Seeing Systems specializes in developing advanced, cost-effective unmanned aerial systems (UAS) that integrate artificial intelligence and robotics to meet the evolving demands of modern defense operations. With over a decade of experience at the intersection of AI and robotics, the company focuses on creating intelligent, autonomous drones designed for high performance and adaptability in various operational environments.
Key Features and Functionality:
- Bandit: A budget-friendly First-Person View (FPV) platform tailored for extensive training and one-way effector missions. It boasts a range exceeding 35 kilometers, supports payloads up to 1.5 kilograms, and reaches speeds of 115 km/h. Designed for harsh conditions, Bandit enables realistic operator development at scale.
- Banshee: An FPV platform engineered for electronic warfare-intensive theaters. It features IPX7 waterproofing, modular design, and electronic warfare immunity. With a range over 40 kilometers, flight time exceeding 35 minutes, and speeds surpassing 100 km/h, Banshee ensures reliable performance in challenging environments.
- Aerie AI: An intelligent swarm software designed for multi-platform operations. Aerie AI manages the complexity of coordinating multiple drones, transforming individual assets into synchronized, tactical units. It offers AI-enabled agentic coordination and is built on an open, platform-agnostic architecture, ensuring scalability and adaptability.
Primary Value and Solutions Provided:
Seeing Systems addresses critical challenges in modern warfare by offering modular, autonomous drones that remain operationally relevant as threats and missions evolve. By combining true hardware modularity with an agentic control system that reduces cognitive load on operators, the company enables faster upgrades, broader adoption, and significant reductions in lifecycle costs. Their products are designed to perform reliably in real-world conditions, providing defense forces with intelligent, adaptable, and cost-effective solutions for a range of operational scenarios.