Charging Station

EV charging stations generate heat from power modules (IGBT/MOSFET), magnetics, control boards, and connectors during continuous charging. Poor thermal management can reduce efficiency and shorten service life.

Sheen thermal interface materials (pads/gels/adhesives) create low-resistance heat paths to heat sinks or housings to: ① lower junction temperature and reduce hotspots; ② improve reliability in 24/7 outdoor operation; ③ support higher power density designs.

Overview

Charging Station (TIMs) Solutions

EV charging stations generate heat from power modules (IGBT/MOSFET), magnetics, control boards, and connectors during continuous charging. Excess heat can reduce efficiency, accelerate aging, and increase downtime.

Thermal interface materials (TIMs) create low-resistance heat paths to heat sinks or housings—reducing hotspots, improving reliability in 24/7 outdoor operation, and supporting higher-power-density designs.

Benefits

EV Charging Station Thermal Materials, Built for Outdoor 24/7 Reliability

Lower Hotspots on Power Modules

Improve heat transfer from IGBT/MOSFET modules to heat sinks—supporting stable output under continuous charging.

Gap Filling for Uneven Interfaces

Conformable TIMs handle tolerance stack-ups—lower thermal resistance and consistent unit-to-unit performance.

Durable in Outdoor Thermal Cycling

Designed for temperature swings and long duty cycles—helping extend service life and reduce downtime.

Custom Parts + Fast Engineering Support

Custom thickness and die-cut parts for charger layouts—rapid sampling to speed qualification and production ramp.

Related Power Electronics Applications

Auto Electronics

Thermal solutions for ECUs and power electronics—improved reliability under harsh conditions.

Energy Storage Battery System

Improve temperature uniformity and reduce hotspots for safer, longer service life.

Photovoltaic Inverter

Lower junction temperature in power modules to boost efficiency and reliability.

Related EV Charging Markets

EV charging stations are part of a high-power conversion ecosystem. Thermal interface materials help manage heat in power modules and connectors, improving efficiency and 24/7 outdoor reliability.