[ OUR TECHNOLOGY ]

 

GigaFactory & Modular Deployment

Design Details

Fuel

Primary Circulation
Cooling
Siting
Design
Refueling
Reheater
Fuel Management

Standard UO2 pellets at 3.5-<5% enrichment.

 

Natural convection, no external pumps.

Closed cycle air cooling for tertiary loop.

Flexible siting within 10 km of grid access, small footprint allows for on-site generation.

The fully modular design consists of one primary structure: an all-in-one capsule—a subterranean structure that houses the plant’s reactor, balance of plant, and thermal power systems.

No refueling during its 20-year operational lifetime, with a 99% capacity factor.

The dual steam turbines and reheater operate at 30% higher efficiency.

After its operational life, the reactor transitions to a vertical underground decay pool and dry storage solution, eliminating the need for separate decay pools or dry storage facilities.

[ OUR TECHNOLOGY ]

 

GigaFactory & Modular Deployment

Fuel

Standard UO2 pellets at 43.5-<5% enrichment.

Primary Circulation

Natural convection, no external pumps.

Cooling

Closed cycle air cooling for tertiary loop.

Siting

Flexible siting within 10 km of grid access, small footprint allows for on-site generation.

Design

The fully modular design consists of one primary structure: an all-in-one capsule—a subterranean structure that houses the plant’s reactor, balance of plant, and thermal power systems.

Refueling

No refueling during its 20-year operational lifetime, with a 99% capacity factor.

Reheater

The dual steam turbines and reheater operate at 30% higher efficiency.

Fuel Management

After its operational life, the reactor transitions to a vertical underground decay pool and dry storage solution, eliminating the need for separate decay pools or dry storage facilities.

[ What we do ]

Cost-Effectiveness &
Economic Benefits

Cost Reductions

By removing unnecessary components and simplifying construction, the N1 reactor cuts costs by up to 50% compared to conventional power plants. This includes:

No need for decay pools, dry storage buildings, or control rooms.
Elimination of large cooling towers and secondary control structures.

Compact Footprint

With a footprint of only 4.5 meters in radius, N1 is a fraction of the size of traditional power plants, making it an ideal solution for remote or space-limited locations.

[ What we do ]

Cost-Effectiveness & Economic Benefits

Cost Reductions

By removing unnecessary components and simplifying construction, the N1 reactor cuts costs by up to 50% compared to conventional power plants. This includes:

No need for decay pools, dry storage buildings, or control rooms.
Elimination of large cooling towers and secondary control structures.

Compact Footprint

With a footprint of only 4.5 meters in radius, N1 is a fraction of the size of traditional power plants, making it an ideal solution for remote or space-limited locations.

Technology Highlights

We’ve enhanced conventional, proven technology with innovative, smart engineering, integrating all parts into a underground installed “super safe capsule” This super safe green capsule has the advantage to not have spent fuel.

PWR reactor

Our technology uses a Pressurized Water Reactor (PWR) with light water as the primary cooling circuit, similar to 80% of the world’s nuclear power plants.

Reheater
N1 is the only reactor in the world utilizing dual steam turbines and reheater technology, making it 30% more efficient than any nuclear power plant currently available.
Cooling
The cooling system uses natural convection, eliminating the need for pumps.

Spent Fuel

At the end of its operational life, the reactor transitions to a decay pool and dry storage solution for over 100 years, eliminating the need for external handling of spent fuel.

Maintenance

Nuclear plants typically require regular refueling, repairs, and part replacements, taking weeks to manage spent fuel. The process is both time-consuming and costly.

Rapid Construction
We build and deploy N1 reactors in under one year, significantly shorter than the typical 10+ year timeline for conventional nuclear power plants, which require billions of dollars and a workforce of over 700.

Efficiency

The N1 reactor is 30% more efficient than any other reactor due to its unique all-in-one capsule and reheater technology.

Energy Output

The N1 provides uninterrupted power for 50,000 people for 20-30 years without the need for refueling.

[ Nuclearis ]

Gigafactory for nuclear

The N1 reactor’s design addresses significant challenges faced by traditional nuclear reactors, such as high investment costs and the complexities of spent fuel management. By integrating all essential components into a single module, the N1 reactor minimizes on-site construction efforts and maximizes factory-based manufacturing efficiencies.

Our strategy for deploying a fleet of modular microreactors represents a groundbreaking shift in energy solutions. Our 100% gigafactory-built approach significantly reduces project risk and shortens deployment time from 6-10 years to just one year.

[ SMART & SAFE ENERGY ]

Nuclear energy for sustainable

Our strategy for deploying a fleet of modular microreactors represents a groundbreaking shift in energy solutions. Our 100% gigafactory-built approach significantly reduces project risk and shortens deployment time from 6-10 years to just one year.

The N1 reactor’s design addresses significant challenges faced by traditional nuclear reactors, such as high investment costs and the complexities of spent fuel management. By integrating all essential components into a single module, the N1 reactor minimizes on-site construction efforts and maximizes factory-based manufacturing efficiencies.

[ SMART & SAFE ENERGY ]

Nuclear energy for sustainable

Our strategy for deploying a fleet of modular microreactors represents a groundbreaking shift in energy solutions. Our 100% gigafactory-built approach significantly reduces project risk and shortens deployment time from 6-10 years to just one year.

The N1 reactor’s design addresses significant challenges faced by traditional nuclear reactors, such as high investment costs and the complexities of spent fuel management. By integrating all essential components into a single module, the N1 reactor minimizes on-site construction efforts and maximizes factory-based manufacturing efficiencies.

Transported by truck

This method enhances delivery certainty by utilizing standardized commercial components, which are transported by truck and directly deployed on-site.

 

Read more +

Compact footprint

With a compact footprint of only a 4.5-meter radius, our microreactors are a fraction of the size of conventional power plants, revolutionizing the future of energy production.

 

Read more +

[ @energyis ]

News & Blog

[ @energyis ]

News & Blog

[ SMART & SAFE ENERGY ]

Energy as a service

Our EaaS model allows you to focus on your core business while we invest, develop, operate, and maintain your energy requirements.

Through our Energy as a Service model, we intend partner with leading industrial and real estate customers and suppliers to continuously deliver and develop reliable, sustainable, energy efficient, and competitive solutions for our societies.