Airborne Mag
High-density vector magnetics (full XYZ) for structural mapping, contact definition, and anomaly detection.
Everything you need, from airborne data collection to drill-ready targets.
High-density vector magnetics (full XYZ) for structural mapping, contact definition, and anomaly detection.
Coming to Canada in 2026! Conductivity profiling to 300 m. Identify conductive targets and altered zones.
ML–assisted interpretation and 3D inversion to provide anomaly ranking, and QP-ready packages.
Planning, permits, field acquisition, & QC. Deliverables can include NI 43-101 report, GeoTIFF, XYZ, CSV, & 3D inversion.
Cover up to 1,500 line-km per day with multi-drone operations. Speed up exploration timelines and reach decisions sooner.
Reduce survey costs by replacing traditional airborne operations with high-performance fixed-wing drones.
Minimize personnel risk by covering swamps, lakes, and rugged terrain without boots on the ground or people in the sky.
From vast plains to remote boreal sites, our fleet is designed to navigate Canada’s diverse terrain for maximum coverage.
Quiet, energy-efficient drones reduce impacts on remote landscapes compared to manned aircraft or ground crews.
Radai’s UAV fleet is engineered for fast, safe, and cost-effective field surveys. Drone-based methods enable seamless operations over swamps, lakes, and rugged terrain. Data collection speeds reach 180 line-km per hour, all while reducing risk and logistical hurdles.
We capture magnetic and electromagnetic data. These datasets are then processed using machine learning to generate predictive resource maps—highlighting the most promising drilling targets and helping save both time and money.
By using denser line spacing, Radai achieves superior data resolution, offering a clearer subsurface picture than ever.
With flight times exceeding two hours and the ability to deploy 2–3 drones simultaneously, Radai can cover up to 1,500 line-km in a single day.
Equipped with a sling-mounted, three-component EM receiver and airborne transmitter, our teams can capture detailed subsurface conductivity profiles down to 300 m.
Measuring full XYZ magnetic components yields a threefold increase in data inputs, greatly reducing ambiguity and enhancing the accuracy of subsurface models.
Semi-automated identification of geological structures, guiding smarter drilling and sampling. Machine learning enhances data interpretation, providing QPs with clearer insights to support NI 43-101–compliant reporting.
Radai designs and executes survey projects tailored to client needs—from planning and field execution to data processing, modeling, and final reporting with full datasets.
Tools like RadaiPros, RadaiView, and RadaiPath bolster data processing, visualization, and mission planning—ensuring high-quality outcomes with optimal efficiency.