From first megawatt

to long-term supply.

Four ways we deliver power.

Some projects need power fast. Others need a lower cost per kilowatt-hour, around-the-clock supply, or an asset you own. Tell us what matters most, and we'll combine engines, turbines, solar, wind, and battery storage to deliver the power you need, on the fuel supply that works for your location.

Bridge power

 PRIORITY: SPEED 

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Your operation can't wait.

Flexible power for construction, expansion, outages, and grid-connection delays. Modular capacity, with a route to permanent supply.

  • Rapid deployment
  • Tailored contracts

How bridge power works

We size generation, storage, and supporting infrastructure around your demand. Deployment dates depend on equipment availability and site readiness.

Contract options: mobile PPA, or capacity and energy charges.

Hybrid power

 PRIORITY: COST 

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More sources. One system.

Solar, wind, batteries, and dispatchable generation engineered together. Reliable energy focused on the total cost per kilowatt-hour.

  • Lower fuel exposure
  • Long-term supply

How hybrid power works

Your load profile determines the balance between renewable energy, storage, and firming from engines or the grid. We evaluate cost, reliability, and dispatch as one system.

Contract options: PPA, owned plant, or EPC with O&M.

Baseload power

 PRIORITY: AVAILABILITY 

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Power for the long run.

Engine and turbine plants for utilities and large industrial loads. Pipeline gas or LNG, with performance and availability defined in the contract.

  • Dispatchable capacity
  • Tolling agreements

How baseload power works

We develop the plant around your fuel supply and electricity demand. Under a tolling agreement, the offtaker supplies fuel while AmpDura delivers conversion, operation, and contracted availability.

Contract options: tolling agreement, long-term PPA, or EPC.

Build-to-own power
PRIORITY: OWNERSHIP

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Your plant. Your way.

Prefer to own the asset? We engineer, finance, build, and commission the plant, then transfer it to you at handover or at the end of a set term. We also offer ongoing operations and maintenance.

  • Flexible financing
  • Ongoing O&M

Contract options: equipment supply, EPC, EPC with O&M, BOT, or BOOT.

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Brief

1. Start with the load.

Demand, location, fuel, grid access, and your required start date define the brief. The operation comes first.



Design

2. Find the right energy mix.

We assess generation, renewables, and storage as one system, comparing delivered energy cost, reliability, and operating conditions.



Agreement

3. Make the commitment clear.

Capacity, energy pricing, responsibilities, and performance are agreed upon upfront, with a contract that fits your project.



Delivery

4. Bring the power on.

Installation, commissioning, and ongoing operation turn the plan into dependable supply on your site.


HYBRID POWER ON SITE.

Two example configurations. These are illustrative. Actual design depends on your site, load, and fuel.

Mining.
Continuous power. Make every kilowatt count.

Generators provide dispatchable power. Solar PV supplies daytime energy. Batteries help balance the system and shift solar energy into later hours. Engineered together, they support the mine’s operating load while reducing reliance on fuel.

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Island decarbonization.
A transition built around the plant you already have.

An island needs power around the clock. Integrate solar and batteries alongside its HFO and diesel plant to target lower fuel consumption and emissions, while retaining dispatchable generation for continuity.

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More from the sun.
More control over power.

Solar produces energy. Batteries make it more flexible.

We size and integrate both with your generation and demand profile.

Solar PV
Generate energy on site and reduce daytime fuel demand.

Battery storage
Shift available energy, manage peaks, and support system stability.

Integrated controls
Coordinate generation, storage and load as one power system.

Achievable fuel and emissions reductions depend on your load profile, site conditions, and system design.

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