Magnetic intelligent switch panel structure

CN224732647UActive Publication Date: 2026-09-08WUHAN DIGAO DECORATION DESIGN ENG CO LTD
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Patent Information

Application Number
CN202522199531.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2026-09-08
Estimated Expiration
2035-10-17

AI Technical Summary

Technical Problem

[0003]本实用新型的主要目的在于提供一种磁吸式智能开关面板结构,可以有效解决安装位置、角度单一化,无法适用不同体型的人群,同时仅采用磁吸的方式固定,没有设置限位结构容易掉落的问题

Benefits of technology

1、 通过凸形杆和凸形槽的定位结构与磁吸连接相互配合,实现扩展磁吸板、磁吸板二与底板的快速装配,无需依赖螺丝等紧固件,有效缩短安装时间;后期更换功能模块时,仅需直接分离磁吸连接即可,避免对墙面及面板主体造成损伤,维护便捷性大幅提升,同时通过扩展磁吸板,能够在人体感应传感器感应到人体时同步打开照明灯,使得智能开关面板处被照明,方便操作人员操作,适用性强。

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Abstract

The utility model discloses a kind of magnetic attraction type intelligent switch panel structure, more specifically in the field of intelligent switch panel.The utility model of a kind of magnetic attraction type intelligent switch panel structure, including bottom box, the one end of bottom box is fixedly installed with bottom plate, the side of bottom plate is provided with a plurality of magnetic attraction slot one, a plurality of magnetic attraction slot two and two convex grooves, and is provided with magnet one, the one end of bottom plate is provided with expansion magnetic attraction plate, one side of expansion magnetic attraction plate is fixedly installed with three groups of symmetrically arranged convex rods, the other side of expansion magnetic attraction plate is provided with a plurality of magnetic attraction slot four.By the mutual cooperation between expansion magnetic attraction plate and three magnetic attraction plates, operating personnel can exchange the position of illuminating lamp, intelligent switch panel and sensing component, adjust the installation height of intelligent switch panel, just need to aim the illumination range of illuminating lamp at intelligent switch panel, when human body induction sensor detects human body, then can quickly provide illumination for intelligent switch panel, and strong applicability.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent switch panels, and in particular to a magnetic intelligent switch panel structure. Background Technology

[0002] As the smart home industry upgrades from single smart switch panels to whole-house interconnected smart switch panels, the functional positioning of smart switch panels, as the core node of human-computer interaction, has shifted from a simple "on / off control" smart switch panel to a "scenario-based smart hub." However, current market products still have many unconventional pain points in adapting to diverse user needs and complex application scenarios, specifically reflected in the following aspects: Traditional smart switch panels use a fixed installation method, which can only be installed in a box cut into the wall. The position of the box cannot be changed at will, which means that the installation position of the smart switch is also fixed. As a result, it cannot adapt to the physiological characteristics and usage habits of different people, resulting in poor applicability. In addition, the magnetic smart switches on the market are only installed by magnetic attraction and do not have vertical restraint. When someone touches them inadvertently, they are very easy to fall off, with poor anti-fall effect, which affects the service life. Utility Model Content

[0003] The main purpose of this utility model is to provide a magnetic smart switch panel structure that can effectively solve the problems of limited installation positions and angles, which cannot be applied to people of different body types, and the fact that it is easy to fall off if it is fixed by magnetic attraction without a limiting structure.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: A magnetic smart switch panel structure includes a base box. A base plate is fixedly installed at one end of the base box. A plurality of magnetic grooves I, a plurality of magnetic grooves II, and two convex grooves are formed on one side of the base plate, and a magnet I is provided thereon. An extended magnetic plate is provided at one end of the base plate. Three sets of symmetrically arranged convex rods are fixedly installed on one side of the extended magnetic plate. A plurality of magnetic grooves IV are formed on the other side of the extended magnetic plate, and three sets of magnets II are provided thereon. Three magnetic plates II are magnetically connected to the other side of the extended magnetic plate. A lighting lamp and a smart switch panel are respectively fixedly installed at one end of the three magnetic plates II, and a sensing component is provided thereon.

[0005] Preferably, the three magnetic plates are attached to each other, and the three magnetic plates are the same size as the base plate, all of which are square and have rounded corners. The side of each magnetic plate facing the magnet has a magnetic suction element that matches the magnet, so as to achieve a stable magnetic connection between the two. One side of the extended magnetic plate has three sets of annular iron rings and positioning grooves. The three sets of annular iron rings are respectively set at the center positions of the three magnetic plates, and each set of positioning grooves has four, which are respectively corresponding to the four corners of the magnetic plate.

[0006] Preferably, a plurality of magnetic suction slots one and magnetic suction slots two are arranged in a circular array around the center of the base plate, and a positioning hole is provided on the base plate at the position corresponding to the positioning slot, the positioning hole being concentric with the array center of magnetic suction slots one and magnetic suction slots two.

[0007] Preferably, the three sets of convex rods are respectively arranged corresponding to the center positions of the two convex grooves and the base plate. The annular iron ring is arranged around the center of the extended magnetic plate, and the inner diameter of the annular iron ring is adapted to the distribution circumference diameter of the first magnet. When the extended magnetic plate is attached to the base plate, the annular iron ring and the first magnet are attracted to each other, thereby enhancing the connection stability between the two.

[0008] Preferably, the sensing component includes a mounting base, a rotating ball, and a human body sensor. The mounting base is fixedly connected to the magnetic plate. The rotating ball is rotatably mounted inside the mounting base. The human body sensor is fixed on the rotating ball. The mounting base is a hemispherical shell structure with one open end. The diameter of the rotating ball is adapted to the inner diameter of the mounting base, and the rotating ball rotatably engages with the mounting base. The sensing end of the human body sensor extends out of the opening of the mounting base, and the sensing angle of the human body sensor is adjusted by rotating the rotating ball.

[0009] Preferably, the first magnet is fixedly embedded in the first magnetic groove, and the number of the first magnets is the same as the number of the first magnetic grooves. The second magnet is fixedly embedded in the fourth magnetic groove, and the magnetic pole direction of the second magnet is opposite to that of the first magnet. The second magnetic plate is made of iron, and a magnetic component adapted to the second magnet is fixed on the side facing the second magnet.

[0010] Preferably, when the extended magnetic plate is magnetically attached to the base plate, the first magnet is in contact with the annular iron ring. External power is transmitted sequentially through the base box, the first magnet, and the annular iron ring to the extended magnetic plate. The lighting lamp, the smart switch panel, and the sensing component are all electrically connected through the magnetic attraction between the second magnetic plate and the extended magnetic plate, and are powered by the electrical energy transmitted by the extended magnetic plate. The sensing component, the lighting lamp, and the second magnetic plate are all wirelessly connected to the cloud through a wireless module.

[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. The positioning structure of the convex rod and convex groove works in conjunction with the magnetic connection to achieve quick assembly of the extended magnetic plate, the second magnetic plate, and the base plate without relying on screws or other fasteners, effectively shortening the installation time. When replacing functional modules later, only the magnetic connection needs to be directly separated, avoiding damage to the wall and the main body of the panel, greatly improving maintenance convenience. At the same time, through the extended magnetic plate, the lighting can be turned on simultaneously when the human body sensor detects a human body, so that the smart switch panel is illuminated, making it convenient for operators to operate and highly applicable.

[0012] 2. By extending the magnetic plate and cooperating with the three magnetic plates, operators can easily change the positions of the lighting fixture, smart switch panel, and sensor components. When adjusting the installation height of the smart switch panel, simply align the lighting fixture with the panel; when the human body sensor detects a person, the panel will quickly illuminate, making it highly versatile. Furthermore, the smart switch panel can be installed not only vertically but also horizontally at an adjustable angle, catering to users with different operating habits and further expanding its applicability. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a three-dimensional structural diagram of the bottom box of this utility model; Figure 3 This is a schematic diagram of the three-dimensional structure of the bottom plate in this utility model; Figure 4 This is a schematic diagram of the structure of the extended magnetic plate facing the bottom plate in this utility model; Figure 5 This is a schematic diagram of the structure of the extended magnetic plate facing the second magnetic plate in this utility model; Figure 6 This is a structural schematic diagram of the magnetic suction plate 2 and its auxiliary functional components in this utility model.

[0014] In the diagram: 1. Base box; 101. Base plate; 102. Magnetic slot one; 103. Positioning hole; 104. Magnetic slot two; 105. Convex slot; 106. Magnet one; 2. Extended magnetic plate; 201. Convex rod; 202. Positioning slot; 203. Ring iron ring; 204. Magnetic slot four; 205. Magnet two; 301. Lighting lamp; 401. Magnetic plate two; 402. Smart switch panel; 5. Sensing component; 501. Mounting base; 502. Rotating ball; 503. Human body sensor. Detailed Implementation

[0015] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0016] Example 1 like Figure 1-4As shown, a magnetic smart switch panel structure includes a base box 1. A base plate 101 is fixedly installed at one end of the base box 1. One side of the base plate 101 has several magnetic grooves 102, several magnetic grooves 104, and two convex grooves 105, and is equipped with magnets 106. An extended magnetic plate 2 is installed at one end of the base plate 101. Three sets of symmetrically arranged convex rods 201 are fixedly installed on one side of the extended magnetic plate 2. The other side of the extended magnetic plate 2 has several magnetic grooves 204 and is equipped with three sets of magnets 205. Three magnets are magnetically connected to the other side of the extended magnetic plate 2. The magnetic suction plate 401 has a light 301 and a smart switch panel 402 fixedly installed at one end of each of the three magnetic suction plates 401, and is equipped with a sensing component 5. Several magnetic suction slots 102 and 104 are arranged in a circular array around the center of the base plate 101, and positioning holes 103 are opened at the corresponding positions of the positioning slots 202 on the base plate 101. The positioning holes 103 are concentric with the array center of the magnetic suction slots 102 and 104. Three sets of convex rods 201 are respectively set at the center positions of two convex slots 105 and the base plate 101. The annular iron ring 203 surrounds and expands the magnetic attraction. The center of plate 2 is positioned such that the inner diameter of the annular iron ring 203 matches the circumferential diameter of the distributed magnet 106. When the extended magnetic plate 2 is attached to the base plate 101, the annular iron ring 203 and the magnet 106 are attracted to each other, enhancing the stability of their connection. The magnet 106 is fixedly embedded in the magnetic groove 102, and the number of magnets 106 is the same as the number of magnetic grooves 102. The magnet 205 is fixedly embedded in the magnetic groove 404, and the magnetic pole direction of the magnet 205 is opposite to that of the magnet 106. The magnetic plate 201 is made of iron-containing material and faces the magnet 206. One side of the 05 is fixed with a magnetic component that is compatible with magnet 205. When the extended magnetic plate 2 is magnetically attached to the base plate 101, magnet 106 contacts the annular iron ring 203. External power is transmitted to the extended magnetic plate 2 in sequence through the base box 1, magnet 106, and annular iron ring 203. The lighting lamp 301, the smart switch panel 402, and the sensing component 5 are all electrically connected through the magnetic attraction between the magnetic plate 2 and the extended magnetic plate 2. The power is supplied by the power transmitted by the extended magnetic plate 2. The sensing component 5, the lighting lamp 301, and the magnetic plate 2 are all wirelessly connected to the cloud through a wireless module.

[0017] In this embodiment, the extended magnetic plate 2 and the base plate 101 are quickly and accurately assembled without screws by positioning the convex rod 201 and the convex groove 105 and magnetically attracting the magnet 106 and the annular iron ring 203. This simplifies installation and allows for vertical positioning, reducing the probability of the extended magnetic plate 2 falling off. The annular iron ring 203 is size-matched to the magnet 106, and the magnet 106 and the magnet 205 have opposite magnetic poles, enhancing connection stability and preventing loosening and detachment. The integrated magnetic attraction and conductivity design forms a stable power supply path, solving the problem of poor contact in traditional connections. The three magnetic plates 401 respectively integrate the lighting lamp 301, the smart switch panel 402, and the sensing component 5, magnetically connecting the extended magnetic plate 2. Combined with cloud-based wireless communication, this enables flexible assembly and disassembly of functional modules and smart home integration, balancing convenience, stability, and expandability. Example 2 like Figure 1 and Figure 5-6 As shown, in one embodiment, three magnetic plates 401 are attached to each other. The three magnetic plates 401 are the same size as the base plate 101, all are square, and have rounded corners. The side of the magnetic plate 401 facing the magnet 205 is provided with a magnetic element adapted to the magnet 205, achieving a stable magnetic connection between the two. One side of the extended magnetic plate 2 is provided with three sets of annular iron rings 203 and positioning grooves 202. The three sets of annular iron rings 203 are respectively positioned at the center of the three magnetic plates 401. Each set of positioning grooves 202 has four grooves, corresponding to the four corners of the magnetic plate 401. The sensing component 5 includes... The system includes a mounting base 501, a rotating ball 502, and a human body sensor 503. The mounting base 501 is fixedly connected to the magnetic suction plate 401. The rotating ball 502 is rotatably mounted inside the mounting base 501. The human body sensor 503 is fixed on the rotating ball 502. The mounting base 501 is a hemispherical shell structure with one open end. The diameter of the rotating ball 502 is adapted to the inner diameter of the mounting base 501, and the rotating ball 502 and the mounting base 501 rotate in cooperation. The sensing end of the human body sensor 503 extends out of the opening of the mounting base 501. The sensing angle of the human body sensor 503 is adjusted by rotating the rotating ball 502.

[0018] In this embodiment, the three magnetic plates 401 are set as squares of the same size as the base plate 101 with rounded corners. After fitting and assembling, the appearance is uniform and beautiful. The positioning groove 202 of the extended magnetic plate 2 cooperates with the magnetic components of the magnetic plate 401 to achieve precise positioning and stable connection, and prevent the functional modules from shifting. The sensing component 5 adopts a cooperative structure of hemispherical mounting base 501 and rotating ball 502. The human body sensing sensor 503 can flexibly adjust its angle with the rotating ball to expand the sensing range and adapt to different scenarios. The rotating ball is adapted to the size of the mounting base to ensure stability and no deviation after angle adjustment. The installation height of the extended magnetic plate 2 can be adjusted according to the user's height. Simply insert the two convex rods 201 of the corresponding height into the two convex slots 105, and then lock them in place by magnetic attraction to complete the installation. The positions of the smart switch panel 402, the lighting lamp 301 and the sensing component 5 can be adjusted by adjusting the three magnetic plates 401. Since the three magnetic plates are the same size and are all square, the smart switch panel 402 can be installed in both horizontal and vertical directions, further expanding the scope of application.

[0019] Working principle: External 220V AC power is stepped down to 12V DC by a transformer and then connected to the base box 1. The current is transmitted sequentially through the base plate 101, the magnet 106 embedded in the magnetic slot 102, and the annular iron ring 203 on the extended magnetic plate 2 to the extended magnetic plate 2. The magnetic plate 401, which includes a light 301, a smart switch panel 402, and a sensing component 5, is magnetically connected to the extended magnetic plate 2 through magnetic components on its surface that are compatible with the magnet 205. The current is then transmitted to the magnetic plate 401 through the magnet 205 to power the various functional components. In the sensing component 5, the human body sensor 503 can adjust its sensing angle by rotating the ball 502 within the hemispherical mounting base 501. The sensor detects human infrared signals and intelligent... All pressing commands of the switch panel 402 are uploaded to the cloud gateway via the wireless module. The gateway sends control commands to each functional component according to the preset logic. When the operator is detected by the human body sensor 503, the human body sensor 503 feeds the information back to the cloud. The cloud activates the lighting 301 through the wireless module, so that the lighting 301 illuminates the smart switch panel 402 simultaneously. This makes it convenient for the operator to start other electrical devices through the smart switch panel 402. At the same time, users can also connect to the cloud gateway through a mobile APP to remotely adjust the brightness of the lighting, the sensitivity of the sensor, etc., to achieve local and remote intelligent control. Moreover, the addition, removal or replacement of functional modules can be completed by directly separating or attaching the magnetic plate 401 without modifying the wiring. Operators can also adjust the installation height of the extended magnetic plate 2 according to their own height. They only need to insert the two convex rods 201 of the corresponding height into the two convex slots 105, and then lock them in place by magnetic attraction to complete the installation. The positions of the smart switch panel 402, the lighting lamp 301 and the sensing component 5 can also be adjusted by adjusting the three magnetic plates 401. Since the three magnetic plates are the same size and are all square, the smart switch panel 402 can be installed in both horizontal and vertical directions, further expanding the scope of application.

[0020] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A magnetic smart switch panel structure, comprising a base box (1), characterized in that: One end of the base box (1) is fixedly installed with a base plate (101). The base plate (101) has several magnetic suction slots (102), several magnetic suction slots (104) and two convex slots (105) on one side, and is provided with a magnet (106). One end of the base plate (101) is provided with an extended magnetic suction plate (2). One side of the extended magnetic suction plate (2) is fixedly installed with three sets of symmetrically arranged convex rods (201). The other side of the extended magnetic suction plate (2) has several magnetic suction slots (204) and is provided with three sets of magnets (205). The other side of the extended magnetic suction plate (2) is magnetically connected with three magnetic suction plates (401). One end of the three magnetic suction plates (401) is fixedly installed with a lighting lamp (301) and a smart switch panel (402), and is provided with a sensing component (5).

2. The magnetic smart switch panel structure according to claim 1, characterized in that: The three magnetic suction plates (401) are attached to each other. The three magnetic suction plates (401) are the same size as the base plate (101) and are all square with rounded corners. The side of the magnetic suction plate (401) facing the magnet (205) is provided with a magnetic suction component that is compatible with the magnet (205) to achieve a stable magnetic connection between the two. One side of the extended magnetic suction plate (2) is provided with three sets of annular iron rings (203) and positioning grooves (202). The three sets of annular iron rings (203) are respectively set at the center positions of the three magnetic suction plates (401). There are four positioning grooves (202) in one set, which are respectively corresponding to the four corners of the magnetic suction plate (401).

3. The magnetic smart switch panel structure according to claim 2, characterized in that: Several magnetic suction slots one (102) and magnetic suction slot two (104) are arranged in a circular array around the center of the base plate (101), and a positioning hole (103) is provided on the base plate (101) at the position corresponding to the positioning slot (202). The positioning hole (103) is concentric with the array center of the magnetic suction slot one (102) and the magnetic suction slot two (104).

4. The magnetic smart switch panel structure according to claim 2, characterized in that: The three sets of convex rods (201) are respectively set at the center positions of the two convex grooves (105) and the base plate (101). The annular iron ring (203) is set around the center of the extended magnetic plate (2), and the inner diameter of the annular iron ring (203) is adapted to the distribution circumference diameter of the magnet (106). When the extended magnetic plate (2) is attached to the base plate (101), the annular iron ring (203) and the magnet (106) are attracted to each other, which enhances the connection stability between the two.

5. The magnetic smart switch panel structure according to claim 1, characterized in that: The sensing component (5) includes a mounting base (501), a rotating ball (502), and a human body sensor (503). The mounting base (501) is fixedly connected to the magnetic suction plate (401). The rotating ball (502) is rotatably mounted inside the mounting base (501). The human body sensor (503) is fixed on the rotating ball (502). The mounting base (501) is a hemispherical shell structure with one open end. The diameter of the rotating ball (502) is adapted to the inner diameter of the mounting base (501), and the rotating ball (502) rotates in cooperation with the mounting base (501). The sensing end of the human body sensor (503) extends out of the opening of the mounting base (501). The sensing angle of the human body sensor (503) is adjusted by rotating the rotating ball (502).

6. The magnetic smart switch panel structure according to claim 1, characterized in that: The first magnet (106) is fixedly embedded in the first magnetic groove (102), and the number of the first magnet (106) is the same as the number of the first magnetic groove (102). The second magnet (205) is fixedly embedded in the fourth magnetic groove (204). The magnetic pole direction of the second magnet (205) is opposite to that of the first magnet (106). The second magnetic plate (401) is made of iron, and a magnetic component adapted to the second magnet (205) is fixed on the side facing the second magnet (205).

7. The magnetic smart switch panel structure according to claim 2, characterized in that: When the extended magnetic plate (2) is magnetically attached to the base plate (101), the first magnet (106) contacts the annular iron ring (203). External power is transmitted to the extended magnetic plate (2) in sequence through the base box (1), the first magnet (106), and the annular iron ring (203). The lighting lamp (301), the smart switch panel (402), and the sensing component (5) are all electrically connected through the magnetic attraction between the second magnetic plate (401) and the extended magnetic plate (2). Power is supplied by the electrical energy transmitted by the extended magnetic plate (2). The sensing component (5), the lighting lamp (301), and the second magnetic plate (401) are all wirelessly connected to the cloud through a wireless module.