Strawberry plant lamp with adjustable multi-color illuminance

TWM686281UActive Publication Date: 2026-08-11曾建源 +1
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Patent Information

Application Number
TW115201784
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-02-26
Publication Date
2026-08-11
Estimated Expiration
2036-02-25

Smart Images

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Abstract

This invention relates to plant lighting technology, specifically a strawberry plant light with adjustable multi-color illuminance. The light combines red, blue, green, and white light sources and, through a programmable control module, adjusts the spectral ratio and illuminance intensity according to the plant's growth stage to enhance photosynthetic efficiency and fruit quality. Its structure includes multi-color LED tubes, a heat dissipation device, and a smart control interface, enabling precise output of different wavelengths of light to simulate natural sunlight variations. Users can set lighting modes according to their needs, achieving energy-saving and efficient cultivation. This new invention features ease of operation, uniform illuminance, and sustainable control, making it suitable for strawberry greenhouse cultivation and other horticultural applications, effectively promoting plant growth and increasing yield.
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Claims

1. A strawberry plant lamp with adjustable multi-color illuminance, characterized in that: it includes a multi-color light source module, the light source module is composed of LEDs of red, blue, green and white light, and is equipped with a smart control interface and control circuit integrated into the lamp tube structure, and uses PWM technology to adjust and record the output ratio and illuminance intensity of each light source according to the plant growth stage, so as to improve the photosynthetic efficiency of strawberry plants and fruit quality.

2. The strawberry plant light as described in claim 1, wherein the control circuit includes a programmable microcontroller capable of setting multiple lighting modes and automatically adjusting the spectral distribution through an algorithm to simulate natural sunlight variations, thereby providing the optimal lighting conditions required by the strawberry plant.

3. The strawberry plant lamp as described in claim 1 or 2, wherein the light source module is disposed within the lamp tube structure and has a heat dissipation device to ensure that the LED light source maintains stable performance during long-term operation, avoids overheating leading to light decay, and extends the overall lifespan of the lamp.

4. The strawberry plant light as described in claim 1, wherein the control circuit has a remote wireless device, and the user can remotely set it through a mobile application or computer software and monitor the illuminance data in real time to achieve the purpose of accurate management and convenient operation.

5. The strawberry plant lamp as described in claim 1, wherein the output spectrum of the light source module covers 400 to 700 nanometers and the spectrum ratio can be adjusted according to different growth stages of strawberries (including seedling stage, flowering stage and fruiting stage) to promote strawberry plant growth, flower bud differentiation and fruit sweetness enhancement.

6. The strawberry plant light as described in claim 1, wherein the light tube structure is made of a high light transmittance material and has a uniform light design to ensure uniform light distribution, avoid plant growth differences due to uneven light, and thus improve cultivation consistency.

7. The strawberry plant light as described in claim 1, wherein the control circuit has a smart energy-saving mode that can automatically adjust the output power according to the ambient light intensity to reduce energy consumption and take into account both cultivation efficiency and environmental sustainability.

8. The strawberry plant light as described in claim 1, wherein the light source module can perform multi-color light mixing output and precisely control the brightness of each light source through pulse width modulation (PWM) technology to achieve fine illuminance regulation and ensure that the plant obtains the best light environment.

9. The strawberry plant light as described in claim 1, wherein the smart control interface has a data recording function, can store light settings and strawberry plant growth data, and provide users with analysis to optimize cultivation strategies and establish a basis for long-term light management.

10. The strawberry plant light as described in claim 1, wherein the strawberry plant light is suitable for greenhouse cultivation of strawberry plants and can also be extended to artificial lighting cultivation of other fruit and vegetable plants, and has the advantages of simple operation, uniform illumination and sustainable control, which can effectively promote plant growth and increase yield.