Aerial view of a utility-scale solar array at golden hour

Generation portfolio

Power for every grid. Every market. Every need.

Its Electric Ai develops a diversified generation portfolio — utility-scale solar, distributed small wind, dispatchable gas turbine, modular nuclear, and waste-to-energy — engineered to deliver reliable power across every grid context and geography.

Platform overview

Five sources. One platform.

A diversified generation mix is not just a risk management strategy — it is the foundation of a resilient grid. Its Electric Ai develops across five complementary generation technologies, each selected for its role in delivering reliable, dispatchable, and sustainable power.

Capacity figures, project data, and operational statistics shown on this page are illustrative preview content. Verified company data will replace these figures once confirmed.

01Utility scale

Solar

Scalable, domestic, and increasingly cost-competitive.

Utility-scale solar is the fastest-growing generation technology globally. Its Electric Ai develops field-scale solar arrays designed to add flexible, domestic generation capacity to growing grids — from greenfield sites to co-located generation and storage configurations.

Scale
Utility scale
Dispatch
Variable / storage-paired
Application
Grid supply, industrial load
  • Greenfield and brownfield site development
  • Grid-connected and behind-the-meter configurations
  • Battery storage co-location
  • EPC and O&M partnership models
Solar power generation infrastructure

Utility scale

Scalable, domestic, and increasingly cost-competitive.

02Distributed generation

Small wind

Local generation for resilient, distributed grids.

Its Electric Ai focuses on small and distributed wind generation — turbine systems designed for local deployment near infrastructure, communities, and industrial sites. This is not large utility-scale wind: it is practical, distributed generation that strengthens local grid resilience without the footprint of major wind farms.

Scale
Small / distributed
Dispatch
Variable
Application
Local grid, remote sites
  • Small turbine systems for distributed deployment
  • Rural, remote, and infrastructure-adjacent sites
  • Community and industrial power applications
  • Hybrid wind-solar-storage configurations
Small wind power generation infrastructure

Distributed generation

Local generation for resilient, distributed grids.

03Dispatchable

Gas turbine

Responsive power when the grid needs it most.

Gas turbine generation provides the dispatchable capacity that variable renewables cannot — fast-start, reliable, and capable of responding to grid demand in minutes. Its Electric Ai develops gas turbine projects for grid stability, peak demand management, and industrial power resilience.

Scale
Utility to industrial
Dispatch
Fully dispatchable
Application
Grid stability, peak demand
  • Open cycle and combined cycle configurations
  • Fast-start peaking plant development
  • Industrial and grid-scale applications
  • Fuel flexibility and transition-ready design
Gas turbine power generation infrastructure

Dispatchable

Responsive power when the grid needs it most.

04Modular baseload

Mini nuclear stations

High-density baseload for local energy security.

Small modular reactors and mini nuclear stations represent the next generation of baseload power — compact, factory-built, and deployable where large conventional nuclear is not viable. Its Electric Ai positions modular nuclear as a cornerstone of local energy security and long-term grid resilience, particularly in markets where reliable baseload is scarce.

Scale
Small modular / mini
Dispatch
Continuous baseload
Application
Grid resilience, energy security
  • Small modular reactor (SMR) development
  • Mini nuclear station siting and permitting
  • Modular factory-build and deployment models
  • Long-term baseload supply agreements
Mini nuclear stations power generation infrastructure

Modular baseload

High-density baseload for local energy security.

05Circular power

Waste-to-energy

Turning waste streams into reliable electricity.

Waste-to-energy systems convert municipal and industrial waste into usable electricity — reducing landfill dependency while generating consistent, dispatchable power. Its Electric Ai develops waste-to-energy projects as part of integrated circular economy programmes, particularly in markets with growing urban waste management challenges.

Scale
Municipal to industrial
Dispatch
Consistent / dispatchable
Application
Urban power, waste management
  • Municipal solid waste combustion systems
  • Industrial waste stream processing
  • Integrated waste management and power programmes
  • Circular economy and sustainability frameworks
Waste-to-energy power generation infrastructure

Circular power

Turning waste streams into reliable electricity.

Generation partnerships

We're looking for the right partners to build with.

Its Electric Ai is actively seeking development partners, EPC contractors, equipment suppliers, utilities, and government agencies to advance generation projects across all five technology streams globally.

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EPC contractors
Equipment manufacturers
Utilities & offtakers
Government agencies
Development partners
Infrastructure finance

Ready to build

Generation that fits the grid. And the market.

Whether you're a utility seeking new capacity, a government developing energy security, or an investor looking for long-term infrastructure returns — we want to hear from you.

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