Space Frontier
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Application domains

One platform.Multiple missions.

Space Frontier configures engineered fuel, grain architecture and predictive modelling around each operating profile—from responsive orbital manoeuvres to compact air-breathing systems.

01 / SPACE

Satellite
propulsion

Hybrid propulsion module

In development · Concept illustration

More mission capability starts with how you use the volume.

For small satellites, propulsion is a packaging challenge as much as a performance challenge. Space Frontier is developing a self-contained hybrid propulsion module for low Earth orbit spacecraft up to the 200 kg class.

Proprietary high-density bioplastic fuel and liquid nitrous oxide are combined with a compact architecture designed around useful impulse per unit volume. Storage, feed system, ignition and combustion are integrated into one module.

Dense fuel. Less unused space.

A solid fuel grain removes the need for a separate liquid-fuel feed circuit. The concentric architecture places oxidizer storage around the inner core, while additive manufacturing integrates structural and fluid-routing features to reduce unused space.

Designed for the mission sequence.

Controlled oxidizer delivery enables commanded on–off operation and restart capability. The module is being developed for orbit-insertion corrections, phasing, collision avoidance and end-of-life deorbiting, with configuration assessed against each mission’s delta-v and power budget.

Development specifications

Total impulse
4,300 N·s
Thrust
45 N @ 95 s burn-time
4 N @ 1,075 s burn-time
Specific impulse (Isp)
300 s
Propellant density
0.57 kg/U
Thrust vector control (TVC)
Maximum angle 10°
Minimum impulse bit
5 N·s (cold)

Values describe the module under development; final performance depends on configuration and validation.

Integration starts with your spacecraft.

Mounting geometry, available power, telemetry and command interfaces are defined around the platform. Share your spacecraft envelope, mass and centre of gravity, orbit, mission delta-v and electrical constraints to begin the integration assessment.

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02 / ATMOSPHERIC

Solid
turbojets

Air-breathing propulsion

A compact propulsion concept built around high thrust-to-weight ratio and simplified integration.

Space Frontier applies its solid-fuel engineering approach to air-breathing propulsion for tactical platforms and demanding civilian applications.

Custom grain architecture and manufacturing enable application-specific packaging, combustion response and operating duration.

MISSIONAir-breathing tactical and civilian platforms
DESIGN DRIVERCompact thrust-to-weight performance
INTEGRATIONApplication-specific form factor
03 / HIGH-SPEED

Hypersonic
profiles

High-speed operating environments

Mission-specific fuel layering and grain geometry for demanding high-speed combustion environments.

The objective is controlled fuel delivery and flame stability as geometry, material state and local flow conditions evolve during operation.

Test evidence and regression-rate modelling feed the next design cycle, linking physical behaviour to the digital definition of the grain.

MISSIONHigh-speed operating profiles
DESIGN DRIVERFlame stability
METHODGeometry, layering, test and model

Mission-led engineering

Bring us the operating profile.
We engineer from the fuel up.

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