Clean, Reliable & Zero-Emission Power Solutions

Our Hydrogen Fuel Cell Systems deliver clean, efficient, and dependable power by converting hydrogen directly into electricity through an electrochemical process. Unlike conventional generators, hydrogen fuel cells produce electricity with zero harmful emissions, making them an ideal solution for sustainable energy applications.

Designed for high efficiency, low maintenance, and quiet operation, our fuel cell systems provide continuous and reliable power for commercial, industrial, telecom, backup power, transportation, and renewable energy integration.

Key Features

  • Zero Emissions – Produces only water and heat as by-products.
  • High Energy Efficiency – Delivers more usable energy compared to traditional combustion engines.
  • Quiet Operation – Low noise levels suitable for indoor and outdoor installations.
  • Fast Start-Up – Rapid power delivery with minimal warm-up time.
  • Low Maintenance – Fewer moving parts reduce maintenance requirements and operational costs.
  • Scalable Design – Available in multiple power capacities to meet different application needs.
  • Reliable Performance – Continuous power generation for mission-critical operations.
  • Renewable Energy Compatible – Integrates seamlessly with solar, wind, and battery energy storage systems.

How It Works

A hydrogen fuel cell generates electricity by combining hydrogen and oxygen through an electrochemical reaction.

  1. Hydrogen enters the fuel cell stack.
  2. Oxygen is supplied from ambient air.
  3. The electrochemical process generates electricity.
  4. Heat and pure water are produced as the only by-products.
  5. Electricity powers connected equipment or charges battery storage systems.

No combustion occurs, resulting in cleaner, quieter, and more efficient power generation.

System Specifications

Category Parameter Value / Specification
Electrical Rated Power 5 kW
Current Range 0 – 210 A
Voltage Range 20 – 48 V
Mechanical Dimensions (W × L × H) 445 × 655 × 490 mm
Ingress Protection IP42 (System) / IP67 (Wiring & Electronics)
Anode Line Connections Swagelok Standard Fittings
Inlet Pressure 3 – 4 bar(g)
Hydrogen Quality ISO 14687:2019 Type I, Type II – Grade D
Cathode Line Components Integrated Air Compressor & Inverter
Requirements Fresh Air Supply, Depleted Air Extraction, Drainage for Condensed Water
Cooling Line Coolant DI Water & Glycol
TIN 65 – 75 °C
TOUT 75 – 85 °C
Other Interfaces Power Supply 12 V / 48 V
Communication CAN Interface

Efficiency Curve

System Boundaries

Available Models

Model Rated Power
FC-5 5 kW
FC-10 10 kW
FC-20 20 kW
FC-30 30 kW
FC-40 40 kW