Nomad Atomics develops miniaturized quantum sensors, including magnetometers and gravimeters, designed for field applications in resource exploration and navigation. These sensors provide precise measurements that lower exploration costs and enhance operational efficiency in mining and resource management.
Funding
$8.2M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


Founders
Product
Problem
Traditional methods for resource exploration, navigation, and infrastructure monitoring often rely on bulky, laboratory-bound sensors, limiting their applicability in field environments. The size and complexity of these instruments increase operational costs and hinder real-time data acquisition in remote or challenging locations.
Solution
Nomad Atomics develops miniaturized, field-deployable quantum sensors, including magnetometers, gravimeters, and atomic clocks, designed to overcome the limitations of conventional sensing technologies. These sensors leverage quantum mechanics to provide precise measurements of magnetic fields, gravitational forces, and time, enabling enhanced data acquisition and performance in resource monitoring, exploration, climate science, underground infrastructure mapping, and inertial navigation. By miniaturizing quantum technology, Nomad Atomics aims to bring high-precision sensing capabilities out of the laboratory and into real-world applications. The sensors are specifically hardened for deployment in challenging field conditions.
Target Audience
The primary target audience includes companies in the mining and resource exploration industries, as well as organizations involved in infrastructure monitoring, climate science research, and navigation technology development.
Features
- Miniaturized quantum magnetometers for precise magnetic field measurements in resource exploration and environmental monitoring
- Compact atomic gravimeters for mapping subsurface density variations and detecting underground resources or infrastructure
- High-stability atomic clocks for precise timing and synchronization in navigation and communication systems
- Ruggedized sensor designs for reliable operation in harsh field environments
- Data acquisition and processing systems optimized for real-time analysis and decision-making