

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This fuel cell stack is designed to serve two functions. It can be used in a standalone configuration to power a remote facility or operation, but multiple T-2500 units can also be connected to achieve a total power output of 5kW or higher. This flexibility allows this fuel cell stack to be deployed in a wider range of configurations. While this flexibility is extremely useful, this fuel cell stack still has the same advantages as it is designed to operate in rural locations and areas. The modular configuration of this fuel cell enables emission-free operation in more locations while being environmentally friendly.
Features:
Component List:
Specification | Value |
---|---|
Rated Power | 0 to 2,500 W @ 20°C and 101.3 kPa |
Current | 0 to 47 A @ 54 V |
Voltage | 43.2 to 57.6 V DC |
Voltage Ripple | ±1 V |
Controller Dimensions (W×D×H) | 430 mm × 550 mm × 88 mm |
Stack Dimensions (W×D×H) | 430 mm × 550 mm × 356 mm |
Controller Weight | 13.5 kg |
Stack Weight | 40.3 kg |
Operating Temperature Range | −10°C to +45°C (additional heating required below 0°C) |
Recommended Starting Temperature | Above 5°C |
Relative Humidity | 0–95% Non-condensing |
Communication | RS232 |
Fuel | Hydrogen and air |
Cooling | Air (built-in cooling fan) |
Inlet Pressure H₂ | 0.55–0.75 Bar |
Hydrogen Purity | ≥99.995% dry H₂ |
Hydrogen Consumption | ≤0.78 Nm³/kWh (average at maximum load) |
Startup Time | ≤2 minutes at ambient temperature |
System Efficiency | ≥42% at peak power |
Efficiency Reduction Due to Temperature | 1.25% per °C above 40°C |
Efficiency Reduction Due to Altitude | 3.5% for every 500 m above 1,000 m |
Maximum Noise | Normal operation: <70 dBA |
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This fuel cell stack is designed to serve two functions. It can be used in a standalone configuration to power a remote facility or operation, but multiple T-2500 units can also be connected to achieve a total power output of 5kW or higher. This flexibility allows this fuel cell stack to be deployed in a wider range of configurations. While this flexibility is extremely useful, this fuel cell stack still has the same advantages as it is designed to operate in rural locations and areas. The modular configuration of this fuel cell enables emission-free operation in more locations while being environmentally friendly.
Features:
Component List:
Specification | Value |
---|---|
Rated Power | 0 to 2,500 W @ 20°C and 101.3 kPa |
Current | 0 to 47 A @ 54 V |
Voltage | 43.2 to 57.6 V DC |
Voltage Ripple | ±1 V |
Controller Dimensions (W×D×H) | 430 mm × 550 mm × 88 mm |
Stack Dimensions (W×D×H) | 430 mm × 550 mm × 356 mm |
Controller Weight | 13.5 kg |
Stack Weight | 40.3 kg |
Operating Temperature Range | −10°C to +45°C (additional heating required below 0°C) |
Recommended Starting Temperature | Above 5°C |
Relative Humidity | 0–95% Non-condensing |
Communication | RS232 |
Fuel | Hydrogen and air |
Cooling | Air (built-in cooling fan) |
Inlet Pressure H₂ | 0.55–0.75 Bar |
Hydrogen Purity | ≥99.995% dry H₂ |
Hydrogen Consumption | ≤0.78 Nm³/kWh (average at maximum load) |
Startup Time | ≤2 minutes at ambient temperature |
System Efficiency | ≥42% at peak power |
Efficiency Reduction Due to Temperature | 1.25% per °C above 40°C |
Efficiency Reduction Due to Altitude | 3.5% for every 500 m above 1,000 m |
Maximum Noise | Normal operation: <70 dBA |
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