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QNV Systems

technology

Quantum Sensing Built for Operational Environments

Conventional magnetometers have served military systems for decades, but emerging operational requirements demand higher sensitivity, improved stability, and vector measurements capable of supporting autonomous decision-making.

QNV Systems is developing quantum vector magnetometers that measure magnetic fields across three orthogonal axes with exceptional sensitivity and long-term stability.

Unlike scalar magnetometers that report only field magnitude, vector magnetometers capture the complete direction and magnitude of the magnetic field, enabling richer target characterization and more accurate localization.

A soldier in helmet, headset, and multicam holding a mast-mounted QNV sensor head, coastal terrain behind.

Our architecture combines

  • Quantum sensing
  • Three-axis vector measurements
  • Embedded edge computing
  • AI-enabled anomaly detection
  • Open interfaces for sensor fusion
  • Low Size, Weight, Power, and Cost (SWaP-C)

The result is a passive sensing capability designed for deployment across fixed installations, autonomous platforms, maritime systems, and tactical vehicles.

why quantum

Why Quantum?

Quantum sensing exploits atomic-scale phenomena to achieve measurement precision beyond conventional technologies.

ADVANTAGES INCLUDE
  • Higher sensitivity
  • Lower drift
  • Improved long-term stability
  • Passive operation
  • Detection of extremely weak magnetic signatures
  • Greater performance in contested environments