Robotic infrastructure for a permanent presence on the Moon.
Bloomstone Technologies builds the machines that let a lunar base grow from what the Moon already provides — so every launch delivers capability, not just cargo.
Get in touchA lunar base that builds itself.
NASA and its partners are committed to a sustained human presence on the lunar surface. Today, everything that presence depends on — power, shelter, roads, spare parts — has to be launched from Earth, at a cost measured in thousands of dollars per kilogram.
Bloomstone exists to change that equation. We are developing robotic systems that survive the lunar environment and turn local material into working infrastructure, so that each mission adds to a base that compounds over time rather than one that must be resupplied indefinitely.
Our long-term vision is a self-growing robotic industrial base on the Moon: a foundation for exploration, science, and the economy that follows.
Hardware first. Built for the surface.
We are an engineering-led company with deep roots in flight hardware, power systems, and production test. We focus on the unglamorous problems that decide whether machines keep working after the first lunar night.
Survive the environment
Abrasive dust, vacuum, radiation, and 300 °C temperature swings. We design mechanisms and electronics to operate there for years, not days.
Build from the Moon
Local material is the only supply chain that scales. We work toward robots that make useful structures and components from lunar regolith.
Grow with the program
We develop alongside NASA's lunar architecture — from early feasibility work and high-risk technology development toward delivered surface systems.

Andrew Lee
Andrew founded Bloomstone after two and a half years on SpaceX’s Starlink program, where he lived on the critical path — repeatedly taking ownership of precision-demanding problems that carried programmatic risk and seeing them through to delivery. That work helped build what is today the highest-volume space battery production line in the world.
He holds a degree in aerospace engineering from the University of Colorado Boulder, with graduate work in electrical engineering and robotics at Stanford University. His technical background spans electric motors and motor control, power electronics, and the test infrastructure that qualifies hardware for flight — the same disciplines that decide whether a machine keeps working in some of the most unforgiving environments in the solar system.
Working on the lunar surface? We'd like to talk.
We welcome conversations with agencies, primes, research groups, and engineers who share the goal of a permanent lunar presence.
andrew.lee@bloomstonetech.com