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MODULES A / R / X

Each ARX module is a complete engineering instrument on its own. Together, they form a single generative intelligence that carries a rocket from concept to flight.

A

Module AIntelligent Motor Optimization

STATUS: FULLY FUNCTIONAL.

AI-driven motor optimization using advanced propellant looping algorithms, delivering high-precision performance results within a 2% margin of error.

  • Advanced propellant looping algorithms iterate through thousands of grain geometries and burn profiles autonomously.
  • Performance predictions validated within a 2% margin of error against static-fire data.
  • Thrust curves, chamber pressure envelopes and mass flow profiles generated in seconds, not days.
  • Direct export into Module R architectures and Module X simulation pipelines.

GRAIN LAB // BURN SIMULATION

Grain geometryBATES
BATESSTARFINOCYL
THRUST (N)TIME (S)

PEAK 523 N
BURN 5.0 S

R

Module RGuided Rocket Architecture System

STATUS: MANUAL MODE READY. AUTO MODE COMING IN VERSION 1.5.

A comprehensive rocket component system with an advanced 2D/3D workspace, enabling engineers to design, modify, and export fully simulation-ready rockets.

  • Component-level architecture: nose cones, airframes, fin cans, recovery systems, avionics bays and staging hardware.
  • Advanced 2D/3D workspace with parametric editing and live mass, CG and CP feedback.
  • Every build exports fully simulation-ready — no manual cleanup, no format friction.
  • Auto mode will generate complete architectures from mission constraints alone.

X

Module XReal-Time Simulation & Data Visualization

STATUS: IN PRODUCTION, COMING IN VERSION 2.

Run accurate full-flight simulations on your custom builds and visualize mission-critical data with real-time engineering insights.

  • Full six-degrees-of-freedom flight simulation across every phase: ignition, boost, coast, apogee, recovery.
  • Real-time telemetry visualization — velocity, altitude, stability margin, dynamic pressure and more.
  • Mission-critical insight surfaced automatically: flutter risk, over-stability, recovery loads.
  • Built to close the loop between design intent and flight reality.