ViriDyn's coatings protect LiDAR, ADAS, EV Batteries, Automotive Sensors, Digital Displays, OLED & LED Lighting, Battery Management Systems, MCUs, Antenna. Full protection for next-generation EVs, e-Mobility, and Autonomous driving platforms.

Next-Generation Automotive Systems

ViriDyn’s nano-coatings offer protection for every critical electronics system in the next-generation of Electronic Vehicles (EVs), e-Mobility systems, and Autonomous Driving Platforms.

ViriDyn offers PFAS-free and Fluorocarbon-free chemistries.

ViriDyn’s Future Mobility Nano-Coatings Protect:

  • Advanced Driver Assistance Systems (ADAS)

  • Antenna & SATCOM Systems

  • Automotive Microcontroller Units (MCUs)

  • Battery Management Systems (BMS)

  • Connectors, Circuit Boards, and Wiring

  • Digital Cockpit Displays & Touchscreens

  • Electric Vehicle (EV) Battery Packs

  • Light Detection and Ranging (LiDAR) Systems

  • OLED & LED Lighting Systems

  • Speakers & Sound Systems

  • Sensor Systems

  • Venting Membranes

ViriDyn Offers Protection Against:

  • Abrasion, Fouling & Smudging

  • Moisture Ingress, Condensation & Humidity

  • Corrosion, Chemicals & Salt Water

  • Dust, Debris, and Contaminants

  • High Temperatures, Overmoudling & Vibration

To speak with ViriDyn about specific engineering challenges, please contact us.

Essential Nano-Coatings for Advanced Mobility Systems*

ViriDyn 101-X

Hydrophobic conformal nano-coating for BMS, MCUs, PCBs, Connectors.

ViriDyn 101-M

Oleophobic (grade 8) and Hydrophobic coatings for lighting, audio, cabin air filtration, venting and membranes.

Purocoat 17/02

Anti-moisture, anti-corrosion conformal coating for automotive LED lighting, antenna, radar PCBA. Zero-masking required.

ViriDyn RO6

Superhydrophobic, RF-Transparent nano-coating for radar and antenna.

ViriDyn DX

Anti-fouling, optically transparent nano-coating. Impermeable protection for lenses and displays.

ViriDyn works with Automotive OEMs and Technology Companies from prototyping to production.

Contact ViriDyn