Intelligence offers a chip‑scale quantum sensing platform that embeds nitrogen‑vacancy diamond sensors and real‑time control electronics on a single semiconductor chip.
Funding
Funding not disclosed
Founders
Product
Problem
Accurate magnetic field measurement traditionally relies on large, cryogenically cooled instruments or complex multi‑component setups, limiting deployment in field‑based, harsh‑environment applications such as navigation, autonomous systems, mining, and medical imaging.
Solution
Intelligence provides a chip‑scale quantum sensing platform that integrates nitrogen‑vacancy (NV) diamond sensors directly onto a semiconductor chip. The solid‑state device delivers vector‑accurate, drift‑free magnetic field detection without the need for external cooling or bulky optics. Real‑time control and readout are embedded on the same chip, producing a low size‑weight‑power solution suitable for deployment in extreme conditions. The platform is modular and designed for straightforward integration into existing systems, enabling new capabilities across navigation, autonomous platforms, resource exploration, and medical diagnostics.
Target Audience
Primary customers include defense and aerospace firms, autonomous vehicle manufacturers, mining and resource exploration companies, and medical imaging equipment providers seeking compact, high‑precision magnetic sensing capabilities.
Features
- NV‑diamond quantum sensor array fabricated on a single semiconductor chip for high magnetic sensitivity and intrinsic vector measurement
- Integrated real‑time control and readout electronics eliminate external components and reduce system complexity
- Operates at ambient temperature with no cryogenic cooling or heating required, minimizing power consumption
- Compact, low size‑weight‑power form factor optimized for harsh‑environment and field deployment
- Modular architecture supports easy integration into diverse platforms such as navigation systems, autonomous vehicles, mining equipment, and medical imaging devices
- Drift‑free performance ensures long‑term stability and reliable measurements over extended missions