Aerospace · Near-Space · High-Altitude Systems

Above the Atmosphere. Below the Noise.

Military satellites, re-entry vehicles, HAPS platforms, and hypersonic systems need inertial reference that performs where external signals cannot reach.

The Challenge

The Challenge: No External Signals Above the Atmosphere

Near-space and aerospace systems operate where GPS signals are weak, plasma effects block communication, and external references are unavailable during the most critical phases of flight. Hypersonic vehicles at extreme speed degrade all signal links — the inertial core becomes the only navigation backbone.

Our Solution

IMS-AI: Inertial Reference at the Edge of the Atmosphere

IMS-AI delivers continuous attitude reference through re-entry, HAPS station-keeping, and hypersonic glide phases. The EKF fusion architecture rejects noise from vibration and electromagnetic environment characteristic of high-speed aerospace operation. Temperature-calibrated per unit across the full operating range.

Key Specifications — Aerospace & Near-Space
ArchitectureParallel MEMS array with EKF + AI fusion
OperationFully passive — no RF emissions, no signal dependency
Fault toleranceGraceful degradation — no single point of failure
EnvironmentCalibrated for launch and high-speed flight regimes
OutputUART / SPI / CAN — compatible with standard flight stacks
Detailed specsAvailable under NDA to qualified programs
Relevant Applications
Satellite Attitude Control
Re-Entry Vehicle Guidance
HAPS Station-Keeping
Hypersonic Glide Navigation
Other Industries
Defense & Military UAV
Counter-UAS
Maritime & Naval
Loitering Munitions
Land Systems & UGV
Aerospace & Near-Space
Industrial Autonomy
R&D & Testing Platforms

Ready to integrate IMS-AI?

Engineering samples available for qualified defense integrators and R&D programs.

Request Datasheet → View Full Specs