Switch panel
By incorporating a combination design of mounting shell, button module, and balancing component into the button structure, the problems of button tilting and jamming are solved, achieving precise button positioning and stable movement, thereby improving the reliability of the device and the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TIANJIN JINGWEI HIRAIN TECH CO LTD
- Filing Date
- 2025-04-14
- Publication Date
- 2026-05-15
AI Technical Summary
The existing button structure is prone to tilting and jamming when pressed, leading to poor contact or malfunction.
The design employs a combination of mounting housing, button module, balancing component, and guide structure to ensure precise movement of the button module along the primary direction, avoiding tilting and jamming.
It achieves precise positioning and stable movement of the button module, avoiding tilting and jamming, thus improving the lifespan of the device and the user experience.
Smart Images

Figure CN224248507U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of button structure technology, specifically to a switch panel. Background Technology
[0002] In various industries, switch controllers are a crucial component. In related technologies, due to the single guide groove design of the buttons and the relatively long keycaps, when one side is manually pressed, the other side tends to tilt. Over time, this can lead to jamming, poor contact, and ultimately, button malfunction. During user operation, because the button presses are random and cannot be guaranteed to be centered, only one side may be pressed, while the other side tilts. This can cause minor issues like button jamming, resulting in a poor user experience, or even serious problems like button malfunction or damage. Utility Model Content
[0003] In view of this, the present invention provides a switch panel to solve the problem that the button may tilt or get stuck when it is not centered.
[0004] In a first aspect, this utility model provides a switch panel, comprising:
[0005] Mounting housing;
[0006] A button module is movably connected to a mounting housing and is adapted to move relative to the mounting housing along a first direction; the button module is provided with at least two mounting portions spaced apart along a third direction; the mounting portions include a first mounting portion and a second mounting portion; wherein the third direction is not parallel to the first direction.
[0007] The balancing component includes a housing pivot portion and at least two button pivot portions; the housing pivot portion is movably connected to a mounting housing, one button pivot portion is adapted to be movably connected to a first mounting portion, and the other button pivot portion is adapted to be movably connected to a second mounting portion; the rotation axis of the housing pivot portion and the rotation axis of the button pivot portion are both parallel to a third direction;
[0008] When the button module moves relative to the mounting housing along the first direction, the housing pivot is adapted to rotate relative to the mounting housing, and at least two button pivots are adapted to rotate synchronously relative to the button module.
[0009] Beneficial effects: The button module of this utility model is movably connected to the mounting shell and is suitable for moving relative to the mounting shell along the first direction, achieving precise connection, positioning or guidance. It can make the button module move synchronously relative to the mounting shell as a whole, avoiding tilting or jamming. At the same time, the balancing component plays a role in transmitting force, limiting, and maintaining the parallelism between the button module and the balancing component during the movement of the mounting shell and the button module. The connection relationship between the button shaft and the first mounting part and the second mounting part, and the cooperation structure between the mounting shell and the housing shaft, ensure that the button module will not jam or tilt during the movement.
[0010] In one alternative implementation, one of the button module and the mounting housing is provided with a first guide post, and the other is provided with a first guide groove. The first guide post and the first guide groove are adapted to slide relative to the first guide groove along a first direction.
[0011] Beneficial effects: The first guide post and the first guide groove can provide a high-precision positioning function through matching design. When the first guide post moves in the first guide groove, it can effectively restrict the degree of freedom of movement and ensure the precise positioning of the button module in the first direction. At the same time, the structure of the first guide post and the first guide groove is simple, and the assembly and disassembly process is convenient and efficient.
[0012] In one alternative embodiment, the first mounting portion is configured as a groove structure extending along the second direction, wherein a key pivot portion is slidably disposed within the first mounting portion, and the key pivot portion is adapted to rotate relative to the key module.
[0013] And / or, the second mounting part is constructed as a slide groove structure extending along the second direction, wherein another key pivot is slidably disposed in the second mounting part, and the key pivot is adapted to rotate relative to the key module;
[0014] The second direction is perpendicular to both the third direction and the first direction.
[0015] Beneficial effects: When the first mounting part and / or the second mounting part are constructed as a slide groove structure extending along the second direction, the key pivot part of the balancer can move along the second direction in the slide groove. The balancer is connected to the mounting shell. The structural design of the first mounting part and / or the second mounting part and the key pivot part can transmit the movement of the key module along the first direction as the key pivot part moves along the second direction in the slide groove. At the same time, the key pivot part is adapted to rotate relative to the key module.
[0016] In one alternative embodiment, the mounting housing is provided with at least one limiting part, and the housing pivot part is movably disposed within the limiting part.
[0017] Beneficial effects: The housing pivot and the limiting part are movably connected, which allows the key pivot to rotate relative to the key module about the axis of the housing pivot. At the same time, the movement of the key module along the first direction is transmitted as the key pivot rotates relative to the key module about the axis of the housing pivot. The housing is in a fixed position, so when the key module moves along the first direction, the key pivot can accurately position and guide the key module.
[0018] In one alternative embodiment, the limiting part is constructed as a groove structure extending in the fourth direction, the housing shaft is slidably disposed within the limiting part, and the housing shaft is adapted to rotate relative to the mounting shell.
[0019] The fourth direction is perpendicular to both the third and first directions.
[0020] Beneficial effects: The limiting part is rotatably connected to the housing shaft, providing structural support for the precise motion positioning and guidance of the button module. At the same time, the slide groove structure extending along the fourth direction facilitates the installation and removal of the balancing component.
[0021] In one optional implementation, there are multiple first guide posts, with at least two first guide posts spaced apart along a third direction;
[0022] There are multiple first guide grooves, each corresponding to a first guide post.
[0023] Beneficial effects: The structural design of multiple first guide posts and first guide grooves can make the button module more stable when moving in the first direction, and at the same time make the structure more robust.
[0024] In one optional implementation, the button module further includes:
[0025] The key body includes at least one third slot and a second protrusion, and the key body is connected to the mounting shell.
[0026] Beneficial effects: The third slot and the second protrusion of the key body provide structural support for the connection of the key body to the key module. At the same time, the cooperation between the slot and the protrusion is simple and efficient, and easy to disassemble and assemble.
[0027] In one optional implementation, the button module further includes:
[0028] Keycaps, which are connected to the key body, include at least a first protrusion and a second slot;
[0029] The first protrusion connects with the third slot, the second slot connects with the second protrusion, and the keycap connects with the key body.
[0030] Beneficial effects: The first protrusion and the third slot are connected together, and the second slot and the second protrusion are connected together, so that the keycap and the key body are fixedly connected. When an external force is applied to the keycap, the keycap can transmit the external force to the key body, which can cause the key body to move along the first direction, thereby further achieving the working goal.
[0031] In one alternative implementation, the mounting housing includes:
[0032] The third protrusion is located around the outer wall of the mounting housing and is connected to the button housing.
[0033] The button housing includes at least one first slot, and a third protrusion connected to the first slot.
[0034] The button housing covers the mounting shell of the connecting part.
[0035] Beneficial effects: The third protrusion connects the mounting shell to the button shell. The button shell protects the internal structure of the mounting shell, and the button shell covering the connecting part of the mounting shell also makes the structure more compact and stable.
[0036] In one alternative embodiment, the mounting housing further includes:
[0037] The fourth slot is located on the side of the outer wall of the mounting housing away from the button housing and is connected to the control housing;
[0038] The second guide groove is located on the same side as the fourth slot around the outer wall of the mounting housing and is connected to the control housing.
[0039] The control housing includes at least one fourth protrusion and a second guide post, the fourth protrusion being connected to a fourth slot, and the second guide post being connected to a second guide groove.
[0040] The mounting shell covers the connection and control housing.
[0041] Beneficial effects: The fourth protrusion and the fourth slot are connected together, and the second guide post and the second guide groove are connected together, so that the mounting shell and the control shell are fixedly connected. At the same time, the mounting shell covers and connects the control shell, which makes the overall structure more compact and more stable. Attached Figure Description
[0042] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0043] Figure 1This is an exploded view of the various components of the switch panel of this utility model;
[0044] Figure 2 This is a schematic diagram of the switch panel of this utility model;
[0045] Figure 3 This is a schematic diagram of the button casing;
[0046] Figure 4 This is a schematic diagram of the mounting shell;
[0047] Figure 5 A schematic diagram for controlling the outer casing;
[0048] Figure 6 This is a diagram of the keycaps;
[0049] Figure 7 This is a schematic diagram of the bond structure;
[0050] Figure 8 This is a schematic diagram of one side of the gasket;
[0051] Figure 9 This is a schematic diagram of the other side of the gasket.
[0052] Figure 10 This is a schematic diagram of one side of the circuit board;
[0053] Figure 11 This is a schematic diagram of the other side of the circuit board;
[0054] Figure 12 This is a connection structure between the key body and the mounting shell;
[0055] Figure 13 for Figure 12 Enlarged view of point A in the middle;
[0056] Figure 14 This is a schematic diagram of the balancing component.
[0057] Explanation of reference numerals in the attached figures:
[0058] 1. Button housing; 11. Slide groove; 12. First slot;
[0059] 2. Button module; 21. Keycap; 211. First protrusion; 212. Second slot;
[0060] 22. Key body; 221. First mounting part; 222. First guide post; 223. Third slot; 224. Second protrusion; 225. Second mounting part;
[0061] 3. Mounting housing; 31. Slide table; 32. Third protrusion; 33. First guide groove; 34. Limiting part; 36. Fourth slot; 37. Second guide groove;
[0062] 4. Control module;
[0063] 41. Gasket; 411. Conductive sheet; 412. Connector;
[0064] 42. Circuit board; 421. Connector strip; 422. Connecting hole;
[0065] 43. Control housing; 431. Socket; 432. Fourth protrusion; 433. Second guide post;
[0066] 5. Balancing component; 51. Housing pivot; 52. Button pivot. Detailed Implementation
[0067] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0068] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and 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, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0069] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0070] Furthermore, the technical features involved in the different embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.
[0071] In daily life, buttons on switch panels are a common component. When a button is pressed manually, gaps or uneven force may occur in the button structure due to assembly inaccuracies. Alternatively, the button may be subjected to external forces in a non-perpendicular direction, such as oblique pressing. Furthermore, the user may press the button randomly, making it impossible to guarantee that the button is pressed in the center. This can result in only one side being pressed while the other side is tilted, potentially causing the button to jam or deviate from its normal movement path. This affects the button's function, reduces the device's lifespan, lowers the user experience, and increases safety hazards.
[0072] The button module of this utility model is movably connected to the mounting shell and is suitable for moving relative to the mounting shell along a first direction, achieving precise connection, positioning or guidance. It can make the button module move synchronously relative to the mounting shell as a whole, avoiding tilting or jamming. At the same time, the balancing component plays a role in transmitting force, limiting, and maintaining the parallelism between the button module and the balancing component during the movement of the mounting shell and the button module. The connection relationship between the button pivot and the first mounting part and the second mounting part, and the cooperation structure between the mounting shell and the housing pivot ensure that the button module will not jam or tilt during the movement.
[0073] The following is combined Figures 1 to 14 The following describes embodiments of the present invention.
[0074] According to an embodiment of the present invention, in one aspect, a switch panel is provided, comprising:
[0075] Mounting shell 3;
[0076] The button module 2 is movably connected to the mounting shell 3 and is adapted to move relative to the mounting shell 3 along a first direction; the button module 2 is provided with at least two mounting portions at intervals along a third direction; the mounting portions include a first mounting portion 221 and a second mounting portion 225; wherein the third direction is not parallel to the first direction.
[0077] The balancing component 5 includes a housing pivot 51 and at least two button pivots 52; the housing pivot 51 is movably connected to the mounting shell 3, one of the button pivots 52 is adapted to be movably connected to the first mounting part 221, and the other button pivot 52 is adapted to be movably connected to the second mounting part 225; the rotation axis of the housing pivot 51 and the rotation axis of the button pivot 52 are both parallel to a third direction;
[0078] When the button module 2 moves relative to the mounting shell 3 along the first direction, the shell pivot 51 is adapted to rotate relative to the mounting shell 3, and at least two button pivots 52 are adapted to rotate synchronously relative to the button module 2.
[0079] The interior of the mounting shell 3 is adapted to accommodate the button module 2, and the first mounting part 221 and the second mounting part 225 are adapted to movably connect the button module 2 and the balance member 5; the housing pivot part 51 is adapted to movably connect the balance member 5 and the mounting shell 3.
[0080] When the button module 2 moves relative to the mounting shell 3 in the first direction, the first mounting part 221 and the second mounting part 225 move simultaneously in the first direction. One of the button pivot parts 52 is movably connected to the first mounting part 221, and the other button pivot part 52 is adapted to be movably connected to the second mounting part 225. Therefore, when the first mounting part 221 and the second mounting part 225 move simultaneously in the first direction, the balance member 5 will also move.
[0081] Furthermore, the housing pivot 51 rotates relative to the mounting housing 3, which is in a fixed position. Therefore, when the first mounting part 221 and the second mounting part 225 move simultaneously along the first direction, the button pivot 52 rotates synchronously relative to the button module 2.
[0082] Optionally, the first direction and the third direction are not parallel; in this scheme, they are preferably set perpendicularly.
[0083] In some embodiments, combined with Figure 13 As shown, the button module 2 and the mounting shell 3 are provided with a first guide post 222 and a first guide groove 33, respectively. The first guide post 222 and the first guide groove 33 are adapted to each other, and the first guide post 222 is suitable for sliding relative to the first guide groove 33 in a first direction.
[0084] The first guide post 222 and the first guide groove 33 have a guide post and guide groove mating structure. The button module 2 and the mounting shell 3 are slidably set along the first direction by sliding the guide post inside the guide groove.
[0085] The first guide post 222 and the first guide groove 33 can provide a high-precision positioning function through matching design. When the first guide post 222 moves in the first guide groove 33, it can effectively restrict the degree of freedom of movement and ensure the precise positioning of the button module 2 in the first direction. At the same time, the structure of the first guide post 222 and the first guide groove 33 is simple, and the assembly and disassembly process is convenient and efficient.
[0086] As one implementation, the materials of the first guide post 222 and the first guide groove 33 can be selected as high-strength or low-friction materials. Avoid using low-strength or high-friction materials, which may cause the button to deform or increase friction during use, thereby causing further jamming or tilting.
[0087] As one implementation, the connection structure between the button module 2 and the mounting shell 3 can be set as an embedded structure, with the outer surface of the button module 2 and the inner surface of the mounting shell 3 adapted to each other, so that the button module 2 and the mounting shell 3 are slidably connected along the first direction.
[0088] In some embodiments, combined with Figure 7 and Figure 13 As shown, the first mounting part 221 is constructed as a slide groove structure extending along the second direction, wherein a key pivot part 52 is slidably disposed in the first mounting part 221, and the key pivot part 52 is adapted to rotate relative to the key module 2.
[0089] And / or, the second mounting portion 225 is configured as a slide groove structure extending in the second direction, wherein another key pivot portion 52 is slidably disposed in the second mounting portion 225, and the key pivot portion 52 is adapted to rotate relative to the key module 2;
[0090] The second direction is perpendicular to both the third direction and the first direction.
[0091] When the first mounting part 221 and / or the second mounting part 225 are configured as a slide groove structure extending in the second direction, the key pivot part 52 of the balancer 5 can move in the slide groove along the second direction. The balancer 5 is connected to the mounting shell 3. The structural design of the first mounting part 221 and / or the second mounting part 225 and the key pivot part 52 can transmit the movement of the key module 2 in the first direction as the key pivot part 52 moves in the slide groove along the second direction, while the key pivot part 52 is adapted to rotate relative to the key module 2.
[0092] The balancer 5 is a cylindrical rod enclosed structure. The button pivot 52 is located on one side of the balancer 5. The circular rod is slidably connected to the groove of the first mounting part 221 and / or the second mounting part 225.
[0093] Optionally, the button hinge 52 can be symmetrically arranged on one side of the balancer 5;
[0094] In one implementation, the balancer 5 is a U-shaped rod structure, with the button shaft 52 located at both ends of the U-shaped rod. The two ends are respectively connected to movable sliders, which are slidably connected to the grooves of the first mounting part 221 and / or the second mounting part 225. The two ends of the U-shaped rod are rotatably connected relative to the sliders, and the first mounting part 221 and / or the second mounting part 225 are slidably connected relative to the two ends of the U-shaped rod along the second direction.
[0095] In some embodiments, combined with Figure 13 As shown, the mounting shell 3 is provided with at least one limiting part 34, and the shell pivot part 51 is movably disposed within the limiting part 34.
[0096] The housing pivot 51 is movably connected to the limiting part 34, which allows the key pivot 52 to rotate relative to the key module 2 about the axis of the housing pivot 51. At the same time, the movement of the key module 2 along the first direction is transmitted as the key pivot 52 rotates relative to the key module 2 about the axis of the housing pivot 51. The mounting shell 3 is in a fixed position, so when the key module 2 moves along the first direction, the key pivot 52 can accurately position and guide the key module 2.
[0097] Optionally, the number of limiting parts 34 is multiple, preferably arranged symmetrically.
[0098] In some embodiments, combined with Figure 13 As shown, the limiting part 34 is constructed as a sliding groove structure extending in the fourth direction, the housing pivot part 51 is slidably disposed in the limiting part 34, and the housing pivot part 51 is adapted to rotate relative to the mounting housing 3.
[0099] The fourth direction is perpendicular to both the third and first directions.
[0100] The limiting part 34 is rotatably connected to the housing pivot part 51, providing structural support for the precise motion positioning guidance of the button module 2. At the same time, the slide groove structure extending along the fourth direction facilitates the installation and removal of the balancing part 5.
[0101] Optionally, the fourth direction is perpendicular to both the third and first directions. In this scheme, the fourth direction is set parallel to the second direction.
[0102] As one implementation, the limiting part 34 is constructed as a circular hole structure, and the housing pivot part 51 passes through the limiting part 34, making the connection structure between the limiting part 34 and the housing pivot part 51 more stable.
[0103] Furthermore, the first mounting part 221 and the second mounting part 225 are constructed as circular hole structures, and the limiting part 34 is constructed as a sliding groove structure extending along the fourth direction. When the button module 2 moves along the first direction, the housing pivot part 51 rotates relative to the button module 2 about the axis of the button pivot part 52, while the housing pivot part 51 slides within the limiting part 34 along the fourth direction.
[0104] In some embodiments, combined with Figure 4 As shown, there are multiple first guide posts 222, with at least two first guide posts 222 spaced apart along a third direction;
[0105] There are multiple first guide grooves 33, and they are set one-to-one with the first guide posts 222.
[0106] The structural design of multiple first guide posts 222 and first guide grooves 33 can make the button module 2 more stable when moving in the first direction, and at the same time make the structure more robust.
[0107] In some embodiments, combined with Figure 4 As shown, button module 2 also includes:
[0108] The key body 22 includes at least one third slot 223 and a second protrusion 224, and the key body 22 is connected to the mounting shell 3.
[0109] The third slot 223 and the second protrusion 224 of the key body 22 provide structural support for the connection of the key body 22 to the key module 2. At the same time, the matching method of the slot and the protrusion is simple and efficient, and easy to disassemble and assemble.
[0110] The button module 2 also includes: a keycap 21, which is connected to the key body 22 and includes at least a first protrusion 211 and a second slot 212;
[0111] The first protrusion 211 is connected to the third slot 223, the second slot 212 is connected to the second protrusion 224, and the keycap 21 is connected to the key body 22.
[0112] The first protrusion 211 is connected to the third slot 223, and the second slot 212 is connected to the second protrusion 224, so that the keycap 21 is fixedly connected to the key body 22. When an external force is applied to the keycap 21, the keycap 21 can transmit the external force to the key body 22, which can cause the key body 22 to move along the first direction, and further complete the working objective.
[0113] As one implementation, there are multiple structures in which the first protrusion 211 and the third slot 223 are connected, and multiple structures in which the second slot 212 and the second protrusion 224 are connected.
[0114] The second protrusion 224 is a boss integrally formed with the key body 22. When connected, the side of the boss near the keycap 21 is set with an inclined structure. The second slot 212 is a slot structure that can accommodate the second protrusion 224. When an external force is applied to the keycap 21 or the key body 22, the key body 22 and the keycap 21 tend to embed into each other. When the slot moves along the inclined surface to make the boss snap into the slot, the outer wall of the keycap 21 undergoes a brief expansion deformation. The inclined structure of the boss can guide the external force when the keycap 21 or the key body 22 is engaged, making it less likely to damage the parts.
[0115] As one implementation, the connection structure between the key body 22 and the keycap 21 can be integrally molded;
[0116] Furthermore, the mounting shell 3 contains at least one longer key body 22 or a shorter key body 22;
[0117] As one implementation, the balancing element 5 is adapted to mount a longer key body 22 in a third direction and / or a second direction, and the number of balancing elements 5 is at least one.
[0118] In some embodiments, combined with Figure 3 and Figure 4 As shown, the mounting housing 3 includes:
[0119] The third protrusion 32 is disposed around the outer wall of the mounting shell 3 and is connected to the button shell 1;
[0120] The button housing 1 includes at least one first slot 12, and the slide 11 makes it easier for the third protrusion 32 to engage with the first slot 12.
[0121] The button housing 1 covers the connecting part of the mounting housing 3.
[0122] The third protrusion 32 connects the mounting shell 3 to the button shell 1. The button shell 1 protects the internal structure of the mounting shell 3. The button shell 1 covering the connecting part of the mounting shell 3 can also make the structure more compact and stable.
[0123] The button housing 1 covers the connecting part mounting housing 3. The contact fit between the outer walls of the button housing 1 and the mounting housing 3 is an interference fit. The slide 31 can make the interference fit structure more secure.
[0124] In some embodiments, combined with Figure 4 and Figure 5 As shown, the mounting housing 3 also includes:
[0125] The fourth slot 36 is located on the side of the outer wall of the mounting shell 3 away from the button shell 1 and is connected to the control shell 43;
[0126] The second guide groove 37 is located on the same side as the fourth slot 36 around the outer wall of the mounting shell 3 and is connected to the control shell 43;
[0127] The control housing 43 includes at least one fourth protrusion 432 and a second guide post 433. The fourth protrusion 432 is connected to the fourth slot 36, and the second guide post 433 is connected to the second guide groove 37.
[0128] Mounting housing 3 covers and connects to control housing 43.
[0129] The fourth protrusion 432 is connected to the fourth slot 36, and the second guide post 433 is connected to the second guide groove 37, so that the mounting shell 3 and the control shell 43 are fixedly connected. At the same time, the mounting shell 3 covers and connects the control shell 43, which makes the overall structure more compact and more stable.
[0130] In some embodiments, combined with Figure 8 , Figure 9 and Figure 10As shown, the control module 4 includes: a gasket 41, including a conductive sheet 411 and a connector 412. The gasket 41 abuts against the key body 22 and is adapted to abut against a portion of the outer wall of the key body 22 when the key body 22 is displaced along the first direction, so as to transmit an electrical signal.
[0131] The circuit board 42 includes a connection hole 422 and a plug bar 421. The connection hole 422 is connected to the connector 412, and the plug bar 421 is adapted to transmit electrical signals. The gasket 41 is adapted to the circuit board 42 and is adapted to wrap the circuit board 42.
[0132] In some embodiments, combined with Figure 5 and Figure 11 As shown, the control housing 43 also includes:
[0133] The plug hole 431 is adapted to the plug bar 421. The control housing 43 provides support for the circuit board 42 and connects the load to the outside of the control housing 43.
[0134] Obviously, the above embodiments are merely examples for clear illustration and are not intended to limit the implementation. Although embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and all such modifications and variations fall within the scope defined by the present invention.
Claims
1. A switch panel, characterized in that, include: Mounting housing (3); A button module (2) is movably connected to the mounting shell (3) and adapted to move relative to the mounting shell (3) along a first direction; the button module (2) is provided with at least two mounting portions at intervals along a third direction; the mounting portions include a first mounting portion (221) and a second mounting portion (225); wherein the third direction is not parallel to the first direction; The balancing component (5) includes a housing pivot (51) and at least two button pivots (52); the housing pivot (51) is movably connected to the mounting shell (3), one of the button pivots (52) is adapted to be movably connected to the first mounting part (221), and the other button pivot (52) is adapted to be movably connected to the second mounting part (225); the rotation axis of the housing pivot (51) and the rotation axis of the button pivot (52) are both parallel to the third direction; When the button module (2) moves relative to the mounting shell (3) in the first direction, the shell pivot (51) is adapted to rotate relative to the mounting shell (3), and at least two button pivots (52) are adapted to rotate synchronously relative to the button module (2).
2. The switch panel according to claim 1, characterized in that, The button module (2) and the mounting shell (3) are provided with a first guide post (222) and a first guide groove (33), respectively. The first guide post (222) is adapted to the first guide groove (33) and is suitable for sliding relative to the first guide groove (33) in a first direction.
3. The switch panel according to claim 1, characterized in that, The first mounting part (221) is constructed as a sliding groove structure extending in the second direction, wherein one of the key pivot parts (52) is slidably disposed in the first mounting part (221), and the key pivot part (52) is adapted to rotate relative to the key module (2); And / or, the second mounting portion (225) is configured as a groove structure extending in a second direction, wherein another key pivot portion (52) is slidably disposed in the second mounting portion (225), and the key pivot portion (52) is adapted to rotate relative to the key module (2); The second direction is perpendicular to both the third direction and the first direction.
4. The switch panel according to claim 1, characterized in that, The mounting shell (3) is provided with at least one limiting part (34), and the shell pivot part (51) is movably disposed within the limiting part (34).
5. The switch panel according to claim 4, characterized in that, The limiting part (34) is constructed as a groove structure extending in the fourth direction. The housing pivot part (51) is slidably disposed in the limiting part (34), and the housing pivot part (51) is adapted to rotate relative to the mounting shell (3). The fourth direction is perpendicular to both the third direction and the first direction.
6. The switch panel according to claim 2, characterized in that, The number of the first guide post (222) is multiple, and at least two of the first guide posts (222) are spaced apart along a third direction; There are multiple first guide grooves (33), and they are set one-to-one with the first guide post (222).
7. The switch panel according to claim 1, characterized in that, The button module (2) also includes: The key body (22) includes at least one third slot (223) and a second protrusion (224), and the key body (22) is connected to the mounting shell (3).
8. The switch panel according to claim 7, characterized in that, The button module (2) also includes: A keycap (21) is connected to the key body (22) and includes at least a first protrusion (211) and a second slot (212); The first protrusion (211) is connected to the third slot (223), the second slot (212) is connected to the second protrusion (224), and the keycap (21) is connected to the key body (22).
9. The switch panel according to claim 8, characterized in that, The mounting housing (3) includes: The third protrusion (32) is disposed around the outer wall of the mounting shell (3) and is connected to the button shell (1); The button housing (1) includes at least one first slot (12), and the third protrusion (32) is connected to the first slot (12); The button housing (1) covers the mounting housing (3) of the connecting part.
10. The switch panel according to claim 9, characterized in that, The mounting housing (3) also includes: The fourth slot (36) is located on the side of the outer wall of the mounting shell (3) away from the button shell (1) and is connected to the control shell (43); The second guide groove (37) is located on the same side of the outer wall of the mounting shell (3) as the fourth slot (36) and is connected to the control shell (43); The control housing (43) includes at least one fourth protrusion (432) and a second guide post (433), the fourth protrusion (432) being connected to a fourth slot (36), and the second guide post (433) being connected to a second guide groove (37). The mounting housing (3) covers and connects to the control housing (43).