Orbital Transport Platform
Configurable transport architecture for cargo movement, orbital transfer and logistics between mission destinations.
Explore mission profileNeebium Space Dynamics designs complete spacecraft platforms for orbital transport, on-orbit servicing, crewed missions and exploration—integrated as one mission-ready system.
Every subsystem is designed around the same mission architecture, reducing integration friction and giving the vehicle one coherent nervous system.
A configurable vehicle core that carries cargo, instruments, servicing hardware or pressurised mission modules without rebuilding the entire spacecraft.

The same integrated architecture can be configured around transport, servicing, crewed operations or exploration—without losing system continuity.
Configurable transport architecture for cargo movement, orbital transfer and logistics between mission destinations.
Explore mission profile
Autonomous spacecraft configuration for inspection, proximity operations, servicing and infrastructure support in orbit.
Explore mission profile
Expandable architecture for pressurised missions, long-duration operations and destinations beyond low Earth orbit.
Explore mission profileMission films turn complex engineering into a clear visual story—from integrated spacecraft architecture to autonomy and mission readiness.
Film 02 / Autonomy
Film 03 / Readiness
Instead of forcing every mission into a fixed vehicle, Neebium begins with the objective and configures the spacecraft around it.
Discuss a missionMove cargo, mission hardware and critical supplies between launch insertion, operational orbit and destination platforms.
Approach, inspect and support spacecraft or orbital infrastructure through autonomous proximity operations.
Combine pressurised modules, life-support interfaces and controlled mission operations within an integrated vehicle platform.
Extend the architecture for long-duration power, communication, propulsion and thermal demands beyond low Earth orbit.
A single engineering thread connects the mission objective to architecture, simulation, validation and mission readiness.
Translate destination, payload, operations and constraints into a clear vehicle objective.
Configure structures, propulsion, power, thermal and digital systems as one spacecraft.
Model mission behaviour, subsystem interactions and operational edge cases before hardware.
Integrate, test and verify the complete platform against mission conditions and failure modes.
Deliver a spacecraft, operational system and mission interface prepared to work together.
A unified mission interface connects command, telemetry, onboard autonomy, vehicle health and operational awareness across the spacecraft lifecycle.
Neebium's vision is to create complete spacecraft capability—from vehicle architecture and mission systems to the digital intelligence that operates them.
Tell us the objective, destination and operating challenge. We will shape the conversation around the complete spacecraft system.