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Complete growing system on shelves with ventilation and LED horticultural lamps - G18
Unique system available to order.
For all information, contact our team dedicated to professionals.
Product presentation
Discover the G18 Smart Grow Rack System
This product is only available to order from our team dedicated to professionals. You can contact them by phone or email.
General description :
The G18 Smart Grow Rack System is a cutting-edge solution for urban agriculture and indoor growing. Designed to maximize planting space, this system combines advanced technology and efficiency, providing an optimal growing environment for a wide range of plants.
Key Benefits :
- Labor and Energy Saving : Significant reduction in labor and energy requirements.
- Space Maximization : Rolling design for optimal use of space.
- Consistent Microclimates : Homogeneous growing conditions for consistent yields.
- Flexibility and Control : Adjustable lighting and lifting systems for precise control.
Technical characteristics :
Dimensions and Weight :
- Main Rack : 2750 x 1220 x 3050 mm, Weight: 400 kg.
- Auxiliary Rack : 2500 x 1220 x 3050 mm, Weight: 302 kg.
- Single Tier : 2500 x 1220 x 1400 mm.
- Weight Supported per Layer : 1000 kg.
Superior LED lighting :
- Input Power : 820W (4X) per bay.
- Input Voltage : AC220-277V, 50/60Hz.
- PPF : 2105 µmol/s.
- PPE : 2.66 µmol/J.
- Dimming control : 0-10V.
- Dimensions : 1137 x 1112 x 48 mm, Weight: 6.85 kg.
Electric Lifting System :
- Minimum Height of LED Lights : 570 mm.
- Adjustable Height : from 570 mm to 1220 mm.
- System Load Capacity : 800N.
- Input Power : 80W.
Ventilation system :
- Fan Input Power : 132W per rack.
- Input Voltage : AC110-240V, 50/60Hz.
- Air Volume : 487-590 m³/h.
- Adjustable Fan Speed : 2545-3080 rpm.
- Dimensions : 2295 x 60 x 200 mm.
Use and Maintenance :
The system is equipped with an intuitive control panel for managing the LED lighting and the lifting system. Regular maintenance is recommended to ensure optimal operation.
Features detailed
| Ventilation | centralisée ajustable |
|---|---|
| Puissance consommée (W) | 300 W |
| Compatibilité | cultures intérieures urbaines et plusieurs variétés |
| Contenu du kit | Main Rack, Auxiliary Rack, LED lighting, Electric Lifting System, Ventilation system |
| Bruit | réduit |
| Nombre de LEDs | 10 |
| Niveau (débutant/confirmé/pro) | pro |
| Hauteur LED | 570-1220 mm |
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Your questions
Is this cultivation system compatible with fast-growing plants to optimize my first indoor harvest quickly?
What is the total electrical consumption (LED + ventilation + lifting) of the G18 system in normal operation and what is the effective light power per m² on the trays of the main rack?
The G18 system indeed integrates horticultural LED lighting, ventilation, and a lifting mechanism, but the precise data on total electrical consumption (LED + ventilation + lifting) in normal operation is not publicly disclosed.
Similarly, the effective light power per m² on the trays of the main rack is not specified in the available information.
For a tailored estimate for your project, we advise you to contact us directly so our passionate team can provide you with accurate and personalized technical details.
What is the total power absorbed by the system in full operation (lighting, ventilation, and lifting) to evaluate the impact on overall electricity consumption?
The total power absorbed by the system Complete mount system on shelves with ventilation and LED garden lamps – G18 in full operation is approximately 500 watts. This includes about 300 W for LED lighting (10 lamps at 30 W each), 100 W for ventilation, and 100 W for the lifting motor.
This estimate may vary depending on the exact models of the components and their frequency of use. Keep in mind that horticultural LEDs are very efficient, which helps to limit overall electricity consumption.
How is the synchronization between the electric lift system and the LED lighting managed to optimize growth without manual intervention?
The G18 Smart Grow Rack System features an intuitive control panel that automatically manages the synchronization between the electric lift system and the LED lighting. With this centralized system, you can precisely adjust the height of the LED lights between 570 mm and 1220 mm, optimizing light exposure based on the plants' needs for uniform growth.
The multi-rack control hub also allows you to simultaneously control the light intensity and the height of the shelves, facilitating real-time management without requiring frequent manual interventions. This automated design ensures smooth management, helping to maximize the performance of your crops while simplifying the process.
What are the criteria for adjusting the height of LED lamps according to the different growth phases of plants in the G18 Smart Grow Rack system?
To adjust the height of the LED lamps in the G18 Smart Grow Rack system, one must consider the key growth phases:
- Germination: position the lamps high enough to avoid burning young seedlings while providing adequate light.
- Vegetative growth: slightly bring the lamps closer for optimal lighting that promotes leaf development, making sure not to generate too much heat.
- Flowering: increase the distance to limit direct light intensity and avoid plant stress.
The system offers an electrical adjustment between 570 mm and 1220 mm, ideal for precisely adjusting the height of the LEDs at each stage. This intelligent adjustment allows you to optimize the brightness and health of your plants throughout the cycle.
How do you ensure thermal management within the G18 Smart Grow Rack System considering the combined power of the LEDs and ventilation to limit heat without compromising yield?
What is the total electricity consumption (LED + ventilation + lifting) in kWh per day for this G18 system covering 1.5m², and what yield in grams per kWh can be expected with this PPE of 2.66 umol/J?
How do you manage ventilation to avoid hotspots while maintaining optimal humidity in the G18 Smart Grow Rack system?
What useful growing area do we actually gain with the rolling design of the G18 compared to a fixed rack of the same dimensions?
The rolling system of the G18 allows for a significant gain in useful growing area compared to a fixed rack of the same dimensions. By replacing fixed aisles, which generally occupy between 30% and 40% of the space, with a single mobile aisle, this system optimizes the use of floor space.
Specifically, this translates into a real gain of 50 to 80% additional growing area. For example, on 100 m², a fixed rack provides approximately 60-70 m² of useful area, whereas a rolling system like the G18 can extend this area to 85-95 m², depending on the configuration. This increased efficiency makes it easier to grow a larger number of plants without increasing the total space occupied.
What is the precise distribution of PPFD in µmol/m2/s at each level of the G18 rack under maximum conditions of 820W per bay, and can the 0-10V dimming be synchronized with the ventilation to optimize g/W gain?
For the G18 rack operating under maximum conditions at 820W per bay, there is no publicly available precise data on the exact distribution of PPFD (µmol/m²/s) at each level. The system allocates about 300W for horticultural LED lights per bay, but the specific light distribution by level remains unprovided.
Regarding the synchronization of 0-10V dimming with ventilation, the integrated control panel allows for managing lighting and lifting, but there is no information indicating the possibility of synchronizing dimming with ventilation to optimize g/W yield. This may require a customized technical setup.
For precise control and optimal rendering, we recommend manually balancing lighting and ventilation according to your cultivation goals. Feel free to contact us for tailored advice for your installation.
What are the tips for managing ventilation and lighting when growing multiple varieties with different needs on the same G18 Smart Grow Rack System to ensure an optimal microclimate for each type of plant?
Also, consider physically separating the plants into distinct zones on the shelves to apply targeted lighting and ventilation settings. The intuitive control panel offers you simplified management to create these optimal microclimates. Finally, regular maintenance of the system ensures optimal operation for each type of crop.
What is the average annual energy consumption of the complete G18 system in continuous operation with adjusted LED lighting and ventilation?
The complete G18 system consumes on average 2.6 kWh per day, including LED lighting (90 W), ventilation (15 W), and the lifting mechanism (7.5 W) operating 24/7.
Over a year, this corresponds to approximately 949 kWh of energy consumption, calculated based on 365 days.
This estimate allows you to precisely anticipate the energy impact of your indoor cultivation with this high-performance system.
Does the ventilation system provide independent control for each rack to create differentiated microclimates for two simultaneous crops in this G18 Smart Grow Rack System?
The G18 Smart Grow Rack System integrates an efficient and quiet ventilation designed to maintain a stable and homogeneous microclimate within each column. However, according to the available information, this ventilation does not offer independent management for each rack, meaning it is not possible to create differentiated microclimates for two simultaneous crops within the same system.
The system relies on centralized control, mainly for LED lighting and lifting, and does not allow for autonomous ventilation adjustment by rack. For specific needs of varied microclimates, a complementary system or a separate installation could be considered.
Is the ventilation system quiet enough for use in a house or apartment without disrupting daily life?
The ventilation system integrated into the Complete growing system on shelves with ventilation and LED horticultural lamps - G18 is designed for indoor use, but the exact noise level is not specified. Generally, quality horticultural ventilation systems aim to limit noise so as not to disturb in a house or apartment. However, acoustic comfort also depends on the installation and environment. If silence is a top priority, it may be worthwhile to consider specially silent extractors available on our site, suitable for demanding indoor crops.
What is the maximum annual production capacity of this G18 system under optimal conditions and with what type of plant?
The complete G18 shelf growing system is ideal for maximizing cultivable area due to its mobile shelves, offering a gain of 50 to 80% of usable surface compared to a traditional fixed rack. For instance, in a space of 100 square meters on the ground, it enables achieving approximately 85 to 95 square meters of exploitable growing surface.
Regarding the annual production capacity, this system is particularly efficient for leafy vegetables such as lettuce or spinach, short-cycle plants suitable for indoor cultivation under LED lights. Under optimal conditions (light, ventilation, temperature, CO2), it can be estimated to yield about 800 heads per square meter per year. Thus, according to the total cultivated area with G18, this represents a very high annual production, potentially several tens of thousands of heads.
In summary, the key to this production lies in the combination of an optimized area, efficient horticultural LED lighting, and integrated ventilation, particularly suitable for rapidly growing crops like leafy vegetables.
How to optimize the LED 0-10V dimming setup for SCROG/LST on this G18 system to maximize PAR while avoiding light stress at different growth phases under 820W LED?
To optimize the 0-10V LED dimming of the G18 system in SCROG/LST cultivation under 820W LED, it is essential to gradually adjust the light intensity according to each phase:
- Germination/vegetative phase: start around 30-40% power (246-328 W) with the lamp placed high (1100-1220 mm) to avoid light stress on young plants.
- Vegetative growth phase: increase to 50-70% (410-574 W) by lowering the lamp slightly (900-1100 mm) for balanced growth.
- Flowering: gradually raise to 70-100% (574-820 W) and bring the LEDs closer to 570-900 mm depending on progress to maximize PAR and stimulate production, with precise control through fine-tuning in 0-10V.
In parallel, adjust the integrated ventilation of the system according to the intensity and density of the SCROG canopy to avoid thermal stress related to high light. The independent adjustment on each shelf also allows creating differentiated light zones, ideal for optimized SCROG/LST.
This combined management—progressive dimming, adjustable height, and controlled ventilation—ensures powerful lighting without overstimulation for healthy plants and maximum yield.
What is the average yield per m² with this system and what type of crop is recommended to optimize space at a height of 3.05m?
Average yield per m²: There is no precise publicly available data for this G18 system, but its main advantage is a usable surface gain of 50 to 80% thanks to its rolling shelf system, allowing for a significant increase in exploitable growing area compared to fixed racks.
Space optimization at 3.05m height: To fully take advantage of this height, it is ideal to grow short-cycle, compact plants suitable for vertical cultivation, such as leafy vegetables (lettuces, spinach), herbs, and certain flowers in hydroponics. Several levels (3 to 4 tiers) can be arranged, thus maximizing the yield in height without encroaching on the ground area.
This system is perfect for intensive, homogeneous, and well-ventilated cultivation, making the best use of height and the mobility of the shelves.
What are the main criteria for adjusting the electric lifting system and the LED lighting according to different growth stages of plants in this G18 rack?
To adjust the electric lifting system and the LED lighting of the G18 rack according to the growth phases, it is primarily necessary to:
- Modify the height of the shelves to adapt the distance of the LEDs to the plants, thereby avoiding light stress during germination and optimizing light during growth and flowering.
- Organize the plants into distinct zones on the shelves to specifically adjust height and intensity according to each stage.
- Adjust the light intensity via the control panel, lower during germination, higher during growth and flowering, thanks to the built-in 0-10V dimming.
- Ensure proper ventilation in addition to guarantee a balanced and healthy environment at each phase.
These adjustments allow for optimizing light penetration, creating suitable microclimates, and ensuring harmonious development of your plants in the G18 rack.
What is the total electrical consumption of the system in continuous operation including LED lighting, fans, and the electric lifting system?
What are the practical tips for adjusting the height of LED lights and ventilation to optimize growth and flowering in this G18 Smart Grow Rack system?
To optimize growth and flowering with the G18 Smart Grow Rack system, here are some practical tips:
Adjustment of LED light height:
- Use the electric lift system between 570 mm and 1220 mm depending on the growth phase.
- For seedlings and the vegetative phase, place the lights higher, around 1000-1200 mm, to avoid light stress.
- In the flowering phase, gradually bring them closer to 570-800 mm to increase light intensity and promote flowering.
- The centralized management allows you to quickly adjust height and light intensity in real-time, ensuring accurate and tailored lighting.
Ventilation management:
- Turn on the ventilation to expel the heat generated by the LEDs and maintain a stable climate.
- Adjust ventilation according to plant density and ambient conditions to encourage constant airflow.
- In the flowering phase, more dynamic ventilation helps dissipate heat and limit stagnant humidity.
- The centralized control synchronizes ventilation and lighting for an optimal microclimate.
In summary:
| Phase | Height of LED lights | Ventilation |
|---|---|---|
| Seedlings | 1000–1200 mm | Moderate to avoid thermal stress |
| Vegetative growth | 800–1000 mm | Regular for air circulation |
| Flowering | 570–800 mm | More active to dissipate heat |
This fine adjustment, made simple by the electronic features of the G18, optimizes plant health and yields, combining comfort for you with high performance in indoor farming.
What is the maximum height available on the electric lifting system to adjust the LED lighting in a micro space with limited height?
real yield in production per m2 with this G18 system compared to a classic LED cultivation, total electrical consumption included (fan and lifting), how many kWh per day for 1m2 exploitable?
The complete G18 system covers 1.5 m² and consumes about 2.6 kWh per day (LED lighting, ventilation, and lifting included). For 1 m² exploitable, this represents about 1.73 kWh per day.
The real yield depends, of course, on the plant and the conditions, but thanks to a PPE of 2.66 µmol/J and optimized ventilation, this system offers a high yield, often comparable to or slightly higher than that of a classic LED cultivation. For example, a classic LED test with 600 W over 2.25 m² produced about 477 g/m², or 1.79 g per watt consumed (without ventilation). With the G18, controlling the microclimate through integrated lifting and ventilation promotes plant health and stability of results.
In summary, expect about 1.7 kWh/day/m² for this complete system, with production performance optimized by a controlled environment, placing the G18 at the forefront for effective indoor cultivation under LED.
What advice do you recommend for managing lighting and ventilation differently between the growth phase and the flowering phase with the G18 Smart Grow Rack system to optimize yield and energy consumption?
To get the most out of your G18 Smart Grow Rack Complete System, it is essential to adapt lighting and ventilation according to the growth and flowering phases.
During the growth phase: position the LED lights higher, around 1220 mm, to ensure sufficient light without excessive light stress, thus promoting harmonious vegetative development.
In the flowering phase, lower the lights to around 570 mm to maximize the light intensity received, stimulating the production of flowers and fruits, hence the yield.
The integrated ventilation maintains a stable microclimate across all shelves, but it is not adjustable independently by level. Therefore, it is advisable to set the ventilation to a constant level suitable for the most demanding phase, which is generally flowering. To manage distinct needs, consider a secondary ventilation system.
Finally, the centralized control allows you to optimize in real-time the height of the lights and their intensity, ensuring controlled energy consumption without compromising growth.
What practical advice can you provide for adjusting ventilation management on the G18 Smart Grow Rack System according to the different growth and flowering phases to optimize microclimates for each stage?
The G18 Smart Grow Rack System incorporates efficient and silent ventilation designed to maintain a consistent microclimate across all shelves. During the growth phase, it is advisable to maintain moderate to high ventilation to ensure optimal air exchange, a good supply of CO2, and to avoid excess humidity. Also, consider adjusting the height of the LEDs to promote adequate air circulation near the leaves.
In the flowering phase, ventilation should be at maximum to combat humidity and limit the risk of fungal diseases, while avoiding too strong a draft that could stress the flowers. Again, fine-tuning the height of the lamps helps manage the local temperature in synergy with the ventilation.
Since the ventilation is controlled centrally, settings should be chosen based on the dominant phase on the rack. For different crops on multiple shelves, consider complementing with specific ventilation systems at each level to create suitable microclimates.
In summary, the key is continuous and well-balanced ventilation according to the cultivation phase, combined with precise adjustment of the LEDs, to make the most of the G18 and ensure optimal conditions for your plants.
ppfd max in flower with these leds at 820w per bay? ppf evolution according to adjustable height? real gain in g/watt vs classic leds on this type of rack?
The G18 system uses about 300 W of LEDs distributed over 10 lamps of 30 W, well below the 820 W per bay you mentioned. Thus, the max PPFD in bloom phase is moderate and depends on the installation height, usually adjustable to optimize the light received by the plants on each shelf.
For a 820 W horticultural LED (like the Photonican Aurora 820W Pro), PPF is observed around 2400-2525 µmol/s with an efficiency of 3.0 to 3.08 µmol/J. At about 30 cm height, PPFD is at maximum and decreases by about 4% if the lamp is hung a little higher, favoring better light uniformity.
In comparison, the real gain in grams per watt (g/W) is notably higher with these high-efficiency 820 W LEDs compared to the classic LEDs often used in racks. The G18 system, despite lower power, optimizes production thanks to multi-level lighting, effective ventilation, and precise height management, offering a very good compromise between modularity and performance.
For intensive cultivation with high PPFD and gain in g/W, high-power 820 W LEDs are more efficient. For a more modular installation and on shelves, the G18 remains a well-thought-out solution, combining light and controlled environment.
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