Array Labs provides high-resolution 3D geospatial data using a constellation of radar cubesats. Their all-weather, day/night imaging system captures detailed terrain and object models at 20 cm resolution, offering a cost-effective alternative to traditional aerial methods for applications like digital twin creation and defense intelligence.
Funding
Funding not disclosed






+1Founders
Product
Problem
Traditional methods for acquiring high-resolution 3D geospatial data are often limited by weather conditions, time of day, and the cost and complexity of deployment. This restricts the frequency and accessibility of detailed terrain and object mapping for critical applications.
Solution
Array Labs provides high-quality, global 3D imagery through a constellation of radar cubesats. This distributed radar imaging system captures data from multiple angles simultaneously in a single pass, enabling the generation of detailed 3D models. The technology operates independently of daylight and weather conditions, offering consistent data acquisition capabilities. This approach significantly reduces the cost and increases the speed of collecting large-area geospatial data compared to conventional airborne or optical photogrammetry methods.
Target Audience
The primary customers are organizations requiring detailed geospatial intelligence for applications such as digital twin creation, insurance analytics, national defense, and climate science.
Features
- Distributed radar imaging system utilizing a cluster of cubesats for multi-angle data acquisition.
- 20 cm resolution imagery, providing 10x more detail than competing solutions.
- All-weather, day/night imaging capability, unaffected by cloud cover or illumination.
- Rapid collection of thousands of square miles in a single satellite pass.
- Significantly lower cost per square mile compared to traditional aerial LiDAR or photogrammetry.
- Robust data acquisition in diverse environments including urban, mountainous, and vegetated areas.
- Architecture designed for resistance to jamming and external interference.