Quantum magnetic sensing

Sensing what conventional systems miss.

Compact quantum magnetometers engineered for resilient navigation, passive anomaly detection and space missions.

FIELD 03NODE 07∆B 12.4
Earth field / passive sensing / quantum precision
Quantum sensor platformLow SWaP · Multi-domain
Reference system // Gen 01

Mission applications

One sensing platform. Three critical domains.

Explore how the same quantum magnetic core enables trusted positioning, persistent awareness and space-qualified measurement.

GNSS-denied navigation

Navigate with Earth’s magnetic field.

Quantum-enhanced magnetic sensing supports inertial navigation with a stable, external-signal-independent reference for autonomous and manned systems.

ResilientDesigned to resist jamming and spoofing.
Multi-platformFor air, land and sub-surface integration.
Magnetic route correlationMagnetic route correlationA route is compared with magnetic field signatures to support positioning.STARTPOSITION 04
Signal reference acquired

Core technology

One quantum magnetic core.

Compact quantum magnetometers provide the shared sensing foundation for resilient navigation, passive anomaly detection and space missions.

  1. 01Measure
  2. 02Compare
  3. 03Filter
  4. 04Solve
An animated walkthrough of how a quantum magnetometer establishes position from the Earth's magnetic field, in four stages.

Partnership pathway

From mission requirement to sovereign capability.

A phased integration pathway designed around partner platforms, qualification environments and local manufacturing.

Phase 01

Discover & validate

Define mission requirements, characterize the environment and prove performance through simulation.

Phase 02

Integrate & test

Deliver field-ready systems, integrate with the target platform and validate in representative conditions.

Phase 03

Design-in & scale

Qualify the next-generation reference design and enable partner-led production and deployment.