Magnetic Field

Intelligence

Making the magnetic layer machine-readable and actionable.

A chip-scale quantum sensing platform built with diamond-on-chip technology.

Enabling new capabilities across navigation, autonomous systems, imaging, and beyond.

Quantum sensors, engineered for scale and real-world deployment.

Quantum Sensing for Precision in the Field

Magnetic sensing in arrays. A diamond quantum vector magnetometer on a silicon chip, small enough to mount several across a hull, an airframe or a site. In field trials now with airborne and marine survey operators, with a roadmap to picotesla sensitivity.

Inside the sensor

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Designed for scale


Leveraging standard silicon semiconductor manufacturing, thousands of devices can be produced on a single wafer, delivering a scalable path to high-volume production and exceptional functionality and intelligence at the chip level.

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Vector sensing


Our solution captures the full magnetic field vector in absolute terms, measuring magnitude and orientation across three axes in a single reading.

This enables precise vector magnetometry and, when deployed in arrays, opens the door to magnetic gradient and tensor measurements for advanced navigation, anomaly detection and subsurface sensing.

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Built for arrays


Low power and compact size enable dense multi-sensor deployment on a single platform.

Working together, sensor arrays unlock magnetic gradients, source direction and localisation, broader-area coverage, and improved suppression of platform noise.

In the field 

Uncrewed platforms. Vector sensing that fits the size, weight, power and cost of the vehicle it flies on.

Navigation without satellites. Magnetic signatures cannot be jammed or spoofed, and reading them gives nothing away.

What lies beneath. Subsurface anomalies without drilling or fixed infrastructure.

New data leads to new decisions

Sensors running in numbers, continuously, on platforms that go where surveys do not. That produces a dataset that does not exist today, and decisions that cannot be made without it.

More data, from more places, at higher resolution.


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