Lamp structure

The embedded connection between the lamp frame and the outer panel, the U-shaped bayonet and the ring sleeve design solve the problems of complex structure and heavy weight of the lamp, realize the compactness, stability and intelligent control of the lamp, improve the wire fixation and waterproof performance, and extend the service life.

CN223425159UActive Publication Date: 2025-10-10ZHEJIANG KAIYAO LIGHTING
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Patent Information

Application Number
CN202422979015.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-10-10
Estimated Expiration
2034-12-03

AI Technical Summary

Technical Problem

Existing lamps have complex structures and are heavy, lacking in compactness and stability.

Method used

The lamp holder and outer panel are connected by an embedded method, combined with U-shaped bayonet, ring sleeve, reinforcement strip and sealing ring to ensure the fixation of wires and the stability of the lamp. The outer panel is designed with concave grooves and trapezoidal buckles to enhance structural strength and waterproof performance. The dip switch and controller realize intelligent control.

Benefits of technology

The lamp has a compact structure, good stability, reliable wire fixation, is waterproof and dustproof, has intelligent control functions, and extends service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223425159U_ABST
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Abstract

One side of a lamp holder is connected with an outer panel in an embedded mode, the other side of the lamp holder is connected with a light-emitting plate, one side of the outer panel is provided with a U-shaped bayonet, the outer panel is fixed to an electric wire through a ring sleeve, the electric wire is provided with a protrusion screwed into a screwing-in groove in the ring sleeve, a plurality of reinforcing strips are arranged on the ring sleeve in a surrounding mode, and the middle of the outer panel is provided with a concave groove. A sealing ring is arranged between the trapezoidal buckle and the lamp holder, the sealing ring is located in a U-shaped groove formed by the lamp holder, a dial back plate is arranged on one side of the outer panel, a dial switch is arranged in the dial back plate, a plastic sleeve box is connected to one side of the dial back plate, a circuit board is arranged in the plastic sleeve box, and an elastic piece is fixed to a U-shaped bayonet. The lamp is thin and compact in structure, is provided with the concave groove, and is good in stability and not prone to deformation.
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Description

Technical Field

[0001] The utility model relates to the technical field of lamps, in particular to a lamp structure. Background Art

[0002] Lighting is a complex and important field. It is not only related to the lighting effect, but also involves many aspects such as safety, aesthetics and energy efficiency. The structure of a lamp is usually composed of the following main parts: the outer frame is the outer shell of the lamp, protecting the internal components, and also plays a role in aesthetics and decoration. The driving circuit is responsible for providing a stable power supply for the light source to ensure that the light source can work properly, and also affects the energy efficiency of the lamp. The lamp structure is usually composed of the outer frame and the light source module.

[0003] In the prior art, patent publication number CN117906107A discloses a connection structure between a light source module and an outer frame and a lamp, which relates to the field of lamp connection technology. The connection structure between the light source module and the outer frame includes an elastic member, a slot and a protrusion. The slot is provided on the outer wall of the light source module, and the protrusion is fixedly provided on the inner wall of the outer frame. One end of the slot extends to the top of the outer wall of the light source module and forms an upward incision, and the other end extends along the circumference of the light source module. The protrusion can enter the slot from the incision. The elastic member is used to be provided on the top of the light source module. After the light source module is installed on the outer frame, the elastic member shrinks under the pressure of the outer frame and the light source module. Utility Model Content

[0004] The purpose of the utility model is to solve the problem that existing lamps are complex in structure and heavy in weight, and to provide a lamp structure that is compact, stable and lightweight.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a lamp structure, one side of the lamp frame is embedded in and connected to the outer panel, and the other side of the lamp frame is connected to the light-emitting panel. One side of the outer panel is a U-shaped bayonet, and the outer panel is fixed to the wire with a ring sleeve. The wire is provided with a protrusion that screws into the screw-in groove in the ring sleeve, and several reinforcing strips are arranged around the ring sleeve.

[0006] Preferably, the middle of the outer panel is a concave groove, and the edge of the concave groove is a trapezoidal buckle embedded in the lamp holder.

[0007] Preferably, a sealing ring is provided between the trapezoidal buckle and the lamp holder, and the sealing ring is located in a U-shaped groove formed by the lamp holder.

[0008] Preferably, one side of the outer panel is a dial back panel, and a dial switch is provided inside the dial back panel, and the dial switch is in the shape of a long strip.

[0009] Preferably, one side of the dial back plate is connected to a plastic casing, and the plastic casing contains a circuit board.

[0010] As preferred, the U-shaped aperture is fixed with elastic members, and the pressing plate is sleeved on one end of the elastic members.

[0011] As preferred, the outer panel has a protrusion on one side, and the protrusion has arc-shaped sides.

[0012] As preferred, the electric wire is provided with a controller, and the controller can control the switch.

[0013] Compared with the prior art, the lamp has the advantages that the lamp structure is very thin and compact, and the lamp has good stability and is not easy to deform. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 Fig. 1 is a schematic view of a lamp body structure of the present application.

[0015] Figure 2 Fig. 2 is a top view of the lamp body structure of the present application.

[0016] Figure 3 Fig. 3 is a sectional view A-A of the present application.

[0017] Figure 4 Fig. 4 is a sectional view B-B of the present application.

[0018] Figure 5 Fig. 5 is a schematic view of an embodiment 1 of the present application.

[0019] Figure 6 Fig. 6 is a schematic view of an embodiment 2 of the present application.

[0020] In the drawings: 1, electric wire; 2, dial back plate; 3, elastic member; 4, pressing plate; 5, U-shaped aperture; 6, plastic box; 7, ring sleeve; 8, reinforcing strip; 9, protrusion; 10, dial switch; 11, concave groove; 12, outer panel; 13, sealing ring; 14, trapezoidal buckle; 15, light-emitting plate; 16, controller; 17, lamp holder; 18, U-shaped groove; 19, protrusion; 20, screw-in groove. DETAILED DESCRIPTION

[0021] The technical solutions of the present application will be further described in detail below with reference to specific embodiments and in combination with the drawings, and the described embodiments are only some of the embodiments of the present application, but not all the embodiments.

[0022] Embodiment 1: Refer to Figures 1 to 6A lamp structure is disclosed, wherein the main body of the lamp structure is a lamp holder 17, and one side of the lamp holder 17 is embedded and connected to the outer panel 12. This embedded connection method can adopt various forms, such as snap-on, screw fixing or bonding, to ensure that the connection between the outer panel 12 and the lamp holder 17 is stable. This design not only improves the overall strength of the lamp, but also facilitates subsequent maintenance and replacement. The other side of the lamp holder 17 is connected to the light-emitting panel 15. The light-emitting panel 15 can be a high-efficiency LED board or other type of lighting element, which is responsible for providing the required light source. The design of the light-emitting panel 15 can be adjusted according to different lighting needs to achieve different lighting effects. One side of the outer panel 12 is designed as a U-shaped bayonet 5. The design of the U-shaped bayonet 5 enables the outer panel 12 to fit tightly with the lamp holder 17, enhancing the stability of the overall structure. The shape of the U-shaped bayonet 5 provides a good mechanical locking effect and can also effectively prevent the influence of external vibration on the lamp. In this embodiment, the design of the outer panel 12 of the lamp pays special attention to the fixation and protection of the wire 1, and adopts the innovative structure of the ring sleeve 7 to achieve this.

[0023] The design of the collar 7 not only ensures a secure connection between the wire 1 and the outer panel 12, but also provides additional protection against damage or dislodging due to external forces. The collar 7 can be made of a variety of materials, including plastic or metal, both of which have excellent mechanical properties and weather resistance, ensuring their structural integrity and functionality in a variety of environmental conditions. The collar 7 is designed with the layout and operating environment of the wires in mind. Its shape and size perfectly match the wire 1, ensuring stability during installation and use. Several reinforcement bars 8 are arranged around the collar 7. These bars can be metal or plastic, enhancing the collar 7's resistance to pressure and impact. These reinforcement bars 8 are cleverly integrated into the collar 7's structure, not only increasing its overall strength but also effectively preventing deformation or damage due to external forces. This design not only extends the life of the lamp but also reduces the maintenance and replacement costs associated with collar damage. The layout and number of the reinforcing strips 8 have been carefully calculated to ensure that the force on the ring sleeve 7 can be evenly distributed in all directions, thereby improving the stability and reliability of the ring sleeve 7. The connection between the reinforcing strips 8 and the ring sleeve 7 has also been specially treated to ensure a close connection between the two and avoid safety hazards caused by a loose connection. A protrusion 19 is provided on the wire 1, which enables the wire 1 to be screwed into the screw-in groove 20 in the ring sleeve 7. The use of the protrusion 19 in conjunction with the screw-in groove 20 also enhances the connection strength between the wire 1 and the ring sleeve 7. The design of the protrusion 19 takes into account the diameter and material properties of the wire 1, and will not damage the wire during the screw-in process, while also ensuring the durability of the screw-in groove 20.

[0024] The outer panel 12 features a concave groove 11 in the center, which increases the structural strength of the lamp and provides additional functionality. The depth and width of the groove 11 accommodate electrical wiring and other necessary components, such as small circuit boards or electronic components, making the lamp more compact and aesthetically pleasing. This design also helps conceal the wiring, giving the lamp a cleaner appearance. The edges of the groove 11 are designed as trapezoidal clips 14, which snap into place within the lamp frame 17, providing a mechanical lock and enhancing overall stability. The design of the clips 14 allows for a tight fit between the outer panel 12 and the lamp frame 17, ensuring a secure connection. This clip structure can be injection molded, directly integrally formed with the lamp frame 17 during the manufacturing process, or assembled later, secured to the lamp frame 17 through specialized mechanical or manual processes to ensure a tight fit. To enhance the lamp's waterproof and dustproof properties, a sealing ring 13 is provided between the clips 14 and the lamp frame 17. The sealing ring 13 is typically made of an elastic material such as rubber or silicone, ensuring a good seal in various environments and preventing moisture and dust from entering the lamp. The sealing ring 13 is positioned within a U-shaped groove 18 formed by the lamp holder 17. The U-shaped groove 18 provides stable support for the sealing ring 13, ensuring it does not shift or fall out during use, maintaining a long-term seal. One side of the outer panel 12 is designed as a dial back plate 2. The dial back plate 2 can be made of a durable material such as metal or plastic, providing additional support and protection to ensure the stability and durability of the lamp. The dial back plate 2 houses a dial switch 10, which can be made of a durable material such as plastic or metal and is used to control the lamp's on / off state. The dial switch 10 can be designed as either a sliding or rotating type for ease of operation. A sliding dial switch 10 allows the user to turn the lamp on or off by sliding it left or right, while a rotary dial switch 10 allows the user to control the lamp by rotating it. The lamp of this invention can also be connected in series or parallel.

[0025] Example 2: Reference Figures 1 to 6The present embodiment is an improvement over the embodiment 1. The lamp structure is improved by tightly coupling the lamp holder 17 to the outer panel 12 through various means, including but not limited to clamps, screws, or adhesives. The other end of the lamp holder 17 is connected to the light-emitting panel 15, which can be a high-efficiency LED panel or other lighting components. Depending on the lighting requirements, the light-emitting panel 15 can be adjusted accordingly to produce different lighting effects. One side of the outer panel 12 is specially designed as a U-shaped socket 5, which allows the outer panel to tightly fit with the lamp holder 17. The U-shaped socket 5 not only provides mechanical locking function, but also effectively resists external shocks on the lamp. In addition, the outer panel 12 is also equipped with a ring 7 for fixing the wire 1, which can be made of plastic or metal to protect the wire and ensure its safe connection with the outer panel. The design of the ring 7 takes into account the wire layout and the use environment, effectively preventing the wire from being damaged by external forces. The ring 7 is designed with multiple reinforcing strips 8, which can be made of metal or plastic. The ring 7 is designed with a clamping design, allowing the wire 1 to be easily inserted or removed.

[0026] In the middle position of the outer panel 12, a concave groove 11 is designed, and the edge of the concave groove 11 is designed as a trapezoidal buckle 14 which can be embedded in the lamp holder 17 to provide mechanical locking function, ensuring the close fit and firm connection between the outer panel 12 and the lamp holder 17. The trapezoidal buckle 14 can be manufactured integrally with the lamp holder 17 by injection molding, or fixed on the lamp holder 17 by later assembly. In order to improve the waterproof and dustproof performance of the lamp, a sealing ring 13 is also provided between the trapezoidal buckle 14 and the lamp holder 17, which is made of elastic materials such as rubber or silicone. The sealing ring 13 is located in the U-shaped groove 18 formed by the lamp holder 17, which provides stable support for the sealing ring 13, ensuring that it will not shift or fall off during use, maintaining long-term sealing effect. One side of the outer panel 12 is designed with a dial back plate 2, which can be made of durable materials such as metal or plastic. These materials not only ensure the firmness of the dial back plate 2, but also enable it to withstand wear and impact in daily use, thereby prolonging the service life of the lamp. The dial back plate 2 integrates a dial switch 10 inside, which is a key component for controlling the on-off state of the lamp. The dial switch 10 is also made of durable materials such as plastic or metal, ensuring its reliability and durability under frequent operation. The design of the dial switch 10 provides two operation modes: sliding and rotating, to meet the operation habits and preferences of different users. The sliding dial switch 10 design is simple and intuitive, users only need to slide gently to realize the on-off control of the lamp. This design not only responds quickly, but also operates smoothly, providing users with a simple and efficient operation experience. The rotary dial switch 10 provides another operation option for users, which controls the on-off of the lamp through rotation. The rotation damping of the rotary dial switch 10 is precisely adjusted to ensure the stability and consistency during rotation, avoiding damage to the lamp due to improper operation.

[0027] The plastic sleeve 6 connected to one side of the dial back plate 2, the internal space of the plastic sleeve 6 accommodates the circuit board, which is responsible for controlling the flow and distribution of current. The circuit board integrates various electronic components such as resistors, capacitors, diodes, transistors, and possibly microcontrollers, which work together to achieve dimming, on-off control, and possibly intelligent functions of the lamp. The plastic sleeve 6 provides comprehensive protection for the circuit board. The electronic components on the circuit board generate heat during operation, which may cause overheating of the components and affect the performance and lifespan of the lamp if not properly cooled. The plastic material used in the plastic sleeve 6 has good thermal insulation properties, and the structure design includes heat dissipation holes or fins to improve heat dissipation efficiency and maintain the circuit board operating at an appropriate temperature. The connection method of the plastic sleeve 6 can use buckles, screws or adhesives, etc., to ensure that the connection with the dial back plate 2 is both firm and easy to disassemble, facilitating maintenance and repair.

[0028] A resilient member 3 is secured to the U-shaped bracket 5. This member is typically made of spring steel, rubber, plastic, or other highly elastic materials. These materials quickly return to their original shape after being subjected to force, ensuring that the member 3 maintains its performance over extended use. The shape and size of the resilient member 3 can be adapted to varying installation conditions and force requirements, providing the necessary elastic support and cushioning. The resilient member 3 can be connected to the push-button 4 by either a hinged or fixed connection. The push-button 4, which moves within a certain range, slides over one end of the resilient member, triggering the deformation of the resilient member 3. Users can operate the resilient member 3 with a simple press, making it easy to use and reducing the possibility of misoperation. The surface of the push-button 4 can be designed with anti-slip textures or grooves to enhance grip and ensure stable operation even in slippery or greasy environments. By pressing the push-button 4, the user can easily trigger the deformation of the resilient member 3, securing or releasing the lamp. When the lamp needs to be installed or removed, the user only needs to press the button 4 to compress or stretch the elastic part 3, thereby fixing the lamp in place or releasing it, providing a simple and effective mechanical locking mechanism to ensure the stability and safety of the lamp during use. The elastic part 3 may be specially treated, such as electroplating or coating, to improve its corrosion resistance and wear resistance. The button 4 can also be made of corrosion-resistant materials or surface-treated to resist erosion by chemicals and the influence of environmental factors. A protrusion 9 is designed on one side of the outer panel 12, and the curved edges on both sides of the protrusion 9 enhance the structural strength and stability of the protrusion 9. The protrusion 9 can withstand forces from different directions, reducing the risk of damage caused by improper installation or external forces. The protrusion 9 and its curved edges can be made of the same material as the outer panel 12.

[0029] The controller 16 integrated into the power cord 1 is the core of the intelligent lamp, enhancing its functionality. The controller 16 can take various forms, including but not limited to a microprocessor, an integrated circuit, or a simple switch device. These designs can be selected and customized based on the specific needs and intended use of the lamp. As a microprocessor, the controller 16 executes algorithms and logic instructions to achieve precise control of the lamp. It receives user input, such as brightness adjustment, color temperature change, and on / off status, and automatically adjusts the lamp's operating state based on ambient light, time, or other sensor data. This intelligent control approach enables the lamp to adapt to different environments and usage scenarios, providing optimal lighting effects. The controller 16 can also connect to the user's smart device via wireless communication technologies such as Wi-Fi, Bluetooth, or Zigbee. This allows users to remotely control the lamp via a remote control, smartphone, tablet, or other smart home control center. This remote control feature provides users with great convenience, allowing them to easily manage their home lighting system from anywhere. The controller 16 also supports timed on / off functions, allowing users to preset on / off times based on their lifestyle and needs. For example, users can set lights to automatically turn on when they wake up in the morning or turn off when they leave home at night. Such automation not only saves energy but also improves convenience. The controller 16 transforms lamps into more than just lighting tools, becoming part of the smart home ecosystem. The controller 16 can also connect with other smart home devices, such as security systems and temperature controls, to achieve more intelligent home management.

[0030] It will be apparent to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential features of the present invention.

Claims

1. A lamp structure, characterized in that: One side of the lamp holder (17) is embedded in the outer panel (12), and the other side of the lamp holder (17) is connected to the light-emitting board (15). One side of the outer panel (12) is a U-shaped bayonet (5). The outer panel (12) is fixed to the wire (1) by a ring sleeve (7). The wire (1) is provided with a protrusion (19) which is screwed into a screw-in groove (20) in the ring sleeve (7). A plurality of reinforcing strips (8) are arranged around the ring sleeve (7).

2. A lamp structure according to claim 1, characterized in that: The middle of the outer panel (12) is a concave groove (11), and the edge of the concave groove (11) is a trapezoidal buckle (14) embedded in the lamp holder (17).

3. The lamp structure according to claim 2, characterized in that: A sealing ring (13) is provided between the trapezoidal buckle (14) and the lamp holder (17), and the sealing ring (13) is located in a U-shaped groove (18) formed by the lamp holder (17).

4. A lamp structure according to claim 1, 2 or 3, characterized in that: One side of the outer panel (12) is a dial back plate (2), and a dial switch (10) is arranged inside the dial back plate (2), and the dial switch (10) is in a long strip shape.

5. A lamp structure according to claim 1, 2 or 3, characterized in that: One side of the dial back plate (2) is connected to a plastic sleeve (6), and a circuit board is contained in the plastic sleeve (6).

6. A lamp structure according to claim 1, 2 or 3, characterized in that: The elastic member (3) is fixed on the U-shaped bayonet (5), and the pressing plate (4) is sleeved on one end of the elastic member (3).

7. A lamp structure according to claim 1, 2 or 3, characterized in that: One side of the outer panel (12) is a convex block (9), both sides of the convex block (9) are arc-shaped edges, and the convex block (9) is arranged on the side close to the ring sleeve (7).

8. The lamp structure according to claim 1, characterized in that: A controller (16) is provided on the electric wire (1), and the controller (16) can control the switch.

Citation Information

Patent Citations

  • Connecting structure of light source module and outer frame and lamp

    CN117906107A