Engineering from First Principles to Final Hardware

Most engineering programs separate simulation and manufacturing across teams. MFORG eliminates that divide.

MFORG is General Datum’s integrated engineering platform, bringing together simulation, materials science, multi-physics modelling, and precision manufacturing into a single continuous loop. The result is faster timelines, tighter integration, and hardware that performs as intended from day one.

The MFORG Loop

Traditional engineering workflows rely on handoffs. MFORG operates as a continuous system.

Every simulation informs material selection.
Every material decision feeds back into physics models.
Every manufacturing constraint is visible from the first design iteration.

Simulate → Materials → Fuse → Build → Simulate

Each stage is dynamically connected. Thermal changes influence composite design. RF constraints inform structural decisions. Manufacturing realities shape early-stage modelling. Nothing is siloed and every decision is made in context.

MFORG Simulate

Validate Before You Build

Engineering begins with high-fidelity validation.

  • Computational Fluid Dynamics (CFD)
    Fluid flow analysis for aerodynamic, thermal, and industrial systems
  • Structural Analysis
    Stress, fatigue, and load evaluation under real-world conditions
  • Thermal Simulation
    Heat transfer and temperature management for high-performance systems

MFORG Materials
Materials Engineered Within the Loop

At General Datum, materials are not a downstream choice. They are integral to system design.

  • Advanced Materials Engineering
    High-performance materials selected based on simulation-driven requirements
  • Composite Engineering
    Lightweight, high-strength composite structures tailored to mission-specific load cases

MFORG Build
From Model to Mission-Ready Hardware

The same engineering team that designs and simulates also builds.

  • Embedded Systems Development
    Intelligent hardware and software for control systems
  • RF Design
    High-performance antennas, subsystems, and signal processing
  • Precision Manufacturing
    Components and assemblies built to simulation-defined tolerances

Why MFORG

By integrating simulation, materials science, and precision manufacturing into a single loop, MFORG enables organisations to design, validate, and deploy high-performance systems faster, with fewer uncertainties and without the inefficiencies of fragmented engineering workflows.