Advanced robotic spacecraft approaching a metal asteroid in orbit

Source metals from space

We build the robotics to analyze, capture, and process metal-rich asteroids for in-space and terrestrial use.

ASTEROID ANALYSIS

The best asteroid is one you never capture.

We analyze before we act, so you only commit to targets worth the trip from the belt. No wasted launches, no wasted years.

Robotic probe scanning a rocky asteroid in deep space

Metal-rich targeting

Spectral surveys and composition models pick the asteroids worth a second look, so you skip the rock.

Orbital trajectory lines around Earth and Moon

Trajectory mapping

We chart the cheapest fuel path from the belt to L4 or L5, keeping capture costs low from day one.

Data visualization showing asteroid metal composition on a monitor

Yield projections

Before capture, we estimate recoverable metals per element, so you know what you're buying.

Engineer reviewing asteroid data on a large screen in a control room

Risk screening

Rotation, structure, and surface stability are checked before we commit a robot to the chase.

WHAT PARTNERS SAY

Asteroid capture, delivered

Our partners rely on Stamper Drilling Galactic for analyzed, captured, and processed metals delivered to L4 and L5.

Stamper's team identified two high-purity nickel asteroids in our target zone and delivered their composition profiles ahead of schedule.

Marisol Vega

Marisol Vega

Orbital Assemblies Lead, Helios Station

We sourced feedstock from their L4 stockpile for our first in-space foundry run. The processing specs were exact.

Dmitri Kane

Dmitri Kane

Foundry Systems Manager, Arcadia Forge

Their capture and retrieval plan for the C-type we flagged was methodical and precise. Projected yields met every estimate.

Leilani Akana

Leilani Akana

Resource Strategy Analyst, Pacific Orbital

OUR REACH

From asteroid belt to Earth orbit

We capture metal-rich asteroids and park them in stable orbit, ready for processing into usable elements for Earth and space.

2

Orbit points

Asteroids are staged at L4 or L5, where processing systems reside.

1

Focused team

A lean team applies advanced robotics to every capture mission.

1

Pipeline stage

From analysis to delivery, our workflow is fully built out.

Metal-rich asteroids floating in space near Earth's orbit

Plan your asteroid capture with Stamper Drilling Galactic

Tell us about your infrastructure needs. We'll help you secure metal-rich asteroids from L4 and L5 orbit for processing.

Service details

What happens after an asteroid is captured?

Once parked at L4 or L5, our processing systems break the asteroid down into usable elements for delivery to Earth or sale to space infrastructure builders.

FAQ

Two-stage capture in under 200 days

Common questions, straight answers. Or just ask us directly.

Which asteroids does Stamper Drilling Galactic target?

We target metal-rich asteroids in the belt, prioritizing M-type bodies with high iron, nickel, and cobalt content. Our robots analyze composition first, then flag the most valuable candidates for capture.

How does the capture process work?

Robots analyze the target's orbit and surface, then match velocity to guide it into a new trajectory. The asteroid is then placed in a captive orbit at Earth's L4 or L5 point, where your processing systems already wait.

Where are captured asteroids stored?

At Earth's L4 or L5 Lagrange points, where gravitational forces keep the asteroid stable. These positions are ideal staging points for both Earth delivery and direct sale to space-based infrastructure builders.

What happens after an asteroid reaches L4 or L5?

Processing systems at the staging point refine the asteroid into usable elements. From there, you receive either refined material delivered to Earth or feedstock sold directly to customers building new space infrastructure.

Can the elements be used for terrestrial applications?

Yes. Delivered material is suited for both terrestrial use and space infrastructure. We can tailor delivery and processing based on your end use, and we're happy to discuss specifications on a project basis.

What are the typical lead times?

Lead time depends on target distance and orbital alignment. We can give you a timeline under your specific mission parameters, so reach out with your infrastructure needs and we'll scope it from there.

Still have questions?

Send a message and we'll get back to you with practical answers, not jargon.