The Future of
Space Infrastructure

Robotic factories in orbit. Hardware built for space,
not the ride up.

Isometric wireframe of an orbital warehouse with modular storage racks on a central truss.
01 โ€” Speed

Hours to deployment, not stuck in a launch queue.

Pre-staged modular parts sit in dense racks at an orbital warehouse. From the shipyard, assets can be assembled, commissioned, and tasked in hours or days, instead of weeks or years with launch vehicle queues.

02 โ€” Cost

Stop paying for the ride up.

Escape the engineering, testing, and build tax of origami structures or launch loads. You design for in-space operations, not a few minutes of ascent, and we do the rest.

Wireframe of a small dense pallet of tubes, avionics boxes, and rolled solar panels beside a much larger sparse circular phased-array satellite.
03 โ€” Mass

Build for space, not for launch.

Structures meant only for orbit do not need launch-survival overbuild. Shed the mechanisms. Delete parasitic structural mass. Build lighter, cheaper, and at sizes a fairing cannot hold.

Work

Warehouse, join, assemble and deploy

Warehouse & staging

Commercial off-the-shelf equipment sits packed in racks, staged off the critical path, ready to be pulled onto the line on demand.

Laser welding and cutting

Weld and cut structural components with high tolerance, or reduce cost with low-tolerance, high-speed assembly. Adaptable systems meant for any type of structure.

Robotic assembly

Dexterous manipulators pick and place avionics, sensors, comms and propulsion systems onto the structure.

On-demand assembly

The asset is assembled, checked out, commissioned, and tasked directly in orbit or on the lunar surface. Taking launch vibration out of the equation ensures all sensors and systems work as they are deployed.

Products

in-development

Daybreak Laser System

A space-rated laser welding and cutting tool for in-space assembly and repair. The first piece of the factory.

Coming soon

Orbital and Lunar Assembly

Coming soon

Space as a service