A 360-degree arbitrary rotation human-computer interaction lamp

By designing a 360° rotatable human-computer interactive lamp, and using the combination of magnets and sensing components to achieve light gradients and flowing water effects, the problem of existing interactive lighting devices lacking fun is solved, and the user experience is improved.

CN116447560BActive Publication Date: 2026-05-01JIANGSU XGL OPTOELECTRONICS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
JIANGSU XGL OPTOELECTRONICS
Filing Date
2023-04-03
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing interactive lighting installations lack rich interactivity and fun, and cannot provide natural lighting changes when no one is operating them.

Method used

A human-computer interactive lamp that can rotate 360° is designed. The color and frequency of the lamp are controlled by rotation. The gradual change and flowing effect of the light are achieved by the cooperation of magnets and sensing components. The lamp board and control board are placed separately in the heat dissipation inner shell to increase rotational stability.

Benefits of technology

It enhances the interactivity and fun of the lighting, provides a natural lighting experience, and improves the user's sense of interaction and rhythm.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116447560B_ABST
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Abstract

The present application relates to the technical field of lighting lamps, and relates to a 360-degree arbitrary rotation human-computer interaction lamp, which comprises a top cover assembly, a base assembly is rotationally connected to the upper end of the top cover assembly, a face cover assembly is rotationally connected to the lower end of the top cover assembly, and a lamp panel assembly is arranged in the face cover assembly; the top cover assembly and the face cover assembly are rotationally connected through a rotating assembly; the lamp panel assembly comprises a heat dissipation inner shell, a wiring pipe on the top of the heat dissipation inner shell penetrates through the rotating assembly and is locked and fixed with the top cover assembly, a control panel and a lamp panel are sequentially arranged in the inner cavity of the heat dissipation inner shell from top to bottom, a sensing component is arranged on the upper surface of the control panel, lamp beads are arranged on the bottom surface of the lamp panel, a glass cover plate is arranged on the lower end of the face cover assembly, the sensing component is matched with a magnet arranged on the face cover assembly, and power lines led out from the lamp panel and the control panel penetrate through the wiring pipe and are led out from the base assembly. The product is reasonable and ingenious in structure, can be applied to various scenes, and can adjust the angle of the lamp according to environmental requirements.
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Description

A human-computer interactive lamp that can rotate 360° at will Technical Field

[0001] This invention relates to the field of lighting fixtures technology, and to a human-computer interactive lighting fixture that can rotate 360° arbitrarily. Background Technology

[0002] In building more beautiful cities, the dazzling lights at night can warm people's hearts, and enhancing the interactivity of lights can enrich people's lives. Therefore, interactive lighting installations are very popular. Summary of the Invention

[0003] To address the aforementioned problems, this invention provides a human-computer interactive lamp that can rotate 360° arbitrarily. The interactive lamp has a reasonable and ingenious structural design, and the color and frequency of the lamp can be controlled by rotation. When no one is rotating the lamp, the lamp will slowly stop rotating, and the color will slowly change back to a single color, thereby improving the interaction, increasing the sense of experience and rhythm, enriching people's lives, and generating endless interactivity and fun.

[0004] According to the technical solution of the present invention: a human-computer interactive lamp that can rotate 360° arbitrarily, characterized in that: it includes an upper cover assembly, the upper end of the upper cover assembly is rotatably connected to a base assembly, the lower end of the upper cover assembly is rotatably connected to a mask assembly, and the mask assembly has a built-in lamp panel assembly.

[0005] The top cover assembly and the face mask assembly are rotatably connected via a rotating assembly. The lamp panel assembly includes a heat dissipation inner shell. The top wiring tube of the heat dissipation inner shell passes through the rotating assembly and is locked and fixed to the top cover assembly. The control board and the lamp panel are arranged sequentially from top to bottom in the inner cavity of the heat dissipation inner shell. The upper surface of the control board is provided with sensing components. The bottom surface of the lamp panel is equipped with lamp beads. The lower port of the face mask assembly is sealed with a glass cover plate. The sensing components cooperate with the magnets installed on the face mask assembly. The power lines from the lamp panel and the control board pass through the wiring tube and are led out from the base assembly.

[0006] As a further improvement of the present invention, the rotating assembly includes a positioning shaft, on which a rotating shaft is mounted. The upper end face of the inner ring of the rotating shaft is limited by a flange constructed at the upper end of the positioning shaft. A lower cover plate is provided on the bottom surface of the rotating shaft. The lower cover plate is fastened to the upper cover assembly by screws to limit the lower end of the outer ring of the rotating shaft. The outer ring of the rotating shaft is tightly fitted with the inner wall of the upper cover assembly.

[0007] The lower end of the positioning shaft passes through the lower cover plate and the top plate of the mask assembly in sequence, and is then locked by the second nut. The upper end of the mask assembly is fixedly connected to the lower end face of the inner ring of the rotating shaft.

[0008] As a further improvement of the present invention, the lower end of the positioning shaft is provided with a tapered guide portion to position the second nut when it is connected to the positioning shaft.

[0009] As a further improvement of the present invention, the upper cover assembly includes an upper cover, the inner cavity of the upper cover is constructed with an axially extending upper cover inner cylinder, the outer ring of the rotating shaft of the rotating assembly is tightly fitted with the inner wall of the upper cover inner cylinder; the lower cover plate of the rotating assembly is fastened to the upper cover inner cylinder by a first screw.

[0010] The top end plate of the cover has a concave structure, and the upper end of the cable conduit extends out from the top end plate and is locked by the first nut.

[0011] As a further improvement of the present invention, the top end face of the upper cover is fastened to the upper cover plate by fixing screws, and the upper cover plate is provided with wiring holes.

[0012] As a further improvement of the present invention, the base assembly includes a base, which is rotatably connected to the top connector of the upper cover by an internal hexagonal screw. The top connector of the upper cover is also rotatably connected to a hexagonal set screw, which can fix the position of the base.

[0013] As a further improvement of the present invention, the mask assembly includes a mask, which includes a first mask portion, a second mask portion, and a third mask portion. Steps are formed between the second mask portion and the third mask portion and between the first mask portion and the second mask portion, respectively. The lower end of the upper cover of the upper cover assembly abuts against the step surface formed between the second mask portion and the first mask portion. Magnets are evenly distributed on the step surface formed between the second mask portion and the third mask portion.

[0014] The technical advantages of this invention are as follows: The product structure is reasonably and ingeniously designed, and it is compatible with various mounting brackets. Different installation methods, such as circular and elliptical fixed installation methods, can be selected according to the installation requirements of the design site. To prevent the lamp from loosening during rotation, a hexagonal set screw is added at the rotation point, making the base and lamp body an integral unit. The lamp board and control board are placed separately in the heat dissipation inner shell. During operation, when the mask rotates around the center, the lamp board and the lamp beads on it remain stationary. After the sensing element on the control board senses the magnet on the upper surface of the mask, the program in the chip starts the color-changing function. The heat dissipation shell is connected to the upper cover through the rotating shaft and is fixed to the upper cover by a nut. The mask and the rotating shaft are fixed by a nut. Attached Figure Description

[0015] Figure 1 is an exploded view of the present invention.

[0016] Figure 2 is a schematic diagram of the connection of the heat dissipation inner shell in this invention.

[0017] Figure 3 is a schematic diagram of the connection of the face mask in this invention. Detailed Implementation

[0018] The specific embodiments of the present invention will be further described below with reference to the accompanying drawings.

[0019] Figures 1-3 include an upper cover assembly 10, an upper cover 11, an upper cover plate 12, a fixing screw 13, a hex socket screw 14, a hex set screw 15, a rotating assembly 20, a positioning shaft 21, a tapered guide part 21-1, a rotating shaft 22, a lower cover plate 23, a first screw 24, a second nut 25, a first flat washer 26, a face mask assembly 30, a face mask 31, a first face mask part 31-1, a second face mask part 31-2, a third face mask part 31-3, a magnet 32, a glass cover plate 33, a lamp board assembly 40, a first nut 41, a wiring conduit 41-1, a control board 42, a lamp board 43, a sensing element 44, a first nut 45, a second flat washer 46, a silicone pad 47, a base assembly 50, a base 51, a fixing bracket 52, a hex socket screw 53, a power cord 60, etc.

[0020] As shown in Figures 1-3, the present invention is a human-computer interactive lamp that can rotate 360° arbitrarily, including an upper cover assembly 10, the upper end of the upper cover assembly 10 is rotatably connected to a base assembly 50, the lower end of the upper cover assembly 10 is rotatably connected to a mask assembly 30, and the mask assembly 30 has a built-in lamp panel assembly 40.

[0021] Furthermore, the upper cover assembly 10 and the mask assembly 30 are rotatably connected via the rotating assembly 20. During operation, the upper cover assembly 10 is connected to the external component via the base assembly 50.

[0022] The lamp panel assembly 40 serves to provide illumination and a seven-color gradient effect. To achieve these effects, the lamp panel assembly 40 includes a heat dissipation inner shell 41. The top wiring tube 41-1 of the heat dissipation inner shell 41 passes through the rotating assembly 20 and is locked and fixed to the upper cover assembly 10. The control board 42 and the lamp panel 43 are arranged sequentially from top to bottom in the inner cavity of the heat dissipation inner shell 41. The upper surface of the control board 42 is provided with a sensing element 44, and the bottom surface of the lamp panel 43 is equipped with LED beads. The lower end of the mask assembly 30 is covered with a glass cover plate 33. The glass cover plate 33 and the mask 31 are fixedly connected by glue, which can effectively prevent water from entering the room.

[0023] The sensing element 44 cooperates with the magnet 32 ​​installed on the mask assembly 30, and the power lines 60 from both the lamp board 43 and the control board 42 pass through the wiring conduit 41-1 and are led out from the base assembly 50.

[0024] In order to enable the mask assembly 30 to rotate freely and smoothly relative to the upper cover assembly 10, the rotating assembly 20 includes a positioning shaft 21, on which a rotating shaft 22 is mounted. The upper end of the inner ring of the rotating shaft 22 is limited by a flange constructed at the upper end of the positioning shaft 21. A lower cover plate 23 is provided on the bottom surface of the rotating shaft 22. The lower cover plate 23 is fastened to the upper cover assembly 10 by screws 24 to limit the lower end of the outer ring of the rotating shaft 22. The outer ring of the rotating shaft 22 is tightly fitted with the inner wall of the upper cover assembly 10 so that when working, the outer ring of the rotating shaft 22 is fixed, and the inner ring rotates freely together with the mask 31. During the rotation of the mask 31, the magnet 32 ​​mounted on it cooperates with the sensing element 44 on the control board 42.

[0025] The lower end of the positioning shaft 21 passes through the lower cover plate 23 and the top plate of the mask assembly 30 in sequence and is locked by the second nut 25. The upper end of the mask assembly 30 is fixedly connected to the lower end face of the inner ring of the rotating shaft 22. A first flat washer 26 is also provided between the second nut 25 and the positioning shaft 21.

[0026] The lower end of the positioning shaft 21 is constructed with a tapered guide portion 21-1 to position the second nut 25 when it is connected to the positioning shaft 21, thus facilitating the installation of the second nut 25.

[0027] The upper cover assembly 10 includes an upper cover 11, the inner cavity of the upper cover 11 having an axially extending inner cylinder 11-1, the outer ring of the rotating shaft 22 of the rotating assembly 20 being tightly fitted with the inner wall of the inner cylinder 11-1; the lower cover plate 23 of the rotating assembly 20 is fastened to the inner cylinder 11-1 by a first screw 24.

[0028] The top end plate of the top cover 11 has a concave structure. The upper end of the cable conduit 41-1 extends out from the top end plate and is locked by the first nut 45. In order to achieve a better shock absorption and buffering effect, a second flat washer 46 and a silicone pad 47 are set between the first nut 45 and the cable conduit 41-1. The silicone pad 47 plays a shock absorption and buffering role.

[0029] The top end face of the top cover 11 is fastened to the top cover plate 12 by fixing screws 13. The top cover plate 12 is provided with wiring holes to allow the power cord 60 to pass through.

[0030] To ensure compatibility with various mounting brackets during operation, the base assembly 50 includes a base 51. The base 51 is rotatably connected to the top connecting seat of the upper cover 11 via hexagonal screws 14. The top connecting seat of the upper cover 11 is also rotatably connected to a hexagonal set screw 15, which allows the base 51 to be rotated 360° to its final position for fixation. It is understood that a fixing bracket 52 is also provided within the cavity of the base 51 to facilitate connection with external components during use. Specifically, the vertical connecting lug below the base plate of the fixing bracket 52 is connected to the base 51 via hexagonal screws 53. The fixing bracket 52 has a cable routing hole for the power cord 60 to be routed out.

[0031] The mask assembly 30 includes a mask 31, which includes a first mask portion 31-1, a second mask portion 31-2, and a third mask portion 31-3. Steps are formed between the second mask portion 31-2 and the third mask portion 31-3, and between the first mask portion 31-1 and the second mask portion 31-2. The lower end of the upper cover 11 of the upper cover assembly 10 abuts against the step surface formed between the second mask portion 31-2 and the first mask portion 31-1. Magnets 32 are evenly distributed on the step surface formed between the second mask portion 31-2 and the third mask portion 31-3. A partition is provided between two adjacent magnets 32, and the partition divides the top surface of the second mask portion 31-2 into four equally divided parts. During operation, magnet 32 ​​and sensing element 44 work together to achieve the following: when the mask assembly rotates, magnet 32 ​​and sensing element 44 work alternately to make the lamp body of lamp panel assembly 40 turn red, and the adjacent lamp body turns to the same color, i.e., a flowing water effect (the color sequence is red, green, blue, yellow, cyan, and purple). After the flowing water effect ends, the entire lamp maintains the color of the last rotation, and after 8 seconds, lamp panel assembly 40 continues to perform a seven-color gradient.

[0032] As shown in Figures 1-3, when the product of the present invention is in operation, it is installed and fixed with the external components through the base assembly 50. The angle of the lamp board assembly 40 can be adjusted according to the needs of on-site work to adjust the light emission direction of the product of the present invention. At the same time, the position of the upper cover assembly 10 after the angle is adjusted is fixed by the hexagon screws 14.

[0033] In practice, the mask 31 can be made of aluminum or PC. When aluminum is used, the aluminum mask 31 can illuminate the light towards the lower opening of the mask 31. When PC is used, the PC is semi-transparent and diffused, which enables light to be emitted from multiple directions.

[0034] During operation, when the product is stationary, all the lights undergo a seven-color gradient, with the colors changing in the order of red, green, blue, yellow, cyan, and purple. When the mask 31 is rotated, the upper cover 11 and the heat dissipation inner shell 41 remain stationary, while the magnet 32 ​​rotates along the center with the mask 31. As the magnet 32 ​​rotates with the mask 31, it passes the upper surface of the sensing element 44. The chip on the control board 42 detects the signal from the sensing element 44 and starts the internal program, causing the LED to turn red. To ensure reliable operation, a microcontroller is used. When the product is installed and used, the lights adjacent to the red-colored lights change to the same color, creating a flowing effect, with the colors changing in the order of red, green, blue, yellow, cyan, and purple. When the mask 31 stops rotating, the lights maintain the color from the last rotation. After 8 seconds, the lights continue to change color.

Claims

1. A human-computer interactive lamp that can rotate 360° arbitrarily, characterized in that: The system includes an upper cover assembly (10), the upper end of which is rotatably connected to a base assembly (50), and the lower end of which is rotatably connected to a face mask assembly (30). The face mask assembly (30) houses a built-in lamp panel assembly (40). The upper cover assembly (10) and the face mask assembly (30) are rotatably connected via a rotating assembly (20). The lamp panel assembly (40) includes a heat dissipation inner shell (41). The top wiring tube (41-1) of the heat dissipation inner shell (41) passes through the rotating assembly (20) and is locked and fixed to the upper cover assembly (10). A control board (42) and a lamp panel (43) are arranged sequentially from top to bottom in the inner cavity of the heat dissipation inner shell (41). A sensing element (44) is arranged on the upper surface of the control board (42). LED beads are installed on the bottom surface of the lamp board (43), and the lower end of the mask assembly (30) is covered with a glass cover plate (33). The sensing element (44) cooperates with the magnet (32) installed on the mask assembly (30). The power lines (60) from both the lamp board (43) and the control board (42) pass through the wiring tube (41-1) and are led out from the base assembly (50). The mask assembly (30) includes a mask (31), which includes a first mask part (31-1), a second mask part (31-2), and a third mask part (31-3). Steps are formed between the second mask part (31-2) and the third mask part (31-3) and between the first mask part (31-1) and the second mask part (31-2). The lower end of the upper cover (11) of the cover assembly (10) abuts against the stepped surface formed between the second mask part (31-2) and the first mask part (31-1). Magnets (32) are evenly distributed on the stepped surface formed between the second mask part (31-2) and the third mask part (31-3). During operation, when the mask (31) rotates, the magnets (32) pass through the sensing element (44) in sequence. The control board (42) controls the color of the lamp beads to change in a preset order. The rotating assembly (20) includes a positioning shaft (21), a rotating shaft (22) is mounted on the positioning shaft (21), the upper end of the inner ring of the rotating shaft (22) is limited by the flange constructed at the upper end of the positioning shaft (21), and the bottom surface of the rotating shaft (22) is provided with The lower cover plate (23) is fastened to the upper cover assembly (10) by screws (24) to limit the lower end of the outer ring of the rotating shaft (22). The outer ring of the rotating shaft (22) is tightly fitted with the inner wall of the upper cover assembly (10). The lower end of the positioning shaft (21) passes through the lower cover plate (23) and the top plate of the mask assembly (30) in sequence and is locked by the second nut (25). The upper end of the mask assembly (30) is fixedly fitted with the lower end face of the inner ring of the rotating shaft (22). The upper cover assembly (10) includes an upper cover (11). The inner cavity of the upper cover (11) is constructed with an axially extending upper cover inner cylinder (11-1). The outer ring of the rotating shaft (22) of the rotating assembly (20) is tightly fitted with the inner wall of the upper cover inner cylinder (11-1).The lower cover plate (23) of the rotating assembly (20) is fastened to the inner cylinder of the upper cover (11-1) by a first screw (24); the top end plate of the upper cover (11) is constructed with a concave structure, and the upper end of the cable conduit (41-1) extends out from the top end plate and is locked by a first nut (45).

2. The human-computer interactive lamp that can rotate 360° arbitrarily as described in claim 1, characterized in that: The lower end of the positioning shaft (21) is constructed with a tapered guide to position the second nut (25) when it is connected to the positioning shaft (21).

3. The human-computer interactive lamp that can rotate 360° arbitrarily as described in claim 1, characterized in that: The top end face of the upper cover (11) is fastened to the upper cover plate (12) by fixing screws (13), and the upper cover plate (12) is provided with wiring holes.

4. The human-computer interactive lamp that can rotate 360° arbitrarily as described in claim 1, characterized in that: The base assembly (50) includes a base (51), which is rotatably connected to the top connector of the cover (11) by an internal hexagonal screw (14). The top connector of the cover (11) is also rotatably connected to a hexagonal set screw (15), which can fix the position of the base (51).

Citation Information

Patent Citations

  • Stereo dynamic three-primary color demonstration device and control method thereof

    CN110428711A

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    CN113958889A

  • Multifunctional rotary intelligent lamp

    CN217875463U

  • Man-machine interaction lamp capable of freely rotating by 360 degrees

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