Portable plant growth lamp for slope planting holes

By designing a portable plant growth lamp, the problem of insufficient light in slope ecological restoration is solved, multifunctional monitoring and portable supplementary lighting are realized, which promotes rapid plant growth, enhances stress resistance, and is suitable for a variety of environments.

CN223310320UActive Publication Date: 2025-09-09XUZHOU ZHONGKUANG GEOTECHNICAL TECH CO LTD
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Patent Information

Application Number
CN202422097809.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-28
Publication Date
2025-09-09
Estimated Expiration
2034-08-28

AI Technical Summary

Technical Problem

The existing technology lacks portable, multi-module combination and multi-functional monitoring outdoor slope plant lighting equipment, which makes it difficult to meet the lighting needs of plant growth in slope ecological restoration.

Method used

A portable plant growth lamp for slope vegetation holes was designed, which includes an active network card embedded base, a lifting support unit, a telescopic adjustment unit and a lighting fill light unit. It has polygonal bearing, telescopic adjustment and multi-functional monitoring functions, and light adjustment is achieved through a multi-angle rotation axis and a telescopic button.

Benefits of technology

It provides stable and controllable lighting conditions, promotes rapid plant growth, enhances stress resistance, and is suitable for outdoor scenes in rainy weather or insufficient light, improving growth efficiency and reducing energy costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of slope ecological restoration, in particular to a portable plant growth lamp for slope planting holes, which comprises an active network clamping base, a lifting high support unit, a telescopic adjusting unit and an illumination light supplementing unit. The active network clamping base has a preset operation size and supporting force and is polygonal. And the lifting high support unit is connected with the active network card embedded bottom. The telescopic adjusting unit is connected with the lifting high supporting unit through a multi-angle rotating shaft. The illumination light supplementing unit is connected with the telescopic adjusting unit, has a preset operation length and can carry out corresponding illumination operation. The number of the telescopic adjusting units and the number of the lighting light supplementing units are both multiple, and a preset operation distance is reserved between the telescopic adjusting units. The problem of plant light supplement of the outdoor slope can be solved, the functions of portable light supplement, multi-module combination, multifunctional monitoring, multi-level adjustment and the like are integrated, the applicability is higher, and more convenience is achieved.
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Description

Technical Field

[0001] The utility model relates to the field of slope ecological restoration, and in particular to a portable plant growth lamp for slope vegetation holes. Background Art

[0002] In the technology of regreening high and steep slopes, in order to enhance the adaptability and stress resistance of slope plants, in addition to paying attention to nutrient and water factors, it is also necessary to pay attention to the regulation of light.

[0003] Grow lights play an indispensable role as a key tool for the efficient use of photons. In vertical greening and other advanced agricultural and forestry technologies, the spectrum and intensity of light are crucial to plant growth. While traditional natural lighting can be affected by factors such as season, location, and weather, grow lights provide stable, controllable lighting conditions. By precisely adjusting the wavelength and intensity of light, grow lights maximize photosynthesis, accelerating the plant growth cycle, and improving yield and quality. Furthermore, the use of grow lights enables efficient energy use. Compared to traditional, energy-intensive lighting systems, modern LED grow lights are more energy-efficient and generate less heat, helping to reduce energy costs and the environmental impact of plant cultivation and production.

[0004] Therefore, with the advancement of relevant technologies and the growing demand for vegetation planting, plant growth lights, as part of innovation, can not only promote the transformation of production methods in related industries, but also contribute to sustainable development goals and ensure the safety and environmental sustainability of future slope ecological restoration.

[0005] Existing patents are mainly widely used in relatively stable indoor environments, and the fields involved mainly include agricultural production, horticultural cultivation, etc. There is no mention of plant lighting equipment for outdoor slopes, and there is a lack of portable lighting, multi-module combinations, multi-functional monitoring and combination products with wider applicability. Utility Model Content

[0006] The purpose of the utility model is to provide a portable plant growth lamp for slope vegetation holes to solve the above-mentioned problems existing in the prior art.

[0007] Technical solution: A portable plant growth lamp for slope vegetation holes, comprising four components: an active network card embedded base, a lifting and raising support unit, a telescopic adjustment unit, and a lighting fill light unit. The active network card embedded base has a predetermined operating size and supporting force, and is polygonal, and can perform corresponding load-bearing and positioning operations. The lifting and raising support unit is connected to the active network card embedded base, has a predetermined operating length and supporting force, and has a predetermined telescopicity, and can perform telescopic adjustment operations within a predetermined range. The telescopic adjustment unit is connected to the lifting and raising support unit through a multi-angle rotation axis, has a predetermined operating length and telescopicity, and can perform telescopic adjustment operations within a predetermined range. The lighting fill light unit is connected to the telescopic adjustment unit, has a predetermined operating length, and can perform corresponding lighting operations. There are multiple telescopic adjustment units and lighting fill light units, and a predetermined operating distance is left between the multiple telescopic adjustment units.

[0008] In a further embodiment, the working surface of the active network card embedding base is provided with an active network steel bar buckle groove of a predetermined working size, and an active network embedding lock is rotatably connected in the active network steel bar buckle groove; there are multiple active network embedding locks, which can perform rotation adjustment operations within a predetermined range.

[0009] In a further embodiment, the lifting support unit is a telescopic rod with a predetermined operating length and supporting force, and is fixedly connected to the active network card socket.

[0010] In a further embodiment, the telescopic adjustment unit is a telescopic sleeve rod, and is connected to the lifting and supporting unit through a multi-angle rotation axis, and can perform telescopic adjustment operations within a predetermined range.

[0011] In a further embodiment, the lighting fill light unit is connected to the telescopic adjustment unit via a telescopic button adjustment component, and can be adjusted within a predetermined range.

[0012] In a further embodiment, the telescopic adjustment unit includes a positioning plate, a full-spectrum plant growth light panel, and a telescopic adjustment button; the positioning plate is connected to the telescopic adjustment unit and has a predetermined operating length and supporting force; the full-spectrum plant growth light panel has an open cavity with a predetermined operating length and a corresponding through hole, the positioning plate is inserted into the open cavity of the full-spectrum plant growth light, and the telescopic adjustment button extends through the through hole of the full-spectrum plant growth light and is threadedly connected to the positioning plate. The positioning plate has a plurality of positioning threaded holes on its operating surface.

[0013] Beneficial effects: The utility model relates to a portable plant growth lamp for slope vegetation holes, which relates to the field of slope ecological restoration, and includes an active network card embedded base, a lifting and high support unit, a telescopic adjustment unit, and a lighting fill light unit. The active network card embedded base has a predetermined operating size and supporting force, and is polygonal, and can perform corresponding load-bearing and positioning operations. The lifting and high support unit is connected to the active network card embedded base, has a predetermined operating length and supporting force, and has a predetermined telescopicity, and can perform telescopic adjustment operations within a predetermined range. The telescopic adjustment unit is connected to the lifting and high support unit through a multi-angle rotation axis, has a predetermined operating length and telescopicity, and can perform telescopic adjustment operations within a predetermined range. The lighting fill light unit is connected to the telescopic adjustment unit, has a predetermined operating length, and can perform corresponding lighting operations. There are multiple telescopic adjustment units and lighting fill light units, and a predetermined operating distance is left between the multiple telescopic adjustment units. This application can solve the problem of plant fill light on outdoor slopes, and incorporates functions such as portable fill light, multi-module combination, multi-function monitoring, and multi-level adjustment. The design of the plant growth lamp provides a new perspective and application scenario. It is beneficial to improve the efficiency of the growth process and provide convenience for outdoor scenes with rainy weather or insufficient light hours. At the same time, it has significant value in promoting rapid growth of plants in a short period of time, enhancing photosynthesis and improving the plants' own resistance to stress. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is an overall schematic diagram of this application.

[0015] Figure 2 It is an enlarged schematic diagram of some components of this application.

[0016] Figure 3 It is a schematic diagram of the telescopic adjustment unit described in this application.

[0017] Figure 4 This is a simplified diagram of the actual application scenario of this application.

[0018] Figure 5 This is a flow chart of the principle of using the remote control module in this application.

[0019] The reference numerals in the figure are: active network card embedded base 1, active network steel bar buckle slot 101, active network embedded lock buckle 102, lifting support unit 2, telescopic adjustment unit 3, positioning plate 301, full-spectrum plant growth light board 302, telescopic adjustment button 303, lighting fill light unit 4, multi-angle rotation axis 5. DETAILED DESCRIPTION

[0020] In the following description, numerous specific details are provided to provide a more thorough understanding of the present invention. However, it will be apparent to those skilled in the art that the present invention can be practiced without one or more of these details. In other instances, certain technical features known in the art are not described to avoid confusion with the present invention.

[0021] Example 1:

[0022] The portable plant growth lamp for slope vegetation holes proposed in this embodiment includes four components: an active network card embedded base 1, a lifting and raising support unit 2, a telescopic adjustment unit 3, and a lighting fill light unit 4. The active network card embedded base 1 has a predetermined operating size and supporting force, and is polygonal, and can perform corresponding load-bearing and positioning operations. The lifting and raising support unit 2 is connected to the active network card embedded base, has a predetermined operating length and supporting force, and has a predetermined elasticity, and can perform a telescopic adjustment operation within a predetermined range. The telescopic adjustment unit 3 is connected to the lifting and raising support unit 2 through a multi-angle rotating shaft 5, has a predetermined operating length and elasticity, and can perform a telescopic adjustment operation within a predetermined range. The lighting fill light unit 4 is connected to the telescopic adjustment unit 3, has a predetermined operating length, and can perform corresponding lighting operations. There are multiple telescopic adjustment units 3 and lighting fill light units 4, and a predetermined operating distance is left between the multiple telescopic adjustment units 3. The working surface of the active network card embedded base 1 is provided with an active network steel bar buckle groove 101 of a predetermined working size, and an active network embedded lock buckle 102 is rotatably connected in the active network steel bar buckle groove 101; the active network embedded lock buckle 102 is multiple and can be rotated and adjusted within a predetermined range. In the later operation process, it is only necessary to tightly buckle the active network card embedded base 1 with the active network steel bar, and then the active network embedded lock buckle 102 will rotate and pop out, thereby realizing the corresponding limit fixing operation. The lifting and supporting unit 2 is a telescopic rod with a predetermined working length and supporting force, and is fixedly connected to the active network card embedded seat. The telescopic adjustment unit 3 is a telescopic sleeve rod, and is connected to the lifting and supporting unit 2 through a multi-angle rotating shaft 5, and can perform telescopic adjustment operations within a predetermined range. The lighting fill light unit 4 is connected to the telescopic adjustment unit 3 through a telescopic button adjustment component, and can be adjusted within a predetermined range. The telescopic adjustment unit 3 includes a positioning plate 301, a full-spectrum plant grow light panel 302, and a telescopic adjustment button 303. The positioning plate 301 is connected to the telescopic adjustment unit 3 and has a predetermined operating length and support force. The full-spectrum plant grow light panel 302 is provided with an open cavity with a predetermined operating length and a corresponding through hole. The positioning plate 301 is inserted into the open cavity provided by the full-spectrum plant grow light. The telescopic adjustment button 303 passes through the through hole provided by the full-spectrum plant grow light and is threadedly connected to the positioning plate 301. The operating surface of the positioning plate 301 is provided with multiple positioning threaded holes. If the operating position of the full-spectrum plant grow light needs to be adjusted later in the operation process, it is only necessary to first screw the telescopic adjustment button 303, then adjust the full-spectrum plant grow light to the predetermined operating position, and then screw the telescopic adjustment button 303 again through the corresponding through hole to secure it.

[0023] Example 2:

[0024] Based on the first embodiment, a further preferred embodiment includes the following components:

[0025] Ultra-thin full-spectrum multi-angle rotating plant growth light panel device: 3 ultra-thin light panels are set up, with a length of 40cm and a width of 15cm. The windproof and waterproof plastic is 5-10cm thick. It is equipped with a remote signal receiver. The spectral movement, light intensity and lighting duration of the light are adjusted by the microcontroller. The thickness of the aluminum heat dissipation template is 0.2-0.5cm. Each light panel is equipped with 33 headlights, and each headlight contains several full-spectrum variable-level LED small modules with added optical lenses. The fill light area is 2-3m2 and the continuous working time is 4-6 hours. The light colors are blue, green, red and far-red. The energy efficiency of each LED module is >2.3μmol / J, and the light perception is 3600k, which is close to natural.

[0026] Telescopic adjustment device: The shell is made of APS material, with a telescopic plate of 30cm in length and 10cm in width. The lengthening and shortening effect can be achieved by adjusting the component through the 1-2-telescopic button.

[0027] Lifting support device: Two cylindrical 10000ma batteries are set inside, and the outside is composed of a waterproof plastic lifting column assembly with a certain support thickness. It needs to be lifted manually according to different situations. The maximum lifting height is 120cm.

[0028] Active network card embedded base 1 device: using the active network embedded lock 102 component, the active network steel bar buckle groove 101, the lifting support elastic component series action, to achieve a tight fit with the active network steel bar.

[0029] Module remote control principle: The signal receiving part is located in the plastic shell of the light board, and the light intensity is controlled by the microcontroller. The specific control mode is as follows: Figure 5 As shown, the Internet of Things card is used to drive the current, and a simple signal transceiver controller is used to drive the battery power to adjust the numerical control unit and the light receiving unit to adjust the spectrum movement, light intensity and lighting duration of the lamp.

[0030] The telescopic rod and telescopic sleeve rod described in this application can refer to the telescopic structure in the prior art, which is the prior art and will not be described in detail in this application.

[0031] As described above, although the present invention has been shown and described with reference to specific preferred embodiments, it should not be interpreted as limiting the present invention itself. Various changes may be made to it in form and detail without departing from the spirit and scope of the present invention as defined in the appended claims.

Claims

1. A portable plant growth lamp for slope planting holes, characterized in that include: The active network card embedded base has a predetermined operating size and support force, and is polygonal in shape, which can perform corresponding load-bearing and positioning operations; The lifting support unit is connected to the bottom of the active network card, has a predetermined operating length and supporting force, and has a predetermined elasticity, and can perform a predetermined range of telescopic adjustment operation; The telescopic adjustment unit is connected to the lifting and supporting unit via a multi-angle rotating shaft, has a predetermined working length and elasticity, and can perform telescopic adjustment operations within a predetermined range; A lighting fill light unit is connected to the telescopic adjustment unit and has a predetermined operating length, and can perform corresponding lighting operations; There are multiple telescopic adjustment units and multiple lighting fill light units, and a predetermined operating distance is left between the multiple telescopic adjustment units.

2. The portable plant growth lamp for slope planting holes according to claim 1, characterized in that: The working surface of the active network card embedding base is provided with an active network steel bar buckle groove of a predetermined working size, and an active network embedding lock buckle is rotatably connected in the active network steel bar buckle groove; there are multiple active network embedding lock buckles, which can perform rotation adjustment operations within a predetermined range.

3. The portable plant growth lamp for slope planting holes according to claim 2, characterized in that: The lifting and supporting unit is a telescopic rod with a predetermined operating length and supporting force, and is fixedly connected to the active network card seat.

4. The portable plant growth lamp for slope planting holes according to claim 2, characterized in that: The telescopic adjustment unit is a telescopic sleeve rod, and is connected to the lifting and supporting unit through a multi-angle rotation axis, and can perform telescopic adjustment operations within a predetermined range.

5. The portable plant growth lamp for slope planting holes according to claim 2, characterized in that: The lighting fill light unit is connected to the telescopic adjustment unit via a telescopic button adjustment component and can be adjusted within a predetermined range.

6. The portable plant growth lamp for slope planting holes according to claim 5, characterized in that: The telescopic adjustment unit includes a positioning plate, a full-spectrum plant growth light board, and a telescopic adjustment button; the positioning plate is connected to the telescopic adjustment unit and has a predetermined operating length and supporting force; the full-spectrum plant growth light board is provided with an open cavity with a predetermined operating length and a corresponding through hole, the positioning plate is inserted into the open cavity provided by the full-spectrum plant growth light, and the telescopic adjustment button passes through the through hole provided by the full-spectrum plant growth light and is threadedly connected to the positioning plate; The working surface of the positioning plate is provided with a plurality of positioning threaded holes.