Photoelectric module

By combining magnetic connection and threaded engagement, the installation and disassembly process of the optoelectronic module is simplified, solving the problems of low installation efficiency and cumbersome disassembly caused by complex fixing methods in the existing technology. This enables rapid assembly and disassembly, and extends the service life of the module.

CN223895833UActive Publication Date: 2026-02-10ZHONGSHAN JINSHIDUN LIGHTING ELECTRIC CO LTD
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Patent Information

Application Number
CN202520436398.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-13
Publication Date
2026-02-10
Estimated Expiration
2035-03-13

AI Technical Summary

Technical Problem

Existing methods for fixing optoelectronic modules are complex, resulting in low installation efficiency, cumbersome disassembly, and reduced maintainability and reusability.

Method used

The system employs a combination of magnetic connection and threaded engagement. By using connecting slots and inserts and magnetic attraction, the LED modules are securely connected. The tray is fixed by connecting screws and screw grooves, simplifying the assembly and disassembly process.

Benefits of technology

It enables rapid assembly and disassembly of optoelectronic modules, preventing loosening or detachment, extending service life, saving time and labor costs, and improving maintenance convenience.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223895833U_ABST
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Abstract

The utility model discloses a photoelectric module which comprises an installation lamp body, an installation straight pipe is arranged on the upper portion of the installation lamp body, an installation tray is connected to the installation straight pipe, a connecting part is arranged in the middle of the installation tray, and the connecting part is connected with the installation straight pipe so that the installation tray can be fixed to the installation straight pipe. An LED module is connected to the mounting tray, a mounting groove is formed in the middle of the mounting tray in a concave mode, a module connecting part is arranged at the lower end of the LED module and detachably embedded in the mounting groove, and a lampshade covers the outer side of the LED module. The photoelectric module is simple in structure and convenient to assemble, the LED module can be effectively prevented from loosening or falling off through magnetic attraction connection, the service life of the LED module is prolonged, disassembly or replacement is convenient, complex tools or tedious operation is not needed, and time and labor cost are saved.
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Description

Technical Field

[0001] This utility model belongs to the field of optoelectronic module technology, specifically relating to an optoelectronic module that is easy to assemble. Background Technology

[0002] With the continuous development of science and technology and the improvement of people's living standards, lighting technology has been widely used in various fields. From traditional incandescent lamps and fluorescent lamps to modern LED lights, lighting equipment has undergone many technological innovations, and its performance, energy efficiency, and environmental friendliness have been significantly improved. However, existing lighting equipment still has certain limitations in some aspects, such as complex installation and inconvenient maintenance.

[0003] Existing methods for fixing optoelectronic modules mainly include screw fixing, clip fixing, and adhesive fixing. These methods have the following problems in practical applications:

[0004] Screw fixing is the most common installation method. It typically requires pre-drilling screw holes in the module base plate to secure the module to the bracket or mounting plate. While this method offers good mechanical stability, it requires the use of tools such as screwdrivers and electric screwdrivers, increasing assembly difficulty and time costs, resulting in low installation efficiency.

[0005] During long-term use, optoelectronic modules may require maintenance, replacement, or upgrades. Traditional screw or clip-on fastening methods are cumbersome to disassemble. Screw fastening requires unscrewing each screw individually, while clip fastening may require special tools or forceful removal, easily damaging the module and its mounting structure, thus hindering subsequent maintenance. Furthermore, once adhesive fastening is firmly established, subsequent disassembly is virtually impossible, requiring destructive removal, impacting the maintainability and reusability of the equipment.

[0006] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content

[0007] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide an optoelectronic module with a simple structure, easy assembly, effective prevention of LED module loosening or falling off through magnetic connection, extending its service life, and convenient disassembly or replacement without the need for complicated tools or cumbersome operations, thus saving time and labor costs, so as to solve the technical problems mentioned in the background art.

[0008] To achieve the above objectives, the present invention provides the following technical solution: a photoelectric module, comprising a lamp mounting body, an upper mounting straight tube, a mounting tray connected to the mounting straight tube, a connecting component in the middle of the mounting tray, the connecting component being connected to the mounting straight tube to fix the mounting tray to the mounting straight tube, an LED module connected to the mounting tray, a mounting groove recessed in the middle of the mounting tray, a module connecting part at the lower end of the LED module, the module connecting part being detachably fitted into the mounting groove, and a lampshade covering the outer side of the LED module.

[0009] Furthermore, the connecting component has a recessed connecting slot in the middle, and a connecting magnet is connected to the bottom of the connecting slot. The module connecting part has a connecting plug that is compatible with the connecting slot in the middle. The module connecting part is embedded in the mounting groove, and the connecting plug is inserted into the connecting slot. At the same time, the connecting plug and the connecting magnet are magnetically connected and fixed.

[0010] Furthermore, the mounting tray has a connecting hole at its bottom, and the bottom of the connecting component has a connecting screw. The diameter of the connecting hole is larger than the diameter of the connecting screw. The inside of the mounting tube has a connecting screw groove that matches the connecting screw. The connecting screw passes through the connecting hole and the connecting screw groove and is threadedly connected and fixed, thereby fixing the mounting tray onto the mounting tube.

[0011] Furthermore, the upper edge of the mounting tray is provided with a reinforcing ring edge, and the surface of the reinforcing ring edge is evenly provided with a plurality of magnet mounting holes, each of which is fitted with a reinforcing magnet. Each of the magnet mounting holes is provided with a screw through hole, through which a screw passes and abuts against the reinforcing magnet for fixation. The reinforcing screws are magnetically connected to the module connection part.

[0012] Furthermore, the lampshade is provided with a metal lamp holder ring, which is magnetically fixed to the reinforcing ring edge and the reinforcing magnet.

[0013] Furthermore, the connector is made of metal.

[0014] Furthermore, the lower surface of the module connection part is provided with a touch switch, an infrared probe and a charging port, which are evenly distributed at intervals on the lower surface of the module connection part, and an infrared probe hole is opened on the side of the mounting groove.

[0015] The present invention has the following advantages: the upper part of the lamp mounting body is provided with a cylindrical mounting tube, the top of which is connected to a mounting tray. The middle part of the mounting tray is provided with a connecting component, which is connected to the mounting tube to fix the mounting tray on the mounting tube. An LED module is connected to the mounting tray. A circular mounting groove is recessed in the middle of the mounting tray. The lower end of the LED module is provided with a circular module connecting part, which can be detachably embedded in the mounting groove. A lamp cover is installed on the outer side of the LED module. The photoelectric module of the present invention has a simple structure and is easy to assemble. The magnetic connection can effectively prevent the LED module from loosening or falling off, extending its service life. Moreover, it is easy to disassemble or replace without the need for complicated tools or cumbersome operations, saving time and labor costs. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.

[0017] Figure 2 This is a schematic diagram of the overall exploded structure of this utility model.

[0018] Figure 3 This is an exploded structural diagram of the lamp holder, mounting tray, and connecting components of this utility model.

[0019] Figure 4 This is a schematic diagram of the LED module structure of this utility model.

[0020] Reference numerals: 10 for mounting lamp body; 11 for mounting straight tube; 20 for mounting tray; 30 for connecting component; 40 for LED module; 50 for lamp cover; 21 for connecting through hole; 31 for connecting screw; 111 for connecting screw groove; 22 for mounting groove; 41 for module connecting part; 32 for connecting slot; 33 for connecting magnet; 411 for connecting plug; 23 for reinforcing ring edge; 231 for magnet mounting hole; 24 for reinforcing magnet; 232 for screw through hole; 42 for touch switch; 43 for infrared probe; 44 for charging port; 221 for infrared probe hole. Detailed Implementation

[0021] like Figures 1 to 4 As shown, an optoelectronic module includes a lamp mounting body 10. The upper part of the lamp mounting body 10 is provided with a cylindrical mounting tube 11. The top of the mounting tube 11 is connected to a mounting tray 20. The middle part of the mounting tray 20 is provided with a connecting component 30. The connecting component 30 is connected to the mounting tube 11, thereby fixing the mounting tray 20 to the top of the mounting tube 11. An LED module 40 is connected to the mounting tray 20. A lamp cover 50 is installed on the outer side of the LED module 40, thereby assembling the optoelectronic module. The structure is simple and the assembly is convenient.

[0022] In practical implementation, the mounting tray 20 has a connecting through hole 21 at its bottom, and the connecting component 30 has a connecting screw 31 at its bottom. The diameter of the connecting through hole 21 is larger than the diameter of the connecting screw 31. The mounting straight tube 11 has a connecting screw groove 111 inside that matches the connecting screw 31. During connection, the connecting screw 31 passes through the connecting through hole 21 and is threadedly engaged with the connecting screw groove 111 to fix it, thereby fixing the mounting tray 20 to the top of the mounting straight tube 11. During assembly, simply pass the connecting screw 31 through the connecting through hole 21 of the mounting tray 20 and then thread it into the connecting screw groove 111 of the mounting straight tube 11 to complete the fixing of the mounting tray 20. The whole process is simple and clear, reducing the probability of errors during assembly. When it is necessary to maintain the optoelectronic module or replace parts, it can be easily disassembled and assembled.

[0023] In practical implementation, the mounting tray 20 has a circular mounting groove 22 recessed in the middle, and the lower end of the LED module 40 has a circular module connecting part 41. The diameter of the mounting groove 22 is larger than the diameter of the module connecting part 41. The connecting part 30 has a connecting slot 32 recessed in the middle, and a connecting magnet 33 is connected to the inner bottom of the connecting slot 32. The module connecting part 41 has a connecting plug 411 in the middle that matches the connecting slot 32. The connecting plug 411 is made of metal. During connection, the module connecting part 41 is embedded in the mounting groove 22, and the connecting plug 411 is inserted into the connecting slot 32. The connecting plug 411 and the connecting magnet 33 are magnetically connected and fixed, thereby connecting the LED module 40 to the mounting tray 20. During assembly, the circular mounting groove 22 in the middle of the mounting tray 20 is closely matched in shape and size with the module connecting part 41 at the lower end of the LED module 40, providing precise positioning guidance for the LED module 40. This allows the module connecting part 41 to be easily and accurately inserted into the mounting groove 22. The connecting slot 32 in the connecting component 30 is compatible with the connecting plug 411 of the module connecting part 41, and a magnetic connection is formed between the connecting magnet 33 and the connecting plug 411. This makes the connection more stable and reliable. During use, the magnetic connection can effectively prevent the LED module from loosening or falling off, ensuring the normal operation of the optoelectronic module and extending its service life. When it is necessary to disassemble or replace the LED module 40, only a little force is needed to remove the module from the mounting tray, without the need for complicated tools or cumbersome operations, saving time and labor costs.

[0024] In practical implementation, the upper edge of the mounting tray 20 is provided with a circular reinforcing ring edge 23. The surface of the reinforcing ring edge 23 is evenly provided with a plurality of magnet mounting holes 231. Each of the plurality of magnet mounting holes 231 is fitted with a reinforcing magnet 24. Each of the plurality of magnet mounting holes 231 is provided with a screw through hole 232. The screw passes through the screw through hole 232 and abuts against the reinforcing magnet 24 for fixation. The module connecting part 41 is made of metal material. When the module connecting part 41 is embedded in the mounting groove 22, the plurality of reinforcing magnets 24 are magnetically connected to the module connecting part 41, thereby making the connection between the LED module 40 and the mounting tray 20 more stable.

[0025] In practical implementation, the lower surface of the module connection part 41 is provided with a touch switch 42, an infrared probe 43, and a charging port 44. The touch switch 42, the infrared probe 43, and the charging port 44 are evenly distributed on the lower surface of the module connection part 41. The side of the mounting groove 22 is provided with an infrared probe hole 221. In use, the touch switch 42 is used to perform various operations and controls on the photoelectric module, such as turning the photoelectric module on or off, adjusting the brightness mode, and switching the working state. The infrared probe 43 detects infrared signals in the surrounding environment to sense when objects are approaching or when people are moving. Based on the detected signals, the photoelectric module can automatically react accordingly. For example, when someone is detected approaching, it automatically adjusts the brightness or turns on a specific lighting mode. The main function of the charging port 44 is to provide power to the photoelectric module.

[0026] In practical implementation, the lampshade 50 is equipped with a metal lamp head ring 51, which is magnetically fixed to the reinforcing ring edge 23 and the reinforcing magnet 24. In particular, the lampshade 50 can be fixed on both the upper and lower sides of the reinforcing ring edge 23, which can meet the lampshade fixing requirements according to the design of the lamp. When charging the photoelectric module, consumers do not need to remove the lampshade 50 or perform other complicated operations. Instead, they can simply pull the module off the reinforcing ring. After being fully charged, it can be placed directly on the connection part in the reinforcing ring and fixed by the magnet. This optimizes the traditional light source knob fixing, saves a lot of operation, and avoids the safety problems of traditional live lamps, thus achieving simplicity, convenience and safety.

[0027] In summary, the upper part of the lamp mounting body 10 is provided with a cylindrical mounting tube 11, the top of which is connected to a mounting tray 20. The middle part of the mounting tray 20 is provided with a connecting component 30, which is connected to the mounting tube 11 to fix the mounting tray 20 on the mounting tube 11. An LED module 40 is connected to the mounting tray 20, and a circular mounting groove 22 is recessed in the middle of the mounting tray 20. The lower end of the LED module 40 is provided with a circular module connecting part 41, which is detachably embedded in the mounting groove 22. A lamp cover 50 is installed on the outer side of the LED module 40. The photoelectric module of this utility model has a simple structure and is easy to assemble. The magnetic connection can effectively prevent the LED module from loosening or falling off, extending its service life. Moreover, it is easy to disassemble or replace without the need for complicated tools or cumbersome operations, saving time and labor costs.

Claims

1. A photoelectric module, characterized in that, It includes a lamp mounting body (10), the upper part of which is provided with a mounting straight tube (11), a mounting tray (20) is connected to the mounting straight tube (11), a connecting part (30) is provided in the middle of the mounting tray (20), the connecting part (30) is connected to the mounting straight tube (11) so that the mounting tray (20) is fixed to the mounting straight tube (11), an LED module (40) is connected to the mounting tray (20), a mounting groove (22) is recessed in the middle of the mounting tray (20), a module connecting part (41) is provided at the lower end of the LED module (40), the module connecting part (41) is detachably embedded in the mounting groove (22), and a lamp cover (50) is installed on the outer side of the LED module (40).

2. The optoelectronic module according to claim 1, characterized in that, The connecting part (30) has a recessed connecting slot (32) in the middle. The inner bottom of the connecting slot (32) is connected to a connecting magnet (33). The module connecting part (41) has a connecting plug (411) in the middle that is compatible with the connecting slot (32). The module connecting part (41) is embedded in the mounting groove (22). The connecting plug (411) is inserted into the connecting slot (32). At the same time, the connecting plug (411) and the connecting magnet (33) are magnetically connected and fixed.

3. The optoelectronic module according to claim 1 or 2, characterized in that, The mounting tray (20) has a connecting hole (21) at its bottom. The connecting component (30) has a connecting screw (31) at its bottom. The diameter of the connecting hole (21) is larger than the diameter of the connecting screw (31). The mounting straight tube (11) has a connecting screw groove (111) inside that is compatible with the connecting screw (31). The connecting screw (31) passes through the connecting hole (21) and the connecting screw groove (111) and is threadedly connected and fixed, so that the connecting component (30) fixes the mounting tray (20) on the mounting straight tube (11).

4. The optoelectronic module according to claim 2, characterized in that, The upper edge of the mounting tray (20) is provided with a reinforcing ring edge (23). The surface of the reinforcing ring edge (23) is evenly provided with a number of magnet mounting holes (231). A reinforcing magnet (24) is embedded in each of the magnet mounting holes (231). A screw through hole (232) is provided on the side of each of the magnet mounting holes (231). A screw passes through the screw through hole (232) and abuts against the reinforcing magnet (24) for fixation.

5. The optoelectronic module according to claim 4, characterized in that, The lampshade (50) has a metal lamp head ring (51) which is magnetically fixed to the reinforcing ring edge (23) and the reinforcing magnet (24).

6. The optoelectronic module according to claim 4, characterized in that, The connector (411) is made of metal.

7. The optoelectronic module according to claim 1, characterized in that, The lower surface of the module connection part (41) is provided with a touch switch (42), an infrared probe (43) and a charging port (44). The touch switch (42), the infrared probe (43) and the charging port (44) are evenly distributed on the lower surface of the module connection part (41). The side of the mounting groove (22) is provided with an infrared probe hole (221).