Brief: We tested it—see the highlights and what to expect in real operation. This video demonstrates the high-performance DOWSIL™ TC 5080 thermal grease, showing how its optimized thermal interface solution enhances cooling efficiency in electronics. Watch as we explore its application in 5G base stations, EV power systems, and consumer devices, highlighting key performance attributes like high-temperature stability and low thermal resistance.
Related Product Features:
One-part, white, non-curing thermal grease with 1.0 W/mK thermal conductivity for efficient heat transfer.
Formulated with metal oxide-filled silicone technology to create an effective thermal bridge between heat sources and sinks.
High-temperature stability with less than 0.01% oil bleed at 150°C over 24 hours for prolonged reliability.
Low thermal resistance enabled by 836,000 cP viscosity and 4.5mm slump for ultra-thin bond line thickness.
Electrical safety ensured by 8.7 kV/mm dielectric strength and 2.9×10¹⁵ Ω*cm volume resistivity.
Validated for use in 5G base stations, such as Nokia AirScale RF units, operating from -40℃ to 150℃.
Proven cooling solution for EV power systems, including Tesla OBC power modules, with mass production validation in 2022.
Compatible with consumer devices like Microsoft Surface Pro motherboards, supporting 0.2mm bond line thickness.
Perguntas Frequentes:
What is the thermal conductivity of DOWSIL™ TC 5080 thermal grease?
DOWSIL™ TC 5080 offers a thermal conductivity of 1.0 W/mK, providing efficient heat transfer for electronics cooling applications.
How does this thermal grease ensure electrical safety in circuits?
It features high dielectric strength of 8.7 kV/mm and volume resistivity of 2.9×10¹⁵ Ω*cm, protecting circuits from electrical issues.
In which applications has DOWSIL™ TC 5080 been validated?
It is validated for 5G base stations like Nokia AirScale RF units, EV power systems including Tesla OBC modules, and consumer devices such as Microsoft Surface Pro motherboards.
What makes DOWSIL™ TC 5080 suitable for high-temperature environments?
Its high-temperature stability ensures less than 0.01% oil bleed at 150°C over 24 hours, maintaining reliability under prolonged thermal stress.