transmission component connecting groove. One end of the spring extends out of the transmission component connecting groove and abuts against the groove wall of the sliding button transmission groove.

6. The sliding wall switch according to claim 4, characterized in that: The transmission connection part protrudes on both sides near the top of the slide button transmission groove to form a limiting end. The slide button body is provided with reinforcing ribs on both sides near the transmission component connection part. The reinforcing ribs are connected to the limiting end to limit the movement of the transmission component connection part and the swing of the slide button transmission component.

7. The sliding wall switch according to claim 1, characterized in that: The top of the sliding button guide is recessed to form a sliding part of the cover, the sliding part of the cover is connected to the guide groove, and the sliding button cover is disposed inside the sliding part of the cover.

8. The sliding wall switch according to claim 1, characterized in that: The copper sheet assembly includes several conductive copper sheets, a switch jumper, and terminals. The conductive copper sheets are electrically connected to the terminals. The switch jumper is disposed between the conductive copper sheets and is connected to a sliding knob transmission component. The sliding knob transmission component drives the switch jumper to swing on the conductive copper sheets.

9. The sliding wall switch according to claim 1, characterized in that: The panel is recessed to form a sliding button positioning groove, and one end of the sliding button guide extends into the sliding button positioning groove and connects to the panel.