Illumination angle adjusting structure and intelligent control lamp

By combining optical components with intelligent drive components, the automatic adjustment of the lighting angle is achieved, solving the problem of low efficiency of manual adjustment in existing technologies and improving the efficiency of scene setup.

CN223965301UActive Publication Date: 2026-03-03GUANGDONG QIKE ELECTRONICS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The existing lighting fixtures require manual operation to adjust the illumination angle, resulting in low efficiency when setting up in complex scenes.

Method used

By combining optical components and intelligent drive components, and connecting the optical components with the power output end of the intelligent drive components through a meshing part, the optical components can be intelligently rotated relative to the mounting bracket, and the illumination angle can be automatically adjusted.

Benefits of technology

It improves the ease of adjusting the illumination angle and enhances the efficiency of scene setup.

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Abstract

The utility model provides an illumination angle adjusting structure and an intelligent control lamp. The irradiation angle adjusting structure comprises an optical assembly, a mounting bracket and an intelligent driving assembly. The optical assembly is rotatably connected to the mounting support, and the intelligent driving assembly is connected to the mounting support. The optical assembly is provided with a meshing part, the meshing part is in meshing connection with the power output end of the intelligent driving assembly, and the meshing part is arranged around a rotating shaft of the optical assembly. According to the illumination angle adjusting structure, the adjustment convenience of the illumination angle can be well improved, and then the scene arrangement efficiency can be improved.
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Description

Technical Field

[0001] This utility model relates to the field of lighting technology, and in particular to an illumination angle adjustment structure and an intelligent control lamp. Background Technology

[0002] Adjusting the lens allows for easy adjustment of the illumination angle, and also enables the miniaturization of the lamp. For example, the invention patent application with application number CN202310312501.2 adjusts the illumination angle of the lamp by rotating the lens. However, it requires manual rotation of the lens to adjust the illumination angle. When setting up a more complex scene, a large amount of manpower is needed to adjust the illumination angle of the lamp, resulting in low scene setup efficiency. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the existing technology and provide an illumination angle adjustment structure and intelligent control light that can improve the ease of adjusting the illumination angle and thus improve the efficiency of scene arrangement.

[0004] The objective of this utility model is achieved through the following technical solution:

[0005] An illumination angle adjustment structure includes an optical component and a mounting bracket. The optical component is rotatably connected to the mounting bracket. The illumination angle adjustment structure also includes an intelligent drive component connected to the mounting bracket.

[0006] The optical component is provided with a meshing part, which is meshed with the power output end of the intelligent drive component, and the meshing part is arranged around the rotation axis of the optical component.

[0007] In one embodiment, the engaging portion is an engaging hole provided on the outer wall of the optical component, and at least a portion of the hole wall surrounds the rotation axis of the optical component and engages with the power output end of the intelligent drive component.

[0008] In one embodiment, the engaging portion is an engaging groove provided on the outer wall of the optical component, and at least a portion of the groove wall surrounds the rotation axis of the optical component and engages with the power output end of the intelligent drive component.

[0009] In one embodiment, the optical component includes a mounting member and an optical element. The mounting member is located on the outer periphery of the optical element and connected to the optical element. The mounting member is rotatably connected to the mounting bracket, and the engaging portion is located on a side wall of the mounting member away from the optical element.

[0010] In one embodiment, the mounting member has a snap-fit ​​groove on the side near the optical element, and the optical element is at least partially snapped into the snap-fit ​​groove.

[0011] In one embodiment, the optical element includes at least a lens, and the mounting member is disposed on the outer periphery of the lens and connected to the lens.

[0012] In one embodiment, the optical element further includes at least one of a honeycomb mesh, a grid ring, louvers, a light shield, and a diffuser arranged in sequence;

[0013] The lens, the honeycomb mesh, the grid ring, the louvers, the light-shielding plate, or the periphery of the diffuser layer are all connected to the mounting component.

[0014] In one embodiment, the optical component is rotatably connected to the mounting bracket via a pivot.

[0015] In one embodiment, the intelligent drive assembly includes a drive member and a meshing member. The drive member is connected to the mounting bracket, and the power output end of the drive member is connected to the meshing member. The power output end of the drive member is engaged with the meshing part through the meshing member.

[0016] A smart control lamp includes a light source assembly and an illumination angle adjustment structure as described in any of the above embodiments. The light source assembly is connected to the mounting bracket, and light is emitted from the light source assembly and at least partially enters the optical assembly, and is emitted through the optical assembly.

[0017] Compared with the prior art, the present invention has at least the following advantages:

[0018] The illumination angle adjustment structure of this utility model allows the optical component to be rotatably connected to the mounting bracket. It is also connected to the mounting bracket in conjunction with the intelligent drive component. The engaging part is engaged with the power output end of the intelligent drive component. The engaging part is arranged around the rotation axis of the optical component, meaning it is centered on the rotation axis of the optical component. Thus, when the drive component rotates the engaging part, the engaging part drives the entire optical component to rotate. In this way, the intelligent drive component drives the optical component to rotate relative to the mounting bracket, effectively achieving intelligent rotation of the optical component on the mounting bracket. This enables intelligent control of the optical component's rotation angle. Light emitted from the light source component enters the optical component, and the optical component re-extracts the light and changes its emission direction. Therefore, the illumination angle is adjusted when the optical component rotates relative to the mounting bracket, significantly improving the ease of adjustment and thus increasing the efficiency of scene setup. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation on the scope. For those skilled in the art, other related drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the irradiation angle adjustment structure according to one embodiment of the present invention;

[0021] Figure 2 for Figure 1 A partial view of the illumination angle adjustment structure shown;

[0022] Figure 3 for Figure 1 Another partial view of the illumination angle adjustment structure shown;

[0023] Figure 4 for Figure 1 A cross-sectional view of the illumination angle adjustment structure shown.

[0024] Figure 5 This is a partial view of the irradiation angle adjustment structure according to the first embodiment of this utility model. Detailed Implementation

[0025] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. The drawings illustrate preferred embodiments of this utility model. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0026] It should be noted that when an element is referred to as being "fixed to" another element, it can be directly attached to the other element or there may be an intervening element. When an element is referred to as being "connected to" another element, it can be directly connected to the other element or there may be an intervening element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only possible implementation.

[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0028] This application provides an illumination angle adjustment structure. The illumination angle adjustment structure includes an optical component, a mounting bracket, and an intelligent drive component. The optical component is rotatably connected to the mounting bracket, and the intelligent drive component is connected to the mounting bracket. The optical component is provided with a meshing part, which meshes with the power output end of the intelligent drive component, and the meshing part is arranged around the rotation axis of the optical component.

[0029] The aforementioned illumination angle adjustment structure allows the optical component to be rotatably connected to the mounting bracket. This is in conjunction with the intelligent drive component, which is also connected to the mounting bracket. The engaging part engages with the power output end of the intelligent drive component. The engaging part is positioned around the rotation axis of the optical component, meaning it is centered on the rotation axis. Thus, when the drive component rotates the engaging part, the engaging part drives the entire optical component to rotate. In this way, the intelligent drive component drives the optical component to rotate relative to the mounting bracket, effectively achieving intelligent rotation of the optical component on the mounting bracket. This means intelligent control of the optical component's rotation angle is achieved. Light emitted from the light source component enters the optical component, and the optical component re-extracts the light and changes its emission direction. Therefore, the illumination angle is adjusted as the optical component rotates relative to the mounting bracket, significantly improving the ease of adjustment and thus increasing the efficiency of scene setup.

[0030] To better understand the illumination angle adjustment structure of this application, the following further explanation is provided:

[0031] Please refer to the following: Figures 1 to 3 One embodiment of the illumination angle adjustment structure 10 includes an optical component 100, a mounting bracket 200, and an intelligent drive component 300. The optical component 100 is rotatably connected to the mounting bracket 200, and the intelligent drive component 300 is connected to the mounting bracket 200. The optical component 100 is provided with a meshing part 101, which meshes with the power output end of the intelligent drive component 300, and the meshing part 101 is arranged around the rotation axis of the optical component 100.

[0032] The aforementioned illumination angle adjustment structure 10 allows the optical component 100 to be rotatably connected to the mounting bracket 200. The intelligent drive component 300 is also connected to the mounting bracket 200. The engaging part 101 engages with the power output end of the intelligent drive component 300. The engaging part 101 is arranged around the rotation axis of the optical component 100, meaning the engaging part 101 is centered on the rotation axis of the optical component 100. Thus, when the drive component drives the engaging part 101 to rotate, the engaging part 101 drives the entire optical component 100 to rotate. In this way, the intelligent drive component 300 drives the optical component 100 relative to the rotation axis. The mounting bracket 200 rotates, meaning the intelligent drive component 300 drives the optical component 100 to rotate on the mounting bracket 200. This effectively achieves intelligent rotation of the optical component 100 on the mounting bracket 200, i.e., intelligent control of the rotation angle of the optical component 100. The light source component emits light into the optical component 100, and the optical component 100 re-extracts the light and changes the light emission direction. Thus, when the optical component 100 rotates relative to the mounting bracket 200, the illumination angle is adjusted, which greatly improves the convenience of adjusting the illumination angle and thus improves the efficiency of scene setup.

[0033] Please refer to the following: Figures 1 to 3 In one embodiment, the meshing part 101 is a meshing hole provided on the outer wall of the optical component 100. At least part of the hole wall surrounds the rotation axis of the optical component 100 and meshes with the power output end of the intelligent drive component 300, thereby effectively meshing the power output end of the drive component with the meshing part 101, and thus ensuring the stable drive rotation of the optical component 100.

[0034] Please see Figure 5 In one embodiment, the meshing part 101 is a meshing groove provided on the outer wall of the optical component 100. At least part of the groove wall surrounds the rotation axis of the optical component 100 and meshes with the power output end of the intelligent drive component 300, thereby effectively meshing the power output end of the drive component with the meshing part 101 and ensuring the stable drive rotation of the optical component 100.

[0035] Please refer to the following: Figures 1 to 3 In one embodiment, the optical component 100 includes a mounting member 110 and an optical component 120. The mounting member 110 is located on the outer periphery of the optical component 120 and connected to the optical component 120. The mounting member 110 is rotatably connected to the mounting bracket 200, and the engaging portion 101 is provided on the side wall of the mounting member 110 away from the optical component 120. This better ensures the effective connection of the optical component 120 to the mounting bracket 200, and better mitigates the impact of the engaging portion 101 on the light output effect of the optical component 120 while ensuring the effective setting of the engaging portion 101.

[0036] Please refer to the following: Figures 2 to 4 In one embodiment, the mounting member 110 has a snap-fit ​​groove 102 on the side near the optical element 120, and the optical element 120 is at least partially snapped into the snap-fit ​​groove 102. Furthermore, the periphery of the lens is at least partially snapped into the snap-fit ​​groove 102, which better ensures the stable installation of the optical element 120 on the mounting member 110.

[0037] In one embodiment, the optical component includes at least a lens, and a mounting component is disposed on the outer periphery of the lens and connected to the lens. Further, the lens is a Fresnel lens, which better ensures the re-extraction of light emitted from the light source assembly and changes the light emission direction, and better ensures the light emission effect.

[0038] In one embodiment, the optical component further includes at least one of a honeycomb mesh, a grid ring, louvers, a light-shielding plate, and a diffuser plate arranged in sequence. Further, the periphery of the lens, honeycomb mesh, grid ring, louvers, light-shielding plate, or diffuser plate layer is connected to the mounting component. Further, the lens, honeycomb mesh, grid ring, louvers, light-shielding plate, and diffuser plate are arranged sequentially. Further, the lens is positioned adjacent to the light source assembly. Further, the lens, honeycomb mesh, grid ring, louvers, light-shielding plate, and diffuser plate are stacked and engaged together in a snap-fit ​​groove. Further, if any one of the honeycomb mesh, grid ring, louvers, light-shielding plate, and diffuser plate is not used, it is directly removed, while the remaining components retain their original arrangement, further improving the light emission effect.

[0039] Please refer to the following: Figures 1 to 3 In one embodiment, the optical component 100 is rotatably connected to the mounting bracket 200 via a pivot 400. Furthermore, the mounting member 110 is rotatably connected to the mounting bracket 200 via the pivot 400, thus achieving stable rotational connection between the optical component 100 and the mounting bracket 200.

[0040] Please refer to the following: Figures 1 to 3 In one embodiment, the intelligent drive assembly 300 includes a drive member 310 and a meshing member 320. The drive member 310 is connected to the mounting bracket 200, and the power output end of the drive member 310 is connected to the meshing member 320. The power output end of the drive member 310 is meshed with the meshing part 101 through the meshing member 320. The meshing member 320 effectively achieves a stable meshing connection between the power output end of the drive member 310 and the meshing part 101, thereby ensuring the driving rotation stability of the optical assembly 100.

[0041] This application also provides an intelligent control lamp. One embodiment of the intelligent control lamp includes a light source assembly and an illumination angle adjustment structure according to any of the above embodiments. The light source assembly is connected to a mounting bracket, and light originates from the light source assembly and at least partially enters the optical assembly, and is emitted through the optical assembly. Further details are also available in the following documents. Figures 1 to 3 In this embodiment, the illumination angle adjustment structure 10 includes an optical component 100, a mounting bracket 200, and an intelligent drive component 300. The optical component 100 is rotatably connected to the mounting bracket 200, and the intelligent drive component 300 is connected to the mounting bracket 200. The optical component 100 is provided with a meshing part 101, which meshes with the power output end of the intelligent drive component 300. The meshing part 101 is arranged around the rotation axis of the optical component 100.

[0042] The aforementioned intelligent control light adopts an illumination angle adjustment structure, which effectively improves the convenience of adjusting the illumination angle of the intelligent control light, thereby increasing the efficiency of scene arrangement.

[0043] Compared with the prior art, the present invention has at least the following advantages:

[0044] The illumination angle adjustment structure 10 of this invention allows the optical component 100 to be rotatably connected to the mounting bracket 200. The intelligent drive component 300 is also connected to the mounting bracket 200. The engaging part 101 engages with the power output end of the intelligent drive component 300. The engaging part 101 is arranged around the rotation axis of the optical component 100, meaning that the engaging part 101 is centered on the rotation axis of the optical component 100. Thus, when the drive member 310 drives the engaging part 101 to rotate, the engaging part 101 drives the entire optical component 100 to rotate. In this way, the intelligent drive component 300 drives the optical component 100. The intelligent drive component 300 enables the optical component 100 to rotate relative to the mounting bracket 200, effectively achieving intelligent rotation of the optical component 100 on the mounting bracket 200. This means intelligent control of the rotation angle of the optical component 100 is achieved. The light source component emits light into the optical component 100, and the optical component 100 re-extracts the light and changes the light emission direction. As a result, the illumination angle is adjusted when the optical component 100 rotates relative to the mounting bracket 200, which greatly improves the convenience of adjusting the illumination angle and thus improves the efficiency of scene setup.

[0045] The above embodiments only illustrate several implementation methods of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. An illumination angle adjustment structure, comprising an optical component and a mounting bracket, wherein the optical component is rotatably connected to the mounting bracket, characterized in that, The illumination angle adjustment structure also includes an intelligent drive component, which is connected to the mounting bracket; The optical component is provided with a meshing part, which is meshed with the power output end of the intelligent drive component, and the meshing part is arranged around the rotation axis of the optical component.

2. The irradiation angle adjustment structure according to claim 1, characterized in that, The meshing part is a meshing hole provided on the outer wall of the optical component, and at least a portion of the hole wall surrounds the rotation axis of the optical component and meshes with the power output end of the intelligent drive component.

3. The irradiation angle adjustment structure according to claim 1, characterized in that, The meshing part is a meshing groove provided on the outer wall of the optical component, and at least a portion of the groove wall surrounds the rotation axis of the optical component and meshes with the power output end of the intelligent drive component.

4. The irradiation angle adjustment structure according to claim 1, characterized in that, The optical assembly includes a mounting component and an optical component. The mounting component is located on the outer periphery of the optical component and connected to the optical component. The mounting component is rotatably connected to the mounting bracket, and the engaging portion is located on the side wall of the mounting component away from the optical component.

5. The irradiation angle adjustment structure according to claim 4, characterized in that, The mounting component has a snap-fit ​​groove on the side near the optical component, and the optical component is at least partially snapped into the snap-fit ​​groove.

6. The irradiation angle adjustment structure according to claim 4, characterized in that, The optical component includes at least a lens, and the mounting component is disposed on the outer periphery of the lens and connected to the lens.

7. The irradiation angle adjustment structure according to claim 6, characterized in that, The optical components also include at least one of the following arranged in sequence: a honeycomb mesh, a grid ring, louvers, a light shield, and a diffuser. The lens, the honeycomb mesh, the grid ring, the louvers, the light shield, or the periphery of the diffuser are all connected to the mounting component.

8. The irradiation angle adjustment structure according to claim 1, characterized in that, The optical component is rotatably connected to the mounting bracket via a rotating shaft.

9. The irradiation angle adjustment structure according to claim 1, characterized in that, The intelligent drive assembly includes a drive component and a meshing component. The drive component is connected to the mounting bracket, and the power output end of the drive component is connected to the meshing component. The power output end of the drive component is engaged with the meshing part through the meshing component.

10. A smart control light, characterized in that, The device includes a light source assembly and an illumination angle adjustment structure as described in any one of claims 1 to 9, wherein the light source assembly is connected to the mounting bracket, light is emitted from the light source assembly and at least partially enters the optical assembly, and is emitted through the optical assembly.

Citation Information

Patent Citations

  • Lamp assembly and lamp

    CN116241833A