Slide switch
By using a sliding switch design, the circuit is switched on and off by sliding the panel and moving parts on the frame, which solves the problems of conventional switches being thick and unsightly, and improves the user experience and aesthetics.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SCHNEIDER ELECTRIC IND SAS
- Filing Date
- 2024-05-31
- Publication Date
- 2026-04-17
AI Technical Summary
Conventional switches, which rotate or flip, are thicker, increasing the risk of collisions, taking up wall space, and reducing the aesthetics and user experience of the interior.
The design employs a sliding switch, which enables circuit switching by sliding the panel and moving parts on the frame, reducing the switch thickness and improving aesthetics and ease of operation.
It enables convenient circuit control, reduces switch thickness, and improves indoor aesthetics and user experience.
Smart Images

Figure CN224138066U_ABST
Abstract
Description
Technical Field
[0001] The embodiments disclosed herein relate generally to the field of electrical equipment, and more particularly to a slide switch. Background Technology
[0002] Switches are common in indoor and office building environments, controlling the on / off state of electrical circuits to ensure electrical safety and convenience. In conventional switches, the switch panel typically uses rotation or flipping to actuate internal contact components, thus opening and closing the circuit. These switches have a relatively simple structure and are intuitive to operate, but they are quite thick. In practical use, this can cause inconvenience, such as increasing the risk of collisions or occupying more limited wall space, thus reducing the overall aesthetics of the room and the user experience to some extent. Utility Model Content
[0003] The purpose of embodiments of this disclosure is to provide a slide switch that at least partially solves the above-mentioned problems and other potential problems.
[0004] This disclosure provides a slide switch. The slide switch includes: a body having a groove; a contact assembly disposed within the groove and switchable between an open state and a closed state; a slider disposed within the groove and slidably connected to the body, the slider being capable of driving the contact assembly to switch between the open state and the closed state during sliding; a frame disposed at the opening of the groove and coupled to the body, the frame including a first groove; a panel disposed on the side of the frame away from the body and coupled to the slider, the panel being capable of driving the slider to move; and a moving member fixed to the side of the panel facing the frame and slidably connected to the first groove.
[0005] In some embodiments, the frame further includes a second slide groove, the second slide groove extending in the same direction as the first slide groove, and the slide switch further includes a connecting portion disposed within the second slide groove and coupled to the panel and the slider, the connecting portion being capable of moving the slider under the drive of the panel.
[0006] In some embodiments, the slider includes a connecting groove disposed on the side of the slider facing the panel and coupled to the connecting portion.
[0007] In some embodiments, the connecting portion is integrally formed with the panel.
[0008] In some embodiments, the frame includes an operating side and a mounting side, the operating side being adjacent to the panel and the mounting side being adjacent to the body; the two opposite sidewalls of the first slide are inclined, and the size of the opening of the first slide on the operating side is smaller than the size of the opening of the first slide on the mounting side; the shape of the moving member is adapted to the shape of the first slide to restrict the movement of the moving member toward the operating side.
[0009] In some embodiments, the panel is riveted to the moving member.
[0010] In some embodiments, the frame includes two first slides arranged side by side, and the frame further includes: a positioning step disposed on the side of the frame facing the body and disposed corresponding to the edge of the first slide; and the moving member includes: a base plate disposed on the side of the frame facing the panel; and at least one pair of claws coupled to opposite sides of the base plate and respectively inserted into the two first slides, and the at least one pair of claws being slidably connected to the corresponding positioning step to restrict the movement of the base plate toward the panel.
[0011] In some embodiments, the connecting portion and the at least one pair of claws are integrally formed with the substrate.
[0012] In some embodiments, the frame further includes at least one pair of notches disposed on the edge of the frame corresponding to the first groove, adapted for the at least one pair of claws to connect to the corresponding positioning step.
[0013] In some embodiments, the frame further includes: an elastic arm disposed at one end within the second groove, the elastic arm including a fixed end and a cantilever end, the fixed end being connected to the frame, and the cantilever end at least partially obscuring one of the at least one pair of notches.
[0014] In some embodiments, the resilient arm further includes a limiting step disposed on the side of the resilient arm facing the panel and coupled to the cantilever end, the limiting step being adapted to restrict the movement of the substrate.
[0015] In some embodiments, the substrate is bonded or riveted to the panel.
[0016] In embodiments of this disclosure, the slide switch includes a body, a contact assembly, a slider, a frame, a panel, and a moving member. The body has a groove, the contact assembly is disposed within the groove, and the contact assembly can switch between an open state and a closed state. The slider is disposed within the groove and slidably connected to the body. During sliding, the slider can drive the contact assembly to switch between an open state and a closed state. The frame is disposed at the opening of the groove and coupled to the body, and the frame includes a first groove. The panel is disposed on the side of the frame away from the body and coupled to the slider, and the panel can drive the slider to move. The moving member is fixed to the side of the panel facing the frame and slidably connected to the first groove. In this way, the panel can slide along the first groove on the frame with the moving member, and during sliding, the panel can drive the contact assembly to switch between an open state and a closed state. The switch panel uses a sliding method to achieve circuit switching, which can reduce the thickness of the switch, thereby improving the overall aesthetics of the room and the user experience.
[0017] It should be understood that the content described in this section is not intended to limit the key or essential features of the embodiments of this disclosure, nor is it intended to restrict the scope of this disclosure. Other features of this disclosure will become readily apparent from the following description. Attached Figure Description
[0018] The above and other features, advantages, and aspects of the embodiments of this disclosure will become more apparent from the accompanying drawings and the following detailed description. In the drawings, the same or similar reference numerals denote the same or similar elements, wherein:
[0019] Figure 1 A disassembled diagram of a slide switch according to the first embodiment of this disclosure is shown;
[0020] Figure 2 An anatomical diagram of the panel, frame, and moving parts of a slide switch according to the first embodiment of this disclosure is shown.
[0021] Figure 3 A top view of a slide switch according to a first embodiment of this disclosure is shown;
[0022] Figure 4 It shows Figure 3 A cross-sectional view taken along line AA;
[0023] Figure 5 A disassembled diagram of a slide switch according to a second embodiment of this disclosure is shown;
[0024] Figure 6 A perspective view of the moving parts and frame of the slide switch according to a second embodiment of this disclosure is shown; and
[0025] Figure 7A bottom view of the moving part and frame of the slide switch according to a second embodiment of the present disclosure is shown.
[0026] Explanation of reference numerals in the attached figures:
[0027] 100. Slide switch;
[0028] 10. Body; 11. Groove;
[0029] 20. Sliding component; 21. Connecting groove;
[0030] 30. Frame; 301. Operating side; 302. Mounting side; 31. First slide rail; 310. Positioning step; 311. Notch; 32. Second slide rail; 33. Flexible arm; 34. Limiting step;
[0031] 40. Moving parts; 41. Base plate; 42. Clamping claws;
[0032] 50. Panel;
[0033] 60. Connecting parts. Detailed Implementation
[0034] Preferred embodiments of the present disclosure will now be described in more detail with reference to the accompanying drawings. While preferred embodiments of the present disclosure are shown in the drawings, it should be understood that the present disclosure may be implemented in various forms and should not be limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure will be thorough and complete, and will fully convey the scope of the present disclosure to those skilled in the art.
[0035] The term "comprising" and its variations as used herein signify open inclusion, i.e., "including but not limited to". Unless otherwise stated, the term "or" means "and / or". The term "based on" means "at least partially based on". The terms "one example embodiment" and "one embodiment" mean "at least one example embodiment". The term "another embodiment" means "at least one additional embodiment". The terms "first", "second", etc., may refer to different or the same objects.
[0036] As mentioned above, in conventional switches, the switch panel typically uses rotation or flipping to drive the internal contact components, thereby opening and closing the circuit. These switches have a relatively simple structure and are intuitive to operate, but they are quite thick. In practical use, this can cause inconvenience, such as increasing the risk of collisions or occupying more limited wall space, thus reducing the overall aesthetics of the room and the user experience to some extent.
[0037] This disclosure provides a slide switch 100. The slide switch 100 has a frame 30 with a first groove 31, and a moving component 40 on a panel 50 is slidably connected to the first groove 31. In this way, the panel 50 can slide along the first groove 31 on the frame 30 with the moving component 40, and the panel 50 can drive the contact assembly to switch between an open and closed state during sliding. The switch panel 50 uses a sliding method to achieve circuit switching, which can reduce the thickness of the switch, thereby improving the overall aesthetics of the room and the user experience.
[0038] The following will combine Figures 1 to 7 To describe in detail the principles of this disclosure, wherein Figures 1 to 4 The structure of the slide switch 100 according to the first embodiment of this disclosure is shown. Figures 5 to 6 The structure of a slide switch 100 according to a second embodiment of this disclosure is shown. Firstly, in conjunction with... Figures 1 to 4 The principle of the switch in the first embodiment of this disclosure will be described in detail below.
[0039] like Figures 1 to 4 As shown, the slide switch 100 can switch the circuit on and off through a simple manual sliding operation, providing users with a convenient control experience. In the embodiments of this disclosure, the slide switch 100 includes a body 10, a contact assembly, a slider 20, a frame 30, and a panel 50, with each component working together to complete the switching of the circuit state.
[0040] like Figures 1 to 4 As shown, the body 10 serves as the support for the slide switch 100, typically made of plastic or metal, providing structural support for the entire switch. A recess 11 is provided inside the body 10. This recess 11 not only provides space for the installation and movement of the contact assembly and the slider 20, but also ensures that the contact assembly remains stable during state switching through an internal positioning structure.
[0041] The contact assembly, located within the recess 11, enables the circuit to be switched on and off. When the contacts of the contact assembly are closed, the circuit is connected, and current can flow. When the contacts are open, the current is cut off, thus breaking the circuit.
[0042] The slider 20 is installed within the groove 11 and is slidably connected to the body 10, allowing the slider 20 to slide freely within a certain range. The slider 20 is directly or indirectly connected to the contact assembly, and its movement drives the contact assembly from an open state to a closed state, or from a closed state to an open state. The slider 20 needs to ensure smooth operation and sensitive response to improve the user's operating experience.
[0043] The frame 30 is located at the opening of the groove 11 and is tightly coupled to the body 10, serving a supporting and positioning function. A first slide groove 31 is provided on the frame 30, designed to guide and support the sliding movement of the panel 50, ensuring that the panel 50 can slide smoothly without deviating from its track or generating unnecessary friction. The presence of the frame 30 enhances the stability of the overall switch structure while providing necessary boundary constraints for the sliding movement of the panel 50.
[0044] Panel 50 serves as the interface for user interaction with the slide switch 100. Its shape and specifications can be designed to maintain aesthetics and ease of operation. Panel 50 is located on the side of frame 30 furthest from body 10 and can be connected to slider 20 via mechanical means (such as clips, screws, riveting, etc.). The connection between panel 50 and slider 20 can be direct, for example, by providing a fixed connecting part 60 between them, allowing simultaneous movement of both. Alternatively, the connection can be indirect, for example, by providing a transmission component between them. When the user slides panel 50, it drives slider 20 to move, thereby causing a state change in the contact assembly to control the on / off state of the circuit.
[0045] A moving member 40 is provided on the side of the panel 50 facing the frame 30. The moving member 40 is fixed to the panel 50 and slidably connected to the first slide groove 31. The structure of the first slide groove 31 is adapted to the structure of the moving member 40, which not only allows the moving member 40 to slide inside it, but also prevents the moving member 40 from disengaging from the first slide groove 31.
[0046] In this way, the panel 50 can slide along the first groove 31 on the frame 30 with the moving part 40, and the panel 50 can drive the contact assembly to switch between an open and closed state during the sliding process. The switch panel 50 uses a sliding method to realize the opening and closing of the circuit, which can reduce the thickness of the switch, thereby improving the overall aesthetics of the room and the user experience.
[0047] In some embodiments, such as Figures 1 to 4 As shown, the frame 30 also includes a second slide groove 32, the extension direction of which is the same as that of the first slide groove 31. The slide switch 100 also includes a connecting portion 60. The connecting portion 60 is disposed in the second slide groove 32 and coupled to the panel 50 and the slider 20. The connecting portion 60 can cause the slider 20 to move under the drive of the panel 50.
[0048] like Figures 1 to 4As shown, four connecting portions 60 are provided on the side of the panel 50 facing the frame 30, and four second sliding grooves 32 are provided on the frame 30. The four connecting portions 60 are inserted into the four second sliding grooves 32 one by one. When the moving member 40 slides along the first sliding groove 31, the four connecting portions 60 can slide in the corresponding second sliding grooves 32. One end of the connecting portion 60 is fixed to the panel 50, and the other end of the connecting portion 60 is connected to the slider 20. In this way, when the panel 50 slides on the frame 30 with the moving member 40, the movement of the panel 50 is transmitted to the slider 20 in the body 10, thereby switching the contact assembly between an open state and a closed state.
[0049] In some embodiments, such as Figure 1 As shown, the slider 20 is provided with a connecting groove 21. The connecting groove 21 is provided on the side of the slider 20 facing the panel 50 and is coupled to the connecting part 60.
[0050] like Figure 1 As shown, four connecting slots 21 are provided on the slider 20, and the four connecting slots 21 are connected one-to-one to the four connecting parts 60 on the panel 50. The size of the connecting slot 21 is the same as the size of the end of the connecting part 60 away from the panel 50. When the end of the connecting part 60 is inserted into the connecting slot 21, the connecting part 60 can abut against the connecting slot 21. In this way, loosening between the connecting part 60 and the slider 20 can be avoided, so that the sliding of the panel 50 can be stably transmitted to the slider 20, avoiding the phenomenon of untimely or insensitive circuit switching.
[0051] In some embodiments, such as Figure 1 As shown, a limiting structure can be provided at the edge of the connecting groove 21 to fix the connecting part 60. In this way, the stability between the connecting part 60 and the sliding member 20 can be further increased.
[0052] In some embodiments, such as Figure 1 As shown, the connecting part 60 is integrally formed with the panel 50. In this way, the integrally formed structure eliminates seams or welding points between the panel 50 and the connecting part 60, making the entire panel 50 more robust and durable, able to withstand greater mechanical stress and external impacts, and reducing malfunctions caused by loosening of the connecting part 60. Secondly, the integral forming of the connecting part 60 and the panel 50 reduces assembly steps, lowers labor costs and the risk of assembly errors, and improves production efficiency and consistency.
[0053] In some embodiments, such as Figures 1 to 4As shown, the frame 30 includes an operating side 301 and a mounting side 302. The operating side 301 of the frame 30 is adjacent to the panel 50 and provides necessary boundary constraints for the sliding movement of the panel 50. The mounting side 302 of the frame 30 is adjacent to the body 10 and can be connected to the body 10. The first slide groove 31 extends in the same direction as the sliding direction of the panel 50, and the first slide groove 31 has two opposing sidewalls, which are inclined.
[0054] like Figure 4 As shown, the first slide groove 31 extends through the operating side 301 and the mounting side 302 of the frame 30, and has openings on both the operating side 301 and the mounting side 302. The size of the opening of the first slide groove 31 on the operating side 301 is smaller than the size of the opening of the first slide groove 31 on the mounting side 302. In this way, along the extension direction perpendicular to the first slide groove 31, the cross-section of the first slide groove 31 is trapezoidal, with the top edge of the trapezoid located on the operating side 301 of the frame 30 and the bottom edge of the trapezoid located on the mounting side 302 of the frame 30.
[0055] like Figure 1 , Figure 2 and Figure 4 As shown, the shape of the moving part 40 is adapted to the shape of the first slide groove 31, that is, the moving part 40 is also a trapezoidal slider. When the moving part 40 slides along the first slide groove 31, it can slide freely along the extension direction of the first slide groove 31, but due to the trapezoidal structure of the first slide groove 31, the moving part 40 will not move towards the operating side 301. In this way, the first slide groove 31 not only allows the moving part 40 to slide inside it, but also prevents the moving part 40 from disengaging from the first slide groove 31, thereby making the panel 50 slide stably relative to the frame 30.
[0056] In some embodiments, such as Figure 1 As shown, panel 50 is riveted to moving part 40. Rivet posts are provided on panel 50, and riveting holes are provided on moving part 40. During assembly, moving part 40 is first placed in the first slide groove 31 along its mounting side. Then, panel 50 is aligned with frame 30, and panel 50 and moving part 40 are pressed down. This allows multiple rivet posts to be inserted one-to-one into multiple riveting holes, thus achieving the riveting between panel 50 and moving part 40.
[0057] In some alternative embodiments, the moving member 40 and the panel 50 can be connected by a snap-fit structure. For example, a mounting groove is provided on the side of the panel 50 facing the frame 30, and the moving member 40 includes a mounting protrusion. When the moving member 40 is placed in the first slide groove 31, the mounting protrusion extends from the opening of the frame 30 on the operating side 301, and the mounting protrusion can connect to the mounting groove on the panel 50. In this way, a snap-fit connection can be achieved between the panel 50 and the moving member 40.
[0058] The following will combine Figures 5 to 7 The principle of the slide switch 100 according to the second embodiment of this disclosure will be described in detail below. The structure and connection of the slide switch 100 according to the second embodiment are also described. Figures 1 to 4 The structure of the first embodiment described is similar. The differences between them will be described primarily below, while identical parts will not be repeated.
[0059] like Figures 5 to 7 As shown, the frame 30 has two parallel first slide grooves 31. A positioning step 310 is also provided on the frame 30. The positioning step 310 is located on the side of the frame 30 facing the body 10 and is provided corresponding to the edge of the first slide groove 31.
[0060] The moving component 40 includes a base plate 41 and at least one pair of claws 42. The base plate 41 is arranged on the side of the frame 30 facing the panel 50, and the at least one pair of claws 42 is coupled to opposite sides of the base plate 41. The at least one pair of claws 42 is respectively inserted into two first sliding grooves 31, and the at least one pair of claws 42 is slidably connected to corresponding positioning steps 310. In this way, based on the cooperation between the claws 42 and the first sliding grooves 31, the moving component 40 can slide along the first sliding grooves 31, but will not move in the direction of the panel 50, thereby preventing the moving component 40 from detaching from the frame 30.
[0061] like Figures 5 to 7 As shown, two pairs of claws 42 are provided on the substrate 41, with two claws 42 on each side of the substrate 41. The claws 42 on both sides are respectively inserted into the first sliding groove 31 on the corresponding side, and the claws 42 are slidably connected to the positioning step 310 on the other side of the frame 30. Under the action of the claws 42 and the positioning step 310, the moving part 40 can slide relative to the first sliding groove 31, but will not separate from the frame 30, thereby improving the stability of the panel 50 when sliding.
[0062] In some embodiments, such as Figures 5 to 7 As shown, the connecting part 60, the substrate 41 and at least one pair of claws 42 are integrally formed.
[0063] like Figures 5 to 7 As shown, the moving component 40 can be a metal slider. Four claws 42 can be stamped out on the edge of the substrate 41 to achieve a sliding connection between the moving component 40 and the frame 30. Two connecting parts 60 are stamped out on the other two edges of the substrate 41. The connecting parts 60 are inserted into the second sliding groove 32, thereby driving the movement of the slider 20. In this way, the panel 50 can drive the moving component 40 to move, and then the connecting parts 60 on the moving component 40 indirectly drive the slider 20 to move, thereby switching the contact assembly between an open state and a closed state.
[0064] In some embodiments, the substrate 41 is bonded to the panel 50. In this way, when assembling the switch, adhesive is first applied to the panel 50 or the substrate 41, and then the panel 50 and the substrate 41 are joined together. After the adhesive solidifies, the panel 50 and the substrate 41 can be fixed together.
[0065] In some embodiments, the substrate 41 is connected to the panel 50 by riveting. In this manner, rivet posts are provided on the panel 50, and rivet holes are provided on the substrate 41. During assembly, the panel 50 and the substrate 41 are first aligned, and then the panel 50 and the substrate 41 are pressed, so that multiple rivet posts are inserted one-to-one into multiple rivet holes, thereby realizing the riveting between the panel 50 and the substrate 41.
[0066] In some embodiments, such as Figures 5 to 7 As shown, the frame 30 also includes at least one pair of notches 311. At least one pair of notches 311 are provided on the edge of the frame 30 corresponding to the first slide groove 31, so that at least one pair of claws 42 can be connected to the corresponding positioning step 310.
[0067] like Figures 5 to 7 As shown, two notches 311 are provided at the first slide groove 31 on each side, and the distance between the two notches 311 is consistent with the distance between the two claws 42 on the corresponding side of the base plate 41. When the claws 42 are aligned with the notches 311, the claws 42 can be inserted into the first slide groove 31. Pushing the base plate 41 can cause the claws 42 to engage with the positioning step 310 of the frame 30. In this way, the moving part 40 can be mounted on the frame 30, and the moving part 40 will not separate from the frame 30 during sliding.
[0068] In some embodiments, such as Figure 6 As shown, the frame 30 also includes an elastic arm 33, and the elastic arm 33 is disposed at one end within the second slide groove 32. The elastic arm 33 includes a fixed end and a cantilever end, the fixed end of the elastic arm 33 is connected to the frame 30, and the cantilever end of the elastic arm 33 at least partially covers one of at least a pair of notches 311.
[0069] like Figure 6As shown, an elastic arm 33 is provided on the right side within the second groove 32. When assembling the moving part 40 and the frame 30, the claw 42 is first aligned with the notch 311, and then a force is applied to the moving part 40. At this time, the elastic arm 33 deforms, allowing the claw 42 to engage with the positioning step 310 on the other side of the frame 30. Then, the moving part 40 is slid, and the positions of the base plate 41 and the elastic arm 33 are misaligned. The force applied to the elastic arm 33 is then removed, and the elastic arm 33 returns to its original position under elastic action. In this way, when the base plate 41 moves towards the position of the elastic arm 33, it is blocked by the elastic arm 33, preventing the position of the claw 42 from coinciding with the position of the notch 311, thus preventing the claw 42 from sliding out of the notch 311.
[0070] In some embodiments, such as Figure 6 As shown, the elastic arm 33 also includes a limiting step 34. The limiting step 34 is disposed on the side of the elastic arm 33 facing the panel 50 and coupled to the cantilever end. The limiting step 34 can restrict the movement of the substrate 41.
[0071] like Figure 6 As shown, after the moving part 40 is installed onto the frame 30, the elastic arm 33 returns to its initial position, at which point the limiting step 34 is located on the side of the elastic arm 33 facing the panel 50. When the moving part 40 moves toward the position of the elastic arm 33, the limiting step 34 can restrict the movement of the base plate 41, thereby preventing the claw 42 on the base plate 41 from aligning with the notch 311, and thus preventing the claw 42 from sliding out of the notch 311.
[0072] The various embodiments of this disclosure have been described above. These descriptions are exemplary and not exhaustive, and are not limited to the disclosed embodiments. Many modifications and variations will be apparent to those skilled in the art without departing from the scope and spirit of the described embodiments. The terminology used herein is chosen to best explain the principles, practical application, or technical improvements to the embodiments in the market, or to enable others skilled in the art to understand the embodiments disclosed herein.
Claims
1. A slide switch (100), characterized in that, include: Body (10) having a groove (11); The contact assembly is arranged in the groove (11) and is switchable between an open state and a closed state; A slider (20) is arranged in the groove (11) and slidably connected to the body (10). The slider (20) can drive the contact assembly to switch between the open state and the closed state during sliding. A frame (30) is arranged at the opening of the groove (11) and coupled to the body (10), and the frame (30) includes a first groove (31); A panel (50) is disposed on the side of the frame (30) away from the body (10) and coupled to the slider (20), the panel (50) being capable of driving the slider (20) to move; and The moving part (40) is fixed to the side of the panel (50) facing the frame (30) and is slidably connected to the first groove (31).
2. The slide switch (100) according to claim 1, characterized in that The frame (30) further includes a second slide (32), and the extension direction of the second slide (32) is the same as the extension direction of the first slide (31), and the slide switch (100) further includes: A connecting part (60) is arranged in the second slide groove (32) and coupled to the panel (50) and the slider (20). The connecting part (60) can move the slider (20) under the drive of the panel (50).
3. The slide switch (100) according to claim 2, characterized in that The slider (20) includes: A connecting groove (21) is arranged on the side of the slider (20) facing the panel (50) and coupled to the connecting part (60).
4. The slide switch (100) according to claim 2, characterized in that The connecting part (60) is integrally formed with the panel (50).
5. The slide switch (100) according to claim 4, characterized in that The frame (30) includes an operating side (301) and a mounting side (302), the operating side (301) being adjacent to the panel (50) and the mounting side (302) being adjacent to the body (10); The two opposite sidewalls of the first slide (31) are inclined, and the size of the opening of the first slide (31) on the operating side (301) is smaller than the size of the opening of the first slide (31) on the mounting side (302). The shape of the moving part (40) is adapted to the shape of the first slide (31) to restrict the movement of the moving part (40) toward the operating side (301).
6. The slide switch (100) according to claim 5, characterized in that The panel (50) is riveted to the moving part (40).
7. The slide switch (100) according to claim 2 or 3, characterized in that The frame (30) includes two first grooves (31) arranged side by side, and the frame (30) further includes: A positioning step (310) is arranged on the side of the frame (30) facing the body (10) and corresponding to the edge of the first groove (31), and the moving member (40) includes: A substrate (41) is arranged on the side of the frame (30) facing the panel (50); and At least one pair of claws (42) are coupled to opposite sides of the substrate (41) and inserted into two first grooves (31) respectively, and the at least one pair of claws (42) are slidably connected to the corresponding positioning steps (310) to restrict the movement of the substrate (41) toward the panel (50).
8. The slide switch (100) according to claim 7, characterized in that The connecting part (60), the at least one pair of claws (42), and the substrate (41) are integrally formed.
9. The slide switch (100) according to claim 7, characterized in that The framework (30) also includes: At least one pair of notches (311) are arranged on the edge of the frame (30) corresponding to the first groove (31), adapted for the at least one pair of claws (42) to connect to the corresponding positioning step (310).
10. The slide switch (100) according to claim 9, characterized in that, The framework (30) also includes: An elastic arm (33) is disposed at one end within the second groove (32), the elastic arm (33) including a fixed end and a cantilever end, the fixed end being connected to the frame (30), and the cantilever end at least partially obscuring one of the at least one pair of notches (311).
11. The slide switch (100) according to claim 10, characterized in that The elastic arm (33) also includes: A limiting step (34) is arranged on the side of the elastic arm (33) facing the panel (50) and coupled to the cantilever end, the limiting step (34) being adapted to restrict the movement of the substrate (41).
12. The slide switch (100) according to claim 7, characterized in that The substrate (41) is bonded or riveted to the panel (50).