Lamp based on intelligent controller
Through the intelligent controller and split lamp bead design, combined with mirrors, lenses and heat dissipation systems, the complex problem of traditional spotlight wiring is solved, flexible control and rapid fault positioning are achieved, and personalized lighting experience and efficient maintenance are provided.
Patent Information
- Application Number
- CN202510454815.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-11
- Publication Date
- 2025-07-04
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional spotlight installation requires complex wiring design, which leads to high construction difficulty and maintenance difficulties, difficulty in fault positioning and high maintenance costs.
The intelligent controller and split lamp bead design are adopted, and the electrical connection between the lamp bead and the control motherboard is achieved through connecting wires and plugs. Combined with the cooperation of mirrors and lenses, flexible control and precise light adjustment are achieved, and adjustment components composed of a heat dissipation system and a camera driving motor are also equipped.
Flexible control of multiple spotlights can be achieved without complex wiring, quickly positioning fault locations, reduce maintenance costs and technical difficulties, provide personalized lighting experience, and improve lighting efficiency and equipment durability.
Smart Images

Figure CN120251949A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of lamps, and particularly to a lamp based on an intelligent controller. Background Art
[0002] With the development of modern architectural aesthetics and people's continuous pursuit of indoor lighting effects, as an important tool for enhancing the spatial sense of hierarchy and highlighting decorative details, spotlights have been widely used in various indoor environments. However, while the traditional installation method of spotlights brings a rich visual experience, it also poses many challenges to installation and maintenance.
[0003] Currently, a relatively large number of spotlights are usually installed on the existing indoor ceiling. These spotlights are turned on and off through control switches to achieve various different lighting effects. To achieve this flexible and variable effect, each spotlight needs to establish an electrical connection with the control switch, which usually means complex wiring work. Specifically, the connection between the lamp and the control switch requires a series or parallel wiring design, which not only requires the construction personnel to have professional electrical knowledge, but also takes a lot of time and effort to ensure that each line is correctly connected. Especially in some places with high aesthetic requirements, the requirement of hidden wiring will further increase the construction difficulty. In addition, the complex wiring structure also brings inconvenience to later maintenance. Once a fault occurs, such as a spotlight not working properly, technicians often need to check all the lines that may be involved one by one to determine the location of the problem. Since the electrical connections between the spotlights are complex and intertwined, it makes it extremely difficult to locate the fault point, which will increase the time cost and technical difficulty of maintenance. For users, this means higher maintenance costs and longer waiting times, which will affect the user experience. Summary of the Invention
[0004] In view of this, the present invention provides a lamp based on an intelligent controller, which can overcome the disadvantages that in order to achieve flexible and variable lighting effects, each spotlight on the existing indoor ceiling needs to establish an electrical connection with the control switch, the wiring is complex, and it is difficult to quickly determine the location of the problem after a fault occurs, and the maintenance cost and technical difficulty are relatively high.
[0005] The technical solution is as follows: A lamp based on an intelligent controller includes: a mounting base fixed to the ceiling; a lampshade threadedly connected to the lower part of the mounting base; a universal ball seat connected to the bottom of the mounting base and located inside the lampshade; a reflector connected to the sphere of the universal ball seat; a connecting rod connected to the bottom of the mounting base; a horizontal lens connected to the connecting rod and located below the reflector; lamp beads arranged on the side of the lampshade; a fixing cylinder connected to the side of the lamp beads; a sliding cylinder slidably connected to the outer wall of the fixing cylinder; a first convex lens installed on the inner wall of the sliding cylinder; a second convex lens installed on the inner wall of the fixing cylinder, and the reflector, lamp beads, first convex lens and second convex lens are on the same horizontal line; a control component arranged on the ceiling for controlling the on and off of the lamp beads.
[0006] As a further preferred solution, the control component includes: a mounting cylinder fixed to the ceiling; a control main board installed on the inner wall of the mounting cylinder; a dust-proof cover connected to the top of the control main board; interfaces circumferentially and spacedly installed on the control main board; a connecting wire connected to the side of the lamp beads; a plug connected to the end of the connecting wire and the plug can be inserted into the interface; a fixing mechanism arranged on the mounting cylinder for fixing the lamp beads on the mounting cylinder; a heat dissipation mechanism arranged on the mounting cylinder for dissipating heat from the control main board.
[0007] As a further preferred solution, the fixing mechanism includes: a guide rail connected to the outer wall of the mounting cylinder; a mounting frame slidably connected to the guide rail; first bolts symmetrically and threadedly connected to the top of the mounting frame, and the lower ends of the first bolts are in contact and cooperation with the inner wall of the guide rail; a rotating block rotatably connected to the mounting frame; a second bolt threadedly connected to the top of the rotating block and the second bolt is in contact with the mounting frame; a rotating frame rotatably connected to the rotating block and the rotating frame is fixedly connected to the side of the lamp beads.
[0008] As a further preferred solution, the heat dissipation mechanism includes: first heat dissipation fins circumferentially and spacedly connected to the bottom of the control main board; a blower installed on the inner wall of the mounting cylinder and the blower is located below the first heat dissipation fins.
[0009] As a further preferred solution, it further includes: a filter screen connected to the inner wall of the mounting cylinder and the filter screen is located below the blower.
[0010] As a further preferred solution, it further includes: cameras circumferentially and spacedly installed on the outer wall of the mounting cylinder; a driving motor installed on the side of the rotating block; a worm connected to the output shaft of the driving motor; a worm gear connected to the rotating shaft of the rotating frame and the worm gear meshes with the worm; a focusing mechanism arranged on the lamp beads for adjusting the distance between the second convex lens and the first convex lens.
[0011] As a further preferred solution, the focusing mechanism includes: a connecting block connected to the side of the lamp bead; a servo motor installed at the bottom of the connecting block; a screw rod connected to the output shaft of the servo motor; a sliding sleeve connected to the bottom of the sliding cylinder, and the sliding sleeve is threadedly connected to the screw rod.
[0012] As a further preferred solution, it further includes: a second heat sink circumferentially and spacedly connected to the side of the lamp bead.
[0013] The present invention has the following advantages: 1. The present invention realizes the control of the lamp beads through the intelligent controller, and can flexibly control multiple spotlights without complex wiring design. Specifically, the lamp beads are directly connected to the interfaces on the control main board through connecting wires and plugs, and the lamp beads and the lampshade adopt a split design, which can avoid the complex wiring work of series or parallel connection between each spotlight and the control switch in traditional lamps. Through the cooperation of the reflector, the horizontal lens, the first convex lens and the second convex lens, a good lighting effect can also be achieved. In addition, when the lamp fails, due to the simple and clear connection method between the lamp bead and the control main board, technicians can quickly locate the problem position, which can greatly reduce the maintenance time cost and technical difficulty.
[0014] 2. The reflector of the present invention is installed on the universal ball seat, allowing users to adjust the tilt angle of the reflector by unscrewing the lampshade, so as to precisely control the direction and irradiation range of the light. At the same time, through the adjustment component composed of the camera and the driving motor, it can real-time monitor the activities of indoor personnel and automatically adjust the angle of the lamp beads accordingly to avoid direct downward irradiation, thus solving the problem of screen reflection when using mobile phones or other electronic devices. In addition, by driving the screw rod to rotate by the servo motor to adjust the distance between the first convex lens and the second convex lens, the width and intensity of the light beam can be adjusted according to the specific needs of users, providing a personalized lighting experience, which can not only meet the basic lighting needs but also improve the visual comfort of users.
[0015] 3. The present invention is equipped with a set of efficient heat dissipation systems, including the first heat sink and the fan arranged at the bottom of the control main board, ensuring that the temperature of the control main board remains within a safe range during long-term operation. At the same time, the filter screen can prevent dust from entering the inside of the installation cylinder, protecting the internal electronic components from pollution. The second heat sink is provided on the side of the lamp bead, which can further improve the heat dissipation efficiency, ensure the long-term stable operation of the lamp, and extend the service life of the product. The overall design can not only improve the working efficiency of the lamp but also enhance its durability and reliability. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.
[0017] Figure 2 It is an installation schematic diagram of the universal ball seat, the reflector, the connecting rod and the horizontal lens of the present invention.
[0018] Figure 3 This is a schematic diagram of the specific structures of the lamp beads, fixed cylinder, sliding cylinder and first convex lens of the present invention.
[0019] Figure 4 This is an installation schematic diagram of the second convex lens of the present invention.
[0020] Figure 5 This is a schematic diagram of the specific structure of the control component of the present invention.
[0021] Figure 6 This is an installation schematic diagram of the first bolt, rotating block, second bolt and rotating frame of the present invention.
[0022] Figure 7 This is an installation schematic diagram of the first heat sink, fan, filter screen and camera of the present invention.
[0023] Figure 8 This is an installation schematic diagram of the drive motor, worm, worm gear and focusing mechanism of the present invention.
[0024] Figure 9 This is an installation schematic diagram of the second heat sink of the present invention.
[0025] Wherein: 1 - mounting base, 2 - lamp shade, 3 - universal ball seat, 4 - reflecting mirror, 5 - connecting rod, 6 - horizontal lens, 7 - lamp bead, 8 - fixed cylinder, 9 - sliding cylinder, 10 - first convex lens, 11 - second convex lens, 12 - mounting cylinder, 13 - control main board, 14 - dust cover, 15 - interface, 16 - connecting wire, 17 - plug, 18 - guide rail, 19 - mounting rack, 20 - first bolt, 21 - rotating block, 22 - second bolt, 23 - rotating frame, 24 - first heat sink, 25 - fan, 26 - filter screen, 27 - camera, 28 - drive motor, 29 - worm, 30 - worm gear, 31 - connecting block, 32 - servo motor, 33 - screw rod, 34 - sliding sleeve, 35 - second heat sink. Specific Embodiments
[0026] The following will further illustrate the present invention in conjunction with specific embodiments. It should also be noted that unless otherwise clearly specified and limited, terms such as: set, install, connect, and link should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the internal communication of two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0027] Embodiment: A lamp based on an intelligent controller, such as Figures 1-7As shown in the figure, it includes a mounting base 1, a lamp shade 2, a universal ball seat 3, a reflector 4, a connecting rod 5, a horizontal lens 6, a lamp bead 7, a fixed cylinder 8, a sliding cylinder 9, a first convex lens 10, a second convex lens 11 and a control component. There are three mounting holes circumferentially spaced on the mounting base 1, so that workers can install the mounting base 1 on the ceiling through bolts. The lower part of the mounting base 1 is threadedly connected with the lamp shade 2, and the lamp shade 2 is made of transparent material. In the middle of the bottom of the mounting base 1, a universal ball seat 3 is installed, and the universal ball seat 3 is located inside the lamp shade 2. There is a rubber ring (not shown in the figure) between the base and the ball of the universal ball seat 3. Through the friction between the ball and the rubber ring, the ball can be prevented from rotating randomly. The ball of the universal ball seat 3 is connected with the reflector 4, and the reflector 4 is inclined. The right side of the bottom of the mounting base 1 is connected with a connecting rod 5. The shape of the connecting rod 5 is an inverted L shape, and the lower part of the connecting rod 5 is connected with a horizontal lens 6. The horizontal lens 6 is located below the reflector 4. The lamp bead 7 is arranged on the side of the lamp shade 2. The right side of the lamp bead 7 is connected with a fixed cylinder 8. The outer wall of the fixed cylinder 8 is slidably connected with a sliding cylinder 9, and both the left and right sides of the fixed cylinder 8 and the sliding cylinder 9 are of an open design. The inner wall of the sliding cylinder 9 is connected with a first convex lens 10, and the inner wall of the fixed cylinder 8 is connected with a second convex lens 11. The reflector 4, the lamp bead 7, the first convex lens 10 and the second convex lens 11 are on the same horizontal line, so that the light emitted by the lamp bead 7 can pass through the second convex lens 11, the first convex lens 10 and the lamp shade 2 in sequence and irradiate on the reflector 4. The control component is used to control the on and off of the lamp bead 7.
[0028] As Figures 5-7As shown in the figure, the control component includes an installation cylinder 12, a control main board 13, a dust-proof cover 14, an interface 15, a connecting wire 16, a plug 17, a fixing mechanism and a heat dissipation mechanism. A plurality of installation holes are circumferentially spaced apart at the top of the installation cylinder 12, so that workers can install the installation cylinder 12 on the ceiling through bolts. The upper part of the inner wall of the installation cylinder 12 is provided with a control main board 13. The top of the control main board 13 is connected with a dust-proof cover 14. A plurality of interfaces 15 are circumferentially spaced and installed on the outer edge of the top of the control main board 13. The left side of the lamp bead 7 is connected with a connecting wire 16. The left end of the connecting wire 16 is connected with a plug 17, and the plug 17 can be inserted into the interface 15, so that the lamp bead 7 can be electrically connected with the control main board 13 through the connecting wire 16, the plug 17 and the interface 15. The fixing mechanism is used to fix the lamp bead 7 on the installation cylinder 12, and the heat dissipation mechanism is used to dissipate heat from the control main board 13; The fixing mechanism includes a guide rail 18, an installation frame 19, a first bolt 20, a rotating block 21, a second bolt 22 and a rotating frame 23. The middle part of the outer wall of the installation cylinder 12 is connected with a guide rail 18. The installation frame 19 is slidably connected to the guide rail 18. Two first bolts 20 are symmetrically and threadedly connected to the top of the installation frame 19, and the lower ends of the first bolts 20 are located inside the guide rail 18. The cooperation between the first bolt 20 and the installation frame 19 can limit the installation frame 19, so that the installation frame 19 can only slide along the guide rail 18 to adjust its position, and the installation frame 19 will not be separated from the guide rail 18. The right part of the installation frame 19 is rotatably connected with a rotating block 21, and the top of the rotating block 21 is threadedly connected with a second bolt 22. The second bolt 22 penetrates through the right part of the installation frame 19, and the upper part of the second bolt 22 contacts the top of the installation frame 19. The rotating block 21 can be locked by the friction force between the second bolt 22 and the installation frame 19. The right part of the rotating block 21 is rotatably connected with a rotating frame 23, and the right side of the rotating frame 23 is fixedly connected with the left side of the lamp bead 7; The heat dissipation mechanism includes a first heat sink 24, a fan 25 and a filter screen 26. A plurality of first heat sinks 24 are circumferentially spaced and connected to the bottom of the control main board 13. The lower part of the inner wall of the installation cylinder 12 is connected with a fan 25 and a filter screen 26. The fan 25 is located below the first heat sink 24, the filter screen 26 is located below the fan 25, and a plurality of air outlets are circumferentially spaced in the middle of the installation cylinder 12. The air outlets are located outside the first heat sink 24.
[0029] First, install the installation cylinder 12 at the center of the ceiling. Then, select an appropriate number of mounting bases 1 and lamp beads 7 according to user needs and preferences, and install each mounting base 1 at the designated position on the ceiling. Next, according to the installation position of the mounting base 1, place each mounting bracket 19 on the guide rail 18. Then, the mounting bracket 19 can be slid along the guide rail 18. The mounting bracket 19 can drive the rotating block 21, the rotating bracket 23, and the lamp bead 7 to slide along the guide rail 18 to adjust the position of the lamp bead 7. The rotating block 21 can also be rotated horizontally, so as to drive the rotating bracket 23 and the lamp bead 7 to rotate horizontally to adjust the angle of the lamp bead 7, so that each lamp bead 7 can be aligned with its corresponding mounting base 1. Then, tighten the first bolt 20 and the second bolt 22, so that the lower end of the first bolt 20 contacts the inner bottom of the guide rail 18, and the upper part of the second bolt 22 can tightly press on the top of the mounting bracket 19, so as to lock the position and angle of each lamp bead 7. Next, insert the plug 17 into the nearest interface 15 to complete the electrical connection between the lamp bead 7 and the control main board 13. Then, each lamp bead 7 can be controlled to turn on and off through the control main board 13. When the lamp bead 7 is started, the light emitted by the lamp bead 7 will shine on the corresponding second convex lens 11. The second convex lens 11 can collect the light emitted by the lamp bead 7 and convert it into parallel light rays to shine on the first convex lens 10. The first convex lens 10 can receive and further focus the parallel light rays generated by the second convex lens 11 to form a compact light beam, and make the light beam pass through the corresponding lamp cover 2 and shine on the reflector 4. The reflector 4 can reflect the compact light beam through the horizontal lens 6. The horizontal lens 6 can diverge the compact light beam and shine it downward to provide lighting for the room. In this way, there is no need to carry out complex wiring work on the ceiling, which saves time and effort and also reduces the maintenance difficulty. Moreover, the position of the lamp cover 2 can be adjusted arbitrarily according to user needs. When the lighting angle needs to be adjusted, the user can unscrew the lamp cover 2 and then manually adjust the tilt angle of the reflector 4 according to actual needs. Since the reflector 4 is located on the universal ball seat 3, it can flexibly change its orientation, so as to accurately control the direction and irradiation range of the light. By adjusting the tilt angle of the reflector 4, the final lighting angle and distribution pattern can be effectively changed to meet diverse lighting needs. After the adjustment is completed, just reinstall the lamp cover 2 back to its original position. During the operation of the control main board 13, the fan 25 and the first heat sink 24 cooperate to dissipate heat from the control main board 13, which can prevent the control main board 13 from being burned out due to the high temperature generated during operation. The filter screen 26 can filter the air entering the interior of the installation cylinder 12 to prevent dust from entering the installation cylinder 12.
[0030] Since the spotlights in the room usually emit light directly downward, when people use electronic products with screens such as mobile phones indoors, the light emitted by the spotlights will directly produce a strong reflective effect on the screens of the electronic products, which will affect people's viewing of the screens of the electronic products. Therefore, an adjustment component is designed; as Figure 7 andFigure 8 As shown in the figure, the adjustment assembly includes a camera 27, a drive motor 28, a worm 29, a worm gear 30 and a focusing mechanism. Four cameras 27 are symmetrically installed at the lower part of the outer wall of the installation cylinder 12. The four cameras 27 are distributed on the front, rear, left and right sides. A drive motor 28 is installed at the lower part of the rotating block 21. A worm 29 is connected to the output shaft of the drive motor 28. A worm gear 30 is connected to the rotating shaft of the rotating frame 23, and the worm gear 30 meshes with the worm 29. The focusing mechanism is used to adjust the distance between the second convex lens 11 and the first convex lens 10. The focusing mechanism includes a connecting block 31, a servo motor 32, a screw 33 and a sliding sleeve 34. A connecting block 31 is connected to the lower left side of the lamp bead 7. A servo motor 32 is installed at the bottom of the connecting block 31. A screw 33 is connected to the output shaft of the servo motor 32. A sliding sleeve 34 is connected to the bottom of the sliding cylinder 9, and the sliding sleeve 34 is threadedly connected to the screw 33.
[0031] After the installation cylinder 12 is installed at the center position of the ceiling, the four cameras 27 can capture the situation of the entire indoor area. When a camera 27 detects someone in a certain area, the camera 27 can feedback the monitoring information to the control main board 13. The control main board 13 can control the drive motor 28 in the corresponding area to drive the worm 29 to rotate. The worm 29 can drive the worm gear 30 to rotate. The worm gear 30 can drive the rotating frame 23 to swing upward. The rotating frame 23 can drive the corresponding lamp bead 7 to swing upward, so that the light beam emitted by the lamp bead 7 no longer shines on the reflecting mirror 4, and the light beam directly shines on the ceiling. At the same time, the control main board 13 can control the servo motor 32 in the corresponding area to drive the screw 33 to rotate. The screw 33 can drive the sliding sleeve 34 to move away from the installation cylinder 12. The sliding sleeve 34 can drive the sliding cylinder 9 and the second convex lens 11 to move away from the installation cylinder 12. In this way, the distance between the second convex lens 11 and the first convex lens 10 can be increased, so that the light beam shining on the ceiling can be dispersed, and the ceiling reflection can also provide lighting for the indoor area. Moreover, when people in this area use electronic products with screens such as mobile phones, there will be no strong reflection effect on the screens of the electronic products, ensuring people's visual experience. When the camera 27 detects that there is no one in this area, the control main board 13 can control the drive motor 28 in the corresponding area to drive the worm 29 to reverse. The worm 29 can drive the worm gear 30 to reverse. The worm gear 30 can drive the rotating frame 23 to swing downward to reset. The rotating frame 23 can drive the corresponding lamp bead 7 to swing downward to reset, so that the light beam emitted by the lamp bead 7 shines on the reflecting mirror 4 again. At the same time, the control main board 13 can control the servo motor 32 in the corresponding area to drive the screw 33 to reverse. The screw 33 can drive the sliding sleeve 34, the sliding cylinder 9 and the second convex lens 11 to move closer to the installation cylinder 12 to reset, so as to restore the distance between the second convex lens 11 and the first convex lens 10, thereby providing a better lighting effect.
[0032] As Figure 9As shown, it further includes a second heat sink 35. A plurality of second heat sinks 35 are circumferentially and spacedly connected to the left edge of the lamp bead 7. The second heat sink 35 can dissipate heat from the lamp bead 7 when the lamp bead 7 is working, preventing it from being burned out due to the high temperature generated during operation.
[0033] The technical principles of the embodiments of the present invention have been described above in conjunction with specific embodiments. These descriptions are only for explaining the principles of the embodiments of the present invention and cannot be construed in any way as limiting the protection scope of the embodiments of the present invention. Based on the explanations herein, those skilled in the art can readily conceive of other specific implementation manners of the embodiments of the present invention without creative efforts, and these manners will fall within the protection scope of the embodiments of the present invention.
Claims
1. A lamp based on an intelligent controller, comprising: a mounting base (1) fixed to the ceiling; a lampshade (2) threadedly connected to the lower part of the mounting base (1); characterized in that, It also includes: a universal ball seat (3), connected to the bottom of the mounting base (1), and the universal ball seat (3) is located inside the lamp shade (2); a reflector (4), connected to the sphere of the universal ball seat (3); a connecting rod (5), connected to the bottom of the mounting base (1); a horizontal lens (6), connected to the connecting rod (5), and the horizontal lens (6) is located below the reflector (4); a lamp bead (7), arranged on the side of the lamp shade (2); a fixing cylinder (8), connected to the side of the lamp bead (7); a sliding cylinder (9), slidably connected to the outer wall of the fixing cylinder (8); a first convex lens (10), installed on the inner wall of the sliding cylinder (9); a second convex lens (11), installed on the inner wall of the fixing cylinder (8), and the reflector (4), the lamp bead (7), the first convex lens (10) and the second convex lens (11) are on the same horizontal line; a control component, arranged on the ceiling for controlling the on / off of the lamp bead (7).
2. The luminaire based on an intelligent controller according to claim 1, characterized in that, The control component includes: a mounting cylinder (12), fixed to the ceiling; a control main board (13), installed on the inner wall of the mounting cylinder (12); a dust-proof cover (14), connected to the top of the control main board (13); interfaces (15), circumferentially and spacedly installed on the control main board (13); a connecting wire (16), connected to the side of the lamp bead (7); a plug (17), connected to the end of the connecting wire (16), and the plug (17) can be inserted into the interface (15); a fixing mechanism, arranged on the mounting cylinder (12) for fixing the lamp bead (7) on the mounting cylinder (12); a heat dissipation mechanism, arranged on the mounting cylinder (12) for dissipating heat from the control main board (13).
3. The luminaire based on an intelligent controller according to claim 2, wherein, The fixing mechanism includes: a guide rail (18), connected to the outer wall of the mounting cylinder (12); a mounting frame (19), slidably connected to the guide rail (18); first bolts (20), symmetrically and threadedly connected to the top of the mounting frame (19), and the lower ends of the first bolts (20) are in contact and cooperation with the inner wall of the guide rail (18); a rotating block (21), rotatably connected to the mounting frame (19); a second bolt (22), threadedly connected to the top of the rotating block (21), and the second bolt (22) is in contact and cooperation with the mounting frame (19); a rotating frame (23), rotatably connected to the rotating block (21), and the rotating frame (23) is fixedly connected to the side of the lamp bead (7).
4. The luminaire based on an intelligent controller according to claim 3, characterized in that, The heat dissipation mechanism includes: first heat dissipation fins (24), circumferentially and spacedly connected to the bottom of the control main board (13); a blower (25), installed on the inner wall of the mounting cylinder (12), and the blower (25) is located below the first heat dissipation fins (24).
5. The luminaire based on an intelligent controller according to claim 4, wherein It also includes: a filter screen (26), connected to the inner wall of the mounting cylinder (12), and the filter screen (26) is located below the blower (25).
6. The luminaire based on an intelligent controller according to claim 5, characterized in that, It further includes: a camera (27) installed circumferentially and spaced apart on the outer wall of the mounting cylinder (12); a drive motor (28) installed on the side of the rotating block (21); a worm (29) connected to the output shaft of the drive motor (28); a worm gear (30) connected to the rotating shaft of the rotating frame (23), and the worm gear (30) meshes with the worm (29); a focusing mechanism provided on the lamp bead (7) for adjusting the distance between the second convex lens (11) and the first convex lens (10).
7. The luminaire based on an intelligent controller according to claim 6, wherein, The focusing mechanism includes: a connecting block (31) connected to the side of the lamp bead (7); a servo motor (32) installed at the bottom of the connecting block (31); a screw rod (33) connected to the output shaft of the servo motor (32); a sliding sleeve (34) connected to the bottom of the sliding cylinder (9), and the sliding sleeve (34) is threadedly connected to the screw rod (33).
8. The luminaire based on an intelligent controller according to claim 7, wherein, It further includes: a second heat sink (35) connected circumferentially and spaced apart on the side of the lamp bead (7).