Qdot provides custom aerothermal components—such as heat exchangers, heat sinks, turbomachinery, battery‑cooling modules, and fuel‑cell propulsion systems—designed with AI‑driven optimization and next‑generation additive manufacturing.
Funding
Funding not disclosed

Founders
Product
Problem
High-performance systems in aerospace, fusion energy, data centers, and heavy-duty automotive generate extreme heat that traditional cooling solutions cannot manage efficiently, leading to excess weight, reduced efficiency, and longer development cycles.
Solution
Qdot delivers custom aerothermal components—including heat exchangers, heat sinks, turbomachinery, battery cooling modules, and fuel‑cell propulsion systems—designed with AI‑driven optimization and next‑generation additive manufacturing. These solutions provide lightweight structures with markedly higher heat‑transfer effectiveness, enabling lower energy consumption and faster time‑to‑market for electrified and high‑density applications. By integrating validated performance data into the design loop, Qdot reduces non‑recurring engineering costs and transforms thermal management from a limiting factor into a performance advantage.
Target Audience
Primary customers are engineering teams in aerospace manufacturers, fusion reactor developers, high‑density data‑center operators, and heavy‑duty automotive OEMs seeking advanced thermal management solutions.
Features
- AI‑assisted design workflow that generates optimal geometries based on real‑world performance data
- Additive manufacturing process that produces robust, lightweight parts at lower cost than laser‑based AM
- Customizable heat exchangers and heat sinks tailored to specific flow and temperature requirements
- Integrated turbomachinery and fuel‑cell propulsion modules for high‑temperature, high‑power density environments
- Battery cooling solutions optimized for fast‑charging and high‑energy‑density electric vehicles
- End‑to‑end engineering support that shortens development cycles and minimizes NRE expenses