A smart lighting device based on WiFi mesh technology
By employing a lifting structure and a flip-type drive blade design, combined with sensors to automatically adjust brightness and wind force, the problem of limited control in Wifimesh lighting devices has been solved, achieving multifunctionality and wide applicability.
Patent Information
- Application Number
- CN202310830829.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-07-07
- Publication Date
- 2025-11-14
- Estimated Expiration
- 2043-07-07
AI Technical Summary
Existing smart lighting devices based on Wifimesh technology have relatively simple control methods and functions.
A smart lighting device based on Wifimesh technology was designed. It adopts a lifting structure and a flip-type drive blade, combined with light and temperature sensors, to achieve automatic adjustment of brightness and wind power control, and is wirelessly controlled through Wifimesh technology.
It enhances the multi-functionality of lighting devices, provides air conditioning, ensures airtightness and safety, eliminates the need for external control wiring, and lowers installation location requirements.
Smart Images

Figure CN117006450B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of lighting technology, and in particular to an intelligent lighting device based on Wi-Fi mesh technology. Background Technology
[0002] Wifimesh, also known as a wireless mesh network, consists of mesh routers and mesh clients. The mesh routers form the backbone network and are connected to the wired internet, providing multi-hop wireless internet connections for the mesh clients. It is a new type of wireless network technology completely different from traditional wireless networks.
[0003] With the development of technology, more and more smart home products are entering people's lives. Currently, most smart home products on the market use WifiMesh technology for linkage control. However, lighting devices based on WifiMesh technology are simply connected and controlled to turn on and off via wireless networks, and the control methods and functions are relatively simple. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to provide an improved smart lighting device based on Wi-Fi mesh technology in order to solve the problems existing in the above-mentioned background technology, and to solve the problem that the control method and functionality of current lighting devices based on Wi-Fi mesh technology are relatively simple.
[0005] The technical solution adopted by this invention to solve its technical problem is: a smart lighting device based on WiFi mesh technology, comprising a top assembly box fixed to the indoor ceiling by bolts, an electrically controlled lifting mechanism installed inside the top assembly box, an outer cover installed outside the top assembly box, an aluminum substrate installed on the inner top surface of the outer cover, and a lighting source controlled by WiFi mesh technology installed at the lower end of the aluminum substrate. An annular peripheral assembly plate is installed inside the outer cover around the aluminum substrate, and a flip-type drive blade is installed inside the annular peripheral assembly plate. The upper end of the outer arc surface of the top assembly box has a downwardly bent upper closed cover, and the lower end of the outer arc surface of the outer cover has an upwardly bent lower closed cover. An upwardly protruding inner extrusion ring is located at the upper edge of the aluminum substrate. A drive motor for controlling the annular peripheral assembly plate is installed on one side inside the top assembly box.
[0006] The upper and lower closed covers have arc-shaped protrusions on one side of their mounting surfaces, and arc-shaped grooves that match the arc-shaped protrusions are formed on the other side of their mounting surfaces.
[0007] The outer edge of the top assembly box is provided with an annular assembly groove for assembling the annular peripheral assembly plate.
[0008] The annular peripheral assembly plate has a lateral assembly port located at the mounting position of the flip-type drive blade. The flip-type drive blade is movably connected to the annular peripheral assembly plate by inserting its internal horizontal assembly shaft into the mounting holes on both sides of the lateral assembly port.
[0009] The flip-type drive blade includes a main blade with a transverse assembly shaft installed inside, an elastic bending plate installed on the upper end of the main blade, and a limiting protrusion of an integral structure fixed on the side wall of the fixed end of the elastic bending plate.
[0010] The annular peripheral assembly plate has an annular helical toothed groove on its inner side facing upward inside the annular assembly groove. The drive motor is connected to the annular peripheral assembly plate through a helical gear on the drive shaft inserted into the annular helical toothed groove.
[0011] The outer cover has an upwardly protruding external threaded lifting tube and an outer guide tube at the middle of its upper surface. The outer cover is inserted into the electric control lift through the external threaded lifting tube and threadedly assembled with the electric control lift. The outer cover is inserted into the top assembly box from bottom to top through the outer guide tube and slidably connected with the top assembly box.
[0012] The inner side of the upper closed cover has an inclined guide surface.
[0013] An outer filter screen is fixedly mounted on the upper part of the outer side of the upper closed cover.
[0014] The beneficial effects of this invention are:
[0015] (1) The intelligent lighting device based on WiFi mesh technology of the present invention adopts a lifting structure design, which can be adjusted as needed for convenient control;
[0016] (2) An annular peripheral assembly plate with internally installed flip-type drive blades is installed on the outer periphery of the aluminum substrate used to install the lighting source. The flip-type drive blades can be controlled to flip downward by lifting and lowering to form an external turbulence mechanism, thereby enabling the lighting device to have the function of air conditioning and greatly improving its functionality.
[0017] (3) The lifting design can control the air inlet and outlet. Under normal conditions, the flip-type drive blades can be closed and sealed, ensuring airtightness when not in use, and ensuring superior safety and durability.
[0018] (4) The internal squeezing ring design allows for squeezing and flipping for storage when the blower function is not in use, without affecting the side lighting and ensuring the lighting range;
[0019] (5) By using WiFi mesh technology for control, no external control line is required, the requirements for installation location are lower, and the application range is wider. Attached Figure Description
[0020] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0021] Figure 1 This is a schematic diagram of the structure of the present invention.
[0022] Figure 2 This is an exploded view of the present invention.
[0023] Figure 3 This is an internal sectional view in this invention.
[0024] Figure 4 This is a schematic diagram of the structure of the flip-type drive blade in this invention.
[0025] In the diagram: 1. Top assembly box, 2. Electric lifting mechanism, 3. Outer casing, 4. Aluminum substrate, 5. Lighting source, 6. Annular peripheral assembly plate, 8. Upper closed casing, 9. Lower closed casing, 10. Internal extrusion ring, 11. Drive motor, 12. Annular assembly groove, 13. Horizontal assembly shaft, 14. Main blade, 15. Elastic bending plate, 16. Limiting protrusion, 17. Inclined gear, 18. External threaded lifting tube, 19. Outer guide tube, 20. Outer filter screen. Detailed Implementation
[0026] The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of the invention, and therefore only show the components relevant to the invention.
[0027] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "connected" and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.
[0028] Figure 1 , Figure 2 and Figure 3The illustrated smart lighting device based on Wi-Fi mesh technology includes a top mounting box 1 fixed to the indoor ceiling by bolts, an electrically controlled lifting mechanism 2 installed inside the top mounting box 1, an outer casing 3 installed outside the top mounting box 1, an aluminum substrate 4 installed on the inner top surface of the outer casing 3, and a lighting source 5 controlled by Wi-Fi mesh technology installed at the lower end of the aluminum substrate 4. An annular peripheral mounting plate 6 is installed inside the outer casing 3 around the aluminum substrate 4, and a flip-type drive blade is installed inside the annular peripheral mounting plate 6. The upper part of the outer arc surface of the top mounting box 1 has a downwardly bent upper closed casing 8, and the lower part of the outer arc surface of the outer casing 3 has an upwardly bent lower closed casing 9. The upper edge of the aluminum substrate 4 has an upwardly protruding inner extrusion ring 10, and a drive motor 11 for controlling the annular peripheral mounting plate 6 is installed on one side inside the top mounting box 1.
[0029] The electric lift 2, the lighting source 5, and the drive motor 11 are all existing technologies. The WiFi mesh technology used to control them is also existing technology. People connect the WiFi mesh control module built into the top assembly box 1 to the indoor WiFi signal, and then control them separately through an APP using a control terminal under a unified WiFi network.
[0030] When the outer casing 3 descends, the inner compression ring 10 cannot compress.
[0031] To enhance its intelligent control, light and temperature sensor modules are installed on the outer surface of the upper closed housing 8. Users can set the light intensity at the control terminal. For example, the light intensity can be adjusted according to the light intensity. In the case of strong external light, the brightness of the lighting can be reduced, eventually achieving the effect of automatic shutdown, thus making the equipment more energy-efficient. Similarly, when the external light is weak, the brightness of the lighting can be increased, thereby ensuring that the external environment has sufficient light.
[0032] When the external ambient temperature is relatively high, the electric lift 2 and drive motor 11 can be set to start automatically.
[0033] To facilitate the guiding and limiting of the assembly surface, the upper closed cover 8 and the lower closed cover 9 have arc-shaped protrusions on one side of the assembly surface, and arc-shaped grooves that match the arc-shaped protrusions are provided on the other side of the assembly surface.
[0034] To facilitate lateral installation, an annular assembly groove 12 is provided on the outer edge of the top assembly box 1 for assembling the annular peripheral assembly plate 6.
[0035] To facilitate lateral assembly, the annular peripheral assembly plate 6 has a lateral assembly port located at the mounting position of the flip-type drive blade. The flip-type drive blade is movably connected to the annular peripheral assembly plate 6 by inserting the internal transverse assembly shaft 13 into the mounting holes on both sides of the lateral assembly port.
[0036] like Figure 4 As shown, in order to cooperate with the flipping and lateral limiting, the flipping drive blade includes a main blade 14 with a transverse mounting shaft 13 installed inside, an elastic bending plate 15 installed on the upper end of the main blade, and a limiting protrusion 16 of an integral structure fixed on the side wall of the fixed end of the elastic bending plate 15.
[0037] The main blade 14 is controlled to bend downward by the elastic bending plate 15. Under normal circumstances, the main blade 14 will automatically flip downward due to the extrusion force, forming a side blade with an angle. Then, during operation, due to inertia, the main blade 14 is controlled to rotate in the opposite direction. A limit assembly port is opened inside the main blade 14, and the limit protrusion 16 is inserted into the limit assembly port for lateral limit to ensure that the main blade 14 does not flip excessively.
[0038] To facilitate the inner drive, the annular peripheral assembly plate 6 is provided with an annular helical tooth groove inside the annular assembly groove 12. The drive motor 11 is inserted into the annular helical tooth groove through the helical gear 17 on the drive shaft and is connected to the annular peripheral assembly plate 6 for transmission.
[0039] The drive motor 11 rotates to drive the annular peripheral assembly disk 6 to rotate.
[0040] The drive motor 11 is also controlled using existing Wi-Fi mesh technology.
[0041] To facilitate lifting and longitudinal guidance, the outer cover 3 has an upwardly protruding external threaded lifting tube 18 and an outer guide tube 19 at the middle position of the upper surface. The outer cover 3 is inserted into the electric control lift 2 through the external threaded lifting tube 18 and threadedly assembled with the electric control lift 2. The outer cover 3 is inserted into the top assembly box 1 from bottom to top through the outer guide tube 19 and slidably connected with the top assembly box 1.
[0042] The electric lifting platform 2 is a through-type motor. The internal threaded adjusting sleeve is sleeved on the outside of the external threaded lifting pipe 18 to drive the outer cover 3 to rise and fall. This can effectively reduce the height of the top assembly box 1, thereby giving the outer cover 3 a larger internal volume, which facilitates installation and improves the lighting effect.
[0043] In order to guide the air from the exhaust port, the inner side of the upper closed cover 8 has an inclined guide surface.
[0044] Air is drawn in from the upper air inlet and then blown out diagonally downwards through the slanted guide surface.
[0045] In order to facilitate the filtration of the air intake, an outer filter screen 20 is fixedly installed on the upper part of the outer side of the upper closed cover 8.
[0046] This invention discloses an intelligent lighting device based on Wi-Fi mesh technology, employing a lifting structure design that allows for structural adjustment and convenient control. An annular peripheral mounting plate 6, containing internally mounted flip-type drive blades, is installed around the aluminum substrate 4 used to mount the lighting source. Lifting controls the flip-type drive blades to flip downwards, forming an external airflow mechanism, thus enabling the lighting device to function as an air conditioner, significantly enhancing its functionality. The lifting design allows for control of the air inlet and outlet, ensuring the flip-type drive blades remain closed and sealed under normal conditions, guaranteeing airtightness when not in use and enhancing safety and durability. The internal compression ring 10 allows for compression and flipping for storage when the airflow function is not in use, without affecting side lighting and ensuring a consistent illumination range. Controlled using Wi-Fi mesh technology, no external control wiring is required, reducing installation location requirements and broadening its applicability.
[0047] Based on the above-described preferred embodiments of the present invention, and through the foregoing description, those skilled in the art can make various changes and modifications without departing from the inventive concept. The technical scope of this invention is not limited to the contents of the specification, but must be determined according to the scope of the claims.
Claims
1. A smart lighting device based on WiFi mesh technology, comprising a top mounting box (1) fixedly mounted on an indoor ceiling by bolts, an electrically controlled lifting mechanism (2) installed inside the top mounting box (1), an outer casing (3) installed on the outside of the top mounting box (1), an aluminum substrate (4) installed on the inner top surface of the outer casing (3), and a lighting source (5) controlled by WiFi mesh technology installed at the lower end of the aluminum substrate (4), characterized in that: The outer casing (3) is equipped with an annular peripheral assembly plate (6) located outside the aluminum substrate (4). The annular peripheral assembly plate (6) is equipped with a flip-type drive blade. The upper part of the outer arc surface of the top assembly box (1) has a downward-bent upper closed casing (8). The lower part of the outer arc surface of the outer casing (3) has an upward-bent lower closed casing (9). The upper edge of the aluminum substrate (4) has an upward-protruding internal extrusion ring (10). The drive motor (11) for controlling the annular peripheral assembly plate (6) is installed on one side inside the top assembly box (1). The top assembly box (1) has an annular assembly groove (12) for assembling the annular peripheral assembly plate (6) at the outer edge position. The annular peripheral assembly plate (6) has a lateral assembly port located at the installation position of the flip-type drive blade. The flip-type drive blade is movably connected to the annular peripheral assembly plate (6) by inserting the internal transverse assembly shaft (13) into the installation holes on both sides of the lateral assembly port. The annular peripheral assembly plate (6) is located inside the annular assembly groove (12) and has an annular helical tooth groove opening upward. The drive motor (11) is inserted into the annular helical tooth groove through the helical gear (17) on the drive shaft and is connected to the annular peripheral assembly plate (6) for transmission. The electric lifting machine (2) drives the outer cover (3) to rise and fall. When the outer cover (3) descends, the inner compression ring (10) cannot be squeezed. The tilting drive blades can be tilted downwards by raising and lowering the height, forming an external turbulence mechanism. Under normal conditions, the tilting drive blades can be closed and sealed, ensuring airtightness when not in use.
2. The intelligent lighting device based on WiFi mesh technology according to claim 1, characterized in that: The upper closed cover (8) and the lower closed cover (9) have arc-shaped protrusions on one side of their mounting surfaces, and arc-shaped grooves that match the arc-shaped protrusions are provided on the other side of their mounting surfaces.
3. The intelligent lighting device based on WiFi mesh technology according to claim 1, characterized in that: The flip-type drive blade includes a main blade (14) with an internally mounted transverse assembly shaft (13), an elastic bending plate (15) mounted on the upper end of the main blade (14), and a limiting protrusion (16) of an integral structure fixed on the side wall of the fixed end of the elastic bending plate (15).
4. The intelligent lighting device based on WiFi mesh technology according to claim 1, characterized in that: The outer cover (3) has an upwardly protruding external threaded lifting tube (18) and an outer guide tube (19) at the middle position of the upper surface. The outer cover (3) is inserted into the electric control elevator (2) through the external threaded lifting tube (18) and threadedly assembled with the electric control elevator (2). The outer cover (3) is inserted into the top assembly box (1) from bottom to top through the outer guide tube (19) and slidably connected with the top assembly box (1).
5. A smart lighting device based on Wi-Fi mesh technology according to claim 1, characterized in that: The upper closed cover (8) has an inclined guide surface on its inner side.
6. A smart lighting device based on WiFi mesh technology according to claim 1, characterized in that: An outer filter screen (20) is fixedly mounted on the upper side of the outer side of the upper closed cover (8).
Citation Information
Patent Citations
Telescopic ceiling fan lamp
CN210599494U