Plant growing under-light with air blowing channel

CN224805568UActive Publication Date: 2026-09-29FULTON SCI & TECH LIGHTING CO LTD
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Patent Information

Application Number
CN202522035263.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-22
Publication Date
2026-09-29
Estimated Expiration
2035-09-22

AI Technical Summary

Technical Problem

[0004]由于植物在生长过程中也需要有气流在周围进行流动,故在进行室内种植时,需要通过风扇来模拟大自然的吹风过程,然而风扇的模拟却只能让接近风扇的植物有大量气流流动,气流不均匀

Benefits of technology

本实用新型采用鼓风机对植物种植架下方的空气进行抽送,然后供应至叶底灯组件中,而叶底灯组件放置于植物种植架内的植物底部,叶底灯组件设有的补光部则可以对植物的叶底进行补光,同时,气流吹送部则可以将气流朝向上方进行吹送,使得原本沉积在植物种植架下方的空气被抽出吹送至植物周围,一举两得;综上所述,本具备吹风通道的植物种植叶底灯能够有效地提高植物的光合作用效果,同时也能够提供气流吹送的通道,使得植物周围具有均匀的气流流动。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a plant planting leaf bottom lamp with blowing channel relates to plant leaf bottom lamp technical field, including leaf bottom lamp subassembly, be equipped with airflow channel in the leaf bottom lamp subassembly, the one side of leaf bottom lamp subassembly is equipped with light supplementing part, airflow blowing part, airflow blowing part with airflow channel conduction, airflow blowing part with leaf bottom lamp subassembly conduction and located the one side of light supplementing part, this plant planting leaf bottom lamp with blowing channel can effectively improve the photosynthesis effect of plant, can also provide the channel of airflow blowing simultaneously, make plant around have uniform airflow flow.
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Description

Technical Field

[0001] This utility model relates to the field of plant leaf bottom light technology, and in particular to a plant planting leaf bottom light with a blowing channel. Background Technology

[0002] Plant lights are lighting fixtures specifically designed for plants. Their main function is to provide a suitable growth environment for plants by simulating the spectrum and intensity of sunlight, thereby accelerating plant growth, increasing plant yield and quality. As a result, plant lights have broad application prospects in agricultural production, indoor planting and other fields.

[0003] To improve plant growth efficiency, users place some plant lights under the leaves of plants for illumination, called under-leaf lights. When combined with traditional plant lights that illuminate from above, the diffuse reflection from the under-leaf lights can compensate for areas that are difficult to illuminate by the above plant lights, thereby improving the photosynthetic efficiency of the plants.

[0004] Since plants also need airflow around them during their growth, indoor planting requires the use of fans to simulate the natural wind process. However, the simulation of fans can only provide a large amount of airflow to plants near the fan, resulting in uneven airflow.

[0005] If an airflow gap can be set inside the leaf lamp, it can not only improve the effect of plant photosynthesis, but also provide the plant with uniform airflow.

[0006] Therefore, it is necessary to propose a plant growing leaf lamp with a blowing channel to improve the photosynthetic effect of plants, while also providing a channel for airflow to ensure uniform airflow around the plants. Utility Model Content

[0007] To address the aforementioned issues, this invention proposes a plant cultivation leaf lamp with an airflow channel to enhance the photosynthetic effect of plants, while also providing an airflow channel to ensure uniform airflow around the plants.

[0008] This utility model is achieved through the following technical solution: This utility model proposes a plant cultivation leaf bottom light with an air blowing channel, including a leaf bottom light assembly. The leaf bottom light assembly has an airflow channel inside. One side of the leaf bottom light assembly is provided with a supplementary light part and an airflow blowing part. The airflow blowing part is connected to the airflow channel and is connected to the leaf bottom light assembly and located on one side of the supplementary light part.

[0009] Furthermore, the airflow blowing section and the supplementary lighting section are oriented in the same direction.

[0010] Furthermore, at least two airflow blowing sections are provided, and the at least two airflow blowing sections are equally arranged on both sides of the supplementary lighting section.

[0011] Furthermore, the plant growing leaf bottom light with air blowing channel also includes a wiring terminal cover assembly, which is detachably connected to one end of the leaf bottom light assembly and is electrically connected to the leaf bottom light assembly.

[0012] Furthermore, the supplementary lighting unit includes a light-transmitting shell, a lamp plate, and a heat sink. The light-transmitting shell is located on one side of the leaf bottom light assembly. The lamp plate is fixedly connected to one side of the heat sink, and the heat sink is fixedly connected to the inner side of the light-transmitting shell. The lamp plate faces the light-transmitting shell, and the other side of the heat sink extends into the leaf bottom light assembly.

[0013] Furthermore, the heat sink is provided with a storage slot, and the lamp panel is housed in the storage slot.

[0014] Furthermore, the inner side of the light-transmitting shell is provided with an insertion and suspension part, and one side of the heat dissipation frame is housed in the insertion and suspension part.

[0015] Furthermore, the insertion suspension part includes two hook arms and a support boss, the support boss being located between the two hook arms. One side of the heat dissipation frame is provided with two connecting plates and a support groove, the support groove being located between the two connecting plates. The two connecting plates correspond one-to-one with the two hook arms. The inner side of the hook arm abuts against the outer side of the connecting plate, and the support groove abuts against the support boss.

[0016] Furthermore, the blade bottom light assembly is provided in multiple ways. One end of the blower is connected to and conducts electricity with one end of the first blade bottom light assembly. The remaining blade bottom light assemblies are arranged in sequence and connected end to end and conduct electricity with each other. The multiple blade bottom light assemblies form an electrical connection with each other.

[0017] Furthermore, one end of the leaf bottom light assembly is provided with a first knob locking part, and the other end of the leaf bottom light assembly is provided with a second knob locking part. The first knob locking part and the second knob locking part form a detachable connection, so that the previous leaf bottom light assembly is connected to the next leaf bottom light assembly.

[0018] The beneficial effects of this utility model are: This invention uses a blower to extract air from under the plant growing rack and supply it to the leaf-bottom light assembly. The leaf-bottom light assembly is placed at the bottom of the plant inside the growing rack. The supplementary lighting part of the leaf-bottom light assembly can provide supplementary lighting to the underside of the plant leaves. At the same time, the airflow blowing part can blow air upwards, so that the air that was originally deposited under the plant growing rack is extracted and blown to the surrounding area of ​​the plant, achieving two goals at once. In summary, this plant growing leaf-bottom light with airflow channel can effectively improve the photosynthetic effect of the plant, and at the same time provide an airflow channel, so that there is a uniform airflow around the plant. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the plant planting leaf bottom light with air blowing channel of this utility model installed in the plant planting rack; Figure 2 An exploded view of the plant cultivation leaf base lamp with air blowing channel of this utility model; Figure 3 for Figure 2 A magnified view of a portion labeled A; Figure 4 for Figure 2 A magnified view of part labeled B; Figure 5 This is a cross-sectional view of the leaf-bottom light assembly of the plant cultivation leaf-bottom light with air blowing channel of this utility model.

[0020] The attached figures are labeled as follows: Blower 1; Leaf-bottom light assembly 2, supplementary lighting unit 21, light-transmitting shell 211, insertion and suspension unit 2111, hook arm 21111, support boss 21112, light plate 212, heat dissipation bracket 213, storage slot 2131, connecting plate 2132, support slot 2133, airflow blowing unit 22, blowing hole 221, airflow channel 201, suspension hole 202, first knob locking part 23, locking boss 231, second knob locking part 24, locking slot 241 Terminal cover assembly 3; Planting rack 4; Plant 5. Detailed Implementation

[0021] To more clearly and completely illustrate the technical solution of this utility model, the following description, in conjunction with the accompanying drawings, will further explain this utility model.

[0022] Please refer to Figures 1-5This utility model proposes a plant cultivation leaf bottom light with an air blowing channel, including a leaf bottom light assembly 2. The leaf bottom light assembly 2 has an airflow channel 201. The air outlet of an external blower 1 is connected to one end of the leaf bottom light assembly 2 through a flexible hose and is connected to the airflow channel 201, so that the blower 1 can be placed away from the leaf bottom light assembly 2 and blow external airflow into the airflow channel 201. The leaf bottom light assembly 2 has a supplementary lighting part 21 and an airflow blowing part 22 on one side. The airflow blowing part 22 is connected to the airflow channel 201 and is connected to the leaf bottom light assembly 2 and located on one side of the supplementary lighting part 21. The blower 1 and the leaf bottom light assembly 2 are electrically connected to an external controller, which controls the wind speed of the blower 1 or the brightness of the leaf bottom light assembly 2.

[0023] In this embodiment, when the plant is grown indoors using the plant stand 4, a large amount of carbon dioxide gas will be deposited at the bottom of the plant stand 4. When the blower 1 is set at the bottom of the plant stand 4, the air below the plant stand 4 can be drawn out and supplied to the leaf lamp assembly 2. The air flows in the airflow channel 201. The leaf lamp assembly 2 is placed at the bottom of the plant 5 in the plant stand 4 and is supported by a support frame to adjust the installation height of the leaf lamp assembly 2. Alternatively, a rope can be passed through the hanging hole 202 at the top of the leaf lamp assembly 2 to hang it at a suitable height. The supplementary light part 21 of the leaf lamp assembly 2 can supplement the light on the bottom of the leaves of the plant 5. At the same time, the airflow blowing part 22 can blow the air in the airflow channel 201 upward, so that the air originally deposited below the plant stand 4 is drawn out and blown to the surrounding area of ​​the plant. This can improve the photosynthetic efficiency of the plant and increase the carbon dioxide concentration around the plant, achieving two benefits at once. In summary, this plant growing leaf lamp with airflow channel can effectively improve the photosynthesis of plants, while also providing an airflow channel to ensure uniform airflow around the plants.

[0024] In this embodiment, the airflow blowing part 22 and the supplementary lighting part 21 are oriented in the same direction, so that when the plant is supplemented with light under the leaves, the airflow can also be blown from around the underside of the plant's leaves.

[0025] In this embodiment, at least two airflow blowing sections 22 are provided, and the at least two airflow blowing sections 22 are respectively equally disposed on both sides of the supplementary light section 21. The airflow blowing sections 22 disposed on both sides of the supplementary light section 21 can also pass through both sides of the supplementary light section 21 while airflow is blowing, effectively dissipating heat for the supplementary light section 21.

[0026] In this embodiment, the airflow blowing unit 22 includes a plurality of blowing holes 221 arranged in sequence. When the blower 1 blows airflow, the airflow flows out of the plurality of blowing holes 221 to form an airflow.

[0027] In this embodiment, the plant cultivation leaf lamp with air blowing channel also includes a wiring end cap assembly 3. The wiring end cap assembly 3 is detachably connected to one end of the leaf lamp assembly 2, and the wiring end cap assembly 3 is electrically connected to the leaf lamp assembly 2. The wiring end cap assembly 3 can block one end of the leaf lamp assembly 2, so that the airflow flows out from the airflow blowing part 22. At the same time, the wiring end cap assembly 3 is provided with a circuit board. When assembling this utility model, the supplementary lighting part 21 can be inserted into the circuit board interface on the wiring end cap assembly 3 through a conductive wire, and then the wiring end cap assembly 3 can be installed on the leaf lamp assembly 2. Then, the conductive wire can be connected to the external interface of the wiring end cap assembly 3 to supply power.

[0028] In this embodiment, the supplementary lighting unit 21 includes a light-transmitting shell 211, a lamp plate 212, and a heat sink 213. The light-transmitting shell 211 is located on one side of the leaf bottom light assembly 2. The lamp plate 212 is fixedly connected to one side of the heat sink 213, and the heat sink 213 is fixedly connected to the inner side of the light-transmitting shell 211. The lamp plate 212 faces the light-transmitting shell 211, and the other side of the heat sink 213 extends into the leaf bottom light assembly 2. During assembly, the lamp plate 212 is first installed on the heat sink 213, and then the heat sink 213 is installed in the light-transmitting shell 211. At this time, the overall installation of the supplementary lighting unit 21 is completed. When the lamp plate 212 is lit, the blower 1 will also be turned on, so that the air is blown into the leaf bottom light assembly 2. The other side of the heat sink 213 extends into the airflow channel 201. The blown airflow flows in the airflow channel 201. When the airflow flows out from the airflow blowing part 22, it also passes through the heat sink 213 to dissipate heat from the heat sink 213.

[0029] In this embodiment, the heat sink 213 is provided with a storage slot 2131, and the lamp board 212 is housed in the storage slot 2131. The storage slot 2131 facilitates the installation of the lamp board 212 by plugging it in, and then the lamp board 212 can be fixed by screws.

[0030] In this embodiment, the inner side of the light-transmitting shell 211 is provided with an insertion and suspension part 2111, and one side of the heat sink 213 is housed in the insertion and suspension part 2111. When installing the heat sink 213, it is directly inserted into the insertion and suspension part 2111, which facilitates quick installation.

[0031] In this embodiment, the insertion suspension part 2111 includes two hook arms 21111 and a supporting boss 21112. The supporting boss 21112 is located between the two hook arms 21111. The heat dissipation bracket 213 has two connecting plates 2132 and a supporting groove 2133 on one side. The supporting groove 2133 is located between the two connecting plates 2132. The two connecting plates 2132 correspond one-to-one with the two hook arms 21111. The inner side of the hook arm 21111 abuts against the outer side of the connecting plate 2132. The support groove 2133 abuts against the support boss 21112; when installing the heat sink 213, the two connecting plates 2132 are aligned with the two hook arms 21111 respectively and inserted into the inside of the hook arms 21111, so that the hook arms 21111 hook the connecting plates 2132. During the installation of the heat sink 213, the support boss 21112 always abuts against the support groove 2133, so that the heat sink 213 is tightened, improving the installation stability of the heat sink 213.

[0032] In this embodiment, multiple leaf-bottom light assemblies 2 are provided. One end of the blower 1 is connected to and conducts electricity with one end of the first leaf-bottom light assembly 2. The remaining leaf-bottom light assemblies 2 are arranged in sequence and connected end to end and conduct electricity with each other. Multiple leaf-bottom light assemblies 2 form an electrical connection with each other. Since the plant planting racks 4 have different lengths, in order to meet the lighting needs of the plants, the leaf-bottom light assemblies 2 are designed to be connected end to end. When used on a longer plant planting rack 4, multiple leaf-bottom light assemblies 2 can be spliced ​​end to end to extend the airflow channel 201, the supplementary lighting part 21, and the airflow blowing part 22, so as to cover the plants. The specific length can be extended according to the needs.

[0033] In this embodiment, one end of the leaf-end light assembly 2 is provided with a first knob engagement portion 23, and the other end of the leaf-end light assembly 2 is provided with a second knob engagement portion 24. The first knob engagement portion 23 and the second knob engagement portion 24 form a detachable connection, allowing the preceding leaf-end light assembly 2 to be connected to the following leaf-end light assembly 2. When connecting the leaf-end light assemblies 2 to each other, the second knob engagement portion 24 of the preceding leaf-end light assembly 2 can be aligned with the first knob engagement portion 23 of the following leaf-end light assembly 2, and then the rear knob can be inserted at a preset angle, thus connecting the preceding and following leaf-end light assemblies 2. The first knob engagement portion 23 is provided with multiple engagement protrusions 231. Multiple snap-fit ​​protrusions 231 are evenly distributed around the circumference, and multiple snap-fit ​​grooves 241 are provided on the second knob snap-fit ​​part 24. The number of snap-fit ​​protrusions 231 is the same as the number of snap-fit ​​grooves 241. When connecting, the multiple snap-fit ​​protrusions 231 correspond one-to-one with the multiple snap-fit ​​grooves 241. After the snap-fit ​​protrusion 231 is inserted into the snap-fit ​​groove 241, rotating one of the leaf bottom light assemblies 2 will allow the snap-fit ​​protrusion 231 to slide into the depth of the snap-fit ​​groove 241, forming a snap-fit ​​connection, so that two adjacent leaf bottom light assemblies 2 can be connected. The second knob snap-fit ​​part 24 of the leaf bottom light assembly 2 at the end can be covered by the terminal cover assembly 3 to prevent air leakage at the end.

[0034] Of course, there may be other implementations of this utility model. Based on this implementation, other implementations obtained by those skilled in the art without any creative effort are all within the scope of protection of this utility model.

Claims

1. A plant cultivation leaf base light with a blowing channel, characterized in that, The device includes a leaf bottom light assembly, which has an airflow channel. A supplementary lighting section and an airflow blowing section are provided on one side of the leaf bottom light assembly. The airflow blowing section is connected to the airflow channel and is connected to the leaf bottom light assembly and located on one side of the supplementary lighting section.

2. The plant cultivation leaf base light with air blowing channel according to claim 1, characterized in that, The airflow blowing section and the supplementary lighting section are oriented in the same direction.

3. The plant cultivation leaf base light with air blowing channel according to claim 1, characterized in that, The airflow blowing section is provided in at least two parts, and the at least two airflow blowing sections are respectively and equally arranged on both sides of the supplementary lighting section.

4. The plant cultivation leaf base light with air blowing channel according to claim 1, characterized in that, The plant growing leaf lamp with air blowing channel also includes a wiring end cap assembly, which is detachably connected to one end of the leaf lamp assembly and is electrically connected to the leaf lamp assembly.

5. The plant cultivation leaf base light with air blowing channel according to claim 1, characterized in that, The supplementary lighting unit includes a light-transmitting shell, a lamp plate, and a heat sink. The light-transmitting shell is located on one side of the leaf bottom light assembly. The lamp plate is fixedly connected to one side of the heat sink, and the heat sink is fixedly connected to the inner side of the light-transmitting shell. The lamp plate faces the light-transmitting shell, and the other side of the heat sink extends into the leaf bottom light assembly.

6. The plant cultivation leaf base light with air blowing channel according to claim 5, characterized in that, The heat sink is provided with a storage slot, and the lamp panel is housed in the storage slot.

7. The plant cultivation leaf base light with air blowing channel according to claim 5, characterized in that, The inner side of the light-transmitting shell is provided with an insertion and suspension part, and one side of the heat sink is housed in the insertion and suspension part.

8. The plant cultivation leaf base light with air blowing channel according to claim 7, characterized in that, The insertion suspension part includes two hook arms and a support boss. The support boss is located between the two hook arms. The heat sink is provided with two connecting plates and a support groove on one side. The support groove is located between the two connecting plates. The two connecting plates correspond one-to-one with the two hook arms. The inner side of the hook arm abuts against the outer side of the connecting plate. The support groove abuts against the support boss.

9. The plant cultivation leaf base light with air blowing channel according to claim 1, characterized in that, The blade bottom light assembly is provided in multiple ways. One end of the blower is connected to and conducts electricity with one end of the first blade bottom light assembly. The remaining blade bottom light assemblies are arranged in sequence and connected end to end and conduct electricity with each other. The multiple blade bottom light assemblies form an electrical connection with each other.

10. The plant cultivation leaf base light with air blowing channel according to claim 9, characterized in that, One end of the leaf bottom light assembly is provided with a first knob locking part, and the other end of the leaf bottom light assembly is provided with a second knob locking part. The first knob locking part and the second knob locking part form a detachable connection, so that the previous leaf bottom light assembly is connected to the next leaf bottom light assembly.