24 Hour SOLAR
The Technology

One Rotating Platform, Three Outputs

One design, three outputs: PV electricity, steam-engine electricity, and dispatchable process heat.

The Gap We Fill

The AI energy crisis needs power nothing else on the market can provide — sub-utility scale, multi-day dispatchable power with simultaneous electricity and process heat. Nobody currently serves this fragmented middle market of edge data centers, small-to-mid industrial sites, and rural communities.

Solar PV

Cheap and proven — but dead at night. No storage, no dispatchability.

Batteries

Fast response — but $300–500/kWh installed makes multi-day storage uneconomic, with added lithium hazard.

Utility CSP

Dispatchable — but needs $1B+ and 50MW+ minimum scale. Slow to permit and build.

Diesel

Reliable — but $0.30–0.40/kWh, dirty, and the real baseline it's replacing.

How It Works

From sunlight to dispatchable power, in one pass.

Process flow diagram: Sunlight to Special Heliostat, splitting to PV Cells and Lip Mirror, into a 7-Day Molten Salt Reservoir, to Steam Generator and Engine, producing Combined Output of AC and DC electricity plus process heat.
Sunlight enters the heliostat once. The visible band is transmitted to PV cells for direct DC electricity; the infrared band is reflected onward to thermal storage and, from there, to a steam generator and compound engine for AC electricity and dispatchable process heat.