Multi-purpose lamp photoelectric module structure

By designing a multi-purpose lamp optoelectronic module structure, integrating terminals with the drive power supply, and using the setting of the drive upper cover, the optoelectronic modules can be interchanged between different lamps, solving the problem of non-universal optoelectronic modules in the prior art, achieving higher versatility and lower maintenance costs, and effectively reducing heat through the heat dissipation components.

CN222849173UActive Publication Date: 2025-05-09ZHONGSHAN YISHI LIGHTING TECH CO LTD
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Patent Information

Application Number
CN202520634122.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-07
Publication Date
2025-05-09
Estimated Expiration
2035-04-07

AI Technical Summary

Technical Problem

In the prior art, the optical module design of the lamp is not universal and cannot be interchanged between different lamps, resulting in the need to replace the optical module at the same time when replacing the lamps, which increases waste and maintenance costs.

Method used

A multi-purpose lamp photoelectric module structure is designed. By integrating the wiring terminals with the driving power supply into the inside of the driving cover, and using the setting of the driving upper cover, the wiring terminals are installed inside the driving upper cover, and the driving upper cover is snapped to the inside of the driving cover, so that the optoelectronic module mechanism can be removed when the module upper cover and the light source assembly are replaced, and installed on different lamps through the second bolts to improve versatility.

Benefits of technology

The versatility of the optoelectronic module is realized, and it can be interchanged between different lamps, reducing waste and maintenance costs, and effectively reducing the heat of the driving power supply and terminals through the setting of the heat dissipation component, avoiding excessive heat affecting the luminous efficiency.

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Abstract

The utility model discloses a multipurpose lamp photoelectric module structure which comprises a module upper cover and a light source assembly installed on one side of the module upper cover, and a photoelectric module mechanism used for generating a light source is installed on one side of the module upper cover. The driving cover, the driving power source, the driving upper cover and the wiring terminal are matched with one another, the wiring terminal and the driving power source can be integrally installed in the driving cover, the wiring terminal can be installed in the driving upper cover through the arrangement of the driving upper cover, and the driving upper cover is clamped in the driving cover; the photoelectric module mechanism can be detached when the module upper cover and the light source assembly are replaced, and the photoelectric module mechanism can be installed on different lamps through second bolts, so that the universality of the photoelectric module mechanism is further improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of LED lamps, in particular to a photoelectric module structure of a multi-purpose lamp. Background Art

[0002] As the fourth generation of lighting sources, LED has significant advantages in energy saving and life span. With the development of society, the problem of lighting energy consumption in daily life has become increasingly prominent. Therefore, LED lamps with significant energy saving advantages are becoming more and more popular. The optoelectronic module in LED lamps is an integrated component that integrates a variety of optoelectronic-related functional components and plays a key role in the normal operation and performance of LED lamps.

[0003] However, the existing technology still has major deficiencies, such as:

[0004] In the prior art: the optoelectronic modules of most lamps on the market are designed for a single lamp. Since the sizes of each lamp are different, the optoelectronic modules adapted to them are not universal. Therefore, when the lamp needs to be replaced, the optoelectronic module needs to be replaced together. Utility Model Content

[0005] The utility model aims to solve at least one of the technical problems existing in the prior art. To this end, the utility model proposes a multi-purpose lamp optoelectronic module structure, which can integrate the wiring terminal and the driving power supply into the interior of the driving cover, and utilize the setting of the driving upper cover to install the wiring terminal inside the driving upper cover, and the driving upper cover is clamped to the interior of the driving cover, so that the optoelectronic module mechanism can be dismantled when the module upper cover and the light source assembly are replaced, and the optoelectronic module mechanism can be installed on different lamps by using the second bolt, so as to further improve the versatility of the optoelectronic module mechanism.

[0006] In order to achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0007] A multi-purpose lamp photoelectric module structure comprises a module upper cover and a light source assembly installed on one side thereof, wherein a photoelectric module mechanism for generating a light source is installed on one side of the module upper cover;

[0008] The optoelectronic module mechanism includes a driving cover installed on one side of the module upper cover, a driving power supply is fixedly installed on the top of the inner cavity of the driving cover, a driving upper cover is provided on one side of the driving cover, the driving upper cover and the driving cover are snap-connected, and a wiring terminal for driving is installed inside the driving cover and on one side of the driving upper cover.

[0009] Furthermore, the driving upper cover is arranged on the surface of the wiring terminal, a first bolt is installed through the surface of the driving upper cover, one end of the first bolt passes through the driving upper cover and extends to the inside of the wiring terminal, and the wiring terminal and the first bolt are threadedly connected;

[0010] A heat dissipation component is arranged inside the driving cover to dissipate heat from the driving power supply and the wiring terminals.

[0011] Furthermore, a ventilation hole is provided at the bottom of the surface of the driving cover, and a dustproof plate is installed inside the ventilation hole;

[0012] The heat dissipation component comprises a heat conduction plate arranged at the bottom of the inner cavity of the driving cover, a heat dissipation fin is fixedly installed on one side of the heat conduction plate, and a heat dissipation fan is installed between the heat dissipation fins.

[0013] Furthermore, two plug rods are fixedly installed on one side of the heat conducting plate, and a limiting hole is provided on the top of the plug rod;

[0014] A fixed shell is fixedly installed at the bottom of both sides of the inner cavity of the driving cover, one end of the insertion rod penetrates into the fixed shell and extends to the interior of the fixed shell, a limit block is arranged inside the fixed shell, a vertical rod is fixedly installed on the top of the limit block, the top end of the vertical rod penetrates the fixed shell and extends to the outside of the fixed shell, a return spring is installed on the surface of the vertical rod, and the limit block is plugged into the limit hole.

[0015] Furthermore, a pull ring is fixedly installed on one end of the vertical rod located outside the fixed shell to limit the vertical rod.

[0016] Furthermore, a second bolt is installed through one side of the driving cover, and the driving cover is fixedly installed on one side of the module upper cover by the second bolt.

[0017] Furthermore, the shapes of the insertion rod and the limiting block are both wedge-shaped, and the insertion rod and the limiting block are slidably connected by using the wedge-shaped surfaces of the two.

[0018] Furthermore, the number of the heat dissipation fins is several, and the several heat dissipation fins are arranged in two groups and are equidistantly installed on one side of the heat conducting plate.

[0019] Furthermore, a countersunk hole is provided on the surface of the driving cover, and the second bolt is installed inside the countersunk hole to prevent the second bolt from loosening.

[0020] Furthermore, a U-shaped groove is provided on the surface of the driving cover, and the driving upper cover and the wiring terminals are both installed inside the U-shaped groove.

[0021] The utility model has the following beneficial effects:

[0022] By utilizing the cooperation between the driving cover, the driving power supply, the driving upper cover and the wiring terminals, the wiring terminals and the driving power supply can be integrated and installed inside the driving cover, and by utilizing the setting of the driving upper cover, the wiring terminals can be installed inside the driving upper cover, and the driving upper cover can be clamped inside the driving cover, so that the photoelectric module mechanism can be removed when the module upper cover and the light source assembly are replaced, and the photoelectric module mechanism can be installed on different lamps by using the second bolt, so as to further improve the versatility of the photoelectric module mechanism;

[0023] By utilizing the setting of the heat dissipation component, when the driving power supply and the wiring terminals generate heat while working inside the driving cover, the heat conducting plate can conduct the heat to the surface of the cooling fins, and cooperate with the ventilation holes to allow the air to dissipate the heat on the surface of the cooling fins when circulating. At the same time, the heat dissipation fan can be used to discharge the heat inside the driving cover and the surface of the cooling fins to avoid the situation where excessive heat affects the luminous efficiency.

[0024] In addition to the above-described purposes, features and advantages, the present invention has other purposes, features and advantages. The present invention will be further described in detail below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] The drawings constituting a part of this application are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation on the present invention. In the drawings:

[0026] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0027] Figure 2 It is a schematic diagram of the split structure in the utility model;

[0028] Figure 3 It is a schematic diagram of the structure of the optoelectronic module mechanism in the utility model;

[0029] Figure 4 This is a schematic diagram of the heat dissipation component structure in the utility model;

[0030] Figure 5 For this utility model Figure 4 Schematic diagram of the enlarged structure at point A in the middle.

[0031] Legend:

[0032] 1. Module cover; 2. Light source assembly; 3. Photoelectric module mechanism; 31. Drive cover; 32. Drive power supply; 33. Drive cover; 34. Terminal block; 35. First bolt; 36. Heat dissipation assembly; 361. Ventilation hole; 362. Dustproof plate; 363. Heat conduction plate; 364. Heat dissipation fin; 365. Heat dissipation fan; 366. Insert rod; 367. Limit hole; 368. Fixed shell; 369. Limit block; 3601. Vertical rod; 3602. Reset spring; 3603. Pull ring; 37. Second bolt. DETAILED DESCRIPTION

[0033] It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.

[0034] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments of the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.

[0035] It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the relative position relationship, movement status, etc. between the various components under a certain specific posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication will also change accordingly.

[0036] In addition, the descriptions of "first", "second", etc. in the present utility model are only used for descriptive purposes and cannot be understood as indicating or implying their relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In addition, the technical solutions between the various embodiments can be combined with each other, but they must be based on the ability of ordinary technicians in this field to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such a combination of technical solutions does not exist and is not within the scope of protection required by the present utility model.

[0037] Example 1: Please refer to Figures 1 to 5 A multi-purpose lamp photoelectric module structure in a preferred embodiment of the utility model includes a module cover 1 and a light source assembly 2 installed on one side thereof, and a photoelectric module mechanism 3 for generating a light source is installed on one side of the module cover 1;

[0038] The optoelectronic module mechanism 3 includes a driving cover 31 installed on one side of the module upper cover 1, a driving power supply 32 is fixedly installed on the top of the inner cavity of the driving cover 31, a driving upper cover 33 is provided on one side of the driving cover 31, and the driving upper cover 33 and the driving cover 31 are snap-connected, and a wiring terminal 34 for driving is installed inside the driving cover 31 and on one side of the driving upper cover 33. The driving cover 33 is covered on the surface of the wiring terminal 34, and a first bolt 35 is installed through the surface of the driving cover 33. One end of the first bolt 35 penetrates the driving cover 33 and extends to the inside of the wiring terminal 34. The wiring terminal 34 and the first bolt 35 are threadedly connected; a second bolt 37 is installed through one side of the driving cover 31, and the driving cover 31 is fixedly installed on one side of the module cover 1 by the second bolt 37; a countersunk hole is opened on the surface of the driving cover 31, and the second bolt 37 is installed inside the countersunk hole to prevent the second bolt 37 from loosening; a U-shaped groove is opened on the surface of the driving cover 31, and the driving cover 33 and the wiring terminal 34 are both installed inside the U-shaped groove;

[0039] In this embodiment, the wiring terminal 34 and the driving power supply 32 are integrated and installed inside the driving cover 31, and by utilizing the setting of the driving upper cover 33, the wiring terminal 34 can be installed inside the driving upper cover 33, and the driving upper cover 33 is snapped into the interior of the driving cover 31, so that the optoelectronic module mechanism 3 can be removed when the module upper cover 1 and the light source assembly 2 are replaced, and the second bolt 37 can be used to install the optoelectronic module mechanism 3 on different lamps to improve the versatility of the optoelectronic module mechanism 3.

[0040] Embodiment 2: Based on the embodiment 1, this embodiment takes into account that only through the embodiment 1, although the driving power supply 32 and the wiring terminal 34 can be integrated and installed inside the driving cover 31, and the optoelectronic module mechanism 3 can be installed on different lamps, but in actual use, since the driving power supply 32 and the wiring terminal 34 will generate heat when working, and the luminous efficiency will be affected when the heat inside the driving cover 31 is too high, this embodiment uses the following structure to dissipate heat inside the driving cover 31;

[0041] A heat dissipation assembly 36 is provided inside the driving cover 31 for dissipating heat from the driving power supply 32 and the wiring terminal 34; a ventilation hole 361 is provided at the bottom of the surface of the driving cover 31, and a dustproof plate 362 is installed inside the ventilation hole 361; the heat dissipation assembly 36 includes a heat conducting plate 363 provided at the bottom of the inner cavity of the driving cover 31, a heat dissipation fin 364 is fixedly installed on one side of the heat conducting plate 363, and a heat dissipation fan 365 is installed between the heat dissipation fins 364; the number of the heat dissipation fins 364 is several, and the several heat dissipation fins 364 are installed in two groups at equal distances on one side of the heat conducting plate 363;

[0042] In this embodiment, the heat conduction plate 363 can conduct heat to the surface of the heat dissipation fins 364, and cooperate with the ventilation holes 361 to allow the air to dissipate the heat on the surface of the heat dissipation fins 364 when circulating. At the same time, the heat dissipation fan 365 can discharge the heat inside the drive cover 31 and the surface of the heat dissipation fins 364 to avoid excessive heat affecting the luminous efficiency.

[0043] Two plug rods 366 are fixedly installed on one side of the heat conducting plate 363, and a limiting hole 367 is provided on the top of the plug rod 366; a fixed shell 368 is fixedly installed on the bottom of both sides of the inner cavity of the driving cover 31, one end of the plug rod 366 penetrates into the fixed shell 368 and extends to the inside of the fixed shell 368, a limiting block 369 is arranged inside the fixed shell 368, a vertical rod 3601 is fixedly installed on the top of the limiting block 369, the top end of the vertical rod 3601 penetrates through the fixed shell 368 and extends to the outside of the fixed shell 368, a return spring 3602 is installed on the surface of the vertical rod 3601, and the limiting block 369 is plugged in with the limiting hole 367; a pull ring 3603 is fixedly installed on one end of the vertical rod 3601 located outside the fixed shell 368, so as to limit the vertical rod 3601; the plug rod 366 and the limiting block 369 are both wedge-shaped, and the plug rod 366 and the limiting block 369 are slidably connected by the wedge surfaces of both.

[0044] In this embodiment, when the heat dissipation component 36 is being disassembled or assembled, the insertion rod 366 can be inserted into the interior of the fixed shell 368. While entering the interior of the fixed shell 368, the insertion rod 366 can push the limit block 369. As the insertion rod 366 continues to enter, the limit block 369 is automatically inserted into the limit hole 367 by the elasticity of the return spring 3602 to complete the installation. Conversely, the heat dissipation component 36 can be removed by pulling the limit block 369 upwards using the pull ring 3603 and the vertical rod 3601, so that the heat dissipation component 36 can be replaced in time when it is damaged.

[0045] Working principle: The connection terminal 34 and the driving power supply 32 are integrated and installed inside the driving cover 31, and by using the setting of the driving upper cover 33, the connection terminal 34 can be installed inside the driving upper cover 33, and the driving upper cover 33 is clamped inside the driving cover 31, so that the photoelectric module mechanism 3 can be removed when the module upper cover 1 and the light source assembly 2 are replaced, and the photoelectric module mechanism 3 can be installed on different lamps by using the second bolt 37, so as to improve the versatility of the photoelectric module mechanism 3;

[0046] When the driving power supply 32 and the connecting terminal 34 generate heat while working inside the driving cover 31, the heat conducting plate 363 can conduct the heat to the surface of the cooling fin 364 and cooperate with the ventilation hole 361 to allow the air to dissipate the heat on the surface of the cooling fin 364 when circulating. At the same time, the cooling fan 365 can discharge the heat inside the driving cover 31 and the surface of the cooling fin 364 to avoid excessive heat affecting the luminous efficiency.

[0047] The above are only preferred embodiments of the present invention and are not intended to limit the present invention. For those skilled in the art, the present invention may be subject to various modifications and variations. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A multi-purpose lighting optoelectronic module structure, comprising a module cover (1), and a light source assembly (2) mounted on one side thereof, characterized in that: A photoelectric module mechanism (3) for generating a light source is installed on one side of the module upper cover (1); The photoelectric module mechanism (3) comprises a driving cover (31) mounted on one side of the module upper cover (1); a driving power source (32) is fixedly mounted on the top of the inner cavity of the driving cover (31); a driving upper cover (33) is arranged on one side of the driving cover (31); the driving upper cover (33) and the driving cover (31) are snap-connected; and a connection terminal (34) for driving is mounted inside the driving cover (31) and on one side of the driving upper cover (33).

2. The multi-purpose lamp optoelectronic module structure according to claim 1, characterized in that: The driving upper cover (33) is covered on the surface of the wiring terminal (34); a first bolt (35) is installed through the surface of the driving upper cover (33); one end of the first bolt (35) penetrates the driving upper cover (33) and extends to the inside of the wiring terminal (34); the wiring terminal (34) and the first bolt (35) are threadedly connected; A heat dissipation component (36) is provided inside the driving cover (31) for dissipating heat from the driving power source (32) and the wiring terminals (34).

3. The multi-purpose lamp optoelectronic module structure according to claim 2, characterized in that: A ventilation hole (361) is provided on the surface of the driving cover (31), and a dustproof plate (362) is installed inside the ventilation hole (361); The heat dissipation assembly (36) comprises a heat conduction plate (363) arranged at the bottom of the inner cavity of the drive cover (31), a heat dissipation fin (364) is fixedly mounted on one side of the heat conduction plate (363), and a heat dissipation fan (365) is mounted between the heat dissipation fins (364).

4. The multi-purpose lamp optoelectronic module structure according to claim 3, characterized in that: Two insertion rods (366) are fixedly mounted on one side of the heat conducting plate (363), and a limiting hole (367) is provided on the top of the insertion rod (366); A fixed shell (368) is fixedly installed at the bottom of both sides of the inner cavity of the driving cover (31), one end of the insertion rod (366) penetrates into the fixed shell (368) and extends to the inside of the fixed shell (368), a limit block (369) is arranged inside the fixed shell (368), a vertical rod (3601) is fixedly installed on the top of the limit block (369), the top end of the vertical rod (3601) penetrates through the fixed shell (368) and extends to the outside of the fixed shell (368), a return spring (3602) is installed on the surface of the vertical rod (3601), and the limit block (369) is plugged into the limit hole (367).

5. The multi-purpose lamp optoelectronic module structure according to claim 4, characterized in that: A pull ring (3603) is fixedly mounted on one end of the vertical rod (3601) located outside the fixed housing (368) to limit the position of the vertical rod (3601).

6. The multi-purpose lamp optoelectronic module structure according to claim 1, characterized in that: A second bolt (37) is installed through one side of the driving cover (31), and the driving cover (31) is fixedly installed on one side of the module upper cover (1) by means of the second bolt (37).

7. The multi-purpose lamp optoelectronic module structure according to claim 4, characterized in that: The insert rod (366) and the limit block (369) are both wedge-shaped, and the insert rod (366) and the limit block (369) are slidably connected using their wedge-shaped surfaces.

8. The multi-purpose lamp optoelectronic module structure according to claim 3, characterized in that: The number of the heat dissipation fins (364) is a plurality, and the plurality of heat dissipation fins (364) are arranged in two groups and are equidistantly mounted on one side of the heat conduction plate (363).

9. The multi-purpose lamp optoelectronic module structure according to claim 6, characterized in that: A countersunk hole is provided on the surface of the driving cover (31), and the second bolt (37) is installed inside the countersunk hole to prevent the second bolt (37) from loosening.

10. The multi-purpose lamp optoelectronic module structure according to claim 1, characterized in that: A U-shaped groove is provided on the surface of the driving cover (31), and the driving upper cover (33) and the connecting terminal (34) are both installed inside the U-shaped groove.