LED (Light Emitting Diode) plant lamp capable of soaking heat by using copper pipe

By using copper tube heat dissipation design and sealing structure in LED plant lights, the corrosion problem of lamps in humid environments is solved, achieving uniform heat distribution and moisture removal, extending service life, and improving the adaptability and user experience of the equipment.

CN223622856UActive Publication Date: 2025-12-02NANTONG YIDEXING IND TECH CO LTD
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Patent Information

Application Number
CN202423128823.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-02
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In humid environments, the heat generated by plant lights cannot be effectively dissipated, leading to corrosion of the lights, shortened lifespan, and inability to meet the spectral requirements of different growth stages.

Method used

The design employs a copper tube heat dissipation system. By placing a copper tube around the light source inside the heat sink, combined with a sealing ring and baffle structure, heat is evenly distributed and moisture is expelled, enhancing the waterproofness and sealing of the lamp.

Benefits of technology

It effectively extends the lifespan of the lamps, improves their reliability and durability in humid environments, adapts to the light and temperature requirements of different growth stages, enhances plant growth efficiency, and simplifies the installation and maintenance process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an LED plant lamp capable of soaking heat through a copper pipe. The LED plant lamp comprises a heat dissipation lamp body. An embedded clamping groove is formed in the heat dissipation lamp body, and a copper pipe is installed in the embedded clamping groove. The light source is fixed to the inner side face of the heat dissipation lamp body through a fixing piece. The copper pipe is arranged around the light source; a sealing ring is mounted on one side, close to the outer side of the copper pipe, of the heat dissipation lamp body, and a circle of baffle is arranged on the outer side of the sealing ring; one side of the heat dissipation lamp body is further connected with a lens. One side of the lens is fixed on one side of the radiating lamp body through a sealing gland; the back of the radiating lamp body is connected with a waterproof connector. The copper pipe is arranged in the heat dissipation lamp body and surrounds the light source, heat generated by the light source can be effectively and evenly dispersed, local overheating is prevented, the lamp and internal elements of the lamp are protected, and the service life of the lamp is prolonged. The design of the copper pipe can effectively eliminate moisture, reduce accumulation of water vapor at the tail end of the lamp, and reduce the corrosion risk. The characteristic ensures the reliability and durability of the lamp in a humid environment.
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Description

Technical Field

[0001] This utility model relates to an LED plant light that can use copper tubes for heat equalization, belonging to the technical field of plant lighting equipment. Background Technology

[0002] LED plant grow lights are devices that use artificial light sources to simulate natural light and promote plant growth. They typically employ LED technology, stimulating plant growth by emitting electromagnetic waves suitable for plant photosynthesis. Plant lights are widely used in various environments requiring supplemental lighting or lacking natural light, such as in winter when sunlight is insufficient or in indoor planting scenarios.

[0003] Because plant lights are used in humid environments, and different growth regulators are sprayed during plant cultivation, the heat generated by the light source at a certain stage of the light's spectrum may not be enough to expel moisture from the lamp's end, leading to partial corrosion of the light fixture and reducing its lifespan. Different light sources are used at different stages of plant growth; some light sources may not generate enough heat when used, causing ambient moisture to accumulate at the lamp's end and corrode the lamp body, thus shortening its lifespan. Utility Model Content

[0004] To address the problems existing in the prior art, this utility model provides an LED plant light that can use copper tubes for uniform heating, thereby solving the aforementioned technical problems.

[0005] To achieve the above objectives, the technical solution adopted by this utility model is as follows: an LED plant light that can use copper tubes for uniform heating, comprising a waterproof connector, a heat dissipation lamp body, a copper tube, a light source, a sealing ring, a lens, and a sealing cap; the heat dissipation lamp body is provided with an embedded slot for installing the copper tube; the light source is fixed to the inner side of the heat dissipation lamp body by a fixing component; the copper tube is arranged around the light source; a sealing ring is installed on the side of the heat dissipation lamp body located on the outer side of the copper tube, and a baffle is provided on the outer side of the sealing ring for limiting and fixing the sealing ring; a lens is also connected to one side of the heat dissipation lamp body; one side of the lens is fixed to one side of the heat dissipation lamp body by a sealing cap; a waterproof connector is connected to the back of the heat dissipation lamp body.

[0006] Furthermore, the sealing cap has mounting holes around its perimeter, which mate with the mounting holes around the heat dissipation lamp body and are fixed in place by fasteners.

[0007] Furthermore, the copper tube has a convex-shaped structure, which is divided into two areas: an upper and a lower area, including a light source placement end and a lower heat conduction end.

[0008] Furthermore, the light source is located in the upper part of the copper tube, in the larger light source placement end.

[0009] The beneficial effects of this utility model are:

[0010] 1. By installing copper pipes inside the heat sink lamp body and arranging them around the light source, the heat generated by the light source can be effectively and evenly distributed, preventing local overheating, thereby protecting the lamp and its internal components and extending its service life.

[0011] 2. Moisture and corrosion resistant: Since plant lights are usually in humid environments, the copper tube design effectively removes moisture, reduces water vapor buildup at the end of the light fixture, and lowers the risk of corrosion. This feature ensures the reliability and durability of the light fixture in humid environments.

[0012] 3. High adaptability: The LED plant light designed in this utility model can adjust the light source and heat output according to the needs of different growth stages of plants, so as to meet the light and temperature requirements of different plants and improve the efficiency of plant growth.

[0013] 4. Sealing Design: The structure of the sealing ring and baffle ensures that the inside of the lamp is not invaded by external moisture and dust, further enhancing the waterproofness and sealing of the lamp and improving the overall safety.

[0014] 5. Convenient installation and maintenance: The design of the sealed pressure cover and its fixing method with the heat dissipation lamp body make the installation and maintenance process simpler. Users can easily replace and clean the lamps, improving the user experience. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the structure of this utility model.

[0016] In the diagram: 1. Waterproof connector, 2. Heat dissipation lamp body, 21. Embedded slot, 22. Baffle, 3. Copper pipe, 4. Light source, 5. Sealing ring, 6. Lens, 7. Sealing cap. Detailed Implementation

[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. However, it should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit its scope.

[0018] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the invention.

[0019] like Figure 1As shown, an LED plant light that uses copper tubes for heat dissipation includes a waterproof connector 1, a heat dissipation lamp body 2, a copper tube 3, a light source 4, a sealing ring 5, a lens 6, and a sealing cap 7. The heat dissipation lamp body 2 has an embedded slot 21 for mounting the copper tube 3. The light source 4 is fixed to the inner side of the heat dissipation lamp body 2 by a fastener. The copper tube 3 is arranged around the light source 4. A sealing ring 5 is installed on one side of the heat dissipation lamp body 2, near the outer side of the copper tube 3. A baffle 22 is provided on the outer side of the sealing ring 5 to limit and fix its position. A lens 6 is also connected to one side of the heat dissipation lamp body 2. One side of the lens 6 is fixed to one side of the heat dissipation lamp body 2 by the sealing cap 7. The waterproof connector 1 is connected to the back of the heat dissipation lamp body 2.

[0020] In this preferred embodiment, the sealing cover 7 has mounting holes around its perimeter, which cooperate with the mounting holes around the heat dissipation lamp body 2 and are fixed by fasteners.

[0021] In this preferred embodiment, the copper tube 3 has a convex-shaped structure, which is divided into two regions: an upper and a lower region, including a light source placement end and a lower heat conduction end.

[0022] In this preferred embodiment, the light source 4 is located in the upper end of the copper tube 3, where the light source placement area is larger.

[0023] In this embodiment, the copper tube 3 is an improved design, embedded inside the heat dissipation lamp body 2, so that the heat from the upper light source 4 can be quickly conducted to the lower end. The heated lower end effectively evaporates the accumulated moisture and reduces corrosion at the end of the lamp.

[0024] The beneficial effects of this utility model are as follows: By incorporating copper tubes within the heat dissipation lamp body and arranging them around the light source, the heat generated by the light source can be effectively and evenly distributed, preventing localized overheating and thus protecting the lamp and its internal components, extending its service life. Moisture and corrosion resistance: Since plant lights are typically located in humid environments, the copper tube design effectively removes moisture, reducing the accumulation of water vapor at the lamp's end and lowering the risk of corrosion. This feature ensures the reliability and durability of the lamp in humid environments. Strong adaptability: The LED plant light designed in this utility model can adjust the light source and heat output according to the needs of different plant growth stages, meeting the light and temperature requirements of different plants and improving plant growth efficiency. Sealed design: The structure design of the sealing ring and baffle ensures that the lamp's interior is not invaded by external moisture and dust, further enhancing the lamp's waterproofness and sealing performance, and improving overall safety. Convenient installation and maintenance: The design of the sealing cap and its fixing method to the heat dissipation lamp body make the installation and maintenance process simpler, allowing users to easily replace and clean the lamp, improving the user experience.

[0025] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions or improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. An LED plant light that can use copper tubes for heat distribution, characterized in that, The device includes a waterproof connector (1), a heat dissipation lamp body (2), a copper tube (3), a light source (4), a sealing ring (5), a lens (6), and a sealing cap (7). The heat dissipation lamp body (2) has an embedded slot (21) for installing the copper tube (3). The light source (4) is fixed to the inner side of the heat dissipation lamp body (2) by a fastener. The copper tube (3) is arranged around the light source (4). A sealing ring (5) is installed on the side of the heat dissipation lamp body (2) on the outer side of the copper tube (3). A baffle (22) is provided on the outer side of the sealing ring (5) for limiting and fixing the sealing ring (5). A lens (6) is also connected to one side of the heat dissipation lamp body (2). One side of the lens (6) is fixed to one side of the heat dissipation lamp body (2) by the sealing cap (7). The back of the heat dissipation lamp body (2) is connected to the waterproof connector (1).

2. The LED plant light that can use copper tubes for heat dissipation according to claim 1, characterized in that, The sealing cap (7) has mounting holes around its perimeter, which cooperate with the mounting holes around the heat dissipation lamp body (2) and are fixed by fasteners.

3. The LED plant light that can use copper tubes for heat dissipation according to claim 1, characterized in that, The copper tube (3) has a convex shape and is divided into two areas, an upper and a lower area, including the light source placement end and the lower heat conduction end.

4. An LED plant light that can use copper tubes for heat dissipation according to claim 1, characterized in that, The light source (4) is located in the upper part of the copper tube (3) where the light source has a large area.