Reusable Orbital Launch Systems Development

Reusable Launch Systems
Beyond Earth Orbit

AlgoForge Aerospace is an engineering-led launch company developing reusable rocket systems for orbital satellite deployment. The same vehicle architecture supports human suborbital spaceflight and lays the foundation for ultra-fast point-to-point Earth travel.

REUSABLE ORBITAL LAUNCH SYSTEMS
ROTARY DETONATION PROPULSION
HUMAN-RATED SUBORBITAL FLIGHT
HYPERSONIC POINT-TO-POINT TRAVEL
REUSABLE ORBITAL LAUNCH SYSTEMS
ROTARY DETONATION PROPULSION
HUMAN-RATED SUBORBITAL FLIGHT
HYPERSONIC POINT-TO-POINT TRAVEL
REUSABLE ORBITAL LAUNCH SYSTEMS
ROTARY DETONATION PROPULSION
HUMAN-RATED SUBORBITAL FLIGHT
HYPERSONIC POINT-TO-POINT TRAVEL

Future Alliances

/ TARGET_LIST: Strategic organizations identified for future cooperation.

Broadcasting Signal
Loading Geometry...
Interactive Model
Core Architecture

AF-60 Heavy Vehicle

Our flagship 60m heavy-lift vehicle engineered for large-scale orbital infrastructure and high-mass reusability.Combining a conformal aerodynamic framework with next-gen detonation propulsion to maximize payload fraction and minimize turnaround time.

Overall Height
60.0 m196.8 ft
Core Diameter
4.0 m13.1 ft
Stages
Two-stageFully Reusable
Payload to LEO
16,500 kg36,376 lb
Payload to SSO
12,000 kg26,455 lb
Thrust (SL)
36,000 kN15x VORTEX-1 Cluster
Propellant
LCH4 / LOXDeep Cryo

Mission Parameters

SYSTEMS ONLINE
OPTIMAL

1/10

vs Industry Avg

Cost Efficiency
Targeting < $2,500/kg to LEO.

NOMINAL

850 / 16,500

Kilograms

Payload Mass
SSO & LEO Constellation Class.

LOCKED

2028

Q4 Target

Launch Window
Orbiton-1 Demo Flight.

Crew Capability

Human Spaceflight
Enabled by Reusability

AlgoForge Aerospace is developing human-rated suborbital flight capability as a direct extension of its reusable orbital launch systems. No parallel vehicles. No separate architectures.

Initial missions focus on controlled suborbital space tourism and research flights, progressing toward ultra-fast point-to-point Earth travel.

3.5 G
Max G-Force
3 Days
Training
6 Crew
Capacity
View from orbit

View Simulation

Apogee: 110km

EXPANDING
ACCESS BEYOND
EARTH ORBIT.

Infrastructure for the next century.

AlgoForge Aerospace is an engineering-led launch company focused on lowering the cost, complexity, and response time of orbital access.

Our reusable systems are designed to support frequent, reliable satellite deployment to low Earth orbit, laying the groundwork for a multi-planetary future.

Meet the Team
Core Architecture

Reusability as a System

Designed from inception for rapid recovery, inspection, and repeatable flight operations.

Precision Landing

Autonomous guidance and control systems engineered for meter-level landing accuracy.

RDE Propulsion

Pressure-gain combustion architecture delivering higher efficiency and simplified engine design.

Composite Structure

Advanced composite tankage optimized for mass efficiency across multiple reuse cycles.

Rapid Turnaround

Vehicle systems designed for aircraft-like servicing within a 24-hour window.

Global Launch
Grid.

From equatorial orbits to polar insertions, AlgoForge Aerospace is seeking to operate from three strategic launch complexes in future. We ensure orbital access anywhere, anytime, with rapid-response capabilities.

Vandenberg SFB, USA

SITE ID: US-W
Polar / Sun-Synch

Sriharikota (SDSC), India

SITE ID: IN-E
Equatorial / GTO

Mahia Peninsula, NZ

SITE ID: NZ-S
Rapid Response

Strategic Roadmap

Sequence to Orbit

2027

VORTEX-1 Engine Static Fire

Full-duration ground testing of a flight-weight rotary detonation propulsion system.

2028

Suborbital VTVL Demo

Vertical takeoff and landing flight tests validating GNC and recovery systems.

2030

Orbiton-1 Orbital Attempt

Initial orbital launch demonstration delivering payloads to low Earth orbit.

2033

Commercial Ops & Space Tourism

Routine satellite launch services enabled by reusable vehicles with space tourism exploration.

2036

Point-to-Point Transport

Human-rated suborbital missions validating ultra-fast Earth travel.