With the cold winter months upon us, is this the time of year when you want to add life to your home to warm it up throughout the downtime months?
For many houseplants, light, water and temperature are all important factors to consider. The light conditions in your home are not ideal light conditions. Occasionally, they need the extra light intensity that LED grow lights can provide.
And the gardening beginner also asks, do all LED lights help plants grow? This article will work with you to find the right answer.
Why do Plants Need Extra Light?
The light duration of plants can be affected by a variety of factors: weather, indoor environment, season, and growth rate.
An ill-lit room
If your home doesn’t get much sunlight, you may want to give up plants that need adequate sunlight to thrive. You can also consider low-light plants or supplement natural light exposure with LED grow lights.
Cloudy and rainy weather
Rainy weather does not provide enough light for your plants to get the light they need for the day. It would be best if you bought a LED bar grow light for your plants.
While you can bring sun-loving indoor plants outdoors in the summer, you cannot bring non-hardy indoor plants outdoors in the winter. As the seasons change, sunlight naturally decreases, which may be why you may need to install LED grow lights at home.
Reduced light can hinder the growth of many plants. When there is not enough light indoors, plants will actively seek out areas with light sources and will experience growth. If you want sun-loving plants to grow faster, quantum board LED grow lights can also help.
LED Grow Lights vs Normal LED
Normal LED lights can help your plants. The white light emitted by normal LED lights can be helpful to plants, but they are not rich enough in the spectrum to provide enough output needed for more indoor plants.
It’s important to use the right LED lights to prompt your plants to get the most out of them. For this reason, we would recommend LED grow lights specifically for use as plant growers.
The type of light available to the plant is important because specific wavelengths help promote photosynthesis more than others.
They are artificial light sources that are specifically designed to mimic sunlight to meet the light conditions required for plant photosynthesis. They contain the optimal combination of red, blue, and other wavelengths of the spectrum needed for plant growth.
It is possible to specifically control the wavelength of the light emitted, aiming for a precise wavelength ratio to light. Therefore, LED plant grow lights are definitely the better choice.
How do LED Grow Lights Work?
After we understand the difference between the two, do you wonder how the LED grow light works? Where exactly is its wonder?
The effectiveness of an LED grow light applies to its capability to convert electrical energy into useful photons that fall in the PAR region of the diapason.
LEDs ( Light Emitting Diodes) are small electronic factors made of two different types of semiconductor accouterments, one with a negative charge called electrons and the other with a positive charge called holes.
When a voltage is duly applied to an LED, current begins to flow through it, causing electrons and holes to begin colliding, releasing energy in the form of photons, light quantities, and a process called compounding.
The spectrum mentioned above to the quantum board LED grow lights are set to simulate the sun, it is the electromagnetic spectrum covering all wavelengths from infrared to near-ultraviolet or light useful for plant or animal life. Full diapason light means that it contains all colors in the electromagnetic wavelengths needed for photosynthesis.
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It includes all colors in the electromagnetic wavelengths required for photosynthesis. The distribution of the light spectrum is important to optimize plant growth, as different wavelengths affect different parts of the growth cycle.
- UV light (280-400nm) – Enhances plant defenses and helps fight disease.
- Blue light (400-500nm) – stimulates leaf/root growth and inhibits stem extension.
- Green light (500-600nm) – Inhibits nutrients, similar as anthocyanins.
- Red light (600-700nm) – Stimulates flowering, fruit-bearing and germination.
- Far-red light (700-800nm) – Stimulates stem elongation.
Normal LED lights can help plants grow, but their spectrum is not enough to meet more than the needs of plants. For indoor growing, LED grow lights specifically used by plant growers are preferred.
They are artificial light sources that are specifically designed to mimic sunlight and are used to meet the light conditions required for plant photosynthesis.