[ About us ]

The cleanest, fastest, and most affordable power solutions for data centers.

​Founded by a team of industry veterans with decades of experience developing over 10 GW of renewable energy projects, including microgrids, we make clean, on-site power at the speed of tech.


[ Our Story ]

An unsustainable rise in electricity prices and 5-to-10 year wait times for grid connections spurred us to act.

In 2024, we saw that data center builders and other energy-intensive businesses were facing skyrocketing power costs and impossibly long wait times to connect to the electric grid. We realized that our decades of experience building industrial-scale power in the form of renewable energy and gas-battery microgrids make us ideally suited to solving these problems.

We started CleanAI that year to build on-site microgrids that dramatically reduce connection times––allowing data centers and other industrial facilities to come online years early while lowering costs for our clients and the existing rate payers on the grid.

The powered land industry is rife with incomplete solutions that are incapable of delivering major infrastructure projects or that are undertaken with little regard for the impacts they will have on local communities. CleanAI’s goal with every project is to be invited by our clients and the local community to build follow-on projects in the area.

[ About ]

The CleanAI difference


Our team’s deep expertise and experience.

In a complex, high-stakes field, CleanAI’s leaders have decades of experience in all aspects of electricity sourcing, production, and financing. We have built dozens of major projects, with our largest being 2 gigawatts. We have the experience and expertise to ensure that your team can navigate any challenges on your way to success—accelerating deployment from years to mere months.


Every project begins with our proprietary technology-enabled development process.

We leverage GIS data, machine learning, and weather modeling to optimize energy yield and minimize land use, ensuring that projects are efficient, affordable, and sustainable. This process dramatically cuts risk and elevates project success rates to far above industry standards.


​​Sustainability is at the core of everything we do.

CleanAI approaches every project with sustainability first. This includes minimizing local pollution and water use while creating permanent jobs and economic growth. Our platform is technology agnostic but every project is designed to enable low-carbon energy to create a sustainable future for all and a sustainable business plan for our investors.

CleanAI’s sustainable approach

A no smoking sign with a factory emitting smoke, crossed out with a diagonal line.

Clean energy is in our name. All of our solutions enable low carbon power.

Black and white icon of a speaker with a line crossing it out, indicating no sound or mute.

Our project design and technology avoids noise pollution in local communities.

White water droplet icon on a black background.

Employing closed loop data center cooling and recycled water, our projects use less fresh water than typical restaurants or golf courses.

Icon of a construction worker wearing a hard hat and overalls.

Our projects create long-term, high-paying jobs for their local communities.

Demand volatility can threaten grid operation

Protecting electric grid reliability


Data center power demands can swing wildly in a matter of seconds, as shown at the chart to the right. This volatility can wreak havoc on the grid and threaten the electricity reliability that we all depend on. Designed by a team with nearly 20 years of battery and microgrid experience, CleanAI's on-site power battery energy storage systems (BESS) provide a crucial safety layer that smooths the demand placed on the grid, riding through grid disturbances instead of threatening grid reliability.

A line graph titled 'AI Workload Ramp Rate Mitigation With Energy Storage' showing normalized power draw over time in seconds. The graph includes lines for original power draw, updated power draw, energy storage charge, and energy storage discharge, with different colors for each.