Company
We started with a question
that no one wanted to ask.
If energy and water are the bottlenecks for artificial intelligence, why do we keep building in the only place where both are scarce?
Timeline
Six years.
The calculation on a napkin
Three thermal-control engineers calculate how much radiating surface it would take to dissipate a GPU rack in orbit. The number is smaller than they expected.
ORB-01 · demonstrator
A 12U CubeSat with a single commercial GPU survives nine months and delivers the first inference result computed outside the atmosphere.
Series A · USD 48M
Capital is raised to industrialize the node. Land is secured for the Quito station at an altitude of 4,180 meters.
First complete plane
Eight ECU-1 nodes reach equatorial orbit. The constellation brings its first production customer online.
Series B · USD 210M
Three operational planes, four ground stations, 28.8 petaflops deployed, and 99.98% availability.
Block II
Twelve more nodes and the first dedicated optical switch. The target: 100 petaflops in orbit before the end of 2027.
Backing
Who stands with us.
Series A and B, plus infrastructure debt.
Quito, Toulouse, and Singapore.
AI laboratories, Earth observation, and civil defense.
The figure no terrestrial data center can claim.
The next step
One hundred petaflops overhead
before 2028.
We are opening capacity for sustained training workloads and for operators that need sovereign computing beyond any terrestrial jurisdiction.
ORBITAL is a demo. The constellation propagates using real orbital mechanics, telemetry is calculated in the browser, and every page is built by hand — with no templates, libraries, or external dependencies.
It is what we do when a brand needs to look like what it aspires to become.
