Firmly-assembled wireless switch structure

By creating mounting slots on the mounting base and using magnetic adsorption to fix the wireless switch, the problem of the wireless switch shifting or falling off under external force is solved, achieving stable assembly of the wireless switch and improving the user experience.

CN224138041UActive Publication Date: 2026-04-17FOSHAN SHUNDE ADVANTE ELECTRON LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN SHUNDE ADVANTE ELECTRON LTD
Filing Date
2025-04-16
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing wireless switches are prone to shifting or falling due to external forces during use, failing to meet users' needs for controlling electrical equipment from different locations, resulting in a poor user experience.

Method used

An installation slot is made on the mounting base, and the wireless switch is embedded in the installation slot by magnetic adsorption. The installation slot and the magnetic adsorption part are used to fix it, ensuring that the wireless switch is not easy to shift or fall off when subjected to external force.

Benefits of technology

This improves the assembly stability of the wireless switch, preventing it from shifting or falling, enhancing the user experience, and ensuring the stability and reliability of the wireless switch in different locations.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a firmly-assembled wireless switch structure, which comprises a mounting seat and a wireless switch, and is characterized in that the mounting seat is provided with a mounting groove; and the wireless switch is at least partially embedded in the mounting groove. Wherein the mounting seat is provided with a first magnetic attraction part, and the wireless switch is provided with a second magnetic attraction part; when the wireless switch is embedded into the mounting groove, the wireless switch can be fixed through magnetic attraction of the first magnetic attraction part and the second magnetic attraction part. Therefore, the mounting groove is formed in the mounting seat, and the wireless switch is at least partially embedded in the mounting groove and magnetically attracted to the mounting seat to be fixed, so that when the wireless switch is subjected to a relatively large external force, the wireless switch can be limited and fixed by the mounting groove to be prevented from deviating or falling off; therefore, the assembly firmness of the wireless switch is ensured, the situation that the wireless switch falls off once being touched by a user is avoided, and the use experience of the user is greatly improved.
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Description

Technical Field

[0001] This utility model relates to the field of wireless switch technology, and in particular to a securely assembled wireless switch structure. Background Technology

[0002] Electrical appliances such as lighting fixtures are equipped with switches to turn them on and off. With the rapid development of power technology, wireless switches are being used more and more widely. In existing technology, wireless switches are fixed to relevant fixed reference surfaces such as walls or desktops, and the corresponding electrical appliances are remotely controlled via buttons on the wireless switch.

[0003] Existing wireless switches are permanently fixed after installation and cannot be moved freely. However, in actual use, users may need to control electrical devices from different locations, and existing wireless switches cannot meet this requirement. To address this, patent application number 201620303181.X discloses a magnetic wireless switch, which includes a base and a switch body. The switch body is magnetically attached to the base, allowing the switch body to be detached from one base and magnetically attached to another, thereby enabling the switch body to move and improving the user experience.

[0004] However, in actual use, it was found that since the switch body and the base are only fixed by magnetic attraction, when the switch body is subjected to a large external force, the switch body is prone to displacement or even falling off the base, resulting in a poor user experience. Utility Model Content

[0005] To overcome at least one of the defects described in the prior art, this utility model provides a securely assembled wireless switch structure. By creating a mounting groove on the mounting base, the wireless switch is at least partially embedded in the mounting groove and magnetically attracted and fixed to the mounting base. With this configuration, when the wireless switch is subjected to a large external force, the wireless switch can be limited and fixed by the mounting groove to prevent it from shifting or falling off, thereby ensuring the secure assembly of the wireless switch and preventing it from falling off with a slight touch, greatly improving the user experience.

[0006] The technical solution adopted by this utility model to solve its problem is:

[0007] A robustly assembled wireless switch structure, comprising:

[0008] The mounting base has a mounting slot.

[0009] A wireless switch, at least partially embedded in the mounting slot;

[0010] The mounting base is provided with a first magnetic attraction part, and the wireless switch is provided with a second magnetic attraction part; when the wireless switch is embedded in the mounting groove, it can be fixed by the magnetic attraction between the first magnetic attraction part and the second magnetic attraction part.

[0011] Furthermore, the wireless switch includes a base with an internal receiving slot and a rocker arm rotatably mounted on the receiving slot, wherein:

[0012] The base is at least partially embedded in the mounting groove;

[0013] The base is adapted to the shape of the mounting groove.

[0014] Furthermore, the base has a rectangular structure, and the mounting groove is a rectangular recess that fits it.

[0015] Furthermore, the depth of the mounting groove is H1, the height of the base is H2, and the following conditions are met:

[0016]

[0017] Further, the first magnetic attraction part consists of a first magnetic block and a second magnetic block arranged at intervals on the mounting base, and the second magnetic attraction part consists of a third magnetic block and a fourth magnetic block arranged at intervals within the receiving groove, wherein:

[0018] The first magnetic block has opposite magnetic poles to the second magnetic block, and the third magnetic block has opposite magnetic poles to the fourth magnetic block; the first magnetic block has the same magnetic poles as the fourth magnetic block, and the second magnetic block has the same magnetic poles as the third magnetic block.

[0019] Furthermore, it also includes a base box for mounting on a wall, the mounting base being mounted on the front end of the base box.

[0020] Furthermore, it also includes a cover fitted around the outer periphery of the base and mounted on the mounting seat, the cover completely covering the front end of the base box.

[0021] Furthermore, the mounting base is fixed to the base box by a first fixing part, which is a snap-fit ​​structure, an adhesive structure, or a screw-fit structure; the face cover is fixed to the mounting base by a second fixing part, which is a snap-fit ​​structure, an adhesive structure, or a screw-fit structure.

[0022] Furthermore, it also includes a mechanism disposed within the receiving slot, the mechanism comprising a self-generating module and a circuit board electrically connected to the self-generating module, wherein:

[0023] The self-generating module is equipped with a spring clip;

[0024] The rocker arm is equipped with a trigger element corresponding to the spring piece; when the rocker arm is pressed, the trigger element can press down the spring piece to generate electrical energy and supply power to the circuit board.

[0025] Furthermore, the rocker arm can be pressed on one side or both sides, wherein:

[0026] When the rocker arm can be pressed on both sides, a touch switch is also provided on the circuit board;

[0027] The rocker arm is also provided with a second trigger element corresponding to the touch switch; when one side of the rocker arm is pressed, the second trigger element can press down the touch switch to trigger it; when the other side of the rocker arm is pressed, the second trigger element is raised and the touch switch is not triggered.

[0028] In summary, the robustly assembled wireless switch structure provided by this utility model has the following beneficial effects:

[0029] (1) The wireless switch structure of this utility model has a mounting groove on the mounting base. The wireless switch is at least partially embedded in the mounting groove and magnetically attracted to the mounting base to achieve fixation. With this setting, when the wireless switch is subjected to a large external force, the wireless switch can be limited and fixed by the mounting groove to prevent it from shifting or falling off, thereby ensuring the assembly firmness of the wireless switch and preventing it from falling off when touched by the user, which greatly improves the user experience.

[0030] (2) The wireless switch structure of this utility model has a rectangular base and a rectangular groove that is adapted to it. With this arrangement, the rectangular groove can limit and fix the base around its perimeter, thereby preventing the base from shifting. In addition, the groove depth of the rectangular groove is greater than one-third of the height of the base, thereby preventing the base from being subjected to a large external force and causing one side to lift up and go over the mounting groove, further improving the assembly firmness of the wireless switch.

[0031] (3) The wireless switch structure of this utility model is configured such that a first magnetic block and a second magnetic block with opposite magnetic poles are set on the mounting base, and a third magnetic block and a fourth magnetic block with opposite magnetic poles are set inside the wireless switch. The first magnetic block and the fourth magnetic block have the same magnetic poles, and the second magnetic block and the third magnetic block have the same magnetic poles. With this configuration, when the wireless switch is inserted into the mounting groove in the forward direction, the third magnetic block and the first magnetic block are opposite to each other and magnetically attracted, and the fourth magnetic block and the second magnetic block are opposite to each other and magnetically attracted, so that the wireless switch can be firmly assembled into the mounting groove. Conversely, when the wireless switch is inserted into the mounting groove in the reverse direction (i.e., upside down), the third magnetic block and the second magnetic block are opposite to each other and magnetically repulsive, and the fourth magnetic block and the first magnetic block are opposite to each other and magnetically repulsive, so that the wireless switch cannot be firmly installed into the mounting groove, thereby avoiding user assembly errors. Attached Figure Description

[0032] Figure 1 This is an exploded view of the wireless switch structure according to Embodiment 1 of this utility model;

[0033] Figure 2 This is an exploded view of the wireless switch in the wireless switch structure of Embodiment 1 of this utility model;

[0034] Figure 3 for Figure 2 An illustration of the explosion from another perspective;

[0035] Figure 4 This is a schematic diagram of the wireless switch structure according to Embodiment 1 of this utility model;

[0036] Figure 5 This is a schematic diagram of the wireless switch structure after the face cover is removed, according to Embodiment 1 of this utility model.

[0037] Figure 6 This is an exploded view of the wireless switch structure according to Embodiment 2 of this utility model;

[0038] Figure 7 for Figure 6 An illustration of the explosion from another perspective;

[0039] Figure 8 This is a cross-sectional view of the wireless switch structure in Embodiment 2 of this utility model when the lower part of the rocker arm is pressed.

[0040] Figure 9 This is a cross-sectional view of the wireless switch structure in Embodiment 2 of this utility model when the upper part of the rocker arm is pressed.

[0041] The meanings of the reference numerals in the attached figures are as follows:

[0042] 1. Mounting base; 11. Mounting slot; 12. First mounting hole; 13. Fourth mounting hole; 14. First magnet; 15. Second magnet; 2. Wireless switch; 21. Base; 211. Receiving slot; 22. Press rocker; 221. First trigger; 222. Second trigger; 23. Third magnet; 24. Fourth magnet; 25. Self-generating module; 251. Spring; 252. Elastic reset element; 26. Circuit board; 261. Touch switch; 3. Base box; 31. Second mounting hole; 4. Cover; 41. Opening; 42. Third mounting hole; 5. First bolt; 6. Second bolt. Detailed Implementation

[0043] To better understand and implement this invention, the technical solutions in the embodiments of this invention will be clearly and completely described below with reference to the accompanying drawings.

[0044] In the description of this utility model, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", and "outer" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0045] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention.

[0046] Example 1

[0047] See Figure 1-5 This utility model provides a securely assembled wireless switch structure, including a mounting base 1 and a wireless switch 2. The front end of the mounting base 1 is recessed to form a mounting groove 11, and the wireless switch 2 is at least partially embedded in the mounting groove 11. The rear end of the mounting base 1 has a first magnetic attraction part, and the wireless switch 2 has a second magnetic attraction part. When the wireless switch 2 is embedded in the mounting groove 11, the first magnetic attraction part and the second magnetic attraction part attract each other magnetically to achieve assembly and fixation of the wireless switch 2.

[0048] Therefore, by opening a mounting groove 11 on the mounting base 1, the wireless switch 2 is at least partially embedded in the mounting groove 11 and magnetically attracted to the mounting base 1 to achieve fixation. When the wireless switch 2 is subjected to a large external force, the wireless switch 2 can be limited and fixed by the mounting groove 11 to prevent it from shifting or falling off, thereby ensuring the assembly firmness of the wireless switch 2 and preventing it from falling off with a touch, which greatly improves the user experience.

[0049] For details, please refer to Figure 2-3 The wireless switch 2 includes a base 21 with an internal receiving groove 211 and a rocker arm 22 rotatably mounted on the receiving groove 211. The base 21 is at least partially embedded in the mounting groove 11, and the shape of the base 21 is adapted to the shape of the mounting groove 11. Preferably, the base 21 has a rectangular structure, and the mounting groove 11 is a rectangular recess adapted to it. Thus, the rectangular recess can limit and fix the base 21 around its perimeter (i.e., the up, down, left, and right directions in the figures), thereby preventing the base 21 from shifting, and ensuring that the second magnetic part on the base 21 corresponds to the first magnetic part on the mounting base 1, thereby ensuring a firm assembly.

[0050] Furthermore, the depth of the mounting groove 11 is H1, and the height of the base 21 is H2, and the following conditions are met: Preferably, the depth H1 of the mounting groove 11 is two-thirds of the height H2 of the base 21; thus, by increasing the depth of the mounting groove 11, it is possible to prevent the base 21 from being subjected to a large external force and causing one side to tilt up and cross the mounting groove 11, thereby further improving the assembly firmness of the wireless switch 2.

[0051] See Figure 2-3 Specifically, the first magnetic attraction part consists of a first magnetic block 14 and a second magnetic block 15 arranged vertically at intervals on the mounting base 1, and the second magnetic attraction part consists of a third magnetic block 23 and a fourth magnetic block 24 arranged vertically at intervals in the receiving groove 211; wherein, the magnetic poles of the first magnetic block 14 and the second magnetic block 15 are opposite, and the magnetic poles of the third magnetic block 23 and the fourth magnetic block 24 are opposite; the magnetic poles of the first magnetic block 14 and the fourth magnetic block 24 are the same, and the magnetic poles of the second magnetic block 15 and the fourth magnetic block 24 are the same.

[0052] Therefore, when the wireless switch 2 is inserted into the mounting slot 11 in the forward direction, the third magnetic block 23 and the first magnetic block 14 are opposite to each other and magnetically attracted, while the fourth magnetic block 24 and the second magnetic block 15 are opposite to each other and magnetically attracted, so that the wireless switch 2 can be firmly installed into the mounting slot 11. Conversely, when the wireless switch 2 is inserted into the mounting slot 11 in the reverse direction (i.e., upside down), the third magnetic block 23 and the second magnetic block 15 are opposite to each other and magnetically repelled, while the fourth magnetic block 24 and the first magnetic block 14 are opposite to each other and magnetically repelled, so that the wireless switch 2 cannot be firmly installed into the mounting slot 11, thereby avoiding user assembly errors.

[0053] See also Figure 2-3 The wireless switch 2 also includes a mechanism disposed within a receiving slot 211. This mechanism includes a self-generating module 25 and a circuit board 26 electrically connected to the self-generating module 25. The self-generating module 25 has a spring contact 251, and the rocker arm 22 has a first trigger 221 corresponding to the spring contact 251. When the rocker arm 22 is pressed downwards, the first trigger 221 presses the spring contact 251 to generate electrical energy, thereby supplying power to the circuit board 26. Preferably, the first trigger 221 is a protrusion integrally formed in the middle of the bottom of the rocker arm 22.

[0054] In this embodiment, the wireless switch 2 is a one-sided push-button switch, that is, the push-button 22 can only be pressed to one side.

[0055] Additionally, it includes an elastic reset member 252 disposed within the receiving groove 211. This elastic reset member 252 stores potential energy when the spring piece 251 is pressed downwards and releases the potential energy when the spring piece 251 is released, causing the spring piece 251 to reset and move upwards. Preferably, the elastic reset member 252 is a reset torsion spring and abuts against the bottom of the spring piece 251.

[0056] It should be noted that the structure and power generation principle of the self-generating module 25 in this embodiment can be obtained from the applicant's previous patent applications, and it is not the focus of protection in this application, so it will not be described in detail here.

[0057] See Figure 4-5 The wireless switch structure also includes a base box 3 for wall mounting. The mounting base 1 is mounted on the front end of the base box 3 via a first fixing part. Specifically, the first fixing part consists of two first mounting holes 12 on the upper and lower sides of the mounting base 1, two second mounting holes 31 on the upper and lower sides of the front end of the base box 3, and two first bolts 5. The first bolts 5 pass through the first mounting holes 12 and are fixed in the second mounting holes 31 to achieve assembly and fixation between the two. Preferably, the first mounting holes 12 are through holes, and the second mounting holes 31 are screw holes that match the first bolts 5.

[0058] Of course, in other embodiments, the first fixing part can also be a snap-fit ​​structure or an adhesive structure, and there is no limitation here.

[0059] Furthermore, it also includes a faceplate 4 with an opening 41. The faceplate 4 is fitted onto the outer periphery of the base 21 of the wireless switch 2 through the opening 41 and is mounted on the mounting base 1. The faceplate 4 completely covers the front end of the base box 3, thereby improving the overall aesthetics of the wireless switch structure. In addition, because the faceplate 4 has a certain thickness, when fitted onto the outer periphery of the base 21, it can limit and fix the base 21 around its perimeter, thereby further preventing the wireless switch 2 from shifting or falling off.

[0060] Specifically, the cover 4 is fixed to the mounting base 1 by a second fixing part, which consists of two third mounting holes 42 on the upper and lower sides of the cover 4, two fourth mounting holes 13 on the upper and lower sides of the mounting base 1, and two second bolts 6. The second bolts 6 pass through the third mounting holes 42 and are fixed in the fourth mounting holes 13 to achieve assembly and fixation between the two. Preferably, the third mounting holes 42 are through holes, and the fourth mounting holes 13 are threaded holes that match the second bolts.

[0061] Of course, in other embodiments, the second fixing part can also be a snap-fit ​​structure or an adhesive structure, and there are no limitations here.

[0062] Example 2

[0063] See Figure 6-9The difference between the wireless switch structure in this embodiment and that in Embodiment 1 is that the structure of the wireless switch 2 is different. In this embodiment, the wireless switch 2 is a double-sided push-button switch, meaning that either the upper or lower part of the push-button rocker 22 can be pressed. When the user presses either the upper or lower part of the push-button rocker 22, the push-button rocker 22 can swing, and the first trigger element 221 on the push-button rocker 22 can press down the spring 251 to generate electrical energy, thereby supplying power to the circuit board 26.

[0064] The circuit board 26 is also equipped with a touch switch 261, and a second trigger 222 is provided at the bottom edge of the rocker arm 22 corresponding to the touch switch 261. When the lower part of the rocker arm 22 is pressed, the second trigger 222 can press down on the contact of the touch switch 261 to trigger it. When the upper part of the rocker arm 22 is pressed, the second trigger 222 is raised and the contact of the touch switch 261 is not pressed and triggered, thereby enabling the transmission of different codes to achieve different functions (such as turning the light on or off). Preferably, the second trigger 222 is a protrusion integrally formed on the bottom edge of the rocker arm 22.

[0065] Furthermore, since the self-generating module 25 in this embodiment is close to the upper end of the receiving groove 211 of the base 21, the third magnet 23 and the fourth magnet 24 in the base 21 are positioned between the self-generating module 25 and the circuit board 26 (i.e., in the middle of the receiving groove 211). Similarly, the first magnet 14 and the second magnet 15 on the mounting base 1 are also positioned in the middle. When the wireless switch 2 is inserted into the mounting groove 11 in the forward direction, the third magnet 23 and the first magnet 14 are opposite each other and magnetically attracted, while the fourth magnet 24 and the second magnet 15 are opposite each other and magnetically attracted, so that the wireless switch 2 can be firmly assembled into the mounting groove 11. Conversely, when the wireless switch 2 is inserted into the mounting groove 11 in the reverse direction, the third magnet 23 and the second magnet 15 are opposite each other and magnetically repel, while the fourth magnet 24 and the first magnet 14 are opposite each other and magnetically repel, so that the wireless switch 2 cannot be firmly installed into the mounting groove 11, thereby avoiding user assembly errors. It can achieve the same technical effect, and there are no limitations in this regard.

[0066] In summary, the robustly assembled wireless switch structure provided by this utility model has the following beneficial effects:

[0067] (I) The wireless switch structure of this utility model has a mounting groove 11 on the mounting base 1. The wireless switch 2 is at least partially embedded in the mounting groove 11 and magnetically attracted to the mounting base 1 to achieve fixation. With this setting, when the wireless switch 2 is subjected to a large external force, the wireless switch 2 can be limited and fixed by the mounting groove 11 to prevent it from shifting or falling off, thereby ensuring the assembly firmness of the wireless switch 2 and greatly improving the user experience.

[0068] (II) The wireless switch structure of this utility model has a rectangular base 21 and a rectangular groove 11 that is adapted to it. With this arrangement, the rectangular groove can limit and fix the base 21 around its perimeter, thereby preventing the base 21 from shifting. In addition, the depth of the rectangular groove is greater than one-third of the height of the base 21, thereby preventing the base 21 from being subjected to a large external force and causing one side to lift up and cross the mounting groove 11, further improving the assembly firmness of the wireless switch 2.

[0069] (III) The wireless switch structure of this utility model is configured by setting a first magnetic block 14 and a second magnetic block 15 with opposite magnetic poles on the mounting base 1, and a third magnetic block 23 and a fourth magnetic block 24 with opposite magnetic poles inside the wireless switch 2. The first magnetic block 14 and the fourth magnetic block 24 have the same magnetic poles, and the second magnetic block 15 and the third magnetic block 23 have the same magnetic poles. With this configuration, when the wireless switch 2 is inserted into the mounting groove 11 in the forward direction, the third magnetic block 23 and the first magnetic block 14 are opposite to each other and magnetically attracted, while the fourth magnetic block 24 and the second magnetic block 15 are opposite to each other and magnetically attracted, so that the wireless switch 2 can be firmly assembled into the mounting groove 11. Conversely, when the wireless switch 2 is inserted into the mounting groove 11 in the reverse direction (i.e., upside down), the third magnetic block 23 and the second magnetic block 15 are opposite to each other and magnetically repel, while the fourth magnetic block 24 and the first magnetic block 14 are opposite to each other and magnetically repel, so that the wireless switch 2 cannot be firmly installed into the mounting groove 11, thereby avoiding user assembly errors.

[0070] The technical means disclosed in this utility model are not limited to those disclosed in the above embodiments, but also include technical solutions composed of any combination of the above technical features. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications are also considered within the scope of protection of this utility model.

Claims

1. A robust wireless switch structure, characterized by, include: The mounting base has a mounting slot. A wireless switch, at least partially embedded in the mounting slot; The mounting base is provided with a first magnetic attraction part, and the wireless switch is provided with a second magnetic attraction part; when the wireless switch is embedded in the mounting groove, it can be fixed by the magnetic attraction between the first magnetic attraction part and the second magnetic attraction part.

2. The wireless switch fabric of claim 1, wherein: The wireless switch includes a base with an internal receiving slot and a rocker arm rotatably mounted on the receiving slot, wherein: The base is at least partially embedded in the mounting groove; The base is adapted to the shape of the mounting groove.

3. The wireless switch fabric of claim 2, wherein: The base has a rectangular structure, and the mounting groove is a rectangular recess that fits it.

4. The wireless switch structure according to claim 3, characterized in that: The installation slot has a slot depth H1, the base has a height H2, and satisfy:

5. The wireless switch fabric of any of claims 2-4, wherein: The first magnetic attraction part consists of a first magnetic block and a second magnetic block arranged at intervals on the mounting base, and the second magnetic attraction part consists of a third magnetic block and a fourth magnetic block arranged at intervals within the receiving groove, wherein: The first magnetic block has opposite magnetic poles to the second magnetic block, and the third magnetic block has opposite magnetic poles to the fourth magnetic block; the first magnetic block has the same magnetic poles as the fourth magnetic block, and the second magnetic block has the same magnetic poles as the third magnetic block.

6. The wireless switch fabric of any of claims 2-4, wherein: It also includes a base box for mounting on a wall, the mounting base being mounted on the front end of the base box.

7. The wireless switch fabric of claim 6, wherein: It also includes a cover that is fitted around the outer periphery of the base and mounted on the mounting seat, the cover completely covering the front end of the base box.

8. The wireless switch fabric of claim 7, wherein: The mounting base is fixed to the base box by a first fixing part, which is a snap-fit ​​structure, an adhesive structure, or a screw-fit structure; the cover is fixed to the mounting base by a second fixing part, which is a snap-fit ​​structure, an adhesive structure, or a screw-fit structure.

9. The wireless switch fabric of any of claims 2-4, wherein: It also includes a movement disposed within the receiving slot, the movement comprising a self-generating module and a circuit board electrically connected to the self-generating module, wherein: The self-generating module is equipped with a spring clip; The rocker arm is provided with a first trigger element corresponding to the spring piece; when the rocker arm is pressed, the first trigger element can press down the spring piece to generate electrical energy and supply power to the circuit board.

10. The wireless switch fabric of claim 9, wherein: The rocker arm can be pressed on one side or both sides, wherein: When the rocker arm can be pressed on both sides, a touch switch is also provided on the circuit board; The rocker arm is also provided with a second trigger element corresponding to the touch switch; when one side of the rocker arm is pressed, the second trigger element can press down the touch switch to trigger it; when the other side of the rocker arm is pressed, the second trigger element is raised and the touch switch is not triggered.

Citation Information

Patent Citations

  • Wireless switch that magnetism is inhaled

    CN205542472U