Intelligent atomization cultivation device

By incorporating atomizing and liquid storage chambers within the grower, along with a transparent viewing window and LED lighting, the problem of insufficient visual appeal in existing growers is solved, enabling plants to fully absorb nutrient solution from their roots and achieve healthy growth.

CN224178747UActive Publication Date: 2026-05-01广州禾铖科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
广州禾铖科技有限公司
Filing Date
2025-05-20
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

The existing cultivation devices are not aesthetically pleasing, and the plant roots cannot fully absorb the nutrient solution.

Method used

Design an intelligent atomizing cultivation device, comprising an atomizing chamber, a liquid storage chamber, a transparent window, an electronic control board, an atomizing device, and a plant growth light. By atomizing nutrient solution and combining it with photosynthesis, it promotes the absorption of nutrient solution by plant roots, allows observation of root growth through the transparent window, and utilizes LED lights to display dynamic light and shadow effects.

Benefits of technology

This allows the plant roots to fully absorb the nutrient solution, enhancing the aesthetic appeal of the grower and promoting healthy plant growth.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an intelligent atomization cultivation device which comprises a shell, a cultivation plate, an electronic control panel, an atomization device and a plant growth lamp. An atomizing cavity and a liquid storage cavity are arranged in the shell, the liquid storage cavity is positioned below the atomizing cavity, and a transparent window through which the interior of the atomizing cavity can be observed is arranged on the periphery of the shell. The electronic control panel is arranged to control the atomization device to atomize the nutrient solution in the liquid storage cavity, and mist is diffused in the atomization cavity, so that the roots of plants can fully and effectively absorb the nutrient solution; plant growth lamps for promoting plant growth spectrums are installed on the edge of the shell, the plant growth lamps are electrically connected with the electronic control panel, and healthy growth of plants can be jointly promoted through the atomized nutrient solution and photosynthesis of the plant growth lamps; the growth condition of the roots of the plants can be observed through the transparent window, and meanwhile, the dynamic light and shadow effect of mist in the atomization cavity can be observed by combining an LED lamp on the atomization device; therefore, the ornamental value of the cultivation device is higher, and the use requirement is met.
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Description

Intelligent atomized cultivation device Technical Field

[0001] This utility model relates to the field of cultivation equipment, and in particular to an intelligent atomizing cultivation equipment. Background Technology

[0002] A planter is a device or container specifically designed for the cultivation, growth, and management of plants. This device may integrate multiple functions, such as providing suitable light, temperature, humidity, nutrient supply, and water management, to promote healthy plant growth. Planters are widely used in horticulture, agricultural research, home gardening, and vertical farming.

[0003] In existing technologies, most cultivation containers are ordinary containers that cannot display the plant roots, resulting in insufficient aesthetic appeal, and the plant roots cannot fully and effectively absorb nutrient solution. Therefore, it is necessary to improve current cultivation containers. Summary of the Invention

[0004] In view of this, the present invention addresses the deficiencies of the existing technology, and its main purpose is to provide an intelligent atomizing cultivation device that can effectively solve the problem of insufficient aesthetic appeal of existing cultivation devices.

[0005] To achieve the above objectives, the present invention adopts the following technical solution:

[0006] An intelligent atomizing grower includes a housing, a growing tray, an electronic control board, an atomizing device, and a plant growth lamp. The housing contains an atomizing chamber and a liquid storage chamber, with the liquid storage chamber located below the atomizing chamber. The sides of the housing have transparent windows for observing the interior of the atomizing chamber. The growing tray is positioned at the top of the housing and communicates with the atomizing chamber. The electronic control board is located inside the housing. The atomizing device is located in the liquid storage chamber and electrically connected to the electronic control board. The atomizing device has an LED light, and its mist outlet communicates with the atomizing chamber. The lamp post of the plant growth lamp is located on the side of the housing, and the light-emitting panel of the plant growth lamp is located above the growing tray. The plant growth lamp is electrically connected to the electronic control board. The plant is fixed on the cultivation tray, and its roots are placed in the atomization chamber. An electronic control board controls the atomization device to atomize the nutrient solution in the storage chamber. The mist disperses within the atomization chamber, allowing the plant roots to fully and effectively absorb the nutrient solution. A plant growth lamp, which promotes the plant's growth spectrum, is installed on the edge of the outer casing and is electrically connected to the electronic control board. The atomization of the nutrient solution and the photosynthesis of the plant growth lamp jointly promote healthy plant growth. The growth of the plant roots can be observed through a transparent window, and the dynamic light and shadow effects of the mist within the atomization chamber can be viewed using the LED lights on the atomization device, enhancing the visual appeal of this grower and meeting practical needs.

[0007] Preferably, the outer shell includes a frame, a base, a transparent plate, and a water tank bottom cover; the top of the frame has a first opening, the bottom of the frame has a second opening, the cultivation tray is disposed on the top of the frame and covers the first opening, the transparent plate is disposed inside the frame to form an atomizing chamber, the base is disposed at the bottom of the frame and covers the second opening, and the water tank bottom cover is disposed at the bottom of the base and encloses a liquid storage chamber.

[0008] Preferably, the frame is provided with transparent panels on all four sides.

[0009] Preferably, the cultivation tray is detachably disposed in the first opening, the cultivation tray has a receiving hole structure, the cultivation tray includes two half shells and a cultivation support, the two half shells are spliced ​​and fixed together, and the cultivation support is placed in the receiving hole.

[0010] Preferably, the plant roots are fixed in the cultivation support and placed in the receiving hole, so that the plant roots are placed in the atomization chamber and the plant is exposed above the cultivation tray.

[0011] Preferably, the bottom cover of the water tank is detachable.

[0012] Compared with the prior art, this utility model has obvious advantages and beneficial effects. Specifically, as can be seen from the above technical solution:

[0013] The nutrient solution in the storage chamber is atomized by an electronic control board, allowing the plant roots to fully and effectively absorb the nutrients. A plant growth lamp, which promotes the plant's growth spectrum, is installed on the edge of the outer casing and is electrically connected to the electronic control board. The atomization of the nutrient solution and the photosynthesis of the plant growth lamp work together to promote healthy plant growth. The growth of the plant roots can be observed through a transparent window, and the dynamic light and shadow effects of the mist within the atomization chamber can be viewed using the LED lights on the atomizing device, enhancing the visual appeal of this grower and meeting practical needs. Attached Figure Description

[0014] Figure 1 is an assembled three-dimensional schematic diagram of a preferred embodiment of the present invention;

[0015] Figure 2 is an exploded view of a preferred embodiment of the present invention.

[0016] Explanation of reference numerals in the attached diagram:

[0017] 10. Outer shell 11. Frame

[0018] 111. First opening 112. Second opening

[0019] 113. Exterior casing perimeter 12. Base frame

[0020] 13. Transparent panel 14. Water tank bottom cover

[0021] 101. Atomizing chamber; 102. Liquid storage chamber

[0022] 20. Cultivation tray 21. Half-shell

[0023] 201. Reception hole; 202. Cultivation support.

[0024] 30. Electronic control board; 31. Control switch

[0025] 40. Atomizing device 41. Mist outlet

[0026] 42. LED lights; 50. Plant growth lights

[0027] 51. Lamp post 52. Illuminated light panel

[0028] 60. Plants 61. Roots Detailed Implementation

[0029] Please refer to Figures 1 and 2, which show the specific structure of a preferred embodiment of the present invention, including a shell 10, a cultivation tray 20, an electronic control board 30, an atomizing device 40, and a plant growth lamp 50.

[0030] The outer casing 10 contains an atomizing chamber 101 and a liquid storage chamber 102, with the liquid storage chamber 102 located below the atomizing chamber 101. The outer casing 10 has transparent windows 113 around its perimeter, allowing observation of the interior of the atomizing chamber 101. Specifically, the outer casing 10 includes a frame 11, a base frame 12, a transparent plate 13, and a water tank bottom cover 14. The frame 11 has a first opening 111 at its top and a second opening 112 at its bottom. The transparent plate 13 is inserted into the frame 11 through the second opening 112. The base frame 12 is located at the bottom of the frame 11 and covers the second opening 112, thus forming transparent windows 113 around the outer casing, allowing the atomizing dynamics within the atomizing chamber 101 to be viewed from all directions. The water tank bottom cover 14 is located at the bottom of the base frame 12 and encloses the liquid storage chamber 102.

[0031] The cultivation tray 20 is disposed on the top of the outer casing 10 and communicates with the atomizing chamber 101. In this embodiment, the cultivation tray 20 is disposed on the top of the frame 11 and covers the first opening 111. The cultivation tray 20 is detachably placed and removed from the first opening 111 to facilitate the replacement of different plants 60. Furthermore, the cultivation tray 20 includes two half-shells 21, which are spliced ​​and fixed together to facilitate the replacement of plants.

[0032] The electronic control board 30 is disposed inside the housing 10. In this embodiment, the electronic control board 30 has a plurality of control switches 31, which are exposed on the front side of the housing 10 and close to the bottom of the housing 10.

[0033] The atomizing device 40 is located between the base frame 12 and the liquid storage chamber 102. An LED light 42 is installed on the atomizing device 40 to illuminate the interior of the atomizing chamber 101 and is electrically connected to the electronic control board 30. The mist outlet 41 of the atomizing device 40 is connected to the atomizing chamber 101.

[0034] The lamp post 51 of the plant growth light 50 is located on the edge of the housing 10 and is electrically connected to the electronic control board 30. The light-emitting lamp panel 52 of the plant growth light 50 is electrically connected to the lamp post 51 of the plant growth light 50 and is located above the cultivation tray 20.

[0035] The usage method of this embodiment is described in detail below:

[0036] In use, the roots 61 of the plant 60 are secured in the cultivation support 202 and placed in the receiving hole 201 of the cultivation tray 20, so that the plant roots 61 are placed inside the atomizing chamber 101, while the plant 60 is exposed above the cultivation tray 20. Nutrient solution is injected into the storage chamber 102, and the bottom cover 14 of the water tank is inverted and fixed under the base frame 12. Then, the control switch 31 is operated, and the electronic control board 30 controls the atomizing device 40 and the light-emitting lamp panel 52 according to the set program. When the atomizing device 40 is turned on, it atomizes the nutrient solution in the storage chamber 102, and the mist is dispersed into the atomizing chamber 101 through the mist outlet 41 for the plant 60 to absorb; at the same time, the light-emitting lamp panel 52 emits light of a spectrum that promotes plant growth, so that the plant 60 can grow healthier under photosynthesis. The roots 61 fixed in the cultivation support 202 can grow and extend into the atomization chamber 101 to display the roots 61. The growth of the roots 61 of the plant 60 can be observed through the transparent windows 113 around the outer shell. At the same time, the LED lights 42 on the atomization device 40 illuminate the atomization chamber 101 with colorful lights, allowing viewers to observe the dynamic light and shadow effects of the mist inside the atomization chamber 101.

[0037] The key design feature of this invention is the inclusion of an atomizing chamber and a liquid storage chamber, along with a transparent window and an atomizing device. The atomizing device effectively atomizes the nutrient solution, allowing the plant roots to fully and efficiently absorb it. Combined with the photosynthesis provided by the plant growth lamp, this promotes healthier plant growth. Simultaneously, the transparent window allows observation of root growth, and the LED lights on the atomizing device provide a view of the dynamic light and shadow effects of the mist within the atomizing chamber. This enhances the product's aesthetic appeal and meets practical needs.

[0038] The technical principles of this utility model have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of this utility model and should not be construed as limiting the scope of protection of this utility model in any way. Based on this explanation, those skilled in the art can readily conceive of other specific embodiments of this utility model without any inventive effort, and these embodiments will all fall within the scope of protection of this utility model.

Claims

1. An intelligent atomization cultivation device, characterized in that: The device includes a housing, a cultivation tray, an electronic control board, an atomizing device, and a plant growth lamp. The housing contains an atomizing chamber and a liquid storage chamber, with the liquid storage chamber located below the atomizing chamber. The sides of the housing have transparent windows allowing observation of the atomizing chamber's interior. The cultivation tray is positioned at the top of the housing and communicates with the atomizing chamber. The electronic control board is located inside the housing. The atomizing device is located in the liquid storage chamber and electrically connected to the electronic control board. The atomizing device has an LED light, and its mist outlet communicates with the atomizing chamber. The lamp post of the plant growth lamp is located on the side of the housing, and the light-emitting panel of the plant growth lamp is positioned above the cultivation tray. The plant growth lamp is electrically connected to the electronic control board.

2. The intelligent atomizing cultivation device as described in claim 1, characterized in that: The outer shell includes a frame, a base, a transparent plate, and a water tank bottom cover; the top of the frame has a first opening, the bottom of the frame has a second opening, the cultivation tray is placed on the top of the frame and covers the first opening, the transparent plate is placed inside the frame to form an atomizing chamber, the base is placed at the bottom of the frame and covers the second opening, and the water tank bottom cover is placed at the bottom of the base and forms a liquid storage chamber.

3. The intelligent nebulizing cultivation device according to claim 2, wherein: The frame is surrounded by transparent panels.

4. The intelligent nebulizing cultivation device according to claim 2, wherein: The cultivation tray is detachably placed in the first opening. The cultivation tray has a receiving hole structure and includes two half shells and a cultivation support. The two half shells are spliced ​​and fixed together, and the cultivation support is placed in the receiving hole.

5. The intelligent atomizing cultivation device as described in claim 4, characterized in that: The plant roots are secured in the cultivation support and placed in the receiving hole, so that the plant roots are placed inside the atomization chamber, while the plant is exposed above the cultivation tray.

6. The intelligent nebulizing cultivator of claim 2, wherein: The bottom cover of the water tank is detachable.