Modularized lamp bead easy to install
By designing a quick-connect mechanism, utilizing a snap-fit structure and spring limiting, the problem of inconvenient installation of modular LED beads is solved, achieving a convenient and efficient installation process and a stable connection.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-10
- Publication Date
- 2026-03-31
AI Technical Summary
Modular LED chips require multiple threads to be turned during installation, which is inconvenient, time-consuming, and labor-intensive, increasing the installation time.
A quick-connection mechanism was designed, including a lamp bead body, a mounting shell, an extension plate, a connecting plate, a telescopic block, and an arc-shaped block. It achieves convenient installation through a snap-fit connection and ensures a stable connection by using springs and limiting structures.
It enables convenient and efficient installation of modular LED beads, saving manpower, reducing installation time, and improving the stability and reliability of the connection.
Smart Images

Figure CN224065355U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of modular LED technology, and in particular to an easy-to-install modular LED. Background Technology
[0002] Modular LED chips are a type of LED chip structure that integrates light-emitting units, driving circuits, and heat dissipation components into a single module. The light-emitting units are typically LED chips, which are the core components that generate light, emitting light based on the photoelectric effect of semiconductor materials. The driving circuit is responsible for providing the LED chip with appropriate current and voltage to ensure stable light emission and can control parameters such as light intensity and color as needed. Heat dissipation components also play a crucial role in the module, as LED chips generate heat during operation. Good heat dissipation components, such as metal heat sinks or thermally conductive ceramics, can effectively conduct heat away, preventing the chip from overheating and causing performance degradation or damage. The modular design of LED chips allows for easy assembly and installation, much like building blocks. Through simple connection methods, such as plug-in interfaces or magnetic connections, lighting systems of various shapes and sizes can be constructed, applicable to multiple fields such as indoor and outdoor lighting, decorative lighting, and automotive lighting. Modular LED chips typically require the following technologies:
[0003] 1. Integrated Packaging Technology: This technology encapsulates the LED chip, driver circuit chip, and other auxiliary components (such as capacitors, resistors, etc.) into a small module;
[0004] 2. Intelligent control technology: By integrating a microcontroller (MCU) or digital signal processor (DSP) into the module, precise control of parameters such as brightness, color, and color temperature of the LED beads can be achieved;
[0005] 3. Standardized interface technology: The interface design of modular LED chips needs to consider the stability of electrical connections, the reliability of mechanical connections, and the compatibility of signal transmission;
[0006] 4. High-efficiency heat dissipation technology: In addition to using materials with good heat dissipation performance (such as metal substrates or ceramic substrates) inside the module, heat dissipation fins or heat dissipation channels can also be designed on the outside of the module to increase the heat dissipation area and improve heat dissipation efficiency.
[0007] Currently, modular LED chips possess several important functions. In terms of lighting functionality, they provide stable light output and, through intelligent control, can achieve various lighting modes, such as bright white light for general illumination and colorful lights for creating ambiance. Regarding combination flexibility, their modular nature allows for easy assembly into lamps of various shapes and sizes, meeting the lighting layout requirements of different spaces and designs. In terms of maintenance convenience, when a single LED module malfunctions, it can be replaced individually without replacing the entire lamp, reducing maintenance costs and repair complexity. In terms of energy saving, the inherent low power consumption of LED chips, combined with intelligent control technology for efficient energy utilization, enables modular LED chips to effectively conserve energy in lighting applications, aligning with environmental protection and sustainable development principles.
[0008] However, the above method has a prominent hardware structural problem: installing modular LED beads with the housing requires tightening multiple threads, which is inconvenient, time-consuming, and labor-intensive, increasing installation time. This application proposes a solution to this problem: a quick-connect mechanism. This snap-fit quick-connect mechanism makes the installation of modular LED beads convenient and efficient, saving manpower and reducing installation time. Utility Model Content
[0009] To address the shortcomings of existing technologies, this utility model provides an easy-to-install modular LED bead, which solves the technical problem that when installing modular LED beads with the housing, multiple threads need to be screwed on, which is inconvenient, time-consuming, and laborious, increasing the installation time.
[0010] To achieve the above objectives, this utility model provides the following technical solution:
[0011] An easy-to-install modular LED bead includes an LED bead body, with an installation shell at the lower end of the LED bead body and quick-connect mechanisms at both ends of the LED bead body. These mechanisms include two extension plates, two connecting plates, two telescopic blocks, and two arc-shaped blocks. The two extension plates are fixedly connected to both ends of the LED bead body, and the upper ends of the two connecting plates are fixedly connected to the lower ends of the two extension plates. Rectangular grooves are formed on the side ends of the two connecting plates, and the two telescopic blocks are located inside the rectangular grooves. The side ends of the two telescopic blocks are fixedly connected to the arc-shaped blocks.
[0012] Preferably, both ends of the housing are fixedly connected to extension plates two. Rectangular slots are provided on the upper side of both extension plates two. The two connecting plates are movably connected to the two extension plates two through the rectangular slots. When the installation is completed, the two arc blocks are located at the lower end of the extension plates two. When the lower arc surface of the arc block encounters motion interference, it will retract into the interior of the rectangular slot. When the upper surface of the arc block encounters interference, it will be blocked.
[0013] Preferably, both ends of the two telescopic blocks are fixedly connected to movable sliders, and the inner wall of each connecting plate is provided with two limiting grooves. The two movable sliders correspond to the limiting grooves, and each movable slider is slidably connected to the connecting plate through the limiting groove.
[0014] Preferably, the inner walls of both connecting plates are fixedly connected with connecting columns, and the interiors of both telescopic blocks are provided with cylindrical chambers. Both telescopic blocks are movably fitted with limit discs through the cylindrical chambers.
[0015] Preferably, holes are provided on the side surfaces of both telescopic blocks, and the positions of the two connecting posts correspond to the positions of the two limiting discs. The two connecting posts pass through the holes and are fixedly connected to the corresponding limiting discs.
[0016] Preferably, each of the two cylindrical chambers is equipped with a spring, one end of each spring is fixedly connected to the corresponding arc-shaped block, and the other end of each spring is fixedly connected to the corresponding limiting disc.
[0017] Compared with the prior art, the present invention has the following beneficial effects:
[0018] 1. The worker aligns the two connecting plates with the rectangular slots of the extension plate two. At this time, the lamp bead body is pressed down. The curved block is interfered with by the extension plate two, so the curved block and the telescopic block are squeezed into the rectangular slot, and the two springs are compressed. At this time, the lamp bead body continues to descend until the extension plate two no longer presses against the curved block. The two springs will reset and push the telescopic block and the curved block out of the rectangular slot. At this time, the upper ends of the two curved blocks will press against the lower surface of the extension plate two, achieving the purpose of connecting the installation shell and the lamp bead body. The snap-fit quick connection mechanism makes the modular lamp bead installation convenient and efficient, saves manpower, and reduces installation time.
[0019] 2. When the spring pushes the telescopic block to move, the corresponding sliding block will also move within the limit groove. When the spring pushes the telescopic block to move, the sliding block moves within the limit groove, which can accurately limit the movement, making the connection more stable and reducing the risk of failure. Attached Figure Description
[0020] The above description is only an overview of the technical solution of this utility model. In order to better understand the technical means of this utility model and to implement it in accordance with the contents of the specification, the preferred embodiments of this utility model are described in detail below with reference to the accompanying drawings.
[0021] Figure 1 This is a structural diagram of the entire utility model;
[0022] Figure 2 This is a structural diagram of the extension plate two of this utility model;
[0023] Figure 3 This is a structural diagram of the connecting plate of this utility model;
[0024] Figure 4 This is a structural diagram of the arc-shaped block of this utility model.
[0025] Legend: 11. LED bead body; 12. Mounting shell; 13. Extension plate one; 14. Extension plate two; 15. Connecting plate; 16. Arc-shaped block; 17. Rectangular slot; 18. Telescopic block; 19. Moving slider; 20. Connecting column; 21. Limiting disc; 22. Spring; 23. Hole; 24. Cylindrical chamber; 25. Limiting groove. Detailed Implementation
[0026] This application provides an easy-to-install modular LED bead, effectively solving the technical problem that installing modular LED beads with the housing requires tightening multiple threads, which is inconvenient, time-consuming, and labor-intensive, increasing installation time. The operator aligns the two connecting plates with the rectangular slots of the extension plate two. Then, pressing the LED bead body causes the arc-shaped block to be interfered with by the extension plate two, thus squeezing the arc-shaped block and the telescopic block into the rectangular slot. The two springs are compressed, and the LED bead body continues to descend until the extension plate two no longer presses against the arc-shaped block. The two springs then reset, pushing the telescopic block and the arc-shaped block out of the rectangular slot. At this point, the upper ends of the two arc-shaped blocks abut against the lower surface of the extension plate two, achieving the purpose of connecting the housing and the LED bead body. This snap-fit quick-connect mechanism makes modular LED bead installation convenient and efficient, saving manpower and reducing installation time. Example
[0027] like Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, the technical solution in this application embodiment effectively solves the technical problem that when installing modular LED beads with the housing, multiple threads need to be tightened, which is inconvenient, time-consuming, and laborious, increasing the installation time. The overall idea is as follows:
[0028] To address the problems existing in the prior art, this utility model provides an easy-to-install modular LED bead, including an LED bead body 11, with a mounting shell 12 at the lower end of the LED bead body 11. The key feature is that both ends of the LED bead body 11 are provided with quick-connect mechanisms, including two extension plates 13, two connecting plates 15, two telescopic blocks 18, and two arc-shaped blocks 16. Both extension plates 13 are fixedly connected to both ends of the LED bead body 11. The upper ends of both connecting plates 15 are fixedly connected to the lower ends of the two extension plates 13. Rectangular grooves are formed on the side ends of both connecting plates 15. Both telescopic blocks 18 are located inside the rectangular grooves, and their side ends are fixedly connected to the arc-shaped blocks 16. Extension plates 14 are fixedly connected to both ends of the mounting shell 12. A rectangular slot 17 is provided on the upper side. The two connecting plates 15 are movably connected to the two extension plates 14 through the rectangular slots 17. When the installation is completed, the two arc blocks 16 are located at the lower end of the extension plates 14. When the lower arc surface of the arc block 16 encounters motion interference, it will retract into the interior of the rectangular slot. When the upper surface of the arc block 16 encounters interference, it will be blocked. The operator aligns the two connecting plates 15 into the rectangular slots 17 of the extension plates 14. At this time, the lamp bead body 11 is pressed. The arc block 16 is interfered with by the extension plates 14. Therefore, the arc block 16 and the telescopic block 18 are squeezed into the rectangular slot, and the two springs 22 are compressed. At this time, the lamp bead body 11 continues to descend until the extension plates 14 no longer block the arc block 16. The two springs 22 will reset and push the telescopic block 18 and the arc block 16 out of the rectangular slot.
[0029] Both ends of the two telescopic blocks 18 are fixedly connected to movable sliders 19. The inner wall of each connecting plate 15 has two limiting grooves 25. The two movable sliders 19 correspond to the limiting grooves 25. Each movable slider 19 is slidably connected to the connecting plate 15 through the limiting grooves 25. The inner walls of the two connecting plates 15 are fixedly connected to connecting posts 20. The interior of the two telescopic blocks 18 has a cylindrical cavity 24. The two telescopic blocks 18 are movably fitted with limiting discs 21 through the cylindrical cavity 24. The limiting discs 21 limit the telescopic blocks 18, avoiding the problem of the telescopic blocks 18 moving excessively and detaching from the connecting plate 15. The upper ends of the two arc-shaped blocks 16 abut against the lower surface of the extension plate 14, achieving the purpose of connecting the installation shell 12 and the lamp bead body 11. The snap-fit quick connection mechanism makes the modular lamp bead installation convenient and efficient, saving manpower and reducing installation time.
[0030] Both telescopic blocks 18 have holes 23 on their side surfaces. Both connecting posts 20 correspond to the positions of the two limiting discs 21. Both connecting posts 20 pass through the holes 23 and are fixedly connected to the corresponding limiting discs 21. Both cylindrical chambers 24 are equipped with springs 22. One end of each spring 22 is fixedly connected to the corresponding arc-shaped block 16, and the other end of each spring 22 is fixedly connected to the corresponding limiting disc 21. When the spring 22 pushes the telescopic block 18 to move, the corresponding sliding slider 19 will also move within the limiting groove 25. When the spring 22 pushes the telescopic block 18 to move, the sliding slider 19 moves within the limiting groove 25, which can accurately limit the position, making the connection more stable and reducing the risk of failure.
[0031] LED bead body 11: As the core light-emitting component, it is equipped with quick connection mechanisms at both ends, which cooperate with the mounting shell 12 to achieve convenient installation;
[0032] Housing 12: Used to protect the main body of the LED bead 11, with its two ends of extension plate 14 engaging with the connecting plate 15 to complete the snap-fit connection;
[0033] Extension plate 13: connects the lamp bead body 11 and the connecting plate 15, and serves as a transition support;
[0034] Extension plate 2 14: A rectangular slot 17 is provided to fit with the connecting plate 15 to assist in installation and positioning;
[0035] Connecting plate 15: It supports components such as telescopic block 18 and completes the connection action through interaction with extension plate 2 14;
[0036] Arc-shaped block 16: It is deformed by compression during installation. After the spring returns to its original position, it presses against extension plate 2 14 to achieve a stable connection.
[0037] Rectangular slot 17: provides precise guidance and positioning for the connection plate 15;
[0038] Telescopic block 18: It has a built-in spring 22, etc., which can extend and retract within the rectangular groove, driving the arc-shaped block 16 to move;
[0039] The movable slider 19 cooperates with the limiting slide groove 25 to ensure that the telescopic block 18 moves smoothly and accurately;
[0040] Connecting column 20: Fixes and limits the disc 21 to prevent the telescopic block 18 from moving excessively and detaching from the connecting plate 15;
[0041] Limiting disc 21: Limits the telescopic block 18 to ensure the stability of the connection structure;
[0042] Spring 22: Provides extension and retraction power to achieve automatic reset of arc block 16 and telescopic block 18;
[0043] Hole 23: Facilitates the passage of connecting column 20 and assists in structural fixation;
[0044] Cylindrical chamber 24: accommodates spring 22 and provides space for the movement of telescopic block 18;
[0045] Limiting groove 25: guides the movement of slider 19, precisely limits the movement, and ensures a stable connection.
[0046] Working principle:
[0047] The operator aligns the two connecting plates 15 with the rectangular slots 17 of the extension plate 2 14. At this point, the lamp body 11 is pressed down, and the arc-shaped block 16 is interfered with by the extension plate 2 14. Therefore, the arc-shaped block 16 and the telescopic block 18 are squeezed into the rectangular slot, and the two springs 22 are compressed. The lamp body 11 continues to descend until the extension plate 2 14 no longer presses against the arc-shaped block 16. The two springs 22 then reset, pushing the telescopic block 18 and the arc-shaped block 16 out of the rectangular slot. At this point, the upper ends of the two arc-shaped blocks 16 will press against... The lower surface of the extension plate 14 is used to connect the mounting housing 12 and the lamp bead body 11. The snap-fit quick connection mechanism makes the modular lamp bead installation convenient and efficient, saving manpower and reducing installation time. When the spring 22 pushes the telescopic block 18 to move, the corresponding sliding slider 19 will also move within the limiting groove 25. When the spring 22 pushes the telescopic block 18 to move, the sliding slider 19 moves within the limiting groove 25, which can accurately limit the position, making the connection more stable and reducing the risk of failure.
[0048] Finally, it should be noted that the above embodiments are merely examples for clearly illustrating the present invention and are not intended to limit the implementation. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations. However, obvious variations or modifications derived therefrom are still within the protection scope of this invention.
Claims
1. An easily installed modular lamp bead comprising a lamp bead body (11), the lower end of the lamp bead body (11) is provided with a mounting shell (12), characterized in that, Two ends of the lamp bead body (11) are provided with quick connection mechanisms, including two extension plates one (13), two connecting plates (15), two telescopic blocks (18) and two arc blocks (16); Wherein, two extension plates one (13) are fixedly connected with two ends of the lamp bead body (11), upper ends of two connecting plates (15) are fixedly connected with lower ends of two extension plates one (13), side end portions of two connecting plates (15) are provided with rectangular grooves, two telescopic blocks (18) are located inside the rectangular grooves, side end portions of two telescopic blocks (18) are fixedly connected with arc blocks (16); Both ends of the mounting shell (12) are fixedly connected with extension plates two (14); Wherein, upper side ends of two extension plates two (14) are provided with rectangular clamping grooves (17), two connecting plates (15) are movably sleeved with two extension plates two (14) through the rectangular clamping grooves (17), lower curved surfaces of the arc blocks (16) will retract into the rectangular grooves when encountering motion interference, upper surfaces of the arc blocks (16) are stopped when encountering interference; Both ends of two telescopic blocks (18) are fixedly connected with moving sliding blocks (19); Wherein, inner walls of each connecting plate (15) are provided with two limiting sliding grooves (25), each moving sliding block (19) is slidably connected with the connecting plate (15) through the limiting sliding groove (25).
2. The easily installed modular light bead of claim 1, wherein: Inner walls of two connecting plates (15) are fixedly connected with connecting columns (20); Wherein, inside of two telescopic blocks (18) are provided with cylindrical cavities (24), two telescopic blocks (18) are movably sleeved with limiting discs (21) through the cylindrical cavities (24).
3. An easily installed modular light bead as defined in claim 2, wherein: Side surfaces of two telescopic blocks (18) are provided with holes (23); Wherein, two connecting columns (20) are fixedly connected with corresponding limiting discs (21) through the holes (23).
4. The easily installed modular light bead of claim 3, wherein: Inside of two cylindrical cavities (24) are provided with springs (22); Wherein, one end of two springs (22) is fixedly connected with corresponding arc blocks (16), the other end of two springs (22) is fixedly connected with corresponding limiting discs (21).