Plant growth lamp with adaptive regulation of light intensity

CN224730588UActive Publication Date: 2026-09-08QINGHAI RASPBERRY AGRI INDUSTRIALIZATION CO LTD
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Patent Information

Application Number
CN202521747448.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-18
Publication Date
2026-09-08
Estimated Expiration
2035-08-18

AI Technical Summary

Technical Problem

[0004]但是上述植物生长灯在植物生长的不同阶段需要控制不同的光照强度,上述安装板上固定设置的生长灯无法调整光照位置,进而控制生长灯的光照强度,导致了植物生长灯光照强度不可调整

Benefits of technology

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: During use, the hydraulic rod on the starter adjustment component is used to extend and pull the rotating slide block to slide horizontally in the slide frame plate. Pulling the rotating rod drives the locking pins to be inserted into the guide grooves of the lighting components at different positions in sequence. The locking pins and guide grooves are locked in place. The starter motor drives the rotating rod to rotate, which in turn drives the locking pins and guide grooves to rotate on the conveyor frame, thereby driving the conveyor belt to run and thus illuminating the lighting upwards. This controls the number of lighting lights illuminating the plants and thus controls the light intensity.

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Abstract

The utility model relates to plant growth lamp technical field, especially in kind of self -adaptation regulation light intensity's plant growth lamp, including lighting part, connecting piece and adjusting part, lighting part transversely is provided with a plurality of, and a plurality of lighting part includes conveying frame, conveying cylinder, conveyer belt and guide groove cylinder, conveying frame one end horizontal rotation is connected with conveying cylinder, and conveying frame one end horizontal rotation is connected with guide groove cylinder, and conveying frame's inside both sides conveying cylinder and guide groove cylinder tension connection have conveyer belt, and a plurality of lighting lamps are fixed with transversely vertical on the one end surface of conveyer belt, a plurality of lighting part adjacent end horizontal setting has connecting piece, adjusting part includes support, rotation sliding seat and rotation rod, support is fixed in a plurality of lighting part one end, and horizontal fixed with sliding frame board on the support, and rotation sliding seat is horizontally slidably assembled on the sliding frame board, and rotation rod is horizontally rotationally connected on the rotation sliding seat. The utility model controls the number of lighting lamp irradiating plant, thereby controls the light intensity.
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Description

Technical Field

[0001] This utility model relates to the field of plant growth light technology, and in particular to a plant growth light that adaptively adjusts light intensity. Background Technology

[0002] Plant grow lights are artificial light sources specifically designed to promote plant growth. They provide the light conditions necessary for photosynthesis by mimicking the spectrum of sunlight. These lights are widely used in agriculture, horticulture, and home gardening, especially in situations where natural light is lacking or where precise control of the growing environment is required, such as in greenhouses, indoor farms, and laboratories.

[0003] The existing announcement number CN210717102U, entitled "A Lighting Lamp for Plant Growth," includes a mounting plate with an LED light at its bottom. Reflective structures are located on both the front and rear sides of the mounting plate. A heat sink with heat dissipation holes is located between the bottom of the mounting plate and the LED light. Heat sink fins are spaced between the mounting plate and the heat sink, and the heat dissipation holes are spaced apart. A pin groove is located on the top of the mounting plate. By setting up reflective structures on the mounting plate and providing pin grooves and pin holes, the reflective structures can be adjusted according to the needs of different plant growth, increasing light intensity. The cost is low, and it is easy to install and remove. Furthermore, the heat sink between the mounting plate and the LED light improves the heat dissipation efficiency of the LED light, improving the quality of plant growth. This lighting lamp for plant growth provided by this utility model has a simple structure and is easy to promote.

[0004] However, the above-mentioned plant grow lights need to control different light intensities at different stages of plant growth. The grow lights fixed on the mounting plate cannot adjust the light position, thereby controlling the light intensity of the grow lights, resulting in the plant grow light intensity being unadjustable. Utility Model Content

[0005] This invention solves the problems in related technologies and proposes a plant growth lamp that adaptively adjusts light intensity.

[0006] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution: a plant growth lamp with adaptive light intensity adjustment, including lighting components, connecting components, and adjusting components. Multiple lighting components are arranged horizontally, and each lighting component includes a conveying frame, a conveying cylinder, a conveyor belt, and a guide trough. One end of the conveying frame is horizontally rotatably connected to the conveying cylinder, and the other end of the conveying frame is horizontally rotatably connected to the guide trough. The conveying cylinder and the guide trough are tensioned and connected to the conveying belt on both sides inside the conveying frame. Multiple lighting lamps are horizontally and vertically fixed on one end face of the conveyor belt. Connecting components are horizontally arranged at adjacent ends of the multiple lighting components. The adjusting components include a bracket, a rotating slide, and a rotating rod. The bracket is fixed to one end of the multiple lighting components, and a sliding frame plate is horizontally fixed on the bracket. A rotating slide is horizontally slidably assembled on the sliding frame plate. A rotating rod is horizontally rotatably connected to the rotating slide, and a locking post is horizontally fixed at the end of the rotating rod. The locking post is slidably inserted into the guide trough for limiting.

[0007] As a preferred embodiment, screw holes are provided at the bottom of the vertical end faces on both sides of the conveying frame, and the screw holes are fixed to the vertical end faces on both sides of the conveying frame.

[0008] As a preferred embodiment, the connector includes a sliding frame and a pull-out frame, with the pull-out frame horizontally slidably inserted into the outside of the sliding frame, and screw holes fixed horizontally at the ends of the sliding frame and the pull-out frame.

[0009] As a preferred embodiment, the screw hole plates at the ends of the sliding frame and the pull-out frame are inserted into the screw hole frame, and the screw hole plates and the screw hole frame are fixedly assembled by locking screws.

[0010] As a preferred embodiment, the sliding frame has an adjusting screw installed through its internal horizontal thread, and the end of the adjusting screw is rotatably connected to the inner end face of the pull-out frame.

[0011] As a preferred embodiment, a hydraulic rod is horizontally fixed to the end of the sliding frame plate, and the output end of the hydraulic rod is fixed to the end of the rotating slide block.

[0012] As a preferred embodiment, a motor is horizontally fixed to the end of the rotating slide, and the motor output end is fixed to the end of the rotating rod.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: During use, the hydraulic rod on the starter adjustment component is used to extend and pull the rotating slide block to slide horizontally in the slide frame plate. Pulling the rotating rod drives the locking pins to be inserted into the guide grooves of the lighting components at different positions in sequence. The locking pins and guide grooves are locked in place. The starter motor drives the rotating rod to rotate, which in turn drives the locking pins and guide grooves to rotate on the conveyor frame, thereby driving the conveyor belt to run and thus illuminating the lighting upwards. This controls the number of lighting lights illuminating the plants and thus controls the light intensity. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is an exploded structural diagram of the present invention;

[0016] Figure 3 This is a schematic diagram of the lighting component in an exploded state in an embodiment of this utility model;

[0017] Figure 4 This is a schematic diagram of the connector in an exploded state in an embodiment of this utility model;

[0018] Figure 5 This is a schematic diagram of the structure of the adjusting component in the disassembled state in an embodiment of this utility model.

[0019] In the diagram: 1. Lighting component; 11. Conveying frame; 12. Conveying cylinder; 13. Conveying belt; 14. Guide trough cylinder; 15. Lighting lamp; 16. Screw hole frame; 2. Connecting component; 21. Sliding frame; 22. Adjusting screw; 23. Pull-out frame; 24. Screw hole plate; 25. Locking screw; 3. Adjusting component; 31. Bracket; 32. Sliding frame plate; 33. Rotary slide; 34. Rotating rod; 35. Locking post; 36. Hydraulic rod. Detailed Implementation

[0020] 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. The following description of at least one exemplary embodiment is merely illustrative and is in no way intended to limit the present utility model or its application or use. All other embodiments obtained by those skilled in the art based on the embodiments of the present utility model without creative effort are within the scope of protection of the present utility model.

[0021] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0022] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values ​​of the components and steps described in these embodiments do not limit the scope of this invention. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values ​​should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.

[0023] In the description of this utility model, it should be understood that the directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this utility model. The directional terms "inner" and "outer" refer to the inner and outer contours of each component itself.

[0024] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.

[0025] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this utility model.

[0026] like Figures 1 to 5 As shown, a plant growth lamp with adaptive light intensity adjustment includes an illumination element 1, a connecting element 2, and an adjusting element 3. Multiple illumination elements 1 are arranged horizontally, and each illumination element 1 includes a conveyor frame 11, a conveyor cylinder 12, a conveyor belt 13, and a guide trough cylinder 14. One end of the conveyor frame 11 is horizontally rotatably connected to the conveyor cylinder 12, and the other end of the conveyor frame 11 is horizontally rotatably connected to the guide trough cylinder 14. The conveyor belt 13 is tensioned and connected to both sides of the conveyor frame 11 via the conveyor cylinder 12 and the guide trough cylinder 14. Multiple illumination lamps 15 are horizontally and vertically fixed on one end face of the conveyor belt 13. Multiple lighting elements 1 are horizontally connected at adjacent ends with connecting parts 2. Adjusting parts 3 include a bracket 31, a rotating slide 33 and a rotating rod 34. The bracket 31 is fixed to one end of the multiple lighting elements 1, and a sliding frame plate 32 is horizontally fixed on the bracket 31. The rotating slide 33 is horizontally slidably assembled on the sliding frame plate 32. The rotating rod 34 is horizontally rotatably connected on the rotating slide 33, and a locking post 35 is horizontally fixed at the end of the rotating rod 34. The locking post 35 is slidably inserted into the guide groove cylinder 14 for limiting. A hydraulic rod 36 is horizontally fixed at the end of the sliding frame plate 32, and the output end of the hydraulic rod 36 is fixed at the end of the rotating slide 33. A motor is horizontally fixed to the end of the rotating slide 33, and the motor output is fixed to the end of the rotating rod 34. During use, the number of lights illuminating the plants is controlled according to the light intensity required by the plant growth stage, thereby controlling the light intensity. During use, the hydraulic rod 36 on the adjusting component 3 is activated, and the hydraulic rod 36 extends and pulls the rotating slide 33 to slide horizontally in the sliding frame plate 32. The rotating rod 34 is pulled to drive the locking pins 35 to be inserted into the guide groove cylinders 14 of the lighting components 1 at different positions in sequence. The locking pins 35 are locked and engaged with the guide groove cylinders 14. The motor is started to drive the rotating rod 34 to rotate, which drives the locking pins 35 to drive the guide groove cylinders 14 to rotate on the conveyor frame 11, thereby driving the conveyor belt 13 to run, thereby illuminating the lighting lamps 15 upward, thereby controlling the number of lights illuminating the plants, thereby controlling the light intensity.

[0027] In one embodiment, such as Figure 2 As shown, screw hole frames 16 are provided at the bottom of the vertical end faces on both sides of the conveying frame 11, and the screw hole frames 16 are fixed on the vertical end faces on both sides of the conveying frame 11. The screw hole frames 16 provided at both ends of the conveying frame 11 are used for horizontal assembly and connection of multiple lighting components 1.

[0028] In one embodiment, such as Figure 3 and 4As shown, the connector 2 includes a sliding frame 21 and a pull-out frame 23. The pull-out frame 23 is horizontally slidably inserted into the outside of the sliding frame 21. The ends of the sliding frame 21 and the pull-out frame 23 are horizontally fixed with screw hole plates 24. The screw hole plates 24 at the ends of the sliding frame 21 and the pull-out frame 23 are inserted into the screw hole frame 16, and the screw hole plates 24 and the screw hole frame 16 are fixedly assembled by locking screws 25. The internal horizontal thread of the sliding frame 21 is used to assemble an adjusting screw 22, and the end of the adjusting screw 22 is rotatably connected to the inner end face of the pull-out frame 23. In use, the screw hole plates 24 at the ends of the sliding frame 21 and the pull-out frame 23 are fixedly assembled on the screw hole frame 16 between the two lighting components 1 by locking screws 25. Then, according to the needs of plant growth, the adjusting screw 22 inside the sliding frame 21 is rotated to push the pull-out frame 23 to slide laterally in the sliding frame 21, thereby facilitating lateral extension and retraction.

[0029] In this embodiment, the number of lighting lamps illuminating the plants is controlled according to the light intensity required at each growth stage, thereby controlling the light intensity. During use, the hydraulic rod 36 on the adjusting component 3 is activated, extending and pulling the rotating slide block 33 horizontally within the sliding frame plate 32. This pulls the rotating rod 34, causing the locking pins 35 to be inserted sequentially into the guide grooves 14 of the lighting components 1 at different positions. The locking pins 35 are locked into the guide grooves 14. The motor is then started, causing the rotating rod 34 to rotate, which in turn drives the locking pins 35 to move the guide grooves. 14 rotates on the conveyor frame 11, thereby driving the conveyor belt 13 to run, thereby illuminating the light lamp 15 upward, thereby controlling the number of light lamps illuminating the plants, thereby controlling the light intensity. The screw hole plates 24 at the ends of the sliding frame 21 and the pull-out frame 23 are fixedly assembled on the screw hole frame 16 between the two lighting components 1 by locking screws 25. Then, according to the plant growth needs, the adjusting screw 22 inside the sliding frame 21 is rotated to push the pull-out frame 23 to slide laterally in the sliding frame 21, thereby facilitating lateral extension and retraction.

[0030] The above are preferred embodiments of this utility model. Those skilled in the art can make changes and modifications to the above embodiments. Therefore, this utility model is not limited to the specific embodiments described above. Any obvious improvements, substitutions or modifications made by those skilled in the art based on this utility model shall fall within the protection scope of this utility model.

Claims

1. A plant growth lamp that adaptively adjusts light intensity, characterized in that, The system includes lighting components (1), connecting components (2), and adjusting components (3). Multiple lighting components (1) are arranged horizontally, and each lighting component (1) includes a conveying frame (11), a conveying cylinder (12), a conveyor belt (13), and a guide trough cylinder (14). One end of the conveying frame (11) is horizontally rotatably connected to the conveying cylinder (12), and another end of the conveying frame (11) is horizontally rotatably connected to the guide trough cylinder (14). The conveying cylinders (12) and guide trough cylinders (14) on both sides inside the conveying frame (11) are tensioned and connected to the conveyor belt (13). Multiple components are horizontally and vertically fixed on one end face of the conveyor belt (13). The lighting lamp (15) has a connector (2) horizontally arranged at the adjacent ends of multiple lighting elements (1). The adjusting element (3) includes a bracket (31), a rotating slide (33) and a rotating rod (34). The bracket (31) is fixed at one end of the multiple lighting elements (1), and a sliding frame plate (32) is horizontally fixed on the bracket (31). The rotating slide (33) is horizontally slidably assembled on the sliding frame plate (32). The rotating rod (34) is horizontally rotatably connected on the rotating slide (33), and a locking post (35) is horizontally fixed at the end of the rotating rod (34). The locking post (35) is limited and slidably inserted into the guide tube (14).

2. The plant growth lamp with adaptive light intensity adjustment according to claim 1, characterized in that: The bottom of the vertical end faces on both sides of the conveying frame (11) is provided with screw hole frames (16), and the screw hole frames (16) are fixed on the vertical end faces on both sides of the conveying frame (11).

3. A plant growth lamp with adaptive light intensity adjustment according to claim 2, characterized in that: The connector (2) includes a sliding frame (21) and a pull-out frame (23). The pull-out frame (23) is horizontally slidably inserted into the outside of the sliding frame (21). The ends of the sliding frame (21) and the pull-out frame (23) are horizontally fixed with screw hole plates (24).

4. A plant growth lamp with adaptive light intensity adjustment according to claim 3, characterized in that: The screw hole plates (24) at the ends of the sliding frame (21) and the pull-out frame (23) are inserted into the screw hole frame (16), and the screw hole plates (24) and the screw hole frame (16) are fixedly assembled by locking screws (25).

5. A plant growth lamp with adaptive light intensity adjustment according to claim 4, characterized in that: The sliding frame (21) has an internal horizontal thread through which an adjusting screw (22) is assembled, and the end of the adjusting screw (22) is rotatably connected to the inner end face of the pull-out frame (23).

6. A plant growth lamp with adaptive light intensity adjustment according to claim 1, characterized in that: The end of the slide plate (32) is horizontally fixed with a hydraulic rod (36), and the output end of the hydraulic rod (36) is fixed to the end of the rotating slide (33).

7. A plant growth lamp with adaptive light intensity adjustment according to claim 6, characterized in that: The end of the rotating slide (33) is horizontally fixed with a motor, and the output end of the motor is fixed to the end of the rotating rod (34).

Citation Information

Patent Citations

  • Illuminating lamp for plant growth

    CN210717102U