Plant light supplementing LED lamp with working lamp
By integrating work lights in plant fill-up LED lamps and using a separate power supply, the device thickness and cost problems are solved, and the work lighting in the plant greenhouse is realized, saving installation costs.
Patent Information
- Application Number
- CN202422130301.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-01
- Publication Date
- 2025-08-01
- Estimated Expiration
- 2034-09-01
AI Technical Summary
The separate installation of existing plant fill-up LED lamps and work lamps has increased costs, and the device is thicker, which cannot meet the requirements of high-demand equipment.
Design a plant fill light LED lamp with work lamp. By adding work lights to the radiator and powering with a separate LED power supply, combined with the fixed structure of end plate silicone pads and self-tapping screws, the plant fill light and work lamp functions are integrated to reduce additional installation costs.
It realizes the work lighting function in the plant greenhouse without increasing the thickness of the device, saving costs and avoiding the need to install additional lighting fixtures.
Smart Images

Figure CN223178779U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of LED lamps, in particular to a plant supplementary lighting LED lamp with a working lamp. Background Technique
[0002] In recent years, due to the promotion of market demand, greenhouse production of out-of-season flowers, fruits, vegetables, etc. has been widely adopted. However, due to the low temperature all year round in the north and the short sunshine time in winter and spring, the growth of crops is slow and the yield is low. Therefore, it is necessary to supplement light for the planted plants to improve the growth rate of the planted plants. Moreover, the demand for LED lamps from many customers is increasing continuously. They are flexible and diverse, and can be customized with different spectra to meet the growth of different plants. However, not only plant supplementary lights but also daily working lighting lamps need to be installed in the greenhouse for lighting the planting personnel during work. Moreover, the installed working lamps need to find a suitable position separately, and the installation of the working lamps also requires costs. Content of the Utility Model
[0003] The purpose of the utility model is to provide a plant supplementary lighting LED lamp with a working lamp, which solves the problem that the combined thickness of the shielding iron ring and the PCB circuit board is relatively large, resulting in a relatively large overall thickness of the device, so that the device cannot be applied to the use equipment with higher requirements.
[0004] To achieve the above purpose, the utility model provides the following technical solution: a plant supplementary lighting LED lamp with a working lamp, including a lower power supply box cover, an upper power supply box cover is arranged at the upper end of the lower power supply box cover, a radiator is arranged between the lower power supply box cover and the upper power supply box cover, a first end plate is arranged at the front end of the lower power supply box cover and the upper power supply box cover, a end plate silicone pad is arranged at the rear end of the first end plate, an input male head is arranged inside the first end plate, a first self-tapping screw is movably connected inside the first end plate, the first self-tapping screw penetrates through the end plate silicone pad and is movably connected with the end plate silicone pad, a second end plate is arranged at the rear end of the lower power supply box cover and the upper power supply box cover, the second end plate contacts with another end plate silicone pad, a first self-tapping screw is movably connected inside the second end plate, the first self-tapping screw penetrates through the end plate silicone pad and is movably connected with the end plate silicone pad, a driving power supply is arranged between the lower power supply box cover and the upper power supply box cover, the driving power supply is located below the upper power supply box cover and contacts with the upper power supply box cover, a rainproof connector is arranged at the lower end of the radiator, an aluminum substrate is fixedly connected to the lower end of the radiator, and a stainless steel wire protection pipe is arranged between the lower power supply box cover and the upper power supply box cover.
[0005] Preferably, the end plate silicone pad contacts with the lower power supply box cover and the upper power supply box cover. By setting the end plate silicone pad, the installation of the first end plate and the second end plate is stable.
[0006] Preferably, LED lamp beads are arranged on the aluminum substrate, and an acrylic board is arranged at the lower end of the aluminum substrate. By arranging the acrylic board, the aluminum substrate is protected.
[0007] Preferably, a part of the first self-tapping screws are threadedly connected to the lower cover of the power supply box, and the other part of the first self-tapping screws are threadedly connected to the upper cover of the power supply box. By arranging the first self-tapping screws, the first end plate and the second end plate are installed.
[0008] Preferably, a second self-tapping screw is movably connected inside the driving power supply, and the second self-tapping screw is threadedly connected to the upper cover of the power supply box. By arranging the second self-tapping screw, the driving power supply is fixed.
[0009] Preferably, the input wire of the driving power supply penetrates through the stainless steel conduit and is slidably connected to the stainless steel conduit. By arranging the stainless steel conduit, the input wire of the driving power supply is protected.
[0010] The beneficial effects of the present utility model are as follows:
[0011] The present utility model fixes the radiator and the power supply box through the baffles at both ends of the radiator. The upper part of the baffle has a bend and a hook hole. A rainproof connector is arranged at the position of the input wiring hole. An additional set of working lights is added to the LED lamp board of the middle group of radiators. This set of working lights is powered by a separate LED power supply. When plants do not need supplementary lighting, it is convenient for the staff in the plant greenhouse to carry out lighting and daily work in the plant greenhouse, thus eliminating the need to install additional lighting fixtures in the plant greenhouse, so as to achieve the benefit of cost savings. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is an exploded view of the overall structure of the present utility model.
[0013] In the figure: 1. Radiator; 2. Lower cover of the power supply box; 3. Upper cover of the power supply box; 4. First end plate; 5. Second end plate; 6. Input male head; 7. First self-tapping screw; 8. Rainproof connector; 9. End plate silicone pad; 10. Aluminum substrate; 11. Acrylic board; 12. Driving power supply; 13. Second self-tapping screw; 14. Stainless steel conduit. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0014] The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0015] Please refer toFigure 1 , a plant supplementary lighting LED lamp with a working light, comprising a lower power supply box cover 2. An upper power supply box cover 3 is arranged at the upper end of the lower power supply box cover 2. A radiator 1 is arranged between the lower power supply box cover 2 and the upper power supply box cover 3. A first end plate 4 is arranged at the front end of the lower power supply box cover 2 and the upper power supply box cover 3. A end plate silicone pad 9 is arranged at the rear end of the first end plate 4. The end plate silicone pad 9 contacts the lower power supply box cover 2 and the end plate silicone pad 9 contacts the upper power supply box cover 3. By arranging the end plate silicone pad 9, the first end plate 4 and the second end plate 5 are stably installed. An input male head 6 is arranged inside the first end plate 4. A first self-tapping screw 7 is movably connected inside the first end plate 4. The first self-tapping screw 7 penetrates through the end plate silicone pad 9 and is movably connected to the end plate silicone pad 9. Some of the first self-tapping screws 7 are threadedly connected to the lower power supply box cover 2, and the other part of the first self-tapping screws 7 are threadedly connected to the upper power supply box cover 3. By arranging the first self-tapping screw 7, the first end plate 4 and the second end plate 5 are installed.
[0016] Please refer to Figure 1 , a second end plate 5 is arranged at the rear end of the lower power supply box cover 2 and the upper power supply box cover 3. The second end plate 5 contacts another end plate silicone pad 9. A first self-tapping screw 7 is movably connected inside the second end plate 5. The first self-tapping screw 7 penetrates through the end plate silicone pad 9 and is movably connected to the end plate silicone pad 9. A driving power supply 12 is arranged between the lower power supply box cover 2 and the upper power supply box cover 3. The driving power supply 12 is located below the upper power supply box cover 3 and contacts the upper power supply box cover 3. A second self-tapping screw 13 is movably connected inside the driving power supply 12. The second self-tapping screw 13 is threadedly connected to the upper power supply box cover 3. By arranging the second self-tapping screw 13, the driving power supply 12 is fixed. A rainproof connector 8 is arranged at the lower end of the radiator 1. The lower end of the radiator 1 is fixedly connected to an aluminum substrate 10. LED lamp beads are arranged on the aluminum substrate 10. An acrylic plate 11 is arranged at the lower end of the aluminum substrate 10. By arranging the acrylic plate 11, the aluminum substrate 10 is protected. A stainless steel wire pipe 14 is arranged between the lower power supply box cover 2 and the upper power supply box cover 3. The input wire of the driving power supply 12 penetrates through the stainless steel wire pipe 14 and is slidably connected to the stainless steel wire pipe 14. By arranging the stainless steel wire pipe 14, the input wire of the driving power supply 12 is protected.
[0017] The specific implementation process of the present utility model is as follows: The input male head 6 is the mains input interface of the lamp. The mains power enters the interior of the lamp through the interface and is respectively connected to three driving power supplies 12. The input wires of the driving power supplies 12 connected to the left and right need to pass through the stainless steel conduit 14 and be connected to the driving power supplies 12. When the LED lamp beads work, when the current passes through the semiconductor material and the internal wires, resistance will be encountered. The resistance will impede the flow of the current, thereby converting electrical energy into heat energy. In addition, although the LED lamp beads have a high electro-optical conversion efficiency, a part of the electrical energy still cannot be completely converted into light energy, but is released in the form of heat energy. Therefore, the LED lamp beads need the radiator 1 to release the heat. Below the aluminum substrate 10 is the acrylic board 11, which is used to prevent dust and the like from adhering to the surface of the lamp beads and affecting the light-emitting efficiency after the product has worked for a period of time. In addition, it also has a certain waterproof function. One row of LED lamp beads is added to the aluminum substrate 10 of the LED lamp beads on the radiator 1, and two pads are added, which are powered by a separate power supply. When the plants do not need supplementary lighting, it is convenient for the staff in the plant greenhouse to carry out lighting and daily work in the plant greenhouse, thus eliminating the need to install additional lighting fixtures in the plant greenhouse, so as to achieve the benefit of cost savings.
[0018] Although the embodiments of the present utility model have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.
Claims
1. A plant supplementary lighting LED lamp with a working light, comprising a lower power supply box cover (2), characterized in that: The upper end of the lower cover (2) of the power supply box is provided with an upper cover (3) of the power supply box. A radiator (1) is arranged between the lower cover (2) and the upper cover (3) of the power supply box. The front end of the lower cover (2) and the upper cover (3) of the power supply box is provided with a first end plate (4). A terminal plate silicone pad (9) is arranged at the rear end of the first end plate (4). An input male head (6) is arranged inside the first end plate (4). A first self-tapping screw (7) is movably connected inside the first end plate (4). The first self-tapping screw (7) penetrates through the terminal plate silicone pad (9) and is movably connected to the terminal plate silicone pad (9). The rear end of the lower cover (2) and the upper cover (3) of the power supply box is provided with a second end plate (5). The second end plate (5) is in contact with another terminal plate silicone pad (9). A first self-tapping screw (7) is movably connected inside the second end plate (5). The first self-tapping screw (7) penetrates through the terminal plate silicone pad (9) and is movably connected to the terminal plate silicone pad (9). A driving power supply (12) is arranged between the lower cover (2) and the upper cover (3) of the power supply box. The driving power supply (12) is located below the upper cover (3) of the power supply box and is in contact with the upper cover (3) of the power supply box. A rainproof connector (8) is arranged at the lower end of the radiator (1). The lower end of the radiator (1) is fixedly connected to an aluminum substrate (10). A stainless steel wire passing pipe (14) is arranged between the lower cover (2) and the upper cover (3) of the power supply box.
2. The plant supplementary lighting LED lamp with a working light according to claim 1, characterized in that: The terminal plate silicone pad (9) is in contact with the lower cover (2) of the power supply box and the terminal plate silicone pad (9) is in contact with the upper cover (3) of the power supply box.
3. The plant supplementary lighting LED lamp with a working light according to claim 1, characterized in that: LED lamp beads are arranged on the aluminum substrate (10), and an acrylic plate (11) is arranged at the lower end of the aluminum substrate (10).
4. The plant supplementary lighting LED lamp with a working light according to claim 1, characterized in that: Part of the first self-tapping screws (7) are threadedly connected to the lower cover (2) of the power supply box, and another part of the first self-tapping screws (7) are threadedly connected to the upper cover (3) of the power supply box.
5. The plant supplementary lighting LED lamp with a working light according to claim 1, characterized in that: A second self-tapping screw (13) is movably connected inside the driving power supply (12), and the second self-tapping screw (13) is threadedly connected to the upper cover (3) of the power supply box.
6. The plant supplementary light LED lamp with a working light according to claim 1, characterized in that: The input wire of the driving power supply (12) penetrates through the stainless steel wire passing pipe (14) and is slidably connected to the stainless steel wire passing pipe (14).