Purpose-built for persistent operational logistics, Flagship expands the proven architecture with increased propellant capacity for higher-energy missions, larger payloads, and return-to-LEO operations.
Orbital Flagship Satellite Docking
Delta-v
0 + KM/S
THRUST
0 LBF
HOSTED PAYLOAD
0 KG
LEO → GEO → LEO Delivery
0.1 KG

Built to persist.

Astraeus Flagship (10K300) extends the Astraeus platform through increased propellant capacity while retaining the same reusable propulsion and cryogenic management systems proven across the family. Designed to transport larger satellites or multiple payloads to higher-energy orbits, Flagship can return to low Earth orbit for refueling, enabling a new model of persistent, reusable space operations.

Engineered for orbital dominance.

CASE PAYLOAD DELTA—V TIME

HOSTED PAYLOAD

300 KG
10 KM/S
—

LEO→GEO (LEO RETURN)

3,200 KG
8.8 KM/S
6.0 HRS

LEO→GEO (ONE WAY)

6,600 KG
4.4 KM/S
6.0 HRS

LEO→MEO (LEO RETURN)

7,000 KG
7.2 KM/S
3.5 HRS

LEO→TLI (LEO RETURN)

7,500 KG
6.75 km/s
3 DAYS

Configurations

• Astraeus Defender

Responsive Defense Missions
• Astraeus Flagship

Persistent Orbital Logistic

Applications

Transport

Heavy Payload Delivery:
Move large payloads between orbital destinations with the capacity and performance required for complex logistics missions.

Reusable Operations:
Return to orbit again and again through refueling and reusable mission profiles, extending capability while reducing the need for replacement vehicles.

Orbital Infrastructure:
Support the deployment of future stations, depots, servicing platforms, and other critical infrastructure that enables long-term operations in space.

Modular Mission Platform:
Integrate imaging, robotic docking, servicing, cargo, and future payload systems through a flexible architecture designed to evolve alongside mission requirements.

Technology

• Typhon

Reusable High-Thrust Propulsion
• Boreas

Thermal Management For Persistent Mobility
• Test To Orbit

Our Hardware First Culture & Approach