A flat plate head shaking fan and a fan lamp
By designing a mounting method and LED light source components for the flat-panel oscillating fan, the problems of cumbersome assembly and small air outlet area of traditional fans have been solved, achieving the effects of simplified assembly, reduced costs, and expanded air outlet area.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGSHAN MEILI OPTOELECTRONICS CO LTD
- Filing Date
- 2025-07-09
- Publication Date
- 2026-06-26
Smart Images

Figure CN224413926U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of oscillating fan technology, and specifically relates to a flat oscillating fan and a fan light. Background Technology
[0002] Traditional ceiling-mounted fans are usually ceiling fans or ceiling-mounted fans. Ceiling fans are installed directly on the ceiling via a rod. The rod is relatively long and needs to be detachable during transportation to reduce packaging volume. Users need to assemble it themselves after receiving the product, which is quite cumbersome. In addition, ceiling fans blow air directly downwards and cannot change the airflow direction, resulting in a small airflow area and reducing the user experience.
[0003] Ceiling fan lights typically have a fan housing cavity inside the ceiling light. The side of the ceiling light has an air inlet corresponding to the housing cavity, and the front of the ceiling light has an air outlet corresponding to the housing cavity. The fan draws in air through the air inlet and blows the air out through the air outlet. However, installing a regular fan inside the ceiling light makes the structure of the ceiling light more complex, the assembly more cumbersome, and the assembly and material costs are higher. Moreover, the air outlet angle of this type of fan cannot be changed. To adjust the air outlet angle, a rotatable louver structure is needed at the air outlet, but the adjustable angle is limited, and the air volume is small, which also reduces the user experience. Utility Model Content
[0004] The main objective of this invention is to provide a flat-panel oscillating fan and fan light. A fixed protruding edge is formed by extending outwards from the edge of the oscillating fan base. The bottom of the oscillating fan base passes through a mounting hole and extends outwards from the front of the fixed panel. The fixed protruding edge abuts and is fixed to a fixed protruding ring, allowing the oscillating fan base to be accommodated within a mounting recess. Using this solution, the oscillating fan base is fixed to the fixed panel by passing through it. Compared to traditional ceiling fans, this saves on the packaging volume of the hanging rod, and avoids complex assembly for the user. Furthermore, compared to ceiling fans, the oscillation function expands the fan's airflow area, improving the user experience. Compared to traditional ceiling fan lights, the fan can be directly installed on the fixed panel, making the structure of the flat-panel oscillating fan simpler and the assembly process easier, reducing assembly and material costs. Moreover, the oscillation function increases both the airflow area and the air volume, further enhancing the user experience.
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution:
[0006] A flat-panel oscillating fan includes: a fixed panel, the back of which is recessed downward to form a mounting recess groove, a mounting through hole at the bottom of the mounting recess groove, the opening of which extends toward the interior space of the mounting recess groove to form a fixing protrusion ring; and an oscillating fan assembly including: an oscillating fan base and fan blades, a drive shaft extending outward from the bottom of the oscillating fan base, the fan blades being mounted on the free end of the drive shaft, and the oscillating fan base driving the fan blades to oscillate while rotating via the drive shaft; wherein, the top edge of the oscillating fan base extends outward to form a fixing protrusion, the bottom of the oscillating fan base passes through the mounting through hole and extends outward from the front of the fixed panel, the fixing protrusion abuts and is fixed to the fixing protrusion ring, so that the oscillating fan base is partially accommodated within the mounting recess groove.
[0007] As a preferred embodiment of a flat-panel oscillating fan, the oscillating fan base includes: a base housing and a base cover plate; the fixing protrusion extends outward from the top edge of the base housing, the fixing protrusion ring has a fixing groove, and the fixing protrusion edge has a fixing through hole. The fixing screw passes through the fixing through hole and extends into the fixing groove for fixing. The base cover plate is fixed to the opening at the top of the base housing; the fixing protrusion ring also has a positioning protrusion, and the fixing protrusion edge also has a positioning through hole. After the positioning protrusion extends into the positioning through hole, the fixing groove and the fixing through hole are aligned, which facilitates the fixing screw passing through the fixing through hole and extending into the fixing groove for fixing.
[0008] As a preferred embodiment of the flat panel oscillating fan, the back of the fixed panel protrudes upward to form multiple reinforcing ribs, which extend radially around the outside of the fixed protrusion ring into the space on the back of the fixed panel. The reinforcing ribs are used to increase the structural strength of the fixed panel.
[0009] As a preferred embodiment of the flat panel oscillating fan, the back edge of the fixed panel extends upward to form a snap-fit protrusion. An embedding notch is provided at the connection point of adjacent snap-fit protrusions. After the embedding notch is embedded into the connection point of the ceiling joist, the snap-fit protrusion abuts against the outer side of the ceiling joist. Multiple snap-fit protrusions are provided on the inner side of the snap-fit protrusion. A snap-fit groove is provided on the outer side of the ceiling joist at the position corresponding to each snap-fit protrusion. After the snap-fit protrusion snaps into the corresponding snap-fit groove, the fixed panel is installed on the ceiling joist.
[0010] As a preferred embodiment of the flat panel oscillating fan, the back of the fixed panel is provided with a plurality of abutting protrusions near each of the snap-fit protrusions. Each of the abutting protrusions abuts against the inner side of the ceiling joist, pressing the ceiling joist tightly against the inner side of the corresponding snap-fit protrusion.
[0011] As a preferred embodiment of the flat panel oscillating fan, the back of the fixing panel is provided with multiple fixing protrusions, and fixing screws pass through the fixing panel and the fixing protrusions from the front of the fixing panel and extend into the ceiling joists or ceiling for fixing; the back edge of the fixing panel extends upward to form a shielding protrusion, the bottom of the shielding protrusion abuts against the bottom of the ceiling joists or ceiling, and the shielding protrusion is used to shield the gap between the back of the fixing panel and the ceiling joists and ceiling.
[0012] This utility model also provides a fan light, including: a light source assembly and a power driver, which includes a flat oscillating fan as described in any of the above claims; the light source assembly is installed on the front of the fixed panel around the oscillating fan assembly, and the power driver is installed on the back of the fixed panel near the oscillating fan base.
[0013] As a preferred embodiment of the fan light, the light source assembly includes: an LED light source and a ring-shaped light-transmitting cover;
[0014] The front of the fixed panel is recessed upward at the position surrounding the oscillating fan assembly to form a light source mounting groove. The LED light source is installed at the bottom of the light source mounting groove, and the annular light-transmitting lampshade is installed at the opening of the light source mounting groove.
[0015] As a preferred embodiment of the fan light, the side of the annular light-transmitting lampshade is provided with multiple cantilever hooks, and the opening of the light source mounting ring groove is provided with a number of engaging slots equal to the number of cantilever hooks; the engaging slot is arc-shaped and includes: an insertion port and an engaging port communicating with the insertion port, the width of the insertion port being greater than the width of the engaging port, the cantilever hook extending from the engaging port into the engaging slot, rotating to the engaging port and engaging with the engaging port; the engaging slot is provided with an anti-retraction protrusion between the insertion port and the engaging port, the cantilever hook sliding past the anti-retraction protrusion and engaging with the engaging port, the anti-retraction protrusion abutting against one end of the cantilever hook to prevent the cantilever hook from exiting from the insertion port.
[0016] As a preferred embodiment of the fan light, the back of the fixed panel is provided with a wire-passing hole at the position corresponding to the inner wall of the mounting ring groove of the light source. A part of the power line from the power drive passes through the wire-passing hole and is electrically connected to the LED light source, and the other part is electrically connected to the oscillating fan assembly.
[0017] The beneficial effects of this utility model are:
[0018] This utility model proposes a flat oscillating fan and fan light, comprising: a fixed panel, the back of which is recessed downward to form a mounting recess groove, a mounting through hole at the bottom of the mounting recess groove, the opening of which extends toward the interior space of the mounting recess groove to form a fixing protrusion ring; an oscillating fan assembly, comprising: an oscillating fan base and fan blades, a drive shaft extending outward from the bottom of the oscillating fan base, the fan blades being mounted on the free end of the drive shaft, the oscillating fan base driving the fan blades to oscillate while rotating via the drive shaft; a fixing protrusion extending outward from the edge of the oscillating fan base, the bottom of the oscillating fan base passing through the mounting through hole and extending outward from the front of the fixed panel, the fixing protrusion abutting and fixing to the fixing protrusion ring, so that the oscillating fan base is partially accommodated within the mounting recess groove. The above solution uses a base that passes through a fixed panel to secure the fan. Compared to traditional ceiling fans, this saves on the packaging volume of the hanging rod and avoids complicated assembly for the user. Furthermore, compared to ceiling fans, the oscillating motion expands the fan's airflow area, improving the user experience. Compared to traditional ceiling fan lights, the fan can be directly installed on the fixed panel, making the structure of the flat-panel oscillating fan simpler and the assembly process easier, reducing assembly and material costs. Moreover, the oscillating motion increases both the airflow area and the air volume, further enhancing the user experience. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort, wherein:
[0020] Figure 1 This is a structural schematic diagram of the fan light provided by this utility model from one angle;
[0021] Figure 2 yes Figure 1 The diagram shows the structure of the fan light from another angle;
[0022] Figure 3 yes Figure 2 The diagram shown is an exploded image of a fan light.
[0023] Figure 4 yes Figure 3 A schematic diagram of an angle of the mounting panel of the fan light shown;
[0024] Figure 5 yes Figure 4 A partially enlarged schematic diagram of point A on the mounting panel of the fan light shown;
[0025] Figure 6 yes Figure 4 A schematic diagram of the mounting panel for the fan light from another angle;
[0026] Figure 7 yes Figure 3 An exploded view of the oscillating fan base of the fan light shown;
[0027] Figure 8 yes Figure 3 The diagram shows the structure of the ring-shaped light-transmitting lampshade of the fan light.
[0028] Figure 9 This is a structural schematic diagram of an alternative embodiment of the fan light provided by this utility model from one angle. Detailed Implementation
[0029] The technical solutions in the embodiments of this utility model will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0030] Traditional ceiling-mounted fans are usually ceiling fans or ceiling-mounted fans. Ceiling fans are installed directly on the ceiling via a rod. The rod is relatively long and needs to be detachable during transportation to reduce packaging volume. Users need to assemble it themselves after receiving the product, which is quite cumbersome. In addition, ceiling fans blow air directly downwards and cannot change the airflow direction, resulting in a small airflow area and reducing the user experience.
[0031] Ceiling fan lights typically have a fan housing cavity inside the ceiling light. The side of the ceiling light has an air inlet corresponding to the housing cavity, and the front of the ceiling light has an air outlet corresponding to the housing cavity. The fan draws in air through the air inlet and blows the air out through the air outlet. However, installing a regular fan inside the ceiling light makes the structure of the ceiling light more complex, the assembly more cumbersome, and the assembly and material costs are higher. Moreover, the air outlet angle of this type of fan cannot be changed. To adjust the air outlet angle, a rotatable louver structure is needed at the air outlet, but the adjustable angle is limited, and the air volume is small, which also reduces the user experience.
[0032] like Figure 1 , Figure 2 and Figure 3The present invention provides a fan light, comprising: a light source assembly 10, a power driver 20, and a flat oscillating fan 30. The flat oscillating fan 30 includes: a fixed panel 31, the back of which is recessed downward to form a mounting recess 311, and a mounting through hole 312 at the bottom of the mounting recess 311. The opening of the mounting through hole 312 extends toward the interior space of the mounting recess 311 to form a fixing protrusion 313; an oscillating fan assembly 32, comprising: an oscillating fan base 321 and fan blades 322, a drive shaft 3211 extending outward from the bottom of the oscillating fan base 321, and fan blades 322 mounted on the free end of the drive shaft 3211. The oscillating fan base 321 drives the fan blades 322 to oscillate while rotating through the drive shaft 3211; the light source assembly 10 is mounted on the front of the fixed panel 31 surrounding the oscillating fan assembly 32, and the power driver 20 is mounted on the back of the fixed panel 31 near the oscillating fan base 321.
[0033] The top edge of the oscillating fan base 321 extends outward to form a fixing protrusion 3212. The bottom of the oscillating fan base 321 passes through the mounting hole 312 and extends outward from the front of the fixing panel 31. The fixing protrusion 3212 abuts against and is fixed to the fixing protrusion 313, so that the oscillating fan base 321 is partially accommodated in the mounting clearance groove 311.
[0034] In this utility model, the above-mentioned solution is adopted, in which the oscillating fan base 321 is fixed to the fixed panel 31 by passing through the fixed panel 31. Compared with traditional ceiling fans, this saves the packaging volume of the hanging rod, and users avoid complicated assembly after receiving the product. Moreover, compared with ceiling fans, it can also oscillate to expand the air outlet area of the fan, which is conducive to improving the user experience. Compared with traditional ceiling fan lights, the fan can be directly installed on the fixed panel 31, making the structure of the flat oscillating fan 30 simpler and the assembly process simpler, reducing assembly and material costs. In addition, the fan can oscillate to increase the air outlet area and the air volume, further improving the user experience.
[0035] like Figure 3 , Figure 4 , Figure 5 , Figure 6 , Figure 7 and Figure 8As shown, for mounting the oscillating fan base 321, the oscillating fan base 321 includes: a base housing 3213 and a base cover plate 3214; the fixing protrusion 3212 extends outward from the top edge of the base housing 3213, the fixing protrusion 313 has a fixing groove 3131, the fixing protrusion 3212 has a fixing through hole 3215, the fixing screw passes through the fixing through hole 3215 and extends into the fixing groove 313 for fixing, and the base cover plate 3214 is fixed to the base housing. The opening at the top of body 3213; the fixing protrusion 313 is also provided with a positioning protrusion 3132, and the fixing protrusion 3212 is also provided with a positioning through hole 3216. After the positioning protrusion 3132 extends into the positioning through hole 3216, the fixing groove 3131 is aligned with the fixing through hole 3215, so that the fixing screw can pass through the fixing through hole 3215 and extend into the fixing groove 3131 for fixing, thereby installing the oscillating fan base 321 onto the fixing protrusion 3212 of the fixing panel 31.
[0036] To enhance the structural strength of the fixing panel 31, a plurality of reinforcing ribs 314 are formed by protruding upward on the back side of the fixing panel 31. The plurality of reinforcing ribs 314 extend radially around the outside of the fixing protrusion ring 313 into the space on the back side of the fixing panel 31. The reinforcing ribs 314 are used to increase the structural strength of the fixing panel 31.
[0037] To install the flat oscillating fan 30, the back edge of the fixing panel 31 extends upward to form a snap-fit protrusion 315. An embedding notch 3151 is provided at the connection between adjacent snap-fit protrusions 315. After the embedding notch 3151 is embedded into the connection of the ceiling joist, the snap-fit protrusion 315 abuts against the outer side of the ceiling joist. The inner side of the snap-fit protrusion 315 is provided with multiple snap-fit protrusions 3152. The outer side of the ceiling joist is provided with a snap-fit groove (not shown) at the position corresponding to each snap-fit protrusion 3152. After the snap-fit protrusion 3152 snaps into the corresponding snap-fit groove (not shown), the fixing panel 31 is installed on the ceiling joist, thereby fixing the fixing panel 31 to the ceiling joist.
[0038] To further strengthen the installation structure of the flat oscillating fan 30, the back of the fixing panel 31 is provided with a plurality of abutting protrusions 316 near each of the snap-fit protrusions 315. Each abutting protrusion 316 abuts against the inner side of the ceiling joist, pressing the ceiling joist against the inner side of the corresponding snap-fit protrusion 315, thereby firmly installing the flat oscillating fan 30 onto the ceiling joist.
[0039] like Figure 9As shown, in an alternative embodiment of this utility model, the flat oscillating fan 30 can also be installed on the ceiling. The back of the fixing panel 31 is provided with a plurality of fixing protrusions 317. The fixing screw passes through the fixing panel 31 and the fixing protrusions 317 from the front of the fixing panel 31 and extends into the ceiling joists or ceiling for fixing. Thus, the flat oscillating fan 30 can also be installed on the ceiling by fixing screws. The back edge of the fixing panel 31 extends upward to form a shielding protrusion 318. The bottom of the shielding protrusion 318 abuts against the bottom of the ceiling joists or ceiling. The shielding protrusion 318 is used to shield the gap between the back of the fixing panel 31 and the ceiling joists and ceiling, thereby improving the aesthetic appeal of the flat oscillating fan 30.
[0040] like Figure 4 , Figure 5 , Figure 7 and Figure 8 As shown, in order to install the light source assembly 10, the light source assembly 10 includes: an LED light source 11 and an annular light-transmitting lampshade 12; the front of the fixing panel 31 is recessed upward at the position surrounding the oscillating fan assembly 32 to form a light source mounting groove 319, the LED light source 11 is installed at the bottom of the light source mounting groove 319, and the annular light-transmitting lampshade 12 is installed at the opening of the light source mounting groove 319, and the light emitted by the LED light source 11 passes through the annular light-transmitting lampshade 12 and is emitted to the outside.
[0041] To install the annular light-transmitting lampshade 12, the side of the annular light-transmitting lampshade 12 is provided with a plurality of cantilever hooks 121. The opening of the light source mounting annular groove 319 is provided with a number of snap-fit grooves 3191 equal to the number of cantilever hooks 121. The snap-fit grooves 3191 are arc-shaped and include: a snap-in port 31911 and a snap-fit port 31912 communicating with the snap-in port 31911. The width of the snap-in port 31911 is greater than the width of the snap-fit port 31912. The cantilever hooks 121 extend from the snap-fit port. Position 31912 extends into the snap-fit groove 3191, rotates to the snap-fit port 31912, and snaps into the snap-fit port 31912; the snap-fit groove 3191 is provided with an anti-retraction protrusion 31913 between the snap-in port 31911 and the snap-fit port 31912, the cantilever hook 121 slides past the anti-retraction protrusion 31913 and snaps into the snap-fit port 31912, the anti-retraction protrusion 31913 abuts against one end of the cantilever hook 121 to prevent the cantilever hook 121 from exiting from the snap-in port 31911.
[0042] In order to supply power to the LED light source 11 and the oscillating fan assembly 32, the back of the fixed panel 31 is provided with a wire through hole 3192 at the position corresponding to the inner wall of the light source mounting ring groove 319. A part of the power line from the power drive 20 passes through the wire through hole 3192 and is electrically connected to the LED light source 11, and the other part is electrically connected to the oscillating fan assembly 32. Thus, the power drive 20 supplies power to the LED light source 11 and the oscillating fan assembly 32 through the power line.
[0043] The embodiments of this utility model have been described in detail above with reference to the accompanying drawings, but this utility model is not limited to the described embodiments. For those skilled in the art, various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of this utility model, and these variations still fall within the protection scope of this utility model.
Claims
1. A flat plate oscillating fan, characterized by, include: A fixed panel is provided, wherein the back of the fixed panel is recessed downward to form a mounting relief groove, and a mounting through hole is provided at the bottom of the mounting relief groove. The opening of the mounting through hole extends toward the inner space of the mounting relief groove to form a fixing protrusion ring. An oscillating fan assembly includes: an oscillating fan base and fan blades, wherein a drive shaft extends outward from the bottom of the oscillating fan base, and the fan blades are mounted on the free end of the drive shaft. The oscillating fan base drives the fan blades to oscillate while rotating through the drive shaft. The top edge of the oscillating fan base extends outward to form a fixed protrusion. The bottom of the oscillating fan base passes through the mounting hole and extends outward from the front of the fixing panel. The fixed protrusion abuts against and is fixed to the fixing protrusion ring, so that the oscillating fan base is partially accommodated in the mounting clearance groove.
2. The flat panel oscillating fan of claim 1, wherein, The oscillating fan base includes: a base housing and a base cover plate; The fixing protrusion extends outward from the top edge of the base housing. The fixing protrusion ring is provided with a fixing groove. The fixing protrusion is provided with a fixing through hole. The fixing screw passes through the fixing through hole and extends into the fixing groove for fixing. The base cover plate is fixed to the opening at the top of the base housing. The fixing protruding ring is also provided with a positioning protruding post, and the fixing protruding edge is also provided with a positioning through hole. After the positioning protruding post extends into the positioning through hole, the fixing groove and the fixing through hole are aligned, so that the fixing screw can pass through the fixing through hole and extend into the fixing groove for fixing.
3. The flat panel oscillating fan of claim 1, wherein, The back of the fixing panel protrudes upward to form multiple reinforcing ribs, which extend radially around the outside of the fixing ring into the space on the back of the fixing panel. The reinforcing ribs are used to increase the structural strength of the fixing panel.
4. The flat panel oscillating fan of claim 1, wherein, The back edge of the fixed panel extends upward to form a snap-fit protrusion. An embedding notch is provided at the connection between adjacent snap-fit protrusions. After the embedding notch is embedded into the connection of the ceiling keel, the snap-fit protrusion abuts against the outer side of the ceiling keel. The inner side of the snap-fit protrusion is provided with multiple snap-fit protrusions, and the outer side of the ceiling keel is provided with snap-fit grooves corresponding to each of the snap-fit protrusions. After the snap-fit protrusions snap into the corresponding snap-fit grooves, the fixing panel is installed on the ceiling keel.
5. The flat panel oscillating fan of claim 4, wherein, The back of the fixed panel is provided with a plurality of abutting protrusions near each of the snap-fit protrusions. Each of the abutting protrusions abuts against the inner side of the ceiling keel, pressing the ceiling keel against the inner side of the corresponding snap-fit protrusion.
6. The flat panel oscillating fan of claim 1, wherein, The back of the fixing panel is provided with multiple fixing protrusions, and fixing screws pass through the fixing panel and the fixing protrusions from the front of the fixing panel and then extend into the ceiling joists or ceiling for fixing. The back edge of the fixed panel extends upward to form a shielding protrusion. The bottom of the shielding protrusion abuts against the bottom of the ceiling joist or ceiling. The shielding protrusion is used to cover the gap between the back of the fixed panel and the ceiling joist or ceiling.
7. A fan light comprising: A light source assembly and a power supply driver, characterized in that it includes a flat-panel oscillating fan as described in any one of claims 1-6; The light source assembly is mounted on the front of the fixed panel, surrounding the oscillating fan assembly, and the power supply is mounted on the back of the fixed panel, near the oscillating fan base.
8. The fan lamp of claim 7, wherein, The light source assembly includes: an LED light source and a ring-shaped light-transmitting lampshade; The front of the fixed panel is recessed upward at the position surrounding the oscillating fan assembly to form a light source mounting groove. The LED light source is installed at the bottom of the light source mounting groove, and the annular light-transmitting lampshade is installed at the opening of the light source mounting groove.
9. The fan lamp of claim 8, wherein, The side of the annular light-transmitting lampshade is provided with multiple cantilever hooks, and the opening of the light source mounting ring groove is provided with a number of snap-fit grooves equal to the number of cantilever hooks. The snap-fit groove is arc-shaped and includes: a snap-in port and a snap-fit port communicating with the snap-in port. The width of the snap-in port is greater than the width of the snap-fit port. The cantilever hook extends into the snap-fit groove from the position of the snap-fit port, rotates to the snap-fit port, and snaps into the snap-fit port. The snap-fit groove has an anti-retraction protrusion at the position between the snap-in port and the snap-fit port. After the cantilever hook slides past the anti-retraction protrusion, it snaps into the snap-fit port. The anti-retraction protrusion abuts against one end of the cantilever hook to prevent the cantilever hook from exiting from the snap-in port.
10. The fan lamp of claim 8, wherein, The back of the fixed panel has a through hole at the position corresponding to the inner wall of the mounting ring groove of the light source. A part of the power line from the power drive passes through the through hole and is electrically connected to the LED light source, and the other part is electrically connected to the oscillating fan assembly.