Apollo LED Grow Lights

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1 Apollo LED Grow Lights UL APPROVED LED DRIVER Input Voltage Safety Low Temperature Modular Assembling IDS Colorful Outlook Lens LEDs

2 V AC power input, 50/60HZ working frequency, suitable for global residential energy environment. Apollo is designed to be used globally, you will have peace of mind by knowing this light is a universal suitable equipment.

3 Our products apply advanced isolated power drivers that are of UL standard output voltage which is lower than 48VDC.

4 Revolutionary heat dissipation design, availably alleviate the internal thermal cycle, lower than its predecessors in performance.

5 Modular assembling, no-glue and no-glass design, very easy for repairment and maintenance.

6 Intelligent Detection System ensuring the whole equipment working in a good state. This is a smart system, it tells how is the LED working and indicates to you if problem occurs.

7 Aluminum face shield design, a vailable for a variety of colour combinaiton. Case: Red Black White Face shield: Red Black Silver Blue Side: Red Black White Gray

8 Built with secondary optical lens, the penetration is more outstanding. The secondary optical lens make the beam angle controllable, which enable the LEDs to address highly uniformed PPF to plants, thereby the total volume of the energy used was substantially reduced. With the secondary optical lens used,the light can penetrate from plant's conopy to root easily. 60, 90, 120 are available according to your specific requirement.

9 Apollo LED Grow Lights select first-rate LEDs as light source, ensuring the superior high quality and long lifespan. Apollo addressing various photosynthetic aspects helping in plant's growth. The LEDs are available in a variety of wavelengths and spectra can be customized to provide the most nutrient light source for your plants.

10 Wavelength (nm) Wavelength Influence on Plants UV (Ultraviolet) Though overexposure to UV light is dangerous for the flora, small amounts of near- UV light can have beneficial effects. In many cases, UV light is a very important contributor for plant colors, tastes and aromas. This is an indication of near-uv light effect on metabolic processes. Studies show that 385 nm UV light promotes the accumulation of phenolic compounds, enhances antioxidant activity of plant extracts, but does not have any significant effect on growth processes. Blue Green Red Far red Such as phototropic curvature, inhibition of elongation growth, chloroplast movement, stomatal opening and seedling growth regulation. It affects chlorophyll formation, photosynthesis processes, and through the cryptochrome and phytochrome system, raises the photomorphogenetic response. These wavelengths encourage vegetative growth through strong root growth and intense photosynthesis and are often used as supplemental light for seedlings and young plants during the vegetative stage of their growth cycle, especially when stretching must be reduced or eliminated. Green light is sometimes used as a tool for eliciting specific plant responses such as stomatal control, phototropism, photomorphogenic growth and environmental signaling. When combined with blue, red and far-red wavelengths, green light completes a comprehensive spectral treatment for understanding plant physiological activity. Red light affects phytochrome reversibility and is the most important for photosynthesis, flowering and fruiting regulation. These wavelengths encourage stem growth, flowering and fruit production, and chlorophyll production. A study titled Influence of Light Wavelengths on Growth of Tomato by Hery Suyanto et.al., for example, demonstrated that tomato plants showed the most growth in the vegetative phase under 650nm light. In the germination phase, irradiation of 680nm spurred the greatest growth rate. The 624nm region has the highest photosynthetic relative quantum yield for a range of plants. At the same time, its action on red-absorbing phytochrome is considerably weaker compared to that of 660 nm red light and can be used to balance the phytochrome equilibrium towards lower values (closer to those of daylight) than those achievable with 660 nm red light, especially when used together with 730 nm red light. The 660nm wavelength has a very strong photosynthetic action and also exhibits the highest action on red-absorbing phytochrome regulated germination, flowering and other processes. Most effective for light cycle extension or night interruption to induce flowering of long-day plants or to prevent flowering of short-day plants. Most energy-efficient source for photosynthesis among all available supplemental LEDs. On the far-red absorbing form of phytochrome, converting it back to the redabsorbing form. It becomes necessary for plants requiring relatively low values of the phytochrome photoequilibrium to flower. Can be used at the end of each light cycle to promote flowering in short-day plants.

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12 Parameters: Model No. AP4-01 AP6-01 AP8-01 AP10-01 AP12-01 AP16-01 AP18-01 AP20-01 LED Power (W) Total Power (W) Input Voltage VAC, 50-60Hz LED 48:12 72:18 96:24 120:30 144:36 192:48 216:54 240:60 Customized Available Color 630NM/460NM Red/Blue (Customized Available) Beam Angle 90 /120 Lumen (LM) Par (umol) 238/1m 120/1.5m 310/1m 170/1.5m 570/1m 320/1.5m 410/1m 210/1.5m 656/1m 353/1.5m 700/1m 420/1.5m 700/1m 420/1.5m 700/1m 420/1.5m Light Intensity (lux) 9500/1m 4700/1.5m 9450/1m 7200/1.5m 16500/1m 9250/1.5m 17850/1m 9500/1.5m 19900/1m 11200/1.5m 20000/1m 11750/1.5m 20000/1m 12500/1.5m 20000/1m 12500/1.5m Coverage Area (m2) 0.8/0.5m 1.6/0.8m 2.0/1.0m 0.8/0.5m 1.6/0.8m 2.1/1.0m 0.9/0.5m 1.7/0.8m 2.2/1.0m 0.9/0.5m 1.8/0.8m 2.4/1.0m 1.9/0.8m 2.5/1.0m 4.2/1.5m 2.1/0.8m 2.8/1.0m 4.8/1.5m 2.2/0.8m 2.8/1.0m 5.0/1.5m 2.4/0.8m 2.8/1.0m 5.2/1.5m Product Dimension (mm) Packing Dimension (mm) 4PCS PCS PCS PCS Net Weight/ Gross Weight (Kg) 4PCS 16.2/18.0 4PCS 21.2/23.5 3PCS 19.4/21.5 2PCS 14.9/ / / / /20.0

13 Installation: Packing:

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