Move heat where nothing else can
The problem: hot spots, insufficient dissipation, power electronics and batteries throttling their own performance to avoid overheating.
Our answer: Uni.T, a metal plate harnessing a liquid-vapor phase-change cycle — a true thermal superconductor.
What Uni.T concretely improves
Outstanding thermal conductivity
The liquid-vapor cycle carries heat far more effectively than solid metal, with no moving parts.
Temperature uniformity
Hot spots eliminated: the entire surface stays at an even temperature.
Custom engineering
Shape, thickness and contact points tailored to your assembly.
Uni.T™
Phase-change thermal superconductor

Thermal study
Modeling and analysis of your thermal case.
Prototyping
Characterization and validation of a dedicated Uni.T concept.
Production
Industrialization and integration into your product.
Applications

Li-ion batteries
Even cooling of packs and modules.

Power electronics
Inverters, converters and high-density modules.

Motors & systems
Dissipation for heavily loaded components.

Drones & UAV
Passive, lightweight cooling for avionics, controllers and onboard packs — no fan, no moving parts.
Performance evidence
Why Uni.T redefines cooling for electrified systems.
- InnovationThe world's largest thermal superconductor
- ParadigmA new paradigm for cooling
- PrincipleUni.T, a thermal superconductor explained
Uni.T explained
Born from a real need: our own batteries
Our thermal management first protects L.Pack packs. Discover the battery systems it makes possible.

Battery Solutions
Modular energy storage system
See Battery Solutions