AI Space Systems Architect

Mission requirements in.
Spacecraft architecture out.

Generate, evaluate and refine spacecraft concepts in minutes using AI agents grounded in physics-based engineering models.

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Design cycle Weeks Minutes
Scope Small sats Deep space

A real first-pass concept. Not a summary of one.

Every run returns a complete engineering package: system architecture, mass and power budgets, subsystem reasoning, and the assumptions a technical reviewer will ask for.

01

Mission synthesis

Translate mission goals into structured system requirements and an initial spacecraft architecture.

02

Physics validation

Check concepts against mass, power, thermal, propulsion and orbital constraints as you iterate.

03

System integration

Reason across subsystem dependencies instead of optimizing each component in isolation.

04

Concept evolution

Chat with the AI Architect to change assumptions, compare trades and explore alternative configurations.


From mission brief to validated concept.

01Input

Define mission parameters

Set destination, orbit, payload, duration, delta-v, power demand and cost constraints.

mission_brief.json
DESTINATION
LUNAR ORBIT
PAYLOAD
180 KG
DURATION
24 MONTHS
02Synthesis

Generate the architecture

AI agents decompose requirements, propose subsystem choices and construct a coherent design.

Liquid rocket engine Generated
Generated liquid rocket engine in section, exposing the injector face, turbine and combustion chamber above a regeneratively cooled bell nozzle.
Thrust
490 kN
Throttle range
18–100%
03Validation

Check against physics

Evaluate the design with engineering models and surface constraint violations immediately.

budget_check Within margin
MASS78%
POWER63%
THERMAL51%
04Output

Refine and export

Compare alternatives, understand every decision and export a review-ready concept package.

CONCEPT_PACKAGE_01 Ready
  • system_architecture
  • mass_and_power_budgets
  • subsystem_reasoning
  • assumptions

Engineer through conversation.

Ask why a subsystem was selected, change the mission, impose a new constraint or request an entirely different architecture.

  • Explain every engineering decision
  • Preserve context across iterations
  • Integrate existing designs and data
NORNIR_ARCHITECT / SESSION_0042 Live
Architect

I generated a 312 kg lunar relay spacecraft using electric propulsion and a deployable solar array.

You

Reduce launch mass below 280 kg without changing the payload.

Architect

Rebalancing structure, propulsion margin and battery capacity…

Ask the Architect to modify the system…

Built for every stage of exploration.

Start with early access and grow into a shared engineering environment for your team.

Explorer

Discover

For students, hobbyists and space enthusiasts.

  • Guided mission concepts
  • Core architecture tools
  • Sci-fi exploration mode
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Teams

Collaborate

For startups, universities and aerospace companies.

  • Shared project workspace
  • Private knowledge integration
  • Custom engineering workflows
Contact us
Early access / 2026

Build the next spacecraft before anyone else.

Join the early group of engineers and founders testing Nornir Architect.