Fermi automates the thermal simulation workflow for engineers, turning raw CAD, board layouts, or existing meshes into ready‑to‑run models in minutes. The platform cleans up geometry, defines thermal regions, configures materials, heat loads, fans, and solver settings, then launches studies and provides analytics that highlight bottlenecks and sensitivities. This speeds up iteration for power electronics, battery systems, and electronics cooling designs, letting engineers focus on analysis rather than manual setup.
Funding
Funding not disclosed
Founders
Product
Problem
Thermal engineers spend extensive time manually cleaning CAD models, defining material properties, heat loads, and boundary conditions, and rebuilding simulation setups after each geometry change. This repetitive setup work delays design iteration and reduces the time available for actual engineering analysis.
Solution
Fermi provides an automated workflow that transforms raw enclosure CAD, board layouts, or existing meshes into ready‑to‑run thermal simulation models within minutes. The platform removes nonessential geometry, identifies thermal regions, and configures materials, heat sources, fans, and solver settings automatically. Engineers can launch multiple studies, compare design variants, and receive interpreted results that highlight bottlenecks, sensitivities, and recommended next steps, turning raw simulation data into actionable insights. By streamlining the entire setup‑run‑interpret cycle, Fermi enables teams working on power electronics, battery systems, electronics cooling, and compact hardware to iterate faster and focus on engineering decisions rather than manual preprocessing.
Target Audience
Primary users are thermal engineers and simulation specialists in companies developing power electronics, battery packs, electronic cooling solutions, and other compact hardware where rapid thermal analysis is critical.
Features
- Automated geometry cleanup that strips irrelevant detail and defines thermal regions from CAD, board layouts, or existing meshes
- Integrated physics case builder for materials, heat loads, fan models, boundary conditions, and solver configuration
- One‑click study launch with variant management and automatic result comparison
- Built‑in analytics that identify thermal bottlenecks, sensitivity analyses, and actionable recommendations
- Cloud‑based execution environment that eliminates dependence on brittle desktop tools