360-degree rotating spotlight based on Internet of Things control

The design, which combines a boom, cylinder, turntable, drive assembly, and magnet, solves the problem of inconvenient spotlight installation, enabling easy installation and disassembly, and improving rotational stability and maintenance convenience.

CN223939372UActive Publication Date: 2026-02-24ZHEJIANG LIPER LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202520699424.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2026-02-24
Estimated Expiration
2035-04-14

AI Technical Summary

Technical Problem

The existing spotlights lack an installation structure, making installation and disassembly inconvenient, and there is a lack of convenient maintenance methods.

Method used

The system employs a combined structure of a boom, cylinder, turntable, drive assembly A, and drive assembly B, along with a design incorporating magnets and electric slip rings. This allows for 360° rotation of the spotlight and convenient installation and disassembly. Limiting and releasing are achieved by switching the polarity of the magnets, and the use of electric slip rings prevents exposed cables.

Benefits of technology

It enables convenient installation and removal of spotlights, improves rotational stability and maintenance convenience, and ensures ease of installation and smooth rotation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of spot lamps, in particular to a 360-degree rotating spot lamp based on Internet of Things control, which comprises a spot lamp body, a cylinder, a fixing plate, a mounting plate and a circular ring. A hanging rod is rotationally arranged on the spotlight body; a turntable is rotatably arranged on the cylinder, the suspender is connected with the turntable, and a driving assembly B is arranged on the cylinder; the fixing plate is arranged on the cylinder, two sliding blocks are symmetrically arranged on the fixing plate, and the sides, away from each other, of the two sliding blocks are each provided with a magnet A; a cylindrical pipe is coaxially arranged on the mounting plate, the top end of the cylinder is inserted into the cylindrical pipe, two insertion holes are symmetrically formed in the cylindrical pipe, and the magnets A are inserted into the insertion holes in the corresponding sides; the circular ring is arranged on the cylindrical pipe in a sleeving mode and coaxially rotates with the cylindrical pipe, and two magnets B and two magnets C are arranged on the inner wall of the circular ring. According to the utility model, the cylinder can be quickly dismounted from the mounting plate, the dismounting operation is simple and convenient, and meanwhile, the irradiation angle of the spotlight in the vertical direction can be adjusted.
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Description

Technical Field

[0001] This utility model relates to the field of spotlight technology, and in particular to a 360° rotating spotlight controlled by the Internet of Things. Background Technology

[0002] A spotlight is a type of focused lighting fixture that can concentrate light onto a specific area, emphasizing or highlighting the details and texture of the illuminated object.

[0003] Chinese patent CN214275455U discloses a 360° rotating LED spotlight. The LED spotlight adopts a dual-motor structure. The first motor and the second motor can realize the longitudinal rotation and lateral rotation of the lamp body respectively, effectively expanding the lighting range of the LED spotlight and improving the functionality of the lamp body. At the same time, the motors are automatically controlled by the circuit board.

[0004] However, the device still has shortcomings: the spotlight lacks a specific installation structure, and the installation and disassembly of the existing spotlights are inconvenient when installed on site because the spotlight and the mounting plate are an integral structure. Utility Model Content

[0005] The purpose of this invention is to address the problems existing in the background technology by proposing a 360° rotating spotlight controlled by the Internet of Things.

[0006] The technical solution of this utility model is: a 360° rotating spotlight controlled by the Internet of Things, including a spotlight body, a hanging rod rotatably mounted on the spotlight body, and a drive component A inside the spotlight body that drives it to rotate around the axis of the shaft mounted on the hanging rod;

[0007] A cylinder with a turntable that rotates coaxially on it; the end of the rod away from the spotlight body is connected to the turntable; and a drive component B for driving the turntable to rotate is provided on the cylinder.

[0008] A fixed plate is set on a cylinder. Two sliders are symmetrically arranged on the fixed plate and slidably connected to it. A magnet A is set on the side of the two sliders that are far apart from each other. The magnetic poles of the two magnets A are the same at the opposite ends.

[0009] Mounting plate, on which a cylindrical tube is coaxially mounted. The top of the cylinder is inserted into the cylindrical tube and slidably connected to its inner wall. Two symmetrical insertion holes are provided on the cylindrical tube. Magnets A on both sides are inserted into the corresponding insertion holes and slide along their radial direction.

[0010] And a ring, which is fitted onto a cylindrical tube and rotates coaxially with it. Two magnets B and two magnets C are set on the inner wall of the ring. The magnetic poles of the two magnets B are the same at the opposite ends, and the magnetic poles of the two magnets C are the same at the opposite ends. The magnetic poles of magnets B and magnets C are opposite to the end of the ring's axis.

[0011] Preferably, the spotlight body is provided with an air inlet and an air outlet, and a heat sink is provided inside the spotlight body, with the outlet of the heat sink facing the air outlet.

[0012] Preferably, the drive component A includes a motor A, a gear A, and a gear B; the body of the motor A is disposed in the body of the spotlight, the gear A is coaxially connected to the output shaft of the motor A, the gear B is coaxially connected to the mounting shaft, and the gear B meshes with the gear A.

[0013] Preferably, the drive assembly B includes a motor B; an internal gear ring coaxial with the turntable is provided on the turntable, and a gear C is rotatably provided on the cylinder, the gear C being located inside the internal gear ring and meshing with it.

[0014] Preferably, a controller is mounted on the cylinder, and an electric slip ring A, which rotates coaxially with the cylinder, is mounted on the mounting shaft. The electric slip ring A is connected to the spotlight body. An electric slip ring B, which is coaxial with the cylinder, is mounted on the turntable. A cable is installed inside the rod, and the cable is electrically connected to both the electric slip ring A and the electric slip ring B. The spotlight body and the controller are electrically connected through the electric slip ring A, the electric slip ring B, and the cable.

[0015] Preferably, a male connector is provided on the fixed plate, which is electrically connected to the controller, and a female connector adapted to the male connector is provided on the mounting plate.

[0016] Preferably, an indicator block is provided on the ring, a positioning pointer is provided on the cylindrical tube, and a locking knob is provided on the indicator block that is screwed to it, with the screw end face of the locking knob abutting against the arc surface of the cylindrical tube.

[0017] Compared with the prior art, the present invention has the following beneficial technical effects:

[0018] By configuring the hanging rod, cylinder, turntable, drive component A, and drive component B in a coordinated structure, this spotlight can rotate 360° horizontally and adjust the illumination angle appropriately in the vertical direction. The coordinated structure of slip rings A and B eliminates exposed cables, improving the stability of the spotlight during rotation. The cylinder, mounting plate, and cylindrical tube are configured with a sliding magnet A on the cylinder and an insertion hole on the cylindrical tube. A ring with magnets B and C is also mounted on the cylindrical tube. Rotating the ring switches the orientation of magnet B or magnet C relative to magnet A, thereby changing the polarity of the magnet opposite to A to control whether magnet A engages or disengages from the insertion hole. This allows for rapid positioning and release of the cylinder and cylindrical tube, facilitating the disassembly and assembly of the cylinder and, consequently, the maintenance or replacement of the spotlight itself. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the structure of one embodiment of the present utility model;

[0020] Figure 2 This is a schematic diagram of the connection structure of the various components on the spotlight body;

[0021] Figure 3 This is a schematic diagram of the connection structure between the cylinder and the hanger.

[0022] Figure 4 A schematic diagram of the connection structure of each component on the mounting plate;

[0023] Figure 5 This is a schematic diagram of the connection structure of the various components on the ring.

[0024] Reference numerals: 1. Spotlight body; 101. Air inlet; 102. Exhaust outlet; 2. Radiator; 3. Hanging rod; 31. Mounting shaft; 32. Electric slip ring A; 4. Drive assembly A; 41. Motor A; 42. Gear A; 43. Gear B; 5. Cylinder; 51. Gear C; 6. Turntable; 61. Internal gear ring; 62. Electric slip ring B; 7. Controller; 8. Motor B; 9. Fixing plate; 10. Male connector; 11. Slider; 12. Magnet A; 13. Mounting plate; 14. Cylindrical tube; 141. Socket; 142. Positioning pointer; 15. Female connector; 16. Ring; 17. Magnet B; 18. Magnet C; 19. Indicator block; 20. Locking knob. Detailed Implementation

[0025] Example 1

[0026] like Figures 1-5As shown, this utility model proposes a 360° rotating spotlight controlled by the Internet of Things, including a spotlight body 1, a cylinder 5, a fixing plate 9, a mounting plate 13, and a ring 16. A hanging rod 3 is rotatably mounted on the spotlight body 1, and a drive assembly A4 is installed inside the spotlight body 1 to drive the rod 3 to rotate around the axis of a mounting shaft 31 on the hanging rod 3. The drive assembly A4 includes a motor A41, a gear A42, and a gear B43. The motor A41 is housed inside the spotlight body 1, the gear A42 is coaxially connected to the output shaft of the motor A41, and the gear B43 is coaxially connected to the mounting shaft 31, meshing with the gear A42. A turntable 6 is mounted on the cylinder 5 and rotates coaxially with it. The end of the hanging rod 3 away from the spotlight body 1 is connected to the turntable 6, and a drive assembly B is mounted on the cylinder 5 to drive the turntable 6 to rotate. The drive assembly B includes a motor B8. An internal gear ring 61, coaxial with the turntable 6, is mounted on the cylinder 5. A gear C51 rotatably rotates on the cylinder 5, located inside and meshing with the internal gear ring 61. A controller 7, a PLC controller, is mounted on the cylinder 5. An electric slip ring A32, coaxial with the mounting shaft 31, is mounted on the mounting shaft 31. A circuit board is located inside the spotlight body 1, and the electric slip ring A32 is electrically connected to the circuit board inside the spotlight body 1. An electric slip ring B62, coaxial with the turntable 6, is mounted on the turntable 6 and connected to the cylinder 5. A cable is located inside the hanging rod 3, and the cable is electrically connected to both the electric slip ring A32 and the electric slip ring B62. The spotlight body 1 and the controller 7 are electrically connected via the electric slip ring A32, the electric slip ring B62, and the cable. A male connector 10 is mounted on the fixing plate 9, electrically connected to the controller 7. A female connector 15, compatible with the male connector 10, is mounted on the mounting plate 13. A fixing plate 9 is mounted on a cylinder 5. Two sliders 11 are symmetrically arranged on the fixing plate 9 and slidably connected to it. A magnet A12 is set on the side of the two sliders 11 that are far apart from each other. The magnetic poles of the two magnets A12 are the same at opposite ends. A cylindrical tube 14 is coaxially mounted on a mounting plate 13. The top of the cylinder 5 is inserted into the cylindrical tube 14 and slidably connected to its inner wall. Two insertion holes 141 are symmetrically arranged on the cylindrical tube 14. The magnets A12 on both sides are inserted into the corresponding insertion holes 141 and slide radially. A ring 16 is fitted on the cylindrical tube 14 and rotates coaxially with it. Two magnets B17 and two magnets C18 are set on the inner wall of the ring 16. The magnetic poles of the two magnets B17 are the same at opposite ends, and the magnetic poles of the two magnets C18 are the same at opposite ends. The magnetic poles of the magnets B17 and C18 pointing towards the center of the ring 16 are opposite.

[0027] In this embodiment, during installation, the mounting plate 13 is first fixed at the installation point and connected to the external circuit. The mounting plate 13 is lightweight and easy to install. Then, the male plug 10 is aligned with the female plug 15, and the cylinder 5 is inserted into the cylindrical tube 14. At this time, the magnets A12 on both sides are aligned with the corresponding plug holes 141. Then, the ring 16 is rotated so that the magnet B17 is aligned with the plug hole 141. Since the magnetic poles of the magnet B17 and the magnet A12 are opposite at the near end, according to the principle of magnets attracting each other, the magnet A12 slides into the plug hole 141 under the attraction of the magnet B17, thereby achieving anti-slip limiting of the cylinder 5 and the cylindrical tube 14. When it is necessary to remove the cylinder 5, rotate the ring 16 to align the magnet C18 with the socket 141. At this time, since the magnetic poles of the near ends of magnet C18 and magnet A12 are the same, according to the principle of repulsion between like poles, magnet A12 is repelled by the repulsive force of magnet C18 and detaches from the socket 141 and retracts into the fixing plate 9, thereby realizing the limiting and unlocking of cylinder 5 and cylindrical tube 14. In this embodiment, the circuit board inside the spotlight body 1 is connected to the controller 7 through the slip rings A32 and B62 and cables to avoid exposed cables and ensure the smooth rotation of the spotlight.

[0028] Example 2

[0029] like Figure 1 and Figure 2 As shown, the present invention proposes a 360° rotating spotlight controlled by the Internet of Things. Compared with the first embodiment, the spotlight body 1 is provided with an air inlet 101 and an exhaust 102, and a heat sink 2 is provided inside the spotlight body 1, with the outlet of the heat sink 2 facing the exhaust 102.

[0030] In this embodiment, the spotlight generates a lot of heat when it is working. The heat sink 2 blows air towards the outside of the exhaust port 102, so that the outside air enters the spotlight body 1 along the air inlet 101 and exchanges heat with the internal circuit board and the heat dissipation fins of the lamp beads, thereby quickly cooling down the spotlight body 1 and extending the service life of the spotlight.

[0031] Example 3

[0032] like Figure 1 , Figure 4 and Figure 5 As shown, the present invention proposes a 360° rotating spotlight controlled by the Internet of Things. Compared with the first embodiment, the ring 16 is provided with an indicator block 19, the cylindrical tube 14 is provided with a positioning pointer 142, and the indicator block 19 is provided with a locking knob 20 that is spirally connected to it. The screw end face of the locking knob 20 abuts against the arc surface of the cylindrical tube 14.

[0033] In this embodiment, by rotating the locking knob 20, the end face of its threaded section is pressed against the outer wall of the cylindrical tube 14, thereby effectively preventing the ring 16 from rotating automatically, and further improving the connection stability between the cylinder 5 and the cylindrical tube 14.

[0034] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made within the scope of knowledge possessed by those skilled in the art without departing from the spirit of the present invention.

Claims

1. A 360° rotating spotlight controlled by the Internet of Things, characterized in that, include: The spotlight body (1) has a rotatable rod (3) mounted on it, and a drive assembly A (4) is installed inside the spotlight body (1) to drive it to rotate around the axis of the mounting shaft (31) on the rod (3). A cylinder (5) is provided with a turntable (6) that rotates coaxially with it. The end of the rod (3) away from the spotlight body (1) is connected to the turntable (6), and a drive assembly B for driving the turntable (6) to rotate is provided on the cylinder (5). A fixed plate (9) is set on a cylinder (5). Two sliders (11) are symmetrically arranged on the fixed plate (9) and slidably connected to it. A magnet A (12) is set on the side of the two sliders (11) that are far apart from each other. The magnetic poles of the two magnets A (12) are the same at opposite ends. Mounting plate (13), on which a cylindrical tube (14) is coaxially mounted. The top of the cylinder (5) is inserted into the cylindrical tube (14) and slidably connected to its inner wall. Two insertion holes (141) are symmetrically arranged on the cylindrical tube (14). Magnets A (12) on both sides are inserted into the corresponding insertion holes (141) and slide along their radial direction. And a ring (16), which is fitted on the cylindrical tube (14) and rotates coaxially with it. Two magnets B (17) and two magnets C (18) are provided on the inner wall of the ring (16). The magnetic poles of the two magnets B (17) are the same at opposite ends, and the magnetic poles of the two magnets C (18) are the same at opposite ends. The magnetic poles of the magnets B (17) and C (18) pointing to the center of the ring (16) are opposite.

2. The 360° rotating spotlight controlled by the Internet of Things according to claim 1, characterized in that, An air inlet (101) and an exhaust outlet (102) are provided on the spotlight body (1), and a heat sink (2) is provided inside the spotlight body (1), with the outlet of the heat sink (2) facing the exhaust outlet (102).

3. A 360° rotating spotlight controlled by the Internet of Things according to claim 1, characterized in that, The drive assembly A (4) includes a motor A (41), a gear A (42) and a gear B (43); the motor A (41) is housed inside the spotlight body (1), the gear A (42) is coaxially connected to the output shaft of the motor A (41), the gear B (43) is coaxially connected to the mounting shaft (31), and the gear B (43) meshes with the gear A (42).

4. A 360° rotating spotlight controlled by the Internet of Things according to claim 1, characterized in that, The drive assembly B includes a motor B (8); an internal gear ring (61) coaxial with the turntable (6) is provided on it, and a gear C (51) is rotatably provided on the cylinder (5). The gear C (51) is located inside the internal gear ring (61) and meshes with it.

5. A 360° rotating spotlight controlled by the Internet of Things according to claim 1, characterized in that, A controller (7) is installed on the cylinder (5), and an electric slip ring A (32) is installed on the mounting shaft (31) and rotates on the same axis. The electric slip ring A (32) is connected to the spotlight body (1). An electric slip ring B (62) is installed on the turntable (6) and rotates on the same axis. The electric slip ring B (62) is connected to the cylinder (5). A cable is installed inside the rod (3). The cable is electrically connected to both the electric slip ring A (32) and the electric slip ring B (62). The spotlight body (1) and the controller (7) are electrically connected through the electric slip ring A (32), the electric slip ring B (62) and the cable.

6. A 360° rotating spotlight controlled by the Internet of Things according to claim 5, characterized in that, A male connector (10) is provided on the fixing plate (9), which is electrically connected to the controller (7). A female connector (15) adapted to the male connector (10) is provided on the mounting plate (13).

7. A 360° rotating spotlight controlled by the Internet of Things according to claim 1, characterized in that, An indicator block (19) is provided on the ring (16), a positioning pointer (142) is provided on the cylindrical tube (14), and a locking knob (20) is provided on the indicator block (19) and is screwed to it. The screw end face of the locking knob (20) abuts against the arc surface of the cylindrical tube (14).

Citation Information

Patent Citations

  • LED spotlight capable of rotating by 360 degrees

    CN214275455U