SBQuantum offers an end‑to‑end quantum diamond magnetic sensing platform that uses nitrogen‑vacancy (NV) centers in diamond to deliver sub‑nanotesla sensitivity and micron‑scale spatial resolution.
Funding
Funding not disclosed
Founders
Product
Problem
Conventional magnetic sensing solutions often require bulky hardware, limited spatial resolution, and cannot operate effectively in GPS‑denied or hostile environments, restricting their usefulness for navigation, threat detection, and high‑detail mapping in defense and public‑safety contexts.
Solution
SBQuantum provides an end‑to‑end quantum diamond magnetic sensing platform that leverages nitrogen‑vacancy (NV) centers in diamond to perform high‑resolution magnetometry. The system detects magnetic resonance signals, processes the data with proprietary algorithms, and visualizes magnetic field maps on a customizable interface. By exploiting the quantum properties of diamonds, the sensors achieve superior sensitivity and spatial resolution while remaining compact and robust. The platform supports applications such as precise magnetic navigation in GPS‑denied areas, stand‑off weapons detection, and detailed magnetic mapping for both governmental and commercial users.
Target Audience
Primary customers are defense agencies, homeland‑security and public‑safety organizations, and commercial entities requiring high‑precision magnetic navigation or threat‑detection capabilities.
Features
- NV‑diamond magnetometer delivering sub‑nanotesla sensitivity with micron‑scale spatial resolution
- Integrated data pipeline that extracts magnetic resonance line changes and generates quantitative magnetic field maps
- Customizable visualization platform with real‑time rendering of magnetic data for operator analysis
- Compact, rugged sensor design suitable for deployment in harsh or remote environments
- Compatibility with navigation, threat detection, and geospatial mapping workflows across defense and public‑safety sectors