Reliance Green Energy Pte Ltd supplies the cutting-edge Archimedes Liam-F1 Wind Turbine Series in Singapore.
Engineered with a nautilus-inspired, 3-blade aerodynamic spiral design, these compact urban micro-turbines capture multi-directional wind flows with near-silent operation.
Unlike conventional wind generators that need high open-field winds, the Liam-F1 features an ultra-low startup threshold under 1.0 m/s. It seamlessly generates clean power from ambient breezes, thermal updrafts, and continuous exhaust streams.
Each unit includes smart electromagnetic braking and automated load relief to safely withstand continuous wind speeds up to 36 m/s and peak gusts up to 45 m/s.
Reliance Green Energy Pte Ltd supplies the Archimedes Liam-F1 Wind Turbine Series—including the R-600 (500W), R-1200 (2000W), and R-1600 (5000W)—in Singapore. These high-efficiency wind turbines are built to capture airflow and generate micro-power across HDB balconies, apartment aircon exhaust ducts, shopping malls, and factory cooling towers.
Engineered for lightweight installations, residential roof layouts, HDB balconies, and apartment air conditioning duct exhausts. Features an ultra-low startup wind threshold to harvest power from micro-drafts.
Our benchmark urban generator, designed to bridge commercial shopping mall rooftops, institutional facilities, and residential blocks to harvest steady ambient wind gusts and rooftop thermal updrafts.
Heavy-duty micro-power build optimized for dense high-velocity structural draft sources like industrial factory cooling towers, central HVAC exhaust vents, and severe coastal micro-climates.
Dual automated electromagnetic braking logic engages dynamically if ambient drafts breach peak thresholds to prevent generator damage.
Bypasses harmful structural resonance or grid overload events instantly through combined electromagnetic braking circuits and automated internal load-relief structures.
Direct side-by-side engineering comparison between the Archimedes Liam-F1 R-600 urban micro-generator, the R-1200 commercial rooftop model, and the R-1600 heavy-duty flagship powerhouse.
| Parameter Variable | Model: R-600 | Model: R-1200 | Model: R-1600 |
|---|---|---|---|
| Product Classification | Vertical Wind Turbine | Vertical Wind Turbine | Vertical Wind Turbine |
| Rated Operational Power | 500W | 2000W | 5000W |
| Peak Power Threshold | 550W | 2050W | 5050W |
| Starting Wind Velocity | < 1.0 m/s | < 1.0 m/s | < 1.0 m/s |
| Cut-in Wind Threshold | < 3.0 m/s | < 3.0 m/s | < 3.0 m/s |
| Rated Wind Velocity | 13 m/s | 13 m/s | 13 m/s |
| Maximum Safe Draft Speed | ≤ 36 m/s (Instantaneous ≤ 45 m/s) |
≤ 36 m/s (Instantaneous ≤ 45 m/s) |
≤ 36 m/s (Instantaneous ≤ 45 m/s) |
| Rated DC Working Voltage | 12V / 24V | 24V / 48V | 12V / 24V / 48V / 96V |
| Rotor Wheel Diameter | 0.6 m | 1.2 m | 1.6 m |
| Turbine Assembly Length | 0.8 m | 1.4 m | 1.8 m |
| Package Dimensions | — | — | 1550 * 1610 * 1860 mm |
| Net / Gross Weight | 45 kg | 137 kg | 190 kg (Gross Weight) |
| Blade Component Count | 3 Blades | 3 Blades | 3 Blades |
| Stator Protection Class | IP54 | IP54 | IP54 |
| Working Temperature Band | -25°C to +45°C | -25°C to +45°C | -25°C to +45°C |
| Max Environment Humidity | Turbine ≤ 90% Controller/Inverter ≤ 80% |
Turbine ≤ 90% Controller/Inverter ≤ 80% |
Turbine ≤ 90% Controller/Inverter ≤ 80% |
| Maximum Operating Altitude | ≤ 4500 m | < 4500 m | ≤ 4500 m |
| Overspeed / Overload Safety | Electromagnetic Brake | Electromagnetic Brake | Electromagnetic Brake or Load Relief |
Engineered with an ultra-low startup threshold (< 1.0 m/s) and a silent nautilus-spiral blade design, the Archimedes Liam-F1 converts continuous urban airflow into clean, reliable energy across diverse Singapore environments.
Our team will help you inspect your space and design the best solar and wind energy system for your home or business.
Contact our Singapore team today for site evaluations and pricing details.
7030 Ang Mo Kio Ave 5, #08-16 Northstar @AMK, Singapore 569880
Assess whether airflow already produced by your cooling towers or mechanical ventilation system can support an engineered Liam-F1 Wind Turbines into wind-energy application.
Instead of treating cooling-tower discharge airflow only as waste, assess whether suitable airflow can support an engineered energy-recovery application.

Explore energy recovery from airflow your facility is already producing.

Review airflow, turbine positioning, structures, deflectors and electrical integration.

Suitable projects can progress from initial review to engineering, commissioning and handover.

A heavy-duty vertical-axis wind turbine for commercial and industrial applications including cooling towers, mechanical exhaust streams, factory HVAC systems and commercial rooftops in Singapore.
Liam-F1 wind turbines can be evaluated around different airflow opportunities—including cooling-tower discharge, aircon condenser exhaust, HVAC and ventilation outlets, warehouse or factory exhaust fans, rooftop wind and other recurring airflow sources.
Balconies, service yards and outdoor aircon compressor areas can be assessed for compact Liam-F1 installations using available ambient or condenser airflow.
Rooftops, HVAC areas and mechanical ventilation systems can be evaluated for suitable Liam-F1 airflow energy-recovery opportunities.
Aircon condenser discharge, chiller and HVAC exhaust airflow can be reviewed for the Liam-F1 model best suited to the available airflow and installation space.
Mechanical ventilation, warehouse exhaust fans and recurring industrial airflow can be assessed for engineered Liam-F1 turbine integration.
Large cooling-tower discharge airflow can be technically assessed for R-1600 installations, including positioning, deflectors, structure and electrical integration.
Facilities with rooftop aircon systems, function halls, kitchens and ventilation exhaust can be reviewed for suitable Liam-F1 applications.
A real commercial installation by Reliance Green Energy showing how the Liam-F1 Model R-1600 can be engineered around large industrial cooling towers to recover available discharge airflow.
Reliance Green Energy completed a dual Liam-F1 Model R-1600 installation at Infineon Singapore cooling towers. The project demonstrates how existing cooling-tower discharge airflow can be evaluated and engineered as an energy-recovery opportunity.
Use the Infineon Singapore installation as proven project reference and let Reliance Green Energy assess your site for a suitable Liam-F1 application.
Beyond industrial cooling towers, Archimedes Liam-F1 Wind Turbines can be evaluated around other recurring airflow sources such as air-conditioning discharge, mechanical ventilation, exhaust outlets and suitable rooftop airflow.
Sports complexes can operate multiple air-conditioning, ventilation and exhaust systems across indoor halls, gyms, changing rooms and other high-occupancy areas. These recurring airflow sources can be assessed for suitable Liam-F1 wind turbine applications.
Churches and large places of worship may operate air-conditioning and ventilation systems for worship halls, auditoriums, offices and community spaces. Existing airflow around these systems can be evaluated for suitable Liam-F1 applications.
Share your site with Reliance Green Energy. We can review the available airflow source, operating conditions and installation area to identify a suitable Liam-F1 model and installation approach.
A simple assessment path for homes, buildings and commercial or industrial facilities evaluating the Liam-F1 wind turbine series.
Tell us about your site, available airflow source, installation area and operating profile.
We review your application and the available airflow information.
Suitable opportunities progress to positioning, structure and integration review.
Receive a project-specific recommendation and next-step proposal.
Start with a site assessment and let our team review which Liam-F1 model and installation approach may be suitable for your location and available airflow.