Semicorex C/C-SiC brake discs provide the perfect balance of strength, durability, and heat resistance, making them the ultimate choice for high-performance braking systems. Semicorex continues to lead the industry with its cutting-edge materials and engineering expertise, delivering superior solutions that redefine braking technology.*
Read MoreSend InquirySemicorex Carbon ceramic brake disc is a brake disc made of a new type of carbon silicon ceramic composite material. Choosing Semicorex ensures access to internationally recognized quality, cutting-edge technology, and scalable manufacturing capabilities.*
Read MoreSend InquirySemicorex Aluminum nitride substrates provide an advanced solution for high-performance RF filter applications, offering superior piezoelectric properties, high thermal conductivity, and excellent stability. Choosing Semicorex ensures access to internationally recognized quality, cutting-edge technology, and scalable manufacturing capabilities, making it the ideal partner for 5G and next-generation electronic components.*
Read MoreSend InquirySemicorex AlN single crystal wafer is a cutting-edge semiconductor substrate designed for high-power, high-frequency, and deep ultraviolet (UV) applications. Choosing Semicorex ensures access to industry-leading crystal growth technology, high-purity materials, and precise wafer fabrication, guaranteeing superior performance and reliability for demanding applications.*
Read MoreSend InquirySemicorex Porous SiC Plate is an advanced ceramic material designed for high-precision applications, offering superior mechanical strength, thermal stability, and chemical resistance. *
Read MoreSend InquirySemicorex Graphite Chuck is a crucial component in polysilicon manufacturing, widely used in the solar industry. As the demand for high-purity silicon wafers increases, the need for high-performance processing tools such as graphite chucks has become essential. Manufactured from high-purity specialty graphite, our graphite chucks are designed to withstand extreme temperatures, chemical exposure, and mechanical stresses while maintaining dimensional stability.*
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