Intelligent lighting control module

By adopting a stepped outer shell and L-shaped side plate design in the intelligent lighting control module, the number of terminals and the heat dissipation holes are opened, the problems of excessive length of the wiring unit and poor heat dissipation are solved, and efficient heat dissipation and convenient installation are achieved.

CN223258149UActive Publication Date: 2025-08-22ZHEJIANG GUOTAO ELECTRIC CO LTD
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Patent Information

Application Number
CN202423217821.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-08-22
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

The wiring units of the existing intelligent lighting control module are designed in a single layer, which leads to excessive length, occupancy of space, and poor heat dissipation effect, which affects service life.

Method used

The step-shaped outer shell structure is adopted, and the wiring terminals are installed on the L-shaped side plate, and heat dissipation holes are opened on the reinforcement ribs to increase the number of wiring terminals and improve the heat dissipation effect. At the same time, the coordination between the positioning parts and the guide rails is achieved convenient installation and disassembly.

Benefits of technology

The number of terminals is increased, the space is occupied, the heat dissipation effect and structural strength are improved, and the installation and disassembly are easy, and the service life and stability are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of lighting control devices, and particularly relates to an intelligent lighting control module. Comprising an outer shell, the outer shell comprises a top plate, and heat dissipation plates are connected to the two sides of the top plate in the Y-axis direction; two first L-shaped side plates; two second L-shaped side plates; wherein each of the first L-shaped side plate and the second L-shaped side plate comprises a first plate body arranged in the Y-axis direction and a second plate body arranged in the Z-axis direction, a reinforcing rib is formed between two adjacent wiring holes in the two second plate bodies on one side of the outer shell, and second heat dissipation holes are formed in the reinforcing ribs in the Z-axis direction; the heat dissipation effect is improved through the heat dissipation plate, the wiring terminals are installed on the first L-shaped side plate and the second L-shaped side plate, the number of the wiring terminals can be increased, the occupied space can be reduced, and the heat dissipation effect is further improved by forming the second heat dissipation holes in the reinforcing ribs.
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Description

Technical Field

[0001] The utility model belongs to the technical field of lighting control devices, and in particular relates to an intelligent lighting control module. Background Art

[0002] Intelligent lighting control modules are used to monitor and track power supply systems in real time, automatically and smoothly adjusting circuit voltage and current amplitudes. This reduces the extra power consumption caused by unbalanced loads in lighting circuits, improves the power factor, and reduces the operating temperature of lamps and circuits, ultimately optimizing power supply. Intelligent lighting control modules are typically mounted on guide rails for secure installation and are used in a variety of lighting applications, including building lighting, hotel lighting, school lighting, hospital lighting, and subway lighting.

[0003] In the prior art, the wiring unit of the intelligent lighting control module is single-layer. In order to increase the number of wiring terminals, the length of the intelligent lighting control module will be increased. However, if the length is too long, it will be easily restricted by space, which is not conducive to installation and storage. In addition, the outer shell is affected by the wiring terminals, resulting in a limited number of heat dissipation holes on the outer shell, poor heat dissipation effect, and affecting the service life of the intelligent lighting control module. Utility Model Content

[0004] The purpose of the present utility model is to provide an intelligent lighting control module in response to the above-mentioned technical problems, which improves the heat dissipation effect by using a heat dissipation plate, and increases the number of terminal blocks while reducing the occupied space by installing the terminal blocks on the first L-shaped side plate and the second L-shaped side plate. The structural strength of the outer shell is improved by arranging reinforcing ribs on the first L-shaped side plate and the second L-shaped side plate, and further improves the heat dissipation effect by opening second heat dissipation holes on the reinforcing ribs.

[0005] In view of this, the present invention provides an intelligent lighting control module, comprising:

[0006] An outer shell, a control unit and a wiring unit installed in the outer shell, a base installed at the bottom of the outer shell, and an operating unit installed on the outer shell, wherein the outer shell has a stepped structure and includes:

[0007] A top plate, with heat dissipation plates connected to both sides of the top plate in the Y-axis direction, and a plurality of first heat dissipation holes arranged in an array on the heat dissipation plates;

[0008] Two first L-shaped side panels, the first L-shaped side panels being connected to the peripheral edge of the bottom of the heat dissipation plate;

[0009] Two second L-shaped side panels, the second L-shaped side panels being connected to the peripheral edge of the bottom of the first L-shaped side panel;

[0010] Two third side plates, respectively connected to both sides of the top plate in the X-axis direction;

[0011] Among them, the first L-shaped side panel and the second L-shaped side panel each include a first plate body arranged along the Y-axis direction and a second plate body arranged along the Z-axis direction, a plurality of wiring holes are provided on the second plate body, and a reinforcing rib is formed between two adjacent wiring holes on the two second plates on one side of the outer shell, and a second heat dissipation hole is opened on the reinforcing rib along the Z-axis direction. The wiring unit includes a plurality of wiring terminals, which are arranged on the inner sides of the first L-shaped side panel and the second L-shaped side panel, and the wiring terminals are directly opposite to the wiring holes. The operating unit and the wiring unit are both electrically connected to the control unit, and the operating unit is arranged on the top plate.

[0012] In the above solution, further, the first heat dissipation hole and the second heat dissipation hole both have a trapezoidal hole structure.

[0013] In the above solution, further, a plurality of third heat dissipation holes are provided at both ends of the second plate.

[0014] In the above scheme, further comprising:

[0015] The display screen is arranged on the top plate and is electrically connected to the control unit.

[0016] In the above solution, further, the operating unit includes:

[0017] Multiple operation buttons are provided on the top plate;

[0018] Multiple indicator lights are arranged on the top plate.

[0019] In the above scheme, further, the base is provided with a positioning groove for installation on the guide rail, a plurality of positioning members are provided on one side of the positioning groove on the base, a plurality of anti-slip protrusions are provided on the side of the positioning groove away from the positioning member, and the positioning member includes a positioning portion extending outside the periphery of the base, and a positioning hole is provided on the positioning portion.

[0020] In the above solution, further, the positioning member further includes:

[0021] A sliding portion, wherein a through hole is formed on the sliding portion, and two elastic buckles connected to the periphery of the through hole are symmetrically arranged on the sliding portion;

[0022] A position-limiting clamping portion is provided on an end of the sliding portion away from the positioning portion, and a first inclined surface is provided on the position-limiting clamping portion;

[0023] In which, the base is provided with a limiting slide groove connected to the positioning groove, the sliding part is inserted in the limiting slide groove and the sliding part can be slidably arranged in the limiting slide groove, the limiting clamping part is located on the periphery of the limiting slide groove, the limiting slide groove is provided with a protrusion, and the sliding part is provided with an avoidance groove for avoiding the protrusion, and both sides of the protrusion in the X-axis direction are provided with a clamping protrusion, and a second inclined surface is provided on the side of the clamping protrusion close to the limiting clamping part, and the elastic buckle is in contact with the second inclined surface.

[0024] In the above solution, further, a third inclined surface is provided on a side of the clamping protrusion away from the limiting clamping portion, and an extending protrusion is provided on the elastic buckle, and the extending protrusion abuts against the third inclined surface.

[0025] In the above scheme, further, a limiting groove is provided on the side of the protrusion close to the limiting clamping part, and an elastic limiting part is provided on the side of the through hole close to the limiting clamping part. The elastic limiting part can be slidably set in the limiting groove, and a limiting groove is also provided on the end of the limiting sliding groove away from the positioning groove. A limiting convex part is provided on the end of the sliding part away from the positioning groove, and the limiting convex part can be slidably set in the limiting groove.

[0026] The beneficial effects of the utility model are:

[0027] 1. Improve heat dissipation through the heat sink. By installing the terminal blocks on the first and second L-shaped side panels, the number of terminal blocks can be increased while reducing the occupied space. Strengthening ribs are provided on the first and second L-shaped side panels to improve the structural strength of the outer shell. Second heat dissipation holes are provided on the strengthening ribs to further improve heat dissipation.

[0028] 2. By pressing the intelligent lighting control module toward the guide rail, the positioning piece slides in the limiting slide groove under the external force, so that the elastic clip is engaged with the engaging protrusion, and then the limiting engaging portion limits the guide rail, thereby facilitating the installation and removal of the intelligent lighting control module and further improving the stability of the installation. BRIEF DESCRIPTION OF THE DRAWINGS

[0029] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0030] Figure 2 It is a schematic diagram of the overall structure of the utility model from another perspective;

[0031] Figure 3 It is a structural schematic diagram of the base of the utility model;

[0032] Figure 4 This utility model Figure 3 Schematic diagram of the structure at A;

[0033] Figure 5 This is a schematic cross-sectional view of the positioning member of the present utility model;

[0034] Figure 6 It is a structural diagram of the positioning member of the utility model;

[0035] Figure 7 It is a structural schematic diagram of the positioning member of the utility model from another perspective.

[0036] The marks in the figure are:

[0037] 1. Top plate; 2. First L-shaped side plate; 3. Second L-shaped side plate; 4. Third side plate; 5. Heat dissipation plate; 6. First heat dissipation hole; 7. First plate body; 8. Second plate body; 9. Wiring hole; 10. Reinforcement rib; 11. Second heat dissipation hole; 12. Wiring terminal; 13. Third heat dissipation hole; 14. Display screen; 15. Operation button; 16. Indicator light; 17. Positioning groove; 18. Positioning member; 181. Positioning portion; 182. Sliding portion; 183. Limiting clamping portion; 19. Anti-slip protrusion; 20. Positioning hole; 21. Through hole; 22. Elastic buckle; 23. First inclined surface; 24. Limiting slide groove; 25. Protrusion; 26. Avoidance groove; 27. Clamping protrusion; 28. Second inclined surface; 29. ​​Third inclined surface; 30. Limiting groove; 31. Elastic limiting member; 32. Limiting protrusion; 33. Extending protrusion. DETAILED DESCRIPTION

[0038] The following will be combined with the accompanying drawings in the embodiments of the present application to clearly describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field are within the scope of protection of this application.

[0039] In the description of this application, it should be noted that the terms used herein are only for the purpose of describing specific embodiments and are not intended to limit the exemplary embodiments according to this application. For ease of description, the dimensions of the various parts shown in the drawings are not drawn according to the actual proportional relationship. Technologies, methods and equipment known to ordinary technicians in the relevant fields may not be discussed in detail, but where appropriate, the technologies, methods and equipment should be considered as part of the authorization specification. In all examples shown and discussed here, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of the exemplary embodiments may have different values. It should be noted that similar numbers and letters represent similar items in the following figures, so once an item is defined in one figure, it does not need to be further discussed in subsequent figures.

[0040] Example 1:

[0041] This embodiment provides an intelligent lighting control module, including:

[0042] An outer shell, a control unit and a wiring unit installed in the outer shell, a base installed at the bottom of the outer shell, and an operating unit installed on the outer shell, wherein the outer shell has a stepped structure and includes:

[0043] The top plate 1 has heat dissipation plates 5 connected to both sides of the top plate 1 in the Y-axis direction. The heat dissipation plates 5 are provided with a plurality of first heat dissipation holes 6 arranged in an array.

[0044] Two first L-shaped side panels 2, the first L-shaped side panels 2 being connected to the peripheral edge of the bottom of the heat dissipation plate 5;

[0045] Two second L-shaped side panels 3, the second L-shaped side panels 3 are connected to the peripheral edge of the bottom of the first L-shaped side panel 2;

[0046] Two third side plates 4 are respectively connected to both sides of the top plate 1 in the X-axis direction;

[0047] Among them, the first L-shaped side panel 2 and the second L-shaped side panel 3 both include a first plate body 7 arranged along the Y-axis direction and a second plate body 8 arranged along the Z-axis direction, and a plurality of wiring holes 9 are provided on the second plate body 8. A reinforcing rib 10 is formed between two adjacent wiring holes 9 on the two second plate bodies 8 on one side of the outer shell, and a second heat dissipation hole 11 is opened on the reinforcing rib 10 along the Z-axis direction. The wiring unit includes a plurality of wiring terminals 12, and the wiring terminals 12 are arranged on the inner sides of the first L-shaped side panel 2 and the second L-shaped side panel 3, and the wiring terminals 12 are opposite to the wiring holes 9. The operating unit and the wiring unit are both electrically connected to the control unit, and the operating unit is arranged on the top plate 1.

[0048] In this technical solution, the outer shell and the base can be connected by using screws, which are not shown in the figure. A receiving cavity is formed between the outer shell and the base, and the control unit and the wiring unit are both installed in the receiving cavity.

[0049] The control unit may be a conventional control unit, which may include a circuit board and a control module mounted on the circuit board. The control unit is used to control the normal operation of the operating unit and the wiring unit.

[0050] The wiring unit may be a conventional wiring unit, which includes a plurality of wiring terminals 12, such as Figure 1 As shown, the connection terminal 12 can be two connection ports, and the connection terminal 12 is used to connect external wires.

[0051] There are several holes on the top plate 1 of the outer shell, and the operating unit passes through the holes. The heat dissipation plate 5 and the top plate 1 are integrally formed. The heat dissipation plate 5 and the top plate 1 are perpendicular to each other. The first heat dissipation hole 6 on the heat dissipation plate 5 is used to dissipate the heat generated by the internal components of the outer shell.

[0052] The first L-shaped side panel 2 is connected to the peripheral edge of the bottom of the heat dissipation plate 5, and the second L-shaped side panel 3 is connected to the peripheral edge of the bottom of the first L-shaped side panel 2, so that both sides of the outer shell in the X-axis direction have a stepped structure. Several wiring terminals 12 of the wiring unit are arranged on the inner side of the first L-shaped side panel 2 and the second L-shaped side panel 3, so that the wiring unit of the outer shell is in a double row, thereby increasing the number of wiring terminals 12 and reducing the length of the outer shell, thereby reducing the occupied space.

[0053] A reinforcing rib 10 is formed between two adjacent wiring holes 9 on the two second plates 8 on one side of the outer shell. This rib 10 serves to increase the structural strength of the outer box assembly and prevent the outer shell from breaking due to external forces. A second heat dissipation hole 11 is formed on the reinforcing rib 10 along the Z-axis to further enhance the heat dissipation effect of the outer shell.

[0054] Furthermore, it also includes:

[0055] The display screen 14 is disposed on the top plate 1 and is electrically connected to the control unit.

[0056] In this technical solution, the display screen 14 can be a conventional display screen 14, such as a liquid crystal display screen 14. The display screen 14 can display the current working status of the intelligent lighting control module, which is more convenient to use.

[0057] Furthermore, the operating unit includes:

[0058] A plurality of operating buttons 15 are provided on the top plate 1;

[0059] A plurality of indicator lights 16 are disposed on the top plate 1 .

[0060] In this technical solution, a plurality of button holes are provided on the top plate 1 for installing operation buttons 15. The operation buttons 15 can control the lighting control module, and the indicator light 16 displays the current working status.

[0061] Example 2:

[0062] This embodiment provides an intelligent lighting control module, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0063] The first heat dissipation holes 6 and the second heat dissipation holes 11 both have a trapezoidal hole structure.

[0064] In this technical solution, the trapezoidal hole structure is relatively stable, so that the outer shell can reduce the impact on the structural strength of the outer shell while improving the heat dissipation performance.

[0065] Example 3:

[0066] This embodiment provides an intelligent lighting control module, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0067] A plurality of third heat dissipation holes 13 are provided at both ends of the second plate 8 .

[0068] In this technical solution, by providing a plurality of third heat dissipation holes 13 , the number of heat dissipation holes can be further increased, thereby further improving the heat dissipation effect.

[0069] Example 4:

[0070] This embodiment provides an intelligent lighting control module, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0071] The base is provided with a positioning groove 17 for installation on the guide rail, and a plurality of positioning members 18 are provided on one side of the positioning groove 17 on the base. A plurality of anti-slip protrusions 19 are provided on the side of the positioning groove 17 away from the positioning member 18. The positioning member 18 includes a positioning portion 181 extending outside the periphery of the base, and a positioning hole 20 is opened on the positioning portion 181.

[0072] In this technical solution, the positioning groove 17 is used to accurately position the intelligent lighting control module on the guide rail. There can be two anti-slip protrusions 19, and the anti-slip protrusions 19 are used to limit one side of the guide rail. Subsequently, the intelligent lighting control module can be further fixed by using a fastening screw through the positioning hole 20 on the positioning member 18 to prevent the intelligent lighting control module from falling off the guide rail, which is not shown in the figure.

[0073] Example 5:

[0074] This embodiment provides an intelligent lighting control module, which, in addition to the technical solutions of the above embodiments, also has the following technical features.

[0075] The positioning member 18 further includes:

[0076] The sliding portion 182 has a through hole 21 formed thereon, and two elastic buckles 22 symmetrically arranged on the sliding portion 182 and connected to the periphery of the through hole 21;

[0077] The position-limiting clamping portion 183 is provided on one end of the sliding portion 182 away from the positioning portion 181 , and a first inclined surface 23 is provided on the position-limiting clamping portion 183 ;

[0078] Among them, the base is provided with a limiting slide groove 24 connected to the positioning groove 17, the sliding part 182 is inserted into the limiting slide groove 24 and the sliding part 182 can be slidably set in the limiting slide groove 24, the limiting clamping part 183 is located on the periphery of the limiting slide groove 24, the limiting slide groove 24 is provided with a protrusion 25, and the sliding part 182 is provided with an avoidance groove 26 for avoiding the protrusion 25, and the protrusion 25 is provided with a clamping protrusion 27 on both sides of the X-axis direction. The clamping protrusion 27 is provided with a second inclined surface 28 on the side close to the limiting clamping part 183, and the elastic buckle 22 is in contact with the second inclined surface 28.

[0079] In this technical solution, the limiting groove 24 can be a T-shaped groove. After the guide rail is installed in the positioning groove 17, the intelligent lighting control module is pressed toward the guide rail, causing the positioning member 18 to slide in the limiting groove 24 under external force, causing the elastic clip 22 to abut against the second inclined surface 28. The guide rail enters the positioning groove 17 along the first inclined surface 23. The positioning member 18 is then pushed toward the positioning groove 17, causing the limiting clamping portion 183 to move above the edge of the positioning groove 17, thereby limiting the other side of the guide rail and preventing the intelligent lighting control module from falling off. A fastening screw is then inserted through the positioning hole 20 to further secure it.

[0080] When the intelligent lighting control module needs to be removed from the guide rail, first remove the fastening screws, then pull the positioning member 18 toward the outside of the base to disengage the elastic clip 22 on the sliding portion 182 from the snap-fit ​​protrusion 27, and at the same time, the limiting snap-fit ​​portion 183 slides into the limiting slide groove 24, and the intelligent lighting control module can be removed from the guide rail.

[0081] By pressing the intelligent lighting control module toward the guide rail, the positioning member 18 slides in the limiting slide groove 24 under the external force, so that the elastic clip 22 is engaged with the engaging protrusion 27, and then the limiting engaging portion 183 limits the guide rail, thereby facilitating the installation and removal of the intelligent lighting control module and further improving the stability of the installation.

[0082] Furthermore, a third inclined surface 29 is provided on a side of the engaging protrusion 27 away from the limiting engaging portion 183 , and an extending protrusion 33 is provided on the elastic buckle 22 , which contacts the third inclined surface 29 .

[0083] In this technical solution, the extension protrusion 33 has an inclined surface that can abut against the third inclined surface 29. Due to the elastic action of the elastic buckle 22, when the positioning portion 181 moves toward the outside of the base, the inclined surface of the extension protrusion 33 abuts against the third inclined surface 29, thereby causing the positioning member 18 to be engaged with the engaging protrusion 27. At this time, the position-limiting engaging portion 183 is located in the position-limiting sliding groove 24.

[0084] The cooperation between the extended protrusion 33 and the third inclined surface 29 can prevent the positioning member 18 from slipping due to accidental touch.

[0085] Furthermore, a limiting groove 30 is provided on the side of the protrusion 25 close to the limiting clamping portion 183, and an elastic limiting member 31 is provided on the side of the through hole 21 close to the limiting clamping portion 183, and the elastic limiting member 31 can be slidably arranged in the limiting groove 30, and a limiting groove 30 is also provided on the end of the limiting slide 24 away from the positioning groove 17, and a limiting protrusion 32 is provided on the end of the sliding portion 182 away from the positioning groove 17, and the limiting protrusion 32 can be slidably arranged in the limiting groove 30.

[0086] In this technical solution, when installing the positioning member 18 , the elastic limiting member 31 needs to pass through the protrusion 25 . Since the elastic limiting member 31 is elastic, the elastic limiting member 31 can pass through the protrusion 25 smoothly.

[0087] The elastic limiting member 31 is slidably disposed in the limiting groove 30 , and can prevent the positioning member 18 from excessively displacing out of the limiting sliding groove 24 when the positioning member 18 slides toward the outside of the base.

[0088] The limiting protrusion 32 is slidably disposed in the limiting groove 30 , and when the positioning member 18 slides toward the positioning groove 17 , it can prevent the positioning member 18 from excessively displacing and falling out of the limiting sliding groove 24 .

[0089] The embodiments of the present application are described above in conjunction with the accompanying drawings. Unless there is a conflict, the embodiments and features in the embodiments of the present application can be combined with each other. The present application is not limited to the above-mentioned specific implementation methods. The above-mentioned specific implementation methods are merely illustrative and not restrictive. Under the guidance of this application, ordinary technicians in this field can also make many forms without departing from the purpose of this application and the scope of protection of the claims, all of which are within the protection of this application.

Claims

1. An intelligent lighting control module, characterized in that: The device comprises an outer shell, a control unit and a wiring unit installed in the outer shell, a base installed at the bottom of the outer shell, and an operating unit installed on the outer shell. The outer shell has a stepped structure and comprises: A top plate (1), with heat dissipation plates (5) connected to both sides of the top plate (1) in the Y-axis direction, and a plurality of first heat dissipation holes (6) arranged in an array on the heat dissipation plates (5); Two first L-shaped side panels (2), the first L-shaped side panels (2) being connected to the peripheral edge of the bottom of the heat dissipation plate (5); Two second L-shaped side panels (3), the second L-shaped side panels (3) being connected to the peripheral edge of the bottom of the first L-shaped side panel (2); Two third side plates (4) are respectively connected to both sides of the top plate (1) in the X-axis direction; The first L-shaped side panel (2) and the second L-shaped side panel (3) both comprise a first plate body (7) arranged along the Y-axis direction and a second plate body (8) arranged along the Z-axis direction; the second plate body (8) is provided with a plurality of wiring holes (9); a reinforcing rib (10) is formed between two adjacent wiring holes (9) on the two second plate bodies (8) on one side of the outer shell; a second heat dissipation hole (11) is provided on the reinforcing rib (10) along the Z-axis direction; the wiring unit comprises a plurality of wiring terminals (12); the wiring terminals (12) are arranged on the inner sides of the first L-shaped side panel (2) and the second L-shaped side panel (3), and the wiring terminals (12) are directly opposite to the wiring holes (9); the operating unit and the wiring unit are both electrically connected to the control unit; and the operating unit is provided on the top plate (1).

2. The intelligent lighting control module according to claim 1, characterized in that: The first heat dissipation hole (6) and the second heat dissipation hole (11) both have a trapezoidal hole structure.

3. The intelligent lighting control module according to claim 1, characterized in that: A plurality of third heat dissipation holes (13) are provided at both ends of the second plate body (8).

4. The intelligent lighting control module according to claim 1, characterized in that: Also includes: A display screen (14) is provided on the top plate (1) and is electrically connected to the control unit.

5. The intelligent lighting control module according to claim 1, characterized in that: The operating unit includes: A plurality of operating buttons (15) are provided on the top plate (1); A plurality of indicator lights (16) are arranged on the top plate (1).

6. The intelligent lighting control module according to claim 1, characterized in that: The base is provided with a positioning groove (17) for being mounted on the guide rail, a plurality of positioning members (18) are provided on one side of the positioning groove (17) on the base, a plurality of anti-slip protrusions (19) are provided on the side of the positioning groove (17) away from the positioning member (18), the positioning member (18) includes a positioning portion (181) extending outside the periphery of the base, and a positioning hole (20) is provided on the positioning portion (181).

7. The intelligent lighting control module according to claim 6, characterized in that: The positioning member (18) further comprises: A sliding portion (182), wherein a through hole (21) is provided on the sliding portion (182), and two elastic buckles (22) connected to the periphery of the through hole (21) are symmetrically provided on the sliding portion (182); A position-limiting clamping portion (183) is provided on one end of the sliding portion (182) away from the positioning portion (181), and a first inclined surface (23) is provided on the position-limiting clamping portion (183); The base is provided with a limiting slide groove (24) connected to the positioning groove (17), the sliding portion (182) is inserted into the limiting slide groove (24) and the sliding portion (182) is slidably provided in the limiting slide groove (24), the limiting clamping portion (183) is located on the periphery of the limiting slide groove (24), the limiting slide groove (24) is provided with a protrusion (25), the sliding portion (182) is provided with an avoidance groove (26) for avoiding the protrusion (25), both sides of the protrusion (25) in the X-axis direction are provided with a clamping protrusion (27), a second inclined surface (28) is provided on the side of the clamping protrusion (27) close to the limiting clamping portion (183), and the elastic buckle (22) is in contact with the second inclined surface (28).

8. The intelligent lighting control module according to claim 7, characterized in that: A third inclined surface (29) is provided on the side of the clamping protrusion (27) away from the position-limiting clamping portion (183), and an extending protrusion (33) is provided on the elastic buckle (22), and the extending protrusion (33) abuts against the third inclined surface (29).

9. The intelligent lighting control module according to claim 7, characterized in that: A limiting groove (30) is provided on the protrusion (25) on one side close to the limiting clamping portion (183); an elastic limiting member (31) is provided on the side of the through hole (21) close to the limiting clamping portion (183); the elastic limiting member (31) is slidably arranged in the limiting groove (30); a limiting groove (30) is also provided on one end of the limiting sliding groove (24) away from the positioning groove (17); a limiting convex portion (32) is provided on one end of the sliding portion (182) away from the positioning groove (17); the limiting convex portion (32) is slidably arranged in the limiting groove (30).