Drive-separated mining lamp structure

Through the innovative design of the separate driver box and heat dissipation panel, the problem of insufficient heat dissipation performance of industrial and mining lamps has been solved, achieving more efficient heat dissipation and stability, and is suitable for the lighting needs of large rooms such as factories and workshops.

CN223537594UActive Publication Date: 2025-11-11AODE QILI TECHNOLOGY (ZHONGSHAN) CO LTD
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Patent Information

Application Number
CN202520013288.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-03
Publication Date
2025-11-11
Estimated Expiration
2035-01-03

AI Technical Summary

Technical Problem

Existing industrial and mining lamps have limited heat dissipation performance, which affects their applicability, especially since the drive unit is located inside the radiator, which is not conducive to heat dissipation.

Method used

The drive box is designed to be separate from the heat dissipation panel. The heat dissipation panel features a design with protruding pillars, annular protrusions, and heat dissipation fins. The drive box is fixed with screw holes, and the inner wall of the annular protrusion has a heat conduction channel groove and screw holes to increase heat dissipation efficiency. At the same time, protruding pillars and heat dissipation fins are set on the top surface of the heat dissipation panel to improve heat dissipation performance.

Benefits of technology

It effectively reduces heat buildup during use, improves heat dissipation performance and ease of assembly, and ensures stability and applicability for long-term use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a drive separated mining lamp structure which comprises a heat dissipation panel, an LED lamp panel and an integrated lens panel, a protruding column is arranged in the center of the top face of the heat dissipation panel, an annular protrusion is arranged in the middle of the heat dissipation panel, a plurality of heat dissipation fins are arranged on the top face of the heat dissipation panel, and a plurality of heat conduction channel grooves are formed in the annular protrusion. A plurality of screw hole columns are fixed on the inner wall of the annular bulge; a circular bottom plate is fixed to the top face of the screw hole column through a screw, a driving box is fixed to the top face of the circular bottom plate through a screw, and a gap is formed between the circular bottom plate and the annular protrusion. The LED lamp panel is reasonable in structural arrangement, the protruding columns are mainly arranged in the top face of the heat dissipation panel and matched with the annular protrusions and the heat dissipation fins, heat generated by the LED lamp panel can be effectively dissipated, the driving box is installed through the screws, namely the driving box is arranged in a separated mode, heat generated in the using process can be reduced, assembling convenience is improved, and the LED lamp panel is suitable for popularization and application. And the heat dissipation effectiveness is improved.
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Description

Technical Field

[0001] This utility model belongs to the field of industrial and mining lamp technology, and specifically relates to a drive-separated structure for an industrial and mining lamp. Background Technology

[0002] Industrial and mining lamps are a type of lighting fixture used in factories, workshops, workshops, shopping malls, exhibition halls, and other high-ceilinged rooms. They are generally composed of a heat sink, an LED light panel, and an integrated lens panel, all fixed together with screws. During assembly, to ensure the stability of the LED light panel's beam, screws are typically only installed at the edges. While this meets general usage requirements, the high power of industrial and mining lamps means that their heat dissipation performance is relatively limited during prolonged use. Furthermore, the driver is located inside the heat sink, which also hinders heat dissipation and limits their applicability to some extent. Utility Model Content

[0003] The purpose of this invention is to provide a drive-separated industrial and mining lamp structure with a reasonable structural design that is conducive to improving heat dissipation performance.

[0004] The technical solution to achieve the purpose of this utility model is a drive-separated industrial and mining lamp structure, including a heat dissipation panel, an LED lamp board fixed to the bottom surface of the heat dissipation panel, and an integrated lens panel fixed to the bottom surface of the heat dissipation panel by screws. The top surface of the heat dissipation panel has a protruding post integrally formed at the center, the middle part of the heat dissipation panel has an annular protrusion integrally formed, and the top surface of the heat dissipation panel has a plurality of heat dissipation fins integrally formed, the inner end of the heat dissipation fins being integrally formed on the outer wall of the annular protrusion.

[0005] The annular protrusion is provided with several heat-conducting channel grooves;

[0006] Several screw-hole posts are fixed on the inner wall of the annular protrusion.

[0007] The top surface of the screw hole post is fixed with a circular base plate by screws, and the top surface of the circular base plate is fixed with a drive box by screws, and a gap is provided between the circular base plate and the annular protrusion.

[0008] The driver box is connected to the LED light board via wires.

[0009] A further preferred embodiment is that the side of the drive box is provided with a C-shaped mounting groove, and the symmetrical inner wall of the C-shaped mounting groove is provided with a limiting protrusion.

[0010] A wire seat is provided in the C-shaped mounting groove, and a limit vertical groove is provided on the symmetrical side of the wire seat;

[0011] The conductor seat is disposed in the C-shaped mounting groove, and the limiting protrusion is engaged in the limiting vertical groove for limiting.

[0012] A further preferred embodiment is that the integrated lens panel has a plurality of concentric lens rings.

[0013] The screws are located at the edge and center of the integrated lens panel.

[0014] A further preferred embodiment is that the heat dissipation panel has a heat dissipation hole groove that is open at both the top and bottom, and the outer end of the heat dissipation fin extends across the top surface of the heat dissipation hole groove.

[0015] A further preferred embodiment is that the top surface of the drive box is threaded with a hook.

[0016] A further preferred embodiment is that the height of the heat dissipation fins is greater than or equal to the height of the annular protrusion.

[0017] This utility model has positive effects: The structure of this utility model is reasonably designed. The top surface of the heat dissipation panel is mainly provided with a protruding post and a circular protrusion. At the same time, heat dissipation fins are provided on the outer side of the circular protrusion, which can effectively dissipate the heat generated by the LED light board. Moreover, the inner wall of the circular protrusion is provided with a screw hole post, which can be used to install the driver box with screws. That is, the driver box adopts a separate design, which can reduce the heat generated during use, improve the convenience of assembly, improve the effectiveness of heat dissipation, and has strong applicability.

[0018] Furthermore, the gap between its circular base plate and the annular protrusion ensures effective and reliable heat dissipation. At the same time, the screws are located at the edge and center of the integrated lens panel, ensuring the stability and effectiveness of its assembly. The integrated lens panel is also less prone to deformation during long-term use, making it highly versatile. Attached Figure Description

[0019] To make the content of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings, wherein:

[0020] Figure 1 This is a schematic diagram of the structure of this utility model;

[0021] Figure 2 This is a schematic diagram of the disassembled structure of this utility model;

[0022] Figure 3 This is another structural view of the present invention when disassembled;

[0023] Figure 4 This is a schematic diagram of the specific structure of the heat dissipation panel in this utility model.

[0024] Reference numerals: 1. Heat dissipation panel; 2. LED light panel; 3. Integrated lens panel; 4. Protrusion; 5. Circular protrusion; 6. Heat dissipation fins; 7. Heat conduction channel groove; 8. Screw hole post; 9. Circular base plate; 10. Driver box; 11. Limiting protrusion; 12. Wire seat; 13. Limiting vertical groove; 14. Heat dissipation hole groove; 15. Hook; 16. C-shaped mounting groove. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] Example

[0027] See Figures 1 to 4 As shown, a drive-separated industrial and mining lamp structure includes a heat dissipation panel 1, an LED lamp board 2 fixed to the bottom surface of the heat dissipation panel, and an integrated lens panel 3 fixed to the bottom surface of the heat dissipation panel by screws. In this embodiment, the integrated lens panel is provided with a plurality of concentric lens protrusions; the screws are located at the edge and center of the integrated lens panel. This structure ensures the stability and effectiveness of the integrated lens panel assembly.

[0028] Furthermore, the heat dissipation panel has a protruding post 4 integrally formed at the center of its top surface, an annular protrusion 5 integrally formed in the middle of the heat dissipation panel, and a plurality of heat dissipation fins 6 integrally formed on the top surface of the heat dissipation panel. The inner ends of the heat dissipation fins are integrally formed on the outer wall of the annular protrusion. The protruding post and the annular protrusion can effectively support the drive box and prevent it from falling or falling off. The heat dissipation fins are connected to the outer surface of the annular protrusion, which can also improve the effectiveness and reliability of heat dissipation.

[0029] Furthermore, the annular protrusion is provided with several heat-conducting channel grooves 7; these grooves form a ventilation channel, which helps improve heat dissipation performance. Additionally, several screw-hole posts 8 are fixed to the inner wall of the annular protrusion; during assembly, a circular base plate 9 is fixed to the top surface of the screw-hole posts by screws, and a driver box 10 is fixed to the top surface of the circular base plate by screws, with a gap between the circular base plate and the annular protrusion; the driver box is connected to the LED light board via wires. This gap ensures effective heat dissipation, preventing the heat from the driver box from affecting the heat dissipation of the LED light board, thus offering broad applicability.

[0030] Meanwhile, the drive box has a C-shaped mounting groove 16 on its side, and a limiting protrusion 11 is provided on the symmetrical inner wall of the C-shaped mounting groove; furthermore, a wire seat 12 is provided in the C-shaped mounting groove, and a limiting vertical groove 13 is provided on the symmetrical side of the wire seat; during assembly, the wire seat is placed in the C-shaped mounting groove, and the limiting protrusion is engaged in the limiting vertical groove for limitation. This structure ensures stable and reliable assembly of the wire seat, making it highly practical.

[0031] The heat dissipation panel has through-holes 14 along its edge, and the outer ends of the heat dissipation fins extend across the top surface of the through-holes. A hook 15 is threaded onto the top surface of the drive box. Furthermore, the height of the heat dissipation fins is greater than or equal to the height of the annular protrusion. The hooks facilitate installation and use, while the through-holes improve heat dissipation performance.

[0032] This utility model has positive effects: The structure of this utility model is reasonably designed. The top surface of the heat dissipation panel is mainly provided with a protruding post and a circular protrusion. At the same time, heat dissipation fins are provided on the outer side of the circular protrusion, which can effectively dissipate the heat generated by the LED light board. Moreover, the inner wall of the circular protrusion is provided with a screw hole post, which can be used to install the driver box with screws. That is, the driver box adopts a separate design, which can reduce the heat generated during use, improve the convenience of assembly, improve the effectiveness of heat dissipation, and has strong applicability.

[0033] Furthermore, the gap between its circular base plate and the annular protrusion ensures effective and reliable heat dissipation. At the same time, the screws are located at the edge and center of the integrated lens panel, ensuring the stability and effectiveness of its assembly. The integrated lens panel is also less prone to deformation during long-term use, making it highly versatile.

[0034] The standard parts used in this embodiment can be purchased directly from the market, and the non-standard structural parts described in the instruction manual can also be processed without any doubt based on existing technical common sense. At the same time, the connection methods of each component adopt mature conventional methods in the existing technology, and the machinery, parts and equipment all adopt conventional models in the existing technology, so they will not be described in detail here.

[0035] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. 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 embodiments here. However, these obvious variations or modifications derived from the essential spirit of this utility model still fall within the protection scope of this utility model.

Claims

1. A drive-separated industrial and mining lamp structure, comprising a heat dissipation panel, an LED lamp board fixed to the bottom surface of the heat dissipation panel, and an integrated lens panel fixed to the bottom surface of the heat dissipation panel by screws, characterized in that: The top surface of the heat dissipation panel has a protruding post integrally formed at the center, the middle part of the heat dissipation panel has an annular protrusion integrally formed, and the top surface of the heat dissipation panel has a plurality of heat dissipation fins integrally formed, with the inner ends of the heat dissipation fins integrally formed on the outer wall of the annular protrusion. The annular protrusion is provided with several heat-conducting channel grooves; Several screw-hole posts are fixed on the inner wall of the annular protrusion. The top surface of the screw hole post is fixed with a circular base plate by screws, and the top surface of the circular base plate is fixed with a drive box by screws, and a gap is provided between the circular base plate and the annular protrusion. The driver box is connected to the LED light board via wires.

2. The structure of a driving-separated industrial and mining lamp according to claim 1, characterized in that: The side of the drive box is provided with a C-shaped mounting groove, and the symmetrical inner wall of the C-shaped mounting groove is provided with a limiting protrusion. A wire seat is provided in the C-shaped mounting groove, and a limit vertical groove is provided on the symmetrical side of the wire seat; The conductor seat is disposed in the C-shaped mounting groove, and the limiting protrusion is engaged in the limiting vertical groove for limiting.

3. The structure of a driving-separated industrial and mining lamp according to claim 1, characterized in that: The integrated lens panel is provided with several concentric lens rings; The screws are located at the edge and center of the integrated lens panel.

4. The structure of a driving-separated industrial and mining lamp according to claim 1, characterized in that: The heat dissipation panel has a heat dissipation hole groove that is open at both the top and bottom, and the outer end of the heat dissipation fin extends across the top surface of the heat dissipation hole groove.

5. The structure of a driving-separated industrial and mining lamp according to claim 1, characterized in that: The top surface of the drive box is threaded with a hook.

6. The structure of a driving-separated industrial and mining lamp according to claim 1, characterized in that: The height of the heat dissipation fins is greater than or equal to the height of the annular protrusion.