Push-pull plug-in type lamp panel structure and fan lamp with same
By employing a snap-fit design between the motor assembly and lampshade assembly in a push-pull plug-in lamp panel structure, the problems of cumbersome installation and unstable connections in fan lights are solved, resulting in a convenient installation and a high-strength fan light structure that extends its service life.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANGHAI JUHAOYING INTELLIGENT TECHNOLOGY CO LTD
- Filing Date
- 2025-05-16
- Publication Date
- 2026-05-19
AI Technical Summary
Existing fan light installation methods suffer from problems such as cumbersome installation, unstable wiring, and safety hazards. In particular, the rotating installation method is prone to falling off, and the screw installation method is complicated and the wiring is prone to failure.
The lamp panel adopts a push-pull plug-in structure. Through the push-pull snap-fit design of the motor assembly and lamp cover assembly, the male and female pins are integrally injection molded onto the plastic parts. The motor lead wire and the light source wire are fixed by the buckle, avoiding additional wiring and achieving a stable connection between the motor assembly and the lamp cover assembly.
It enables convenient installation, avoids the tediousness of screw installation and the risk of threaded installation coming loose, improves the overall strength and service life of the fan light, solves the problem of unstable connection, and enhances safety.
Smart Images

Figure CN224261644U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of fan technology, and in particular to a push-pull plug-in lamp panel structure and a fan lamp having this structure. Background Technology
[0002] Fan lights, as household appliances that combine lighting and ventilation functions, are widely used in homes, offices, and other places. Currently, the most common installation methods for fan lights on the market are rotary mounting and screw mounting.
[0003] Rotary installation involves fixing a component of the fan light by rotating it at a certain angle. However, this method has significant drawbacks. Firstly, due to the lack of precise limiting devices, it's easy to over-rotate during the process, causing the component to fail to install correctly and requiring readjustment, increasing installation complexity and time costs. Secondly, over long-term use, rotated components may loosen or even detach due to vibration, posing a safety hazard to users and affecting the normal operation of the fan light.
[0004] Screw installation involves securing the various components of the fan light together with screws. While this method is relatively secure, the installation process is cumbersome, requiring tools to tighten each screw individually. This is not only inconvenient but also prone to problems such as stripped screws and uneven tightening, affecting the installation quality. Furthermore, screw installation requires pre-drilled screw holes on the mounting components, which may impose certain limitations on the product's appearance design.
[0005] Whether it's a rotary installation or a screw-in installation, the issue of wiring arises. During installation, multiple cables, such as power cords and control cables, need to be connected. Due to the large number of cables and the dense connection points, unstable connections can easily occur, causing the fan / light to malfunction or even leading to short circuits, causing inconvenience and safety hazards for users.
[0006] In summary, the existing fan light installation methods have problems such as cumbersome installation, unstable connections, and safety hazards, and urgently need to be improved. Utility Model Content
[0007] This application provides a push-pull plug-in lamp panel structure and a fan light with this structure, which solves the problems in existing fan light structures. Traditional fan light installation structures either use a rotation installation method, which leads to problems such as rotation failure or detachment, or use screw installation, which involves cumbersome screw installation steps. Both of these methods also have wiring problems, resulting in cumbersome installation and unstable connections.
[0008] In a first aspect, this application provides a push-pull plug-in lamp panel structure and a fan lamp having this structure. The push-pull plug-in lamp panel structure includes: a lampshade assembly and a motor assembly; the motor assembly includes: a motor component and a connecting piece; the connecting piece is fixedly connected to the lower part of the motor component, and the connecting piece is push-pull engaged with the lampshade assembly; wherein, a first guide rail connector is provided on the edge of the connecting piece, and a second guide rail connector corresponding to the first guide rail connector is provided on the upper surface of the lampshade assembly; the second guide rail connector of the lampshade assembly is push-pull engaged with the first guide rail connector on the connecting piece, so that the motor assembly and the lampshade assembly are mutually fixed and limited.
[0009] In one embodiment of this application, the lampshade assembly includes: a lamp panel, a light source, a lampshade, and an annular buckle; the light source is fixedly connected to the lamp panel via the buckle; the lampshade is fixedly engaged with the lamp panel via the annular buckle.
[0010] In one embodiment of this application, a male and female pin are provided on the first surface of the lamp panel; the male and female pin include: a first end and a second end; the first end of the male and female pin is disposed at the first end of the second guide rail connector, and the second end of the male and female pin is disposed at the first end of the connecting piece; wherein, the second guide rail connector includes a pair of first guide rails and second guide rails, the first guide rails and the second guide rails are spaced apart from each other to form a channel, and the first opening end of the channel is provided with the first end of the male and female pin; the first end of the male and female pin is engaged with the second end of the male and female pin.
[0011] In one embodiment of this application, a boss is further provided on the first surface of the lamp disk; at least one boss is provided; the boss is provided at the second opening end of the channel; the boss is fixedly engaged with the second end of the connecting piece; the boss, the second guide rail connector, and the male and female pins are all provided on the same surface of the lamp disk.
[0012] In one embodiment of this application, the second surface of the lamp panel is provided with features that are fixed to the connecting piece, and is provided with a fixed light source connecting line; the fixed light source connecting line is fixedly connected to the light source.
[0013] In one embodiment of this application, at least one boss is provided; the boss, the second guide rail connector, and the male and female pins are all provided on the same surface of the lamp panel.
[0014] In one embodiment of this application, the first guide rail connector is configured as a guide rail, and the second guide rail connector is configured as a guide groove; or the first guide rail connector is configured as a guide groove, and the second guide rail connector is configured as a guide rail.
[0015] In one embodiment of this application, the motor component and the connecting piece are fixedly connected by a connecting tube; the connecting piece is disposed at the lower end of the motor component and is attached to the upper surface of the lampshade assembly so as to engage with the lampshade assembly.
[0016] In one embodiment of this application, the motor assembly further includes a controller lead wire; a buckle at the end of the controller lead wire engages with a slot inside the connecting piece; a through step is provided on the outside of the connecting piece, and the through step is fixedly connected to the second guide rail connector on the upper surface of the lampshade assembly.
[0017] In one embodiment of this application, the lamp panel is made of ABS material; the lampshade is made of polystyrene material.
[0018] Secondly, this application provides a fan light, which includes the push-pull plug-in lamp panel structure described in any of the first aspects of this application.
[0019] As described above, the push-pull plug-in lamp panel structure and the fan lamp having this structure described in this application have the following beneficial effects:
[0020] (1) The push-pull plug-in lamp panel structure provided in this application adopts a push-pull snap-fit structure design of motor assembly and lamp cover assembly. This structure does not require additional wiring, which can effectively avoid the tediousness of screw installation and the risk of threaded installation falling off. It is easy to install and has high overall strength. The motor lead wire and the light source wire are fixed to the connecting piece and the lamp panel respectively by the buckle, avoiding the damage problem caused by the unrestrained external suspension of the existing extension wire, thereby ensuring the overall strength of the fan lamp.
[0021] (2) The push-pull plug-in lamp panel structure provided in this application uses male and female pins that are integrally injection molded on the corresponding plastic parts (two pins, three pins or more), which eliminates the wiring problems caused by manual pin insertion; and after the lamp cover assembly is installed, the male and female pins are also plugged in simultaneously to achieve power supply, without the need for additional wiring, which greatly avoids the cumbersome wiring and poor contact problems caused by wiring; at the same time, both male and female ends are fixed limit positions to prevent the wires from running around and interfering with other parts.
[0022] (3) The fan light with the aforementioned push-pull plug-in lamp panel structure provided in this application adopts a push-pull snap-fit structure design for the lampshade assembly and motor assembly. This structure requires no additional wiring, is easy to install, has high overall strength, and avoids abnormal problems caused by excessive installation and transportation bumps; at the same time, it also improves the service life of the fan light. This design method of this application not only solves the problem of cumbersome installation in the traditional fan light installation process, but also solves the problem of unstable connection; at the same time, this fan light structure and accessories have strong versatility and a wide range of applications. Attached Figure Description
[0023] Figure 1 The image shown is a bottom view of the external three-dimensional structure of the fan light described in this application embodiment.
[0024] Figure 2 The image shown is a top view of the external three-dimensional structure of the fan light described in the embodiment of this application.
[0025] Figure 3 The image shown is an exploded view of the fan light product described in the embodiments of this application.
[0026] Figure 4 The diagram shown is an exploded view of the lampshade assembly described in an embodiment of this application.
[0027] Figure 5 The image shown is a bottom view of the external structure of the connecting piece described in one embodiment of this application.
[0028] Figure 6 The image shown is a top view of the external structure of the connecting piece described in one embodiment of this application.
[0029] Figure 7 The image shown is a top view of the external structure of the lamp panel described in one embodiment of this application.
[0030] Explanation of icon numbers
[0031] Serial Number Name
[0032] 100 Push-pull plug-in lamp panel structure
[0033] 1. Lampshade assembly
[0034] 11. Light Panel
[0035] Serial Number Name 111 The first surface of the lamp panel
[0036] 1111 convex platform
[0037] 112 The second surface of the lamp panel
[0038] 113 Male and female needles
[0039] 113A Male and female needles, first end 113B Male and female needles, second end 12 Light Sources 13 Lampshades 14 Ring buckle
[0040] 2 Motor assembly 21 Motor Components
[0041] 22 Connecting pieces
[0042] The first end of the 22A connecting piece
[0043] The second end of the 22B connector
[0044] 23 Connecting pipe
[0045] 24 Controller Lead-in Cables
[0046] 241 Buckle
[0047] 25. Through steps
[0048] 31 First guide rail connector
[0049] 32 Second guide rail connector
[0050] 321 First guide rail
[0051] 322 Second Guide Rail
[0052] 333A Second Guide Rail Connector First End
[0053] The second end of the 333B second guide rail connector
[0054] Channel 323
[0055] The first opening end of channel 323A The second opening end of channel 323B Detailed Implementation
[0056] The present application will be further described below with reference to the accompanying drawings, but the scope of protection of the present application is not limited to the following description.
[0057] The following specific examples illustrate the implementation of this application. Those skilled in the art can easily understand other advantages and effects of this application from the content disclosed in this specification. This application can also be implemented or applied through other different specific embodiments, and various details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of this application. It should be noted that, unless otherwise specified, the following embodiments and features in the embodiments can be combined with each other.
[0058] It should be noted that the illustrations provided in the following embodiments are only schematic representations of the basic concept of this application. Therefore, the drawings only show the components related to this application and are not drawn according to the actual number, shape and size of the components in the actual implementation. In the actual implementation, the form, quantity and proportion of each component can be arbitrarily changed, and the layout of the components may also be more complex.
[0059] The following embodiments of this application provide a push-pull plug-in lamp panel structure and a fan light with this structure, which solves the problems in existing fan light structures. In traditional fan light installation structures, either the rotation installation method leads to the problem of rotation failure or detachment, or the screw installation method is cumbersome. Both of these methods have wiring problems, which leads to cumbersome installation and unstable connection.
[0060] This application provides a push-pull plug-in lamp panel structure and a fan light with this structure. It employs a push-pull snap-fit design for the motor assembly and lamp cover assembly. This structure eliminates the need for additional wiring, effectively avoiding the tediousness of screw installation and the risk of threaded installation coming loose. Installation is convenient, and the overall structure boasts high strength. The motor lead wire and light source wire are respectively fixed to the connecting piece and the lamp panel via clips, avoiding the damage problems caused by the unrestrained external suspension of existing extension wires, thus ensuring the overall strength of the fan light and improving its lifespan. This application uses male and female pins integrally injection molded onto the corresponding plastic parts (two pins, three pins, or more), eliminating wiring problems caused by manual pin insertion. Furthermore, after the lamp cover assembly is installed, the male and female pins simultaneously connect to provide power, eliminating the need for additional wiring and greatly avoiding tedious wiring and poor contact problems. Simultaneously, both male and female ends are fixed and limited, preventing wire misalignment and interference with other parts, further improving the lifespan of the fan light. This design not only solves the problem of cumbersome installation in traditional fan light installation, but also solves the problem of unstable connection.
[0061] The following will describe in detail, with reference to the accompanying drawings, a push-pull plug-in lamp panel structure and a fan lamp having this structure, and the implementation principle of the embodiment.
[0062] Please see Figure 1 , Figure 2 , Figure 3 , Figure 4 , Figure 5 , Figure 6 and Figure 7 The images shown are respectively a bottom view of the three-dimensional structure of the fan light described in the embodiments of this application, a top view of the three-dimensional structure of the fan light described in the embodiments of this application, an exploded view of the fan light product described in the embodiments of this application, an exploded view of the structure of the lampshade assembly described in the embodiments of this application, a bottom view of the external structure of the connecting piece described in the embodiments of this application in one embodiment, a top view of the external structure of the connecting piece described in the embodiments of this application in one embodiment, and a top view of the external structure of the lamp panel described in the embodiments of this application in one embodiment. Figure 1 , Figure 2 , Figure 3 and Figure 4As shown, the push-pull plug-in lamp panel structure 100 includes: a lampshade assembly 1 and a motor assembly 2.
[0063] In one embodiment, the motor assembly 2 includes a motor component 21 and a connecting piece 22. The connecting piece 22 is fixedly connected to the lower part of the motor component 21 and is push-pull engagingly connected to the lampshade assembly 1.
[0064] The edge of the connecting piece 22 is provided with a first guide rail connector 31, and the upper surface of the lampshade assembly 1 is provided with a second guide rail connector 32 corresponding to the first guide rail connector 31; the second guide rail connector 32 of the lampshade assembly 1 is pushed and pulled into the first guide rail connector 31 on the connecting piece 22, so that the motor assembly 2 and the lampshade assembly 1 are fixed and limited to each other.
[0065] Specifically, a first guide rail connector 31 is provided at the edge of the connecting piece 22, and a second guide rail connector 32 is provided on the upper surface of the lampshade assembly 1. The first guide rail connector 31 and the second guide rail connector 32 can cooperate to perform a push-pull locking action. This structure allows for a push-pull sliding installation of the lampshade assembly 1 and the motor assembly 2, avoiding the cumbersome screw installation and the risk of threaded installation coming loose. This structure is convenient to install and structurally stable.
[0066] In this embodiment, preferably, the first guide rail connector 31 and the second guide rail connector 32 are described using the example of a guide rail and a guide groove engaging. Therefore, there are multiple options for the structure of the first guide rail connector 31 and the second guide rail connector 32. That is, the first guide rail connector 31 can be configured as a guide rail, and the second guide rail connector 32 as a guide groove; or the first guide rail connector 31 can be configured as a guide groove, and the second guide rail connector 32 as a guide rail. The specific choice can be set according to the actual application requirements.
[0067] It should be noted that the first guide rail connector 31 and the second guide rail connector 32 cooperate with each other to complete the engagement action.
[0068] Please continue reading. Figures 4 to 7 .
[0069] In one embodiment, the lampshade assembly 1 includes: a lamp panel 11, a light source 12, a lampshade 13, and an annular buckle 14. The light source 12 is fixedly connected to the lamp panel 11 via the buckle; the lampshade 13 is fixedly engaged with the lamp panel 11 via the annular buckle 14. The lamp panel 11 is made of ABS (Acrylonitrile Butadiene Styrene); the lampshade 13 is made of polystyrene.
[0070] Specifically, the lamp panel 11 has a push-pull structure with the lampshade 13, and is made of ABS material. The front of the lamp panel 11 has a protrusion 1111 for fixing to the aluminum substrate. The second surface 112 of the lamp panel has features for fixing to the connecting plate step, and also has a fixed light source connection line. The light source 12 uses a U-shaped aluminum substrate, which satisfies the lighting effect while saving the cost of the aluminum substrate. The lampshade 13 is made of PS (Polystyrene) material, which ensures both strength and lighting effect. The annular buckle 14 is used to fix the lampshade 13 and the lamp panel 11.
[0071] Please continue reading. Figures 5 to 7 .
[0072] In one embodiment, a male and female pin 113 are provided on the first surface 111 of the lamp panel. The male and female pin 113 includes a first end 113A and a second end 113B. The first end 113A and the second end 113B of the male and female pin are engaged and connected.
[0073] Furthermore, the first end 113A of the male and female needles is disposed at the first end of the second guide rail connector 32, and the second end 113B of the male and female needles is disposed at the first end of the connecting piece 22. The second guide rail connector 32 includes a pair of first guide rails 321 and second guide rails 322, which are spaced apart to form a channel 322. The first opening end 323A of the channel is provided with the first end 113A of the male and female needles.
[0074] Specifically, the first end 113A of the male and female pins is located at the first opening end 323A of the channel formed by the first guide rail 321 and the second guide rail 322 (that is, the first end 113A of the male and female pins is located at the first end 333A of the second guide rail connector); the second end 113B of the male and female pins is located at the first end 22A of the connecting piece. The first end 113A of the male and female pins and the second end 113B of the male and female pins on the connecting piece 22 are inserted to complete the fixed installation. Therefore, both the first end 113A and the second end 113B of the male and female pins are fixed and limited; and through the connection between the first end 113A and the second end 113B of the male and female pins, communication and power can be achieved; at the same time, it also prevents the wire from running around and interfering with other parts.
[0075] In one embodiment, a boss 1111 is further provided on the first surface 111 of the lamp disk. At least one boss 1111 is provided. The boss 1111 is provided at the second opening end 323B of the channel; the boss 1111 is fixedly engaged with the second end 22B of the connecting piece. The boss 1111, the second guide rail connector 32, and the male and female pins 113 are all provided on the same surface of the lamp disk 11.
[0076] In this embodiment, preferably, there are two bosses 1111.
[0077] Specifically, the two protrusions 1111 are evenly distributed at the second opening end 323B of the channel (i.e., the protrusions 1111 are located at the second end 333B of the second guide rail connector), and correspond to the positions of the male and female pins 113. That is, this structure allows the first guide rail 321, the second guide rail 322, the first end 113A of the male and female pins, and the protrusions 1111 to form a quadrilateral space. When installing the lampshade assembly 1 and the motor assembly 2, the user slides the second guide rail connector 32 on the connecting piece 22 along the position of the second guide rail connector 32 on the first surface 111 of the lamp disk (between the symmetrical first guide rail 321 and the second guide rail 322) towards the first end 113A of the male and female pins until the first end 113A of the male and female pins engages with the second end 113B of the male and female pins. Then, the second end 22B of the connecting piece is engaged with the protrusions 1111 at the second opening end of the channel, near the first opening end 323A of the channel.
[0078] In one embodiment, the second surface of the lamp panel 11 is provided with features that are fixed to the connecting piece 22, and is provided with a fixed light source connecting line; the fixed light source connecting line is fixedly connected to the light source.
[0079] In one embodiment, the motor component 21 and the connecting piece 22 are fixedly connected by a connecting pipe 23; the connecting piece 22 is disposed at the lower end of the motor component 21 and abuts against the upper surface of the lampshade assembly 1 to engage with the lampshade assembly 1. The motor assembly 2 also includes a controller lead wire 24. A buckle 241 at the end of the controller lead wire 24 engages with a slot inside the connecting piece 22; the connecting piece 22 has a through step 25 on its exterior, and the through step 25 is fixedly connected to the second guide rail connector 32 on the upper surface of the lampshade assembly 1.
[0080] Specifically, a connecting piece 22 is installed on the lower side of the motor component 21, and the controller lead wire 24 is fixed to the connecting piece 22 by a buckle 241. The connecting piece 22 has a through step 25 on the outside for fixing the lower lampshade assembly 1.
[0081] In other words, the motor component 21 is fixedly connected to the connecting piece 22 via a connecting tube 23, and the connecting tube 23 has a hollow structure. This hollow structure allows the controller lead wire 24 to pass through the connecting tube 23, connecting the controller lead wire 24 to the light source wire in the lampshade assembly 1. At the same time, the motor lead wire and the light source wire are fixed to the connecting piece 22 and the lamp plate 11 respectively by clips 241, avoiding the damage problems caused by the unrestrained external suspension of the existing extension wire. Moreover, the male and female pins are integrally injection molded on the corresponding plastic parts (two pins, three pins and more, etc.), eliminating the wiring problems caused by manual pin insertion. The lampshade assembly 1 is fixed to the motor component 2 by a sliding groove, eliminating the installation trouble and unstable limit problems caused by screw or thread fixing. After the lampshade assembly 1 is installed in place, the male and female pins 113 are also inserted simultaneously to achieve power supply, greatly avoiding the troublesome wiring and poor contact problems caused by wiring. Moreover, since both male and female ends are fixed and limited, it prevents the wire from running around and interfering with other parts.
[0082] The following explanation uses the push-pull plug-in lamp panel structure and the installation process of a fan light with this structure as examples.
[0083] First, fix the light source to the front of the lamp panel using a fusion anchor; then place the lampshade on the lamp panel using a limiting device; finally, secure the lampshade to the lamp panel using an interference fit with a ring-shaped buckle. At this point, the lampshade assembly is complete.
[0084] Then, the connecting piece is fixed to the motor shaft of the motor component using nuts; next, the motor lead wire and the light source wire are fixed to the connecting piece and the lamp panel respectively using clips, avoiding the damage problems caused by the unrestrained external suspension of the existing extension wire.
[0085] Next, the first guide rail connector on the upper surface of the lampshade assembly is engaged with the second guide rail connector on the edge of the connecting piece; that is, the lampshade assembly slides along the channel formed by the first and second guide rails, at which point the first guide rail connector (guide rail) and the second guide rail connector (guide groove) engage. The lampshade assembly continues to slide along the channel until the second end of the male and female pins is slid to the position of the first end of the male and female pins, and then continues to slide until the second end of the male and female pins engages with the first end of the male and female pins. Simultaneously, as the male and female pins engage, the connecting piece also engages with the boss position, thus firmly securing the connecting piece to the lampshade assembly. At this point, the motor assembly and the lampshade assembly are installed as a single unit, completing the installation process.
[0086] Therefore, it can be seen that when installing the lampshade assembly, the user is constrained by the slots on the second surface of the lamp holder and the steps of the connecting piece, and then pushed forward to the bottom of the step plane to fix it in place. At the same time, the male and female pins on the lamp holder and the connecting piece are connected to achieve power supply; the second surface of the lamp holder has guide holes for guidance, which facilitates alignment during installation; after sliding to the bottom of the alignment, there are two protrusions on the second surface of the lamp holder, which engage with the connecting piece to prevent the lamp holder from retracting, thus achieving a fixed installation of the lamp holder and the connecting piece; at the same time, it also ensures that the male and female pins are securely connected and enable power supply.
[0087] In summary, the push-pull plug-in lamp panel structure and fan light with this structure provided in this application adopt a push-pull snap-fit design for the motor assembly and lamp cover assembly. This structure eliminates the need for additional wiring, effectively avoiding the tediousness of screw installation and the risk of threaded installation coming loose. It is easy to install and has high overall strength. The motor lead wire and light source wire are fixed to the connecting piece and lamp panel respectively by clips, avoiding the damage problems caused by the unrestrained external suspension of existing extension wires, thus ensuring the overall strength of the fan light and improving its service life. The male and female pins used in this application are integrally injection molded onto the corresponding plastic parts (two pins, three pins, or more), eliminating the wiring problems caused by manual pin insertion. Furthermore, after the lamp cover assembly is installed, the male and female pins are simultaneously plugged in to provide power, eliminating the need for additional wiring and greatly avoiding the tedious wiring and poor contact problems caused by wiring. At the same time, both male and female ends are fixed and limited, preventing wires from running around and interfering with other parts; this also improves the service life of the fan light. This design not only solves the problem of cumbersome installation in traditional fan light installation, but also solves the problem of unstable connection.
[0088] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in this application should still be covered by the claims of this application.
Claims
1. A push-pull plug-in lamp panel structure, characterized in that, The push-pull plug-in lamp panel structure includes: a lamp cover assembly and a motor assembly; The motor assembly includes: motor components and connecting pieces; The connecting piece is fixedly connected to the lower part of the motor component, and the connecting piece is push-pull snap-fit connected to the lampshade assembly; The connecting piece has a first guide rail connector on its edge, and the lampshade assembly has a second guide rail connector on its upper surface that corresponds to the first guide rail connector. The second guide rail connector of the lampshade assembly is pushed and pulled into the first guide rail connector on the connecting piece, so that the motor assembly and the lampshade assembly are fixed and limited to each other.
2. The push-pull plug-in lamp panel structure according to claim 1, characterized in that, The lampshade assembly includes: a lamp panel, a light source, a lampshade, and a ring-shaped buckle; The light source is fixedly connected to the lamp panel by a snap-fit; The lampshade is fixedly engaged with the lamp panel by the annular buckle.
3. The push-pull plug-in lamp panel structure according to claim 2, characterized in that, Male and female pins are provided on the first surface of the lamp panel; The male and female needles include: a first end of the male and female needles and a second end of the male and female needles; The first end of the male and female pins is disposed at the first end of the second guide rail connector, and the second end of the male and female pins is disposed at the first end of the connecting piece; wherein, the second guide rail connector includes a pair of first guide rails and second guide rails, the first guide rails and second guide rails being spaced apart from each other to form a channel, and the first opening end of the channel is provided with the first end of the male and female pins. The first end of the male and female needles are engaged and connected to the second end of the male and female needles.
4. The push-pull plug-in lamp panel structure according to claim 3, characterized in that, The first surface of the lamp panel is also provided with a boss; at least one boss is provided. The boss is disposed at the second opening end of the channel; The boss is fixedly engaged with the second end of the connecting piece; The boss, the second guide rail connector, and the male and female pins are all disposed on the same surface of the lamp panel.
5. The push-pull plug-in lamp panel structure according to claim 3, characterized in that, The second surface of the lamp panel is provided with features that are fixed to the connecting piece, and is also provided with a fixed light source connection line; The fixed light source connection line is fixedly connected to the light source.
6. The push-pull plug-in lamp panel structure according to claim 1, characterized in that, The first guide rail connector is configured as a guide rail, and the second guide rail connector is configured as a guide groove; or The first guide rail connector is configured as a guide groove, and the second guide rail connector is configured as a guide rail.
7. The push-pull plug-in lamp panel structure according to claim 1, characterized in that, The motor component and the connecting piece are fixedly connected by a connecting pipe; The connecting piece is disposed at the lower end of the motor component and is attached to the upper surface of the lampshade assembly to make a snap-fit connection with the lampshade assembly.
8. The push-pull plug-in lamp panel structure according to claim 7, characterized in that, The motor assembly also includes controller leads; The buckle at the end of the controller lead wire engages with the slot inside the connecting piece. The connecting piece has a through step on its outside, and the through step is fixedly connected to the second guide rail connector on the upper surface of the lampshade assembly.
9. The push-pull plug-in lamp panel structure according to claim 2, characterized in that, The lamp panel is made of ABS material; the lampshade is made of polystyrene material.
10. A fan light, characterized in that, include: The push-pull plug-in lamp panel structure according to any one of claims 1 to 9.