Compact quantum sensors in the Goldilocks zone of cost, precision, and compactness — engineered for the harshest environments.
QuantumAstra is at the forefront of quantum sensing technology, developing next-generation sensors that bridge the gap between laboratory-grade precision and real-world deployability.
Our proprietary quantum sensing technology delivers enhanced measurements in form factors small enough for satellites, rugged enough for defense, and affordable enough for commercial energy applications.
Quantum-level accuracy that redefines measurement standards across industries.
Lab-grade performance in field-deployable packages that fit where it matters.
Breakthrough economics making quantum sensing accessible to broader markets.
Where laboratory precision meets field-ready engineering. Our sensors occupy the sweet spot that makes quantum technology practical for real-world deployment.
Our proprietary nitrogen-vacancy (NV) center diamond sensing technology exploits quantum defects in diamond to achieve exceptional magnetic sensitivity at room temperature — no cryogenics required.
Custom photonic circuits miniaturize complex optical systems onto chip-scale platforms, dramatically reducing size, weight, and power consumption.
Advanced algorithms extract maximum information from quantum measurements, pushing precision boundaries while maintaining real-time operational speeds.
Military-grade enclosures and vibration-isolation systems ensure reliable quantum-level performance in the most demanding operational environments.
GPS-denied navigation, submarine detection, underground facility mapping, and battlefield awareness through quantum magnetometers and gravimeters that operate where conventional sensors cannot.
Satellite-based quantum sensors for Earth observation, deep-space navigation, and planetary science — delivering high-precision measurements in compact, radiation-hardened packages.
Quantum-enhanced battery diagnostics, ultra-precise current sensing, and next-gen autonomous navigation for the EV revolution.
Subsurface mineral exploration, pipeline integrity monitoring, and grid optimization through gravity and magnetic field sensing.
Ultra-sensitive quantum magnetometer for defense and geophysical survey applications. Femtotesla-level detection in extreme environments. Currently in lab prototype stage with active development toward field-ready systems.
Compact quantum gravimeter for subsurface mapping and inertial navigation. Targeting micro-Gal sensitivity in a ruggedized, field-deployable form factor.
Miniaturized optical atomic clock for GPS-denied timing, secure communications, and distributed network synchronization.
Funded through the Duality program — the nation's premier quantum technology accelerator backed by the Chicago Quantum Exchange, the University of Chicago, Argonne National Laboratory, and the University of Illinois Urbana-Champaign.
Selected for Cohort 5 of the HUSTLE (Helping Upstate Science and Technology Leaders and Entrepreneurs) Defense Accelerator — an elite program by the Griffiss Institute empowering dual-use tech startups for national security. Sponsored by the Air Force Research Laboratory (AFRL), New York State Empire State Development, and National Grid.
Whether you're exploring quantum sensing for defense, space, EVs, or energy — our team is ready to help you find the right solution.