Key Findings
WEVO-CHEMIE GmbH has developed WEVOPUR 60210 FL T, a polyurethane potting system for multilayer PCBs in Electric Vehicle (EV) Battery Management Systems (BMS), featuring a thermal conductivity of 0.8 W/m·K and a dielectric strength greater than 20 kV/mm. This innovative material is designed to provide comprehensive protection against mechanical stress, temperature fluctuations, and moisture, thereby substantially improving the reliability and safety of EV batteries.
Technical Details
WEVOPUR 60210 FL T offers a range of critical properties:
- High Electrical Insulation: With a dielectric strength exceeding 20 kV/mm, it reliably protects PCBs from electrical failures, which is paramount in high-voltage EV battery systems.
- Effective Thermal Conductivity: A thermal conductivity of 0.8 W/m·K efficiently dissipates heat generated within the BMS, preventing component overheating. This contributes to stable system operation and an extended lifespan.
- Tailored Mechanical Properties: The material possesses optimized mechanical properties to shield electronic components from mechanical stress, temperature changes, and moisture, enhancing protection against shock and vibration.
- Flame Retardancy: It meets the UL 94 V-0 flammability rating, significantly improving safety in the event of a fire.
- Excellent Processability: Its rheological properties are optimized for automated ‘dam-and-fill’ selective potting processes, boosting manufacturing efficiency and ensuring consistent, high-quality encapsulation.
This material serves as an indispensable solution for guaranteeing the long-term stability and performance of BMS circuits within EV battery modules and packs.
Background & Context
With the rapid expansion of the electric vehicle market, battery safety and reliability have become top priorities for both consumers and regulatory bodies. The Battery Management System (BMS), which centrally monitors and controls battery cell health, demands high durability under harsh operating conditions. Factors such as temperature variations, moisture ingress, mechanical vibrations, and potential electrical stresses all elevate the risk of BMS failure. WEVO-CHEMIE GmbH’s new potting system addresses these critical challenges, representing a significant technological contribution to accelerating EV adoption.
Strategic Significance & Outlook
The introduction of WEVOPUR 60210 FL T is poised to set a new benchmark for safety and reliability in EV batteries. Its combination of high performance and excellent processability makes it an attractive choice for EV manufacturers. Beyond electric vehicles, this material is expected to find applications in other high-voltage and high-heat-generating systems, such as industrial power supplies and renewable energy conversion devices. This material will play a vital role in further driving technological innovation towards a sustainable mobility society.
Get our weekly technology intelligence — free
Receive an infographic that lets you judge at a glance whether each field’s analysis report is worth reading.
Subscribe Free — Weekly Tech Intelligence
By subscribing, you’ll receive Troy-Technical’s weekly technology intelligence newsletter.
- Your email and selected fields are used only to deliver the newsletter.
- We never share your information with third parties.
- You can unsubscribe anytime via the link in each email.
See our Privacy Policy for details.
Takes about a minute · Unsubscribe anytime

Comments