Spherical Silica
Spherical Silica powders are used in the production of Epoxy Moulding Compounds (EMCs) and green EMCs (halogen-free, antimony-free).
Spherical Silica powders are used in the production of Epoxy Moulding Compounds (EMCs) and green EMCs (halogen-free, antimony-free).
Momentive Technologies’ Spherical Alumina and Spherical Silica products act as thermal fillers in thermal interface materials (TIMs). They are relied on to help manage heat, sustain high performance, and contribute to the longevity of valuable power electronic and battery system applications in markets such as: Electric Vehicles (EVs), Artificial Intelligence (AI), Renewable Energy, Consumer Electronics, and Telecommunications.
Spherical Oxide Powders Read More »
Our Ceramic Powders and Solids are essential for advanced materials, providing high strength, thermal stability, and wear resistance.
Popular as a coating for sealing machined graphite hardware, pyrolytic graphite (PG) forms an impermeable protective layer and possesses mechanical, thermal and electrical properties beyond what is achievable with conventional graphite.
Pyrolytic Graphite Coatings Read More »
Pyrolytic Boron Nitride (pBN) offers high electrical resistance and thermal conductivity, making it ideal for applications that require high dielectric strength, low thermal expansion, and thermal shock resistance.
Pyrolytic Boron Nitride (pBN) Coating and Shapes Read More »
Our Tantalum Carbide (TaC) and other metal carbide coatings guard key furnace and reactor components at elevated temperatures.
Tantalum Carbide (TaC) Coatings Read More »
Our Thermal Conductivity Graphite Products are essential for efficient thermal management in demanding applications.
High Thermal Conductivity Graphite Products Read More »
With more than four decades of designing heater solutions for semiconductors and compound semiconductors, Momentive Technologies is poised to help differentiate customer’s wafer processing equipment and improve product qualities.
Heaters, Electrostatic Chucks and Modules Read More »