Fan light

CN224705989UActive Publication Date: 2026-09-01OPPLE LIGHTING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522007343.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-17
Publication Date
2026-09-01
Estimated Expiration
2035-09-17

AI Technical Summary

Technical Problem

[0004]本申请实施例的目的是提供一种风扇灯,能够解决相关技术中风扇灯的灯具的更换成本较高的问题

Benefits of technology

[0013] Optionally, the first and second receiving slots are arranged sequentially along the circumference of the connecting sleeve, and along the axial direction of the lamp, a portion of the orthographic projection of the first control device coincides with the orthographic projection of the first receiving slot. With this arrangement, even if there is a slight deviation between the first control device and the preset installation position, the first control device can still be installed into the first receiving slot, thereby reducing the assembly difficulty of the fan light.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224705989U_ABST
    Figure CN224705989U_ABST
Patent Text Reader

Abstract

This application discloses a fan light, belonging to the field of lighting equipment technology. The disclosed fan light includes: a mounting assembly for connecting to a mounting base; a fan, a connecting plate, and a first control device. The fan is disposed on the mounting assembly, the connecting plate is disposed on the fan, and the first control device is mounted on the connecting plate and connected to the fan, and the first control device is used to control the operation of the fan; a lamp and a second control device, both disposed on the connecting plate. The second control device is independent of the first control device and is connected to the lamp, used to control the operation of the lamp. When replacing the lamp of this fan light, only the second control device used to control the operation of the lamp needs to be replaced, without replacing the first control device used to control the operation of the fan, thereby reducing the replacement cost of the lamp.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application belongs to the field of lighting equipment technology, and specifically relates to a fan light. Background Technology

[0002] Fan lights, as a combination of lamps and fans, have both the lighting function of lamps and the fan function of fans, and are widely used in people's daily work and life.

[0003] However, traditional fan lights still have certain drawbacks, the most significant being the high cost of replacing the light fixtures. Therefore, reducing the replacement cost of fan light fixtures has become a pressing issue for those skilled in the art. Utility Model Content

[0004] The purpose of this application is to provide a fan light that can solve the problem of high replacement costs for fan lights in related technologies.

[0005] This application provides a fan light for mounting on a mounting base, including: Installation components are used to connect to the installation base; The assembly includes a fan, a connecting plate, and a first control device. The fan is mounted on the mounting assembly, the connecting plate is mounted on the fan, and the first control device is mounted on the connecting plate and connected to the fan. The first control device is used to control the operation of the fan. The lamp and the second control device are both located on the connecting plate. The second control device is independent of the first control device. The second control device is connected to the lamp and is used to control the operation of the lamp.

[0006] Traditional fan lights have a fan control device and a lamp control device that are integrated into one unit. When replacing the lamp, the entire integrated control device needs to be replaced, which results in a high cost for lamp replacement.

[0007] In this embodiment, the first control device is connected to the fan and used to control the fan's operation, while the second control device is connected to the lamp and used to control the lamp's operation. The second control device and the first control device are independent of each other. In this configuration, the first control device for controlling the fan and the second control device for controlling the lamp are two separate components. Therefore, when replacing the lamp, only the second control device needs to be replaced simultaneously, without replacing the first control device, thus reducing the lamp replacement cost.

[0008] Furthermore, in the scheme of this embodiment, the connecting plate acts as a connection medium between the fan and the lamp. The setting of the connecting plate reduces the difficulty of connecting the fan and the lamp and makes it easy to assemble different types of lamps and fans.

[0009] Optionally, the lamp fixture has a first receiving groove, the opening of which faces the connecting plate. The first control device is located on the side of the connecting plate facing the lamp fixture and is at least partially located within the first receiving groove. With this arrangement, at least part of the first control device is hidden inside the lamp fixture, resulting in a more compact overall fan with a smaller size.

[0010] Optionally, the lamp fixture includes a connecting sleeve and a separator. The separator divides the inner cavity of the connecting sleeve into a first receiving groove and a second receiving groove. The opening of the second receiving groove faces away from the connecting plate. The second control device is located in the lamp fixture and within the second receiving groove. With this arrangement, the second control device is hidden inside the lamp fixture, not occupying external space. This configuration results in a smaller overall space occupied by the second control device and the lamp fixture, thus reducing the size of the fan lamp. Furthermore, the opening of the second receiving groove faces away from the connecting plate, thus facing inwards towards the lamp fixture. This isolates the second control device 320 from the outside, extending its service life. Additionally, the second control device is located within the lamp fixture, allowing for simultaneous installation and removal of the second control device while installing or removing the lamp fixture, reducing the difficulty of assembling and removing both the lamp fixture and the second control device.

[0011] Optionally, the first receiving slot and the second receiving slot are arranged sequentially along the circumference of the connecting sleeve. This arrangement is more reasonable, reduces space waste, and helps to reduce the size of the fan light.

[0012] Optionally, the second receiving groove is disposed around at least a portion of the first receiving groove to accommodate the corresponding arrangement requirements of the first control device and the second control device, specifically, for example, to accommodate the arrangement requirement of the first control device and the second control device being coaxially nested.

[0013] Optionally, the first and second receiving slots are arranged sequentially along the circumference of the connecting sleeve, and along the axial direction of the lamp, a portion of the orthographic projection of the first control device coincides with the orthographic projection of the first receiving slot. With this arrangement, even if there is a slight deviation between the first control device and the preset installation position, the first control device can still be installed into the first receiving slot, thereby reducing the assembly difficulty of the fan light. Attached Figure Description

[0014] Figure 1 This is a perspective view of a fan light disclosed in one embodiment of this application; Figure 2 for Figure 1 A publicly available diagram illustrating the explosion of a fan light; Figure 3 for Figure 1 A partial structural diagram of the publicly available fan light; Figure 4 This is a schematic diagram of the structure of the connecting disk disclosed in an embodiment of this application; Figure 5 for Figure 1 A publicly available cross-sectional view of a fan light; Figure 6 for Figure 1 One of the publicly available structural diagrams of the lighting fixture; Figure 7 for Figure 1 The second publicly disclosed structural diagram of the lighting fixture; Figure 8 for Figure 1 The third publicly disclosed structural diagram of the lighting fixture; Figure 9 for Figure 1 One of the publicly available structural diagrams of the fan light chassis; Figure 10 for Figure 1 The second publicly disclosed structural diagram of the fan light chassis; Figure 11 for Figure 1 A publicly available flowchart of the lighting fixture installation process; Figure 12 This is a perspective view of a fan light disclosed in another embodiment of this application; Figure 13 for Figure 12 A publicly available cross-sectional view of a fan light; Figure 14 for Figure 12 A partial structural diagram of the publicly available fan light; Figure 15 for Figure 12 One of the publicly available schematic diagrams of the chassis structure of the fan light; Figure 16 for Figure 12 The second publicly disclosed structural diagram of the fan light chassis; Figure 17 This is one of the electrical control schematic diagrams of the fan light disclosed in the embodiments of this application; Figure 18 This is the second electrical control schematic diagram of the fan light disclosed in the embodiments of this application.

[0015] Explanation of reference numerals in the attached figures: 100 - Installation components, 110 - Ceiling box, 120 - Hanger, 130 - Hanging rod; 210-Fan, 211-Fan blade, 212-Turntable, 220-First control device, 230-Drive source, 231-Intermediate shaft, 232-Outer shell, 240-Protective shell, 241-First side wall, 242-Second side wall, 260-Receiving cavity; 310-Lamp fixture, 311-Chassis, 3111-Disc body, 3112-Connecting sleeve, 3112a-First receiving groove, 3112b-Second receiving groove, 3112c-First mating part, 3113-Shielding cover, 313-Separator, 320-Second control device, 330-Light emitting mask, 340-Light source module, 350-Optical cavity, 360-Decorative ring; 410-Connecting disc, 411-Second mating part, 420-Reinforcing plate, 430-Shaft sleeve, 440-Nut; 510 - First electrical connection part, 520 - Second electrical connection part; 610 - First communication module; 620 - Second communication module; 700 - Remote Control. Detailed Implementation

[0016] The technical solutions of the embodiments of this application will be clearly described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this application. All other embodiments obtained by those skilled in the art based on the embodiments of this application are within the scope of protection of this application.

[0017] The terms "first," "second," etc., used in the specification and claims of this application are used to distinguish similar objects and not to describe a specific order or sequence. It should be understood that such use of data can be interchanged where appropriate so that embodiments of this application can be implemented in orders other than those illustrated or described herein, and the objects distinguished by "first," "second," etc., are generally of the same class and the number of objects is not limited; for example, a first object can be one or more. Furthermore, in the specification and claims, "and / or" indicates at least one of the connected objects, and the character " / " generally indicates that the preceding and following objects are in an "or" relationship.

[0018] The fan light provided in this application will be described in detail below with reference to the accompanying drawings, through specific embodiments and application scenarios.

[0019] Please refer to Figures 1 to 18 As shown in the figure, this application embodiment provides a fan light for mounting on a mounting base, such as a ceiling. The fan light includes a mounting assembly 100, a fan 210, a connecting plate 410, a first control device 220, a lamp 310, and a second control device 320.

[0020] Specifically, the mounting component 100 is used to connect to the mounting base.

[0021] A fan 210 is mounted on the mounting assembly 100, a connecting plate 410 is mounted on the fan 210, and a first control device 220 is mounted on the connecting plate 410 and connected to the fan 210. The first control device 220 is used to control the operation of the fan 210. The first control device 220 may include, for example, a first circuit board, which is used to control the operation of the fan 210.

[0022] The luminaire 310 and the second control device 320 are both located on the connecting plate 410. The second control device 320 is independent of the first control device 220. The second control device 320 is connected to the luminaire 310 and is used to control the operation of the luminaire 310. The second control device 320 may include, for example, a second circuit board, which is used to control the operation of the luminaire 310.

[0023] In traditional fan lights, the control device for the fan 210 and the control device for the lamp 310 are integrated into one unit. When replacing the lamp 310, the entire integrated control device needs to be replaced, which results in a high replacement cost for the lamp 310.

[0024] In this embodiment, the first control device 220 is connected to the fan 210 and is used to control the operation of the fan 210. The second control device 320 is connected to the lamp 310 and is used to control the operation of the lamp 310. The second control device 320 and the first control device 220 are independent of each other. In this configuration, the first control device 220 for controlling the fan 210 and the second control device 320 for controlling the lamp 310 are two separate components. In this way, when replacing the lamp 310, only the second control device 320 for controlling the lamp 310 needs to be replaced at the same time, without replacing the first control device 220, thereby reducing the replacement cost of the lamp 310.

[0025] Typically, the design of the lamp 310 changes constantly, while the design of the fan 210 remains largely unchanged. The solution provided in this embodiment fully decouples the control of the lamp 310 and the fan 210. Independent first and second control devices 220 control the operation of the lamp 310 and fan 210 respectively. This eliminates the need to redesign the first control device 220 when the design of the lamp 310 changes, thereby reducing design costs and improving the development efficiency of the fan-shaped light. Furthermore, the first control device 220 can be reconfigured with a new lamp 310 to create a new fan-shaped light, thus reducing waste.

[0026] Furthermore, in this embodiment, the connecting plate 410 acts as a connection medium between the fan 210 and the lamp 310. The setting of the connecting plate 410 reduces the difficulty of connecting the fan 210 and the lamp 310, and makes it easy to assemble different types of lamps 310 with the fan 210.

[0027] Furthermore, in actual use, when there is no need to install the fan 210, for example, the mounting component 100, the fan 210, and the components that match the fan 210, such as the first control device 220, can be omitted. In this case, for example, the connecting plate 410 can be directly installed on the mounting base, so that the fan light only has the function of lighting and can be used as a lighting device.

[0028] As one specific implementation method, refer to Figure 2 and Figure 5 As shown, the fan 210 includes a turntable 212 and fan blades 211. The fan blades 211 are disposed on the turntable 212. The fan also includes a drive source 230, which is, for example, a motor. The housing 232 of the drive source 230 is connected to the turntable 212. During the operation of the drive source 230, its housing 232 rotates, thereby driving the turntable 212 to rotate, thus realizing the fan.

[0029] Optionally, the luminaire 310 is detachably mounted on the connecting plate 410 to facilitate replacement of the luminaire 310.

[0030] Optionally, to improve the strength of the connecting plate 410, a reinforcing plate 420 may be provided on the side of the connecting plate 410 facing away from the lamp 310.

[0031] In one alternative embodiment, reference is made to... Figure 2 As shown, the mounting assembly 100 includes, for example, a ceiling box 110, a bracket 120, and a rod 130. The drive source 230 also includes an intermediate shaft 231. During operation, the intermediate shaft 231 of the drive source 230 does not rotate. The bracket 120 is mounted on the ceiling box 110 and connected to the mounting base. One end of the rod 130 is connected to the bracket 120, and the other end is detachably connected to the intermediate shaft 231 of the drive source 230 via a connecting pin. With this configuration, removing the connecting pin between the rod 130 and the intermediate shaft 231 allows the fan light to be disassembled into two parts, thus reducing the difficulty of transporting the fan light.

[0032] Furthermore, both the boom 130 and the intermediate shaft 231 are hollow structures. The fan light also includes an intermediate cable, which is electrically connected to both the first control device 220 and the second control device 320. One end of the intermediate cable passes sequentially through the inner cavity of the intermediate shaft 231 and the inner cavity of the boom 130, and then is electrically connected to an external power supply. With this configuration, the intermediate cable is hidden inside the boom 130 and the intermediate shaft 231, which protect the intermediate cable, thus reducing its exposure to external influences and extending its service life.

[0033] Additionally, the end of the intermediate shaft 231 opposite to the hanger 130 passes through the reinforcing plate 420 and is locked by the nut 440 to mount the connecting plate 410 to the fan 210. Also, refer to... Figure 5As shown, the fan light also includes a bushing 430, which separates the housing 232 of the drive source 230 from the reinforcing plate 420 to prevent them from contacting each other directly, thereby reducing friction between them.

[0034] In another embodiment, reference Figure 6 As shown, the lamp 310 is provided with a first receiving groove 3112a, the opening of the first receiving groove 3112a is disposed facing the connecting plate 410, and the first control device 220 is disposed on the side of the connecting plate 410 facing the lamp 310, and is at least partially located in the first receiving groove 3112a.

[0035] In this embodiment, at least a portion of the first control device 220 is located within the first receiving slot 3112a of the lamp 310. This conceals at least a portion of the first control device 220 within the lamp 310, improving the compactness and reducing the size of the fan light. Alternatively, the first control device 220 may be entirely located within the first receiving slot 3112a.

[0036] Optionally, the luminaire 310 includes a chassis 311, and a first receiving groove 3112a is disposed on the chassis 311.

[0037] In other embodiments, the lamp 310 may not have the first receiving groove 3112a. In this case, the first control device 220 and the lamp 310 are arranged sequentially, for example, along the axial direction of the lamp 310. The axial direction of the lamp 310 is, for example, [missing information]. Figure 5 The direction indicated by arrow A in the diagram.

[0038] In another embodiment, reference Figure 9 and Figure 10 As shown, the lamp 310 is provided with a connecting sleeve 3112 and a separator 313. The separator 313 divides the inner cavity of the connecting sleeve 3112 into a first receiving groove 3112a and a second receiving groove 3112b. The opening of the second receiving groove 3112b is disposed away from the connecting plate 410. The second control device 320 is disposed on the lamp 310 and located in the second receiving groove 3112b.

[0039] In this embodiment, the second control device 320 is disposed in the lamp 310 and located in the second receiving groove 3112b. In this way, the second control device 320 is hidden inside the lamp 310 and does not occupy the space outside the lamp 310. Under this arrangement, the second control device 320 and the lamp 310 occupy less space as a whole, thereby reducing the size of the fan light.

[0040] Furthermore, the opening of the second receiving groove 3112b is positioned away from the connecting plate 410. In this way, the opening of the second receiving groove 3112b faces the inside of the lamp, which isolates the second control device 320 from the outside world, thereby extending the service life of the second control device 320.

[0041] In addition, in this embodiment, the second control device 320 is located on the lamp 310. In this way, the second control device 320 can be disassembled and installed at the same time as the lamp 310, thereby reducing the difficulty of disassembling and assembling the lamp 310 and the second control device 320.

[0042] In other embodiments, the second control device 320 may also be located outside the lamp 310.

[0043] In another embodiment, the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112. With this arrangement, the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112. This arrangement is more reasonable, can reduce space waste, and helps to reduce the size of the fan light.

[0044] Optionally, refer to Figure 9 and Figure 10 As shown, both the first receiving groove 3112a and the second receiving groove 3112b are approximately arc-shaped. It should be noted that in this embodiment, the proportions and shapes of the first receiving groove 3112a and the second receiving groove 3112b are not limited; they can be designed according to the actual sizes of the first control device 220 and the second control device 320. Furthermore, the first receiving groove 3112a may extend through its bottom, meaning that in the axial direction of the lamp 310, the first receiving groove 3112a is, for example, a through groove to provide more space to accommodate the first control device 220. Conversely, the second receiving groove 3112b may have a bottom to provide a mounting base for the second control device 320, which is connected to the bottom of the second receiving groove 3112b.

[0045] In another embodiment, reference Figure 11 As shown, the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112, and along the axial direction of the lamp 310, a portion of the orthographic projection of the first control device 220 coincides with the orthographic projection of the first receiving groove 3112a. This means that the cross-sectional area of ​​the first control device 220 is smaller than the cross-sectional area of ​​the first receiving groove 3112a, and the cross-sections of both the first control device 220 and the first receiving groove 3112a are perpendicular to the axial direction of the lamp 310. With this arrangement, even if there is a slight deviation between the first control device 220 and the preset installation position, the first control device 220 can still be installed into the first receiving groove 3112a, thereby reducing the assembly difficulty of the fan light.

[0046] In other embodiments, the shape of the first control device 220 may also be adapted to the shape of the first receiving groove 3112a.

[0047] In one alternative embodiment, reference is made to... Figures 13 to 16 As shown, the second receiving groove 3112b may also be arranged around at least a portion of the first receiving groove 3112a to accommodate the corresponding arrangement requirements of the first control device 220 and the second control device 320.

[0048] Optionally, the second receiving groove 3112b is arranged, for example, around the first receiving groove 3112a. Specifically, refer to Figure 15 and Figure 16 As shown, the first receiving groove 3112a is, for example, a circular structure, and the second receiving groove 3112b is, for example, an annular structure.

[0049] In another embodiment, reference Figure 5 , Figure 8 as well as Figure 13 As shown, the fan light also includes a first electrical connection part 510 and a second electrical connection part 520. The first electrical connection part 510 is disposed on the connecting plate 410 and is used for electrical connection with an external power cord. The first electrical connection part 510 is also electrically connected to the first control device 220. The second electrical connection part 520 is disposed on the lamp 310 and is in conductive contact with the first electrical connection part 510. The second electrical connection part 520 is also electrically connected to the second control device 320.

[0050] In this embodiment, both the second electrical connection part 520 and the first control device 220 are electrically connected to the external power line through the first electrical connection part 510. This reduces the number of components involved in the fan light, simplifies the structure of the fan light, and reduces the assembly difficulty and cost of the fan light.

[0051] Optionally, the first electrical connection part 510 may be electrically connected to the intermediate cable mentioned above, thereby indirectly connected to an external power line via the intermediate cable.

[0052] In other embodiments, a third electrical connection may be added. In this case, the first electrical connection 510 and the third electrical connection are both electrically connected to an external power line, but the first electrical connection 510 is only electrically connected to the first control device 220, and the third electrical connection is electrically connected to the second electrical connection 520.

[0053] In another embodiment, the lamp 310 includes a chassis 311 connected to a connecting plate 410, with at least a portion of the first electrical connection 510 and at least a portion of the second electrical connection 520 disposed within the chassis 311. This reduces the space occupied by the first electrical connection 510 and the second electrical connection 520 outside the chassis 311, thereby improving the compactness of the fan lamp and contributing to a reduction in its size.

[0054] Optionally, refer to Figure 2 , Figure 7 , Figure 9 as well as Figure 10 As shown, the chassis 311 includes a chassis body 3111, a cover 3113, and a connecting sleeve 3112 mentioned above. The chassis body 3111 is arranged around the connecting sleeve 3112. The first electrical connection part 510 is located inside the connecting sleeve 3112. The cover 3113 covers one end of the connecting sleeve 3112 away from the connecting chassis 410. A part of the second electrical connection part 520 is located inside the connecting sleeve 3112, and the other end protrudes from the cover 3113.

[0055] In other embodiments, the first electrical connection portion 510 and the second electrical connection portion 520 may both be located outside the chassis 311.

[0056] In another embodiment, the first electrical connection portion 510 and the second electrical connection portion 520 are plugged into each other. With this arrangement, the electrical connection between the first electrical connection portion 510 and the second electrical connection portion 520 is more reliable, and the two are not easily separated.

[0057] In other embodiments, the first electrical connection portion 510 and the second electrical connection portion 520 may not have a plug-in relationship. In this case, the first electrical connection portion 510 and the second electrical connection portion 520 may be arranged sequentially along the axial direction of the lamp 310, and their opposite ends may be in contact to achieve electrical connection between them.

[0058] In another embodiment, reference Figure 4 and Figure 6 As shown, the luminaire 310 has a first mating part 3112c, and the connecting plate 410 has a second mating part 411. The luminaire 310 and the connecting plate 410 can rotate relative to each other around the axis of the luminaire 310, so that the first mating part 3112c and the second mating part 411 can be engaged or disengaged. When the first mating part 3112c and the second mating part 411 are engaged, the luminaire 310 is detachably connected to the connecting plate 410. When the first mating part 3112c and the second mating part 411 are disengaged, the luminaire 310 is separated from the connecting plate 410.

[0059] Using the solution in this embodiment, the lamp 310 can be disassembled and assembled with only a simple rotation operation, thereby reducing the difficulty of disassembling and assembling the lamp 310.

[0060] Optionally, the luminaire 310 may include, for example, the connecting sleeve 3112 mentioned above. A first mating part 3112c is provided on the connecting sleeve 3112, and the first mating part 3112c is a protrusion that protrudes radially along the connecting sleeve 3112. A second mating part 411 is provided on the side of the connecting plate 410 facing the luminaire 310. The second mating part 411 has a mating groove, and the protrusion engages with or is offset from the mating groove.

[0061] Optionally, the first electrical connection portion 510 and the second electrical connection portion 520 mentioned above can rotate relative to each other around the axis of the lamp 310, so as to enable the first mating portion 3112c to engage with the second mating portion 411 or to be staggered from each other.

[0062] In other embodiments, the luminaire 310 may also be detachably connected to the connecting plate 410 via a threaded connector.

[0063] In another embodiment, reference Figure 4 and Figure 6 As shown, there are at least two first mating parts 3112c and two mating parts 411, and they correspond one to one. Each first mating part 3112c is arranged at intervals along the circumference of the lamp 310, and each second mating part 411 is arranged at intervals along the circumference of the connecting plate 410. The first mating part 3112c is located between two adjacent second mating parts 411 and is engaged with one of the second mating parts 411. Both adjacent second mating parts 411 can be engaged with the first mating part 3112c located between them in the circumference of the connecting plate 410.

[0064] In this embodiment, the number of the first mating part 3112c and the second mating part 411 is at least two. In this way, the lamp 310 and the connecting plate 410 are connected and mated by at least two first mating parts 3112c and at least two second mating parts 411, thereby making the mating between the two more reliable.

[0065] In addition, each of the two adjacent second mating parts 411 can be in a circumferential upper limit mating with the first mating part 3112c located between them. With this arrangement, the two adjacent second mating parts 411 can limit the rotation range of the first mating part 3112c located between them.

[0066] During actual assembly, one of the two adjacent second mating parts 411 has a hook-fitting relationship with the first mating part 3112c located between them. For example, firstly, rotate the lamp 310 in the first direction. When the first mating part 3112c comes into contact with the second mating part 411 with which it does not have a hook-fitting relationship, it means that the lamp 310 has rotated to the initial installation position. Then, rotate the lamp 310 in the second direction opposite to the first direction. When the first mating part 3112c comes into contact with the second mating part 411 with which it has a hook-fitting relationship and cannot continue to rotate, it means that the lamp 310 is installed. In this state, each first mating part 3112c is hook-fitted with the corresponding second mating part 411.

[0067] As can be seen, by making both adjacent second mating parts 411 engage with the first mating part 3112c located between them in the circumferential upper limit of the connecting plate 410, the initial installation position and the final installation position of the lamp 310 can be determined. In this way, the assembly of the lamp 310 can be completed relatively quickly and accurately in the blind installation state.

[0068] Optionally, the first mating part 3112c may be, for example, the protrusion mentioned above, and the second mating part 411 may be provided with the mating groove mentioned above. The groove wall of the mating groove of one of the two adjacent second mating parts 411 and the other may be mated with the first mating part 3112c located between them in the circumferential upper limit of the connecting plate 410.

[0069] Optionally, the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112, or the second receiving groove 3112b is arranged as a whole around the first receiving groove 3112a. When the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112, the orthographic projection of the first control device 220 coincides with a part of the orthographic projection of the first receiving groove 3112a, so that the first receiving groove 3112a can rotate with the lamp 310 relative to the first control device 220.

[0070] In other embodiments, the two adjacent second mating portions 411 and the first mating portion 3112c located between them may not have a limiting mating relationship in the circumferential direction of the connecting disk 410. Furthermore, the number of both the first mating portion 3112c and the second mating portion 411 may be one.

[0071] In one alternative embodiment, reference is made to... Figure 11 As shown, the first receiving groove 3112a and the second receiving groove 3112b are arranged sequentially along the circumference of the connecting sleeve 3112. When the lamp 310 rotates to the initial installation position along the first direction mentioned above, the first control device 220 engages with one side wall of the first receiving groove 3112a in the first direction. When the lamp 310 rotates to the final installation position along the second direction mentioned above, the first control device 220 engages with the other side wall of the first receiving groove 3112a in the second direction. That is, the initial and final installation positions of the lamp 310 can also be determined by the limiting engagement between the groove wall of the first receiving groove 3112a and the first control device 220. The first direction is, for example, counterclockwise, and the second direction is, for example, clockwise.

[0072] It should be noted that the initial and final installation positions of the lamp 310 can be determined by simultaneously utilizing the limiting engagement between the wall of the first receiving groove 3112a and the first control device 220, and by utilizing the limiting engagement between the two adjacent second mating parts 411 and the first mating part 3112c located between them in the circumferential upper limit engagement of the connecting plate 410. Alternatively, the initial and final installation positions of the lamp 310 can be determined solely by utilizing the limiting engagement between the wall of the first receiving groove 3112a and the first control device 220, or solely by utilizing the limiting engagement between the two adjacent second mating parts 411 and the first mating part 3112c located between them in the circumferential upper limit engagement of the connecting plate 410. In this embodiment, there is no limitation on this, and the design can be carried out according to actual needs.

[0073] In another embodiment, reference Figure 13 As shown, the fan light also includes a protective shell 240, which is disposed on the connecting plate 410 and together with the connecting plate 410 forms a receiving cavity 260, in which the first control device 220 is located. Under the protection of the protective shell 240, the first control device 220 is less affected by external influences, thereby extending the service life of the first control device 220.

[0074] Optionally, refer to Figure 11 As shown, the protective housing 240 has, for example, a first sidewall 241 and a second sidewall 242. When the lamp 310 rotates to the initial installation position along the first direction mentioned above, the first sidewall 241 of the protective housing 240 engages, for example, with one of the sidewalls of the first receiving groove 3112a in the first direction, thereby indirectly achieving an upper limit engagement between the first control device 220 and the groove wall of the first receiving groove 3112a in the first direction. When the lamp 310 rotates to the final installation position along the second direction mentioned above, the second sidewall 242 of the protective housing 240 engages, for example, with the other sidewall of the first receiving groove 3112a in the second direction, thereby indirectly achieving an upper limit engagement between the first control device 220 and the groove wall of the first receiving groove 3112a in the second direction. Due to the presence of the protective housing 240, the first control device 220 does not directly contact the groove wall of the first receiving groove 3112a, thereby reducing the probability of damage to the first control device 220.

[0075] In another embodiment, reference Figure 5 and Figure 13As shown, the luminaire 310 includes a chassis 311, a light-emitting mask 330, and at least two light source modules 340. The chassis 311 is connected to a connecting plate 410, and the light-emitting mask 330 is connected to the chassis 311, together forming an optical cavity 350. The light source modules 340 are located on the side of the chassis 311 facing the light-emitting mask 330 and are situated within the optical cavity 350. The light source modules 340 are arranged at intervals along the direction from the center of the chassis 311 to its edge. Both the chassis 311 and the light-emitting mask 330 are arc-shaped structures, and both protrude along the optical axis of the light source modules 340. That is, the light-emitting mask 330 protrudes outwards, and the protrusion direction of the chassis 311 is the same as that of the light-emitting mask 330. For example, the optical axis direction of the light source modules 340 is... Figure 5 The direction indicated by arrow B in the diagram is, for example, the direction from the center of chassis 311 to the edge of chassis 311. Figure 5 The direction indicated by the arrow C in the diagram.

[0076] In this embodiment, both the chassis 311 and the light-emitting mask 330 protrude along the optical axis of the light source module 340, and their protrusion directions are consistent. As a result, the dimensional deviation of each position of the optical cavity 350 in the optical axis of the light source module 340 is small, which helps to improve the light emission effect of the lamp 310.

[0077] Additionally, the edge of the chassis 311 is typically provided with a decorative ring 360, which is used to cover the gap between the chassis 311 and the connecting plate 410. (Reference) Figure 5 As shown, in this embodiment, the distance between the edge of the chassis 311 and the connecting plate 410 is relatively small. This allows the decorative ring 360 to be designed to be smaller in the axial direction of the lamp 310, thus concealing the gap between the chassis 311 and the connecting plate 410. Furthermore, designing the decorative ring 360 to be smaller in the axial direction of the lamp 310 reduces the cost of the decorative ring 360 and improves the aesthetics of the lamp 310.

[0078] Optionally, the decorative ring 360 and the chassis 311 can be integrated or separate. When they are separate, the decorative ring 360 can be detachably connected to the chassis 311, for example, by a threaded connector.

[0079] Optionally, the light source module 340 may be an annular structure, and the chassis 311 may include the disk body 3111 and the shielding cover 3113 mentioned above. A portion of the light source module 340 may be detachably connected to the chassis 311 via threaded connectors, and another portion of the light source module 340 may be detachably connected to the shielding cover 3113 via threaded connectors. The shielding cover 3113 may also be detachably connected to the disk body 3111 via threaded connectors.

[0080] In actual assembly, for example, first install the fan blade 211 on the turntable 212, then put the bushing 430 and reinforcing plate 420 on the intermediate shaft 231 and lock them with the nut 440. Then, let the intermediate cable pass through the intermediate shaft 231, install the first electrical connection part 510 and the first control device 220 on the connecting plate 410, and electrically connect the first electrical connection part 510 to the intermediate cable, the first control device 220 to the drive source 230, and the first electrical connection part 510 to the first control device 220. Then, install the protective shell 240, and finally connect the intermediate shaft 231 to the mounting assembly 100 and connect the mounting assembly 100 to the mounting base to complete the assembly of the fan 210.

[0081] After the fan 210 is assembled, the second electrical connection part 520 and the light source module 340 are installed on the chassis 311, and the second electrical connection part 520 is electrically connected to the second control device 320. Then, the light-emitting mask 330 is connected to the chassis 311, thus completing the assembly of the lamp 310.

[0082] After the fan 210 and the lamp 310 are assembled, they can be put together to complete the overall assembly of the fan light.

[0083] In other embodiments, the light-emitting mask 330 is, for example, an arc-shaped structure, and the light-emitting mask 330 protrudes along the optical axis of the light source module 340. Meanwhile, the side of the chassis 311 facing the light-emitting mask 330 is, for example, a plane.

[0084] In one alternative embodiment, reference is made to... Figure 17 and Figure 18 As shown, the lamp 310 may also include a first communication module 610, a second communication module 620, and a controller. The first communication module 610 is communicatively connected to the first control device 220, the second communication module 620 is communicatively connected to the second control device 320, and both the first communication module 610 and the second communication module 620 are communicatively connected to the controller, which may be, for example, a remote control 700.

[0085] In actual use, after the fan light is installed and the first control device 220 and the second control device 320 are electrically connected to the external power line, the first control device 220 and the second control device 320, for example, enter a pairing state. At this time, the controller sends a pairing message. When the first control device 220 receives the pairing message through the first communication module 610, and the second control device 320 receives the pairing message through the second communication module 620, and both the first control device 220 and the second control device 320 save the pairing message, a connection can be established between the controller and the first control device 220 and the second control device 320. After the connection is established, the first control device 220 and the second control device 320 exit the pairing state to complete the entire pairing process. After pairing is completed, the controller can control the first control device 220 and the second control device 320 to work.

[0086] In addition, the pairing state of the first control device 220 and the second control device 320 will be maintained for a preset time interval. If the first control device 220 and the second control device 320 do not receive pairing information within the preset time interval, the first control device 220 and the second control device 320 will exit the pairing state. The next time they are paired, the first control device 220 and the second control device 320 will re-enter the pairing state and repeat the above process to establish a connection between the controller and the first control device 220 and the second control device 320.

[0087] In one alternative implementation, refer to Figure 17 As shown, the first communication module 610 includes, for example, a first radio frequency receiving module, and the second communication module 620 includes, for example, a second radio frequency receiving module. The controller is communicatively connected to both the first radio frequency receiving module and the second radio frequency receiving module.

[0088] In another optional implementation, the first communication module 610 may include, for example, a third radio frequency (RF) receiving module, and the second communication module 620 may include, for example, an RF transceiver module. The third RF receiving module is communicatively connected to the RF transceiver module. In actual use, the controller is communicatively connected to both the third RF receiving module and the RF transceiver module. Furthermore, the RF transceiver module may receive, for example, control information from the cloud regarding the lighting fixture 310 and the fan 210, then directly control the lighting fixture 310 to operate and send signals to the third RF receiving module to indirectly control the fan 210 to operate. Of course, the structures of the first communication module 610 and the second communication module 620 can be interchanged, and the third RF receiving module can also be an RF transceiver module; the design can be tailored to specific needs.

[0089] The embodiments of this application have been described above with reference to the accompanying drawings. However, this application is not limited to the specific embodiments described above. The specific embodiments described above are merely illustrative and not restrictive. Those skilled in the art can make many other forms under the guidance of this application without departing from the spirit and scope of the claims, and all of these forms are within the protection scope of this application.

Claims

1. A fan light for mounting on a mounting base, characterized in that, include: Mounting component (100) for connection to the mounting base; The assembly includes a fan (210), a connecting plate (410), and a first control device (220). The fan (210) is mounted on the mounting assembly (100), the connecting plate (410) is mounted on the fan (210), and the first control device (220) is mounted on the connecting plate (410) and connected to the fan (210). The first control device (220) is used to control the operation of the fan (210). The lamp (310) and the second control device (320) are both located on the connecting plate (410). The second control device (320) is independent of the first control device (220). The second control device (320) is connected to the lamp (310) and is used to control the operation of the lamp (310).

2. The fan light according to claim 1, characterized in that, The lamp (310) is provided with a first receiving groove (3112a), the opening of the first receiving groove (3112a) is disposed facing the connecting plate (410), and the first control device (220) is disposed on the side of the connecting plate (410) facing the lamp (310), and is at least partially located in the first receiving groove (3112a).

3. The fan light according to claim 2, characterized in that, The lamp (310) is provided with a connecting sleeve (3112) and a separator (313). The separator (313) divides the inner cavity of the connecting sleeve (3112) into a first receiving groove (3112a) and a second receiving groove (3112b). The opening of the second receiving groove (3112b) is disposed away from the connecting plate (410). The second control device (320) is provided in the lamp (310) and located in the second receiving groove (3112b).

4. The fan light according to claim 3, characterized in that, The first receiving groove (3112a) and the second receiving groove (3112b) are arranged sequentially along the circumference of the connecting sleeve (3112), or the second receiving groove (3112b) is arranged around at least a portion of the first receiving groove (3112a).

5. The fan light according to claim 4, characterized in that, The first receiving groove (3112a) and the second receiving groove (3112b) are arranged sequentially along the circumference of the connecting sleeve (3112), and along the axial direction of the lamp (310), the orthographic projection of the first control device (220) coincides with a portion of the orthographic projection of the first receiving groove (3112a).

6. The fan light according to claim 1, characterized in that, The fan light also includes a first electrical connection part (510) and a second electrical connection part (520). The first electrical connection part (510) is disposed on the connecting plate (410) and is used to be electrically connected to an external power cord. The first electrical connection part (510) is electrically connected to the first control device (220). The second electrical connection part (520) is disposed on the lamp (310) and is in conductive contact with the first electrical connection part (510). The second electrical connection part (520) is electrically connected to the second control device (320).

7. The fan light according to claim 6, characterized in that, The lamp (310) includes a chassis (311) connected to the connecting plate (410), and at least a portion of the first electrical connection part (510) and at least a portion of the second electrical connection part (520) are disposed within the chassis (311); And / or, the first electrical connection portion (510) and the second electrical connection portion (520) are plugged into each other.

8. The fan light according to claim 1, characterized in that, The lamp (310) is provided with a first mating part (3112c), and the connecting plate (410) is provided with a second mating part (411). The lamp (310) and the connecting plate (410) can rotate relative to each other around the axis of the lamp (310) so that the first mating part (3112c) and the second mating part (411) can be engaged or staggered.

9. The fan light according to claim 8, characterized in that, The number of the first mating part (3112c) and the second mating part (411) is at least two, and they correspond one to one. Each of the first mating parts (3112c) is arranged at intervals along the circumference of the lamp (310), and each of the second mating parts (411) is arranged at intervals along the circumference of the connecting plate (410). The first mating part (3112c) is located between two adjacent second mating parts (411) and is engaged with one of the second mating parts (411). Both adjacent second mating parts (411) can be engaged with the first mating part (3112c) located between them at the upper limit of the circumference of the connecting plate (410).

10. The fan light according to claim 1, characterized in that, The lamp (310) includes a chassis (311), a light-emitting mask (330), and at least two light source modules (340). The chassis (311) is connected to the connecting plate (410), and the light-emitting mask (330) is connected to the chassis (311) and together with the chassis (311) forms an optical cavity (350). The light source modules (340) are located on the side of the chassis (311) facing the light-emitting mask (330) and are located inside the optical cavity (350). Each of the light source modules (340) is arranged at intervals along the direction from the center of the chassis (311) to the edge of the chassis (311). Both the chassis (311) and the light-emitting mask (330) are arc-shaped structures, and both the chassis (311) and the light-emitting mask (330) protrude along the optical axis of the light source module (340).