Data Center Generators | 400V/480V

PowerLink 400V‑480V containerised gensets deliver stable standby power from 1,600kW to 3,000kW, purpose‑built for hyperscale AI and colocation data centres.

Optimised for direct connection to on‑site low‑voltage distribution networks, they eliminate extra transformer costs and simplify commissioning. Fully ready for multi‑unit synchronisation and parallel operation, these robust units support N+1 / 2N redundancy for Tier 3‑4 facilities. Intelligent PLC control and rigorous full‑load testing guarantee continuous, reliable backup protection for GPU‑intensive compute workloads.

  • 50HZ
  • 60HZ

1600KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 86dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

1800KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 86dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

2000KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

2400KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

2700KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

3000KW

50HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 400V
Emission Standard: Non
Compliance with Standards: CE

1600KW

60HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 480V
Emission Standard: EPA
Compliance with Standards: CE

1800KW

60HZ
Data Center Gensets
Reliable Power for AI Data Centers

Fuel Tank Capacity: 2400L
Noise Level: 87dBA@7 meters
Rated Volatge: 480V
Emission Standard: EPA
Compliance with Standards: CE

Visual Details

FAQ

How to determine generator‑set capacity?

Sizing for data‑centre gensets shall consider these factors:
  1. Total IT load: Aggregated power draw of servers, storage and networking hardware.
  2. PUE requirements: Power‑Usage‑Effectiveness determines power demand for non‑IT loads such as cooling and lighting.
  3. N+1 redundancy: Data centres commonly adopt N+1 or 2N redundancy so that remaining units can carry full load if one unit fails.
  4. Future expansion: Reserve 20%‑30% capacity margin.
  5. Parallel‑operation considerations: When multiple gensets run in parallel, avoid excessively large single‑unit ratings to prevent excessive power shortfall upon single‑unit failure.

What product series are provided from PowerLink?

  • Low‑voltage series: 400V/415V/480V ,with power ranging from 2000kW to 3750kW.
  • High‑voltage series: 10.5kV/11kV/13.8KV ,with power ranging from 2500kW to 3750kW.

 

What are the differences between 400V~480V and 4.16KV~13.8KV generator sets? How to select?

Selection advice: For small‑to‑medium data centres (single‑unit capacity ≤3000kW), 400V~480V units are preferred for direct integration with existing low‑voltage distribution. For large data centres (single‑unit capacity ≥3000kW) with high‑voltage infrastructure, 4.16KV~13.8KV units are recommended to reduce transmission loss and cable costs.

What is the difference between PRP and DCP?

  • PRP (Prime Power Rating): The maximum power the genset can deliver continuously under standard operating conditions, with a 10% overload capability, for applications requiring prime‑power supply.
  • DCP (Data Center Power): A power rating defined specifically for data‑centre operation; it represents the recommended continuous operating power for data‑centre loads.
In selection, regular operating load of the data centre shall not exceed the DCP rating. PRP may be referenced for short‑term overload conditions.

What is the difference between EFC and ECU fuel‑control systems?

  • EFC (Electronic Fuel Control): Regulates fuel‑injection quantity via electronic signals to stabilise speed and frequency. Proven and easy to maintain; suited for applications without extreme governing‑accuracy demands.
  • ECU (Electronic Control Unit): Full electronic control integrating governing, protection and monitoring functions. Delivers superior control precision and supports richer communication and monitoring protocols.

All products provided by our company are energy products
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