Exodigo provides a multi-sensing, non-intrusive underground mapping platform that utilizes geophysical data fusion and artificial intelligence to create accurate subsurface maps. This technology helps clients in utilities, transportation, and government avoid unexpected utility strikes and project delays, ultimately saving time and reducing costs.
Funding
$146M 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.





GPFounders
Product
Problem
Construction, utility, and infrastructure projects face significant risks from inaccurate or incomplete underground maps, leading to unexpected utility strikes, project delays, increased costs, and potential safety hazards. Traditional methods rely on single sensors and existing records, often missing critical subsurface infrastructure.
Solution
Exodigo offers a non-intrusive underground mapping platform that provides complete and accurate subsurface visualizations. The platform uses multi-sensor geophysical data collection and artificial intelligence to create detailed maps of underground utilities and potential hazards. By fusing data from multiple sensors, Exodigo's technology identifies significantly more underground lines and objects compared to conventional methods. This enables clients to make informed decisions during project planning and execution, minimizing risks, reducing costs associated with redesigns and change orders, and improving overall project efficiency.
Target Audience
Exodigo serves owners and managers of infrastructure projects in the energy, utilities, and transportation sectors, as well as government entities responsible for infrastructure development and maintenance.
Features
- Multi-sensor data acquisition using a combination of geophysical sensors to capture comprehensive subsurface data.
- AI-powered data fusion and analysis to generate accurate 3D maps of underground utilities and anomalies.
- Non-intrusive scanning technology that eliminates the need for extensive excavation and reduces environmental impact.
- Detection of a wider range of underground assets compared to traditional methods, including metallic and non-metallic pipes, cables, and voids.
- Integration with existing project workflows and GIS systems for seamless data sharing and collaboration.
- Generation of utility-free zones ("green corridors") to guide construction and minimize the risk of utility strikes.