Precise dimming full-spectrum plant lamp

By using a ring base and rotating belt design, combined with a drive motor and commutator, the LED lights can move in multiple dimensions and have their spectrum adjusted. This solves the problem of existing plant lights being unable to adjust their brightness precisely, and improves the supplemental lighting efficiency and growth promotion effect of plant lights.

CN116817205BActive Publication Date: 2026-07-14SHANGHAI INST OF TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANGHAI INST OF TECH
Filing Date
2023-06-09
Publication Date
2026-07-14

AI Technical Summary

Technical Problem

Existing plant lights cannot precisely adjust the light intensity and spectrum according to different growth stages, environments, and species of plants, resulting in low photosynthetic efficiency and affecting plant growth.

Method used

A precision-dimming full-spectrum plant light was designed. It achieves blind-angle supplemental lighting for the LED lamp through a ring base and rotating belt. Combined with a drive motor and commutator, it enables the LED lamp to move up and down and rotate. It is equipped with a Bluetooth module for remote spectrum adjustment.

Benefits of technology

This technology enables plant lights to provide uniform illumination to plants, improving light energy absorption efficiency and growth rate, and enhancing the practicality and illumination efficiency of plant lights.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116817205B_ABST
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Abstract

The application discloses a kind of precision dimming full-spectrum plant lamps, including plant placement table, rotating belt and annular base sequentially connected and concentrically arranged from inside to outside, and a plurality of LED assemblies sliding along the circumferential direction of annular base;Annular base has annular groove, LED assembly is arranged above annular base and is movably connected with annular base by moving slider embedded in annular groove respectively, and moving slider is uniformly distributed on the outer peripheral wall of rotating belt;LED assembly includes LED lamp fixed support fixedly connected with moving slider, LED lamp arranged on LED lamp fixed support and LED lamp arranged on LED lamp and towards plant placement table, and integrated circuit board electrically connected with LED lamp is arranged between LED lamp and LED lamp;The application has simple structure, reasonable design, all-around irradiation for plants without dead angle, more concentrated light supplement effect, greatly improves the use efficiency of plant lamp to a great extent, improves the value of plant lamp.
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Description

Technical Field

[0001] This invention belongs to the field of plant lighting technology, and in particular relates to a precise dimming full-spectrum plant light. Background Technology

[0002] As we all know, plants rely on sunlight for photosynthesis. However, because the duration, height, and angle of sunlight are relatively fixed, and humans cannot control sunlight, plant lights are needed to supplement or even completely replace sunlight. Currently, there are still many problems to be solved and optimized in the field of plant light research. For example, the required spectrum and light intensity vary at different growth stages of plants. Compared to the seedling stage, the growing season requires more red light for photosynthesis. The required light intensity also varies in different growing environments. Compared to bright growing environments, shady growing environments require greater light intensity. Furthermore, different plant types require different light intensities and spectra. Compared to plants with more green leaves, plants with less chlorophyll require more red and blue light, as well as stronger light intensity.

[0003] However, currently available plant lights only provide basic supplemental lighting for plants, which significantly limits their growth. Compared to sunlight, the single light source provided by plant lights is highly detrimental to photosynthesis. Therefore, there is a great need for plant lights that can adjust the light intensity and spectrum according to different growth stages, growing environments, and plant species, allowing plants to fully absorb light energy.

[0004] Based on this, many plant lights with adjustable light levels have been introduced to the market. However, these plant lights still have some flaws, preventing them from being effectively used in practice. For example, some full-spectrum plant lights can mimic the full spectrum of sunlight to supplement light for plants or temporarily replace sunlight. However, this still doesn't solve the problem of adjusting light levels for different plant growth stages and different environments. This results in limited light energy absorbed by plants during critical growth periods, affecting their growth and development. Other plant lights can adjust the angle of the light, but their adjustment precision is poor, failing to achieve accurate light control, leading to unsatisfactory supplemental lighting effects, or even counterproductive results.

[0005] In view of this, the present invention is hereby proposed. Summary of the Invention

[0006] To address the problems existing in the prior art, the purpose of this invention is to provide a precise dimming full-spectrum plant light that allows the plant light to move horizontally on a ring base, providing comprehensive and omnidirectional illumination of the plant. It can also rotate the LED light fixture through a commutator to put the LED light fixture into a "horizontal position," making the LED light supplementary lighting effect more concentrated. In the "horizontal position," the LED light fixture can also be moved up and down by controlling the moving track, which greatly improves the efficiency of the plant light and also increases its value.

[0007] To achieve the above objectives, the present invention provides a precision dimming full-spectrum plant light, comprising a plant placement platform, a rotating belt, and an annular base arranged concentrically from the inside out, and a plurality of LED components that slide along the circumference of the annular base; the annular base has an annular groove, the LED components are disposed above the annular base and are movably connected to the annular base through movable sliders embedded in the annular grooves, and the movable sliders are evenly distributed on the outer peripheral wall of the rotating belt.

[0008] Preferably, the LED assembly includes an LED lamp fixing bracket fixedly connected to the movable slider, an LED lamp disposed on the LED lamp fixing bracket, and an LED light disposed on the LED lamp and facing the plant placement platform, wherein an integrated circuit board electrically connected to the LED light is provided between the LED lamp and the LED light;

[0009] Preferably, the integrated circuit board is provided with, from top to bottom, an LED driver for adjusting the spectrum of the LED lamp, a power supply for providing power to the LED lamp, and a Bluetooth module for connecting the LED driver and the user terminal;

[0010] Preferably, it also includes a drive motor and a moving track. The LED lamp fixing bracket is provided with a moving track for the LED lamp to slide. The moving track drives the LED lamp to achieve vertical displacement through the drive motor.

[0011] Preferably, it also includes a commutator with a commutation angle of 90°, the commutator being mounted on the LED lamp mounting bracket and used to drive the LED lamp to achieve vertical and horizontal rotation;

[0012] Preferably, the length of the LED lamp fixing bracket is longer than the length of the LED lamp;

[0013] Preferably, the length of the LED lamp does not exceed the diameter of the annular base;

[0014] Preferably, there are four movable sliders, and the included angle between the movable sliders is 90°.

[0015] The present invention provides a precision dimming full-spectrum plant lamp with the following beneficial effects:

[0016] 1. By rotating the belt and moving the slider, the plant light can provide supplemental lighting to the plant without any blind spots, ensuring that every part of the plant on the plant stand can receive light evenly, promoting the plant's light energy absorption efficiency by 50% and increasing the plant's growth rate by 30%.

[0017] 2. By driving the moving track vertically up and down through the drive motor, the LED lights move up and down, providing precise supplemental lighting for specific parts of the plant, improving the supplemental lighting efficiency of the plant lights by 80% and increasing their practicality by 50%.

[0018] 3. By using a Bluetooth module to receive data from the terminal and return it to the LED driver, the plant light can adjust the spectrum, allowing it to be adjusted for different growth stages and environments of different plants. This enhances the practicality of the plant light by 80% and increases the growth rate of plants by 30%. Attached Figure Description

[0019] Figure 1 This is a structural schematic diagram of a precision dimming full-spectrum plant lamp provided by the present invention.

[0020] Figure 2 This is a schematic diagram of the annular base of a precision dimming full-spectrum plant lamp according to the present invention.

[0021] Figure 3 This is a top view of the LED lamp of the precision dimming full-spectrum plant lamp of the present invention in a horizontal position.

[0022] Figure 4 This is a schematic diagram of the LED component of a precision dimming full-spectrum plant lamp according to the present invention.

[0023] Figure 5 This is a schematic diagram of the back of the LED lamp holder for a precision dimming full-spectrum plant lamp according to the present invention.

[0024] Figure 6 This is a side view of the LED lamp of the precision dimming full-spectrum plant lamp of the present invention in a horizontal position.

[0025] In the picture:

[0026] 1. Plant stand 2. Rotating belt 3. Moving slider 4. Circular base 5. LED lamp fixing bracket 6. LED lamp 61. Integrated circuit board 62. LED driver 63. Bluetooth module 64. Power supply 65. Commutator 7. LED light 8. Moving track 9. Drive motor Detailed Implementation

[0027] The present invention will be further described below with reference to specific embodiments and accompanying drawings to help understand the content of the present invention.

[0028] like Figure 1-6 As shown, this invention provides a precision dimming full-spectrum plant light, comprising a plant placement platform 1, a rotating belt 2, and an annular base 4, which are connected sequentially from the inside out and arranged concentrically, as well as a plurality of LED components that slide along the circumference of the annular base 4; the annular base 4 has an annular groove, the LED components are disposed above the annular base 4 and are movably connected to the annular base 4 through movable sliders 3 embedded in the annular grooves, and the movable sliders 3 are evenly distributed on the outer peripheral wall of the rotating belt 2. The LED assembly includes an LED lamp fixing bracket 5 fixedly connected to the movable slider 3, an LED lamp 6 mounted on the LED lamp fixing bracket 5, and an LED lamp 7 mounted on the LED lamp 6 and facing the plant placement platform 1. The length of the LED lamp fixing bracket 5 is longer than the length of the LED lamp 6. The length of the LED lamp 6 does not exceed the diameter of the annular base 4. An integrated circuit board 61 electrically connected to the LED lamp 7 is provided between the LED lamp 6 and the LED lamp 7. The integrated circuit board 61 is provided with an LED driver device 62 for adjusting the spectrum of the LED lamp 7, a power supply 63 for providing power to the LED lamp 7, and a Bluetooth module 63 for connecting the LED driver device 62 and the user terminal, from top to bottom. The power supply 62 is powered by 220V AC. It also includes a drive motor 9 and a moving track 8. The LED lamp fixing bracket 5 is provided with a moving track 8 for the LED lamp 6 to slide on. The moving track 8 drives the LED lamp 6 to achieve vertical displacement through the drive motor 9. It also includes a commutator 65 with a commutation angle of 90°. The commutator 65 is set on the LED lamp fixing bracket 5 and is used to drive the LED lamp 6 to achieve vertical and horizontal rotation. There are four moving sliders 6, and the included angle between the moving sliders 6 is 90°.

[0029] The annular base 4, plant stand 1, and rotating belt 2 are concentric circles. The rotating belt 2 is installed inside the annular base 4, and the plant stand 1 is installed inside the rotating belt 2. When the plant light is turned on, the rotating belt 2 rotates, causing the movable slider 3 to rotate. The rotation of the movable slider 3 causes the LED light fixture fixing bracket 5 to rotate. There are four movable sliders 3, positioned in the four directions (up, down, left, and right) of the annular base 4, with each direction having an angle of 90°. The movable sliders 3 can move directionally on the annular base 4. By setting up the above rotating mechanism, the plant light achieves comprehensive illumination without blind spots, ensuring that the plant light can illuminate all parts of the plant in the "vertical state".

[0030] The LED lamp holder 6 is mounted on four movable sliders 3. The drive motor 9 is mounted at the top of the LED lamp holder 6, the movable track 8 is mounted below the drive motor 9, and the commutator 65 is mounted in the middle of the LED lamp holder 5. When the LED lamp 6 is in the "vertical state," the commutator 65 can adjust the direction of the LED lamp 6 to make it "horizontal state." When the LED lamp 6 is in the "horizontal state" and the drive motor 9 is working, the drive motor 9 drives the movable track 8 to move up and down, and the up and down movement of the movable track 8 causes the LED lamp 6 to move up and down. When the LED lamp 6 is in the "horizontal state" and located in the middle of the LED lamp holder 5, the commutator 65 can rotate the LED lamp 9 to make it return to the "vertical state." By setting the above steering mechanism, the plant light can be switched from the "vertical state" to the "horizontal state," realizing the switch from all-round supplemental lighting to specific area supplemental lighting. The plant light in the "vertical state" ensures uniform light reception for the plant, while the plant light in the "horizontal state" ensures supplemental lighting for specific areas of the plant.

[0031] LED lamp 6 is mounted on the moving track 8, LED lamp 7 is mounted on the front of LED lamp 6, integrated circuit board 61 is mounted on the back of LED lamp 6, LED driver 62 is mounted above integrated circuit board 61, Bluetooth module 63 is mounted below integrated circuit board 61, and power supply 64 is mounted in the middle of integrated circuit board 61, between LED driver 62 and Bluetooth module 63. LED driver 62 can control LED lamp 7 to adjust its spectrum, enabling LED lamp 7 to have dimming and color-adjusting functions. Bluetooth module 63 connects to the user terminal, allowing the user to directly control LED driver 62 using terminal software to complete the dimming and color-adjusting of LED lamp 7. By setting up the above communication and control mechanism, the spectral control and remote control of the plant light are realized, ensuring that the user can remotely adjust the supplementary lighting mode of the plant light, significantly improving the user experience.

[0032] This article uses specific examples to illustrate the inventive concept in detail. The description of the above embodiments is only for the purpose of helping to understand the core idea of ​​the present invention. It should be noted that any obvious modifications, equivalent substitutions or other improvements made by those skilled in the art without departing from the inventive concept should be included within the protection scope of the present invention.

Claims

1. A precision-dimming full-spectrum plant lamp, characterized in that, It includes a plant placement platform, a rotating belt, and an annular base that are connected sequentially from the inside out and arranged concentrically, as well as several LED components that slide along the circumference of the annular base; the annular base has an annular groove, the LED components are disposed above the annular base and are movably connected to the annular base through movable sliders embedded in the annular grooves, and the movable sliders are evenly distributed on the outer peripheral wall of the rotating belt. The LED assembly includes an LED lamp fixing bracket fixedly connected to the movable slider, an LED lamp set on the LED lamp fixing bracket, and an LED light set on the LED lamp and facing the plant placement platform. An integrated circuit board electrically connected to the LED light is provided between the LED lamp and the LED light. The integrated circuit board is provided with, from top to bottom, an LED driver for adjusting the spectrum of the LED lamp, a power supply for providing power to the LED lamp, and a Bluetooth module for connecting the LED driver and the user terminal. It also includes a drive motor and a moving track. The LED lamp fixing bracket is provided with a moving track for the LED lamp to slide. The moving track drives the LED lamp to achieve vertical displacement through the drive motor. It also includes a commutator with a 90° commutation angle, which is located in the middle of the LED lamp fixing bracket and is used to drive the LED lamp to achieve vertical and horizontal rotation; The length of the LED lamp mounting bracket is longer than the length of the LED lamp; The length of the LED lamp does not exceed the diameter of the annular base; There are four movable sliders, and the included angle between the movable sliders is 90°.