China CVD SiC Guide Ring Manufacturer, Supplier, Factory

As a professional CVD SiC Guide Ring manufacturer and supplier in China, we have our own factory. Whether you need customized services to meet the specific needs of your region or want to buy advanced and durable CVD SiC Guide Ring made in China, you can leave us a message.

Hot Products

  • TaC Coating Planetary Susceptor

    TaC Coating Planetary Susceptor

    VeTek Semiconductor'TaC Coating Planetary Susceptor is an exceptional product for Aixtron epitaxy equipment. The robust TaC coating provides excellent high-temperature resistance and chemical inertness. This unique combination ensures reliable performance and long service life, even in demanding environments. VeTek is committed to providing high-quality products and serving as a long-term partner in the Chinese market with competitive pricing.
  • TaC Coating Guide Ring

    TaC Coating Guide Ring

    VeTek Semiconductor's TaC Coating Guide Ring is created by applying tantalum carbide coating onto graphite parts using a highly advanced technique called chemical vapor deposition (CVD). This method is well-established and offers exceptional coating properties. By utilizing the TaC Coating Guide Ring, the lifespan of graphite components can be significantly extended, the movement of graphite impurities can be suppressed, and the SiC and AIN single crystal quality can be reliably maintained. Welcome to inquiry us.
  • Silicon Carbide Shower Head

    Silicon Carbide Shower Head

    VeTek Semiconductor is a leading manufacturer and supplier of Silicon Carbide Shower Head products in China. SiC Shower Head has excellent high temperature tolerance, chemical stability, thermal conductivity and good gas distribution performance, which can achieve uniform gas distribution and improve film quality. Therefore, it is usually used in high temperature processes such as chemical vapor deposition (CVD) or physical vapor deposition (PVD) processes. Welcome your further consultation.
  • Semiconductor thermal spraying technology

    Semiconductor thermal spraying technology

    Vetek Semiconductor Semiconductor thermal spraying technology is an advanced process that sprays materials in a molten or semi-molten state onto the surface of a substrate to form a coating. This technology is widely used in the field of semiconductor manufacturing, mainly used to create coatings with specific functions on the surface of the substrate, such as conductivity, insulation, corrosion resistance, and oxidation resistance. The main advantages of thermal spraying technology include high efficiency, controllable coating thickness, and good coating adhesion, making it particularly important in the semiconductor manufacturing process that requires high precision and reliability. Looking forward to your inquiry.
  • TaC Coated Chuck

    TaC Coated Chuck

    As a professional TaC Coated Chuck manufacturer and supplier in China, VeTek Semiconductor's TaC Coating Chuck is specifically designed for semiconductor furnaces. With its high temperature resistance, chemical inertness and excellent performance, Vetek Semiconductor's innovative technology provides a reliable solution for the semiconductor manufacturing industry to ensure hig-quality production standards. We believe that our products can bring you advanced technology and high-quality product solutions.
  • SiC coated wafer carrier

    SiC coated wafer carrier

    As a leading SiC coated wafer carrier supplier and manufacturer in China, VeTek Semiconductor's SiC coated wafer carrier is made of high-quality graphite and CVD SiC coating, which has super stability and can work for a long time in most epitaxial reactors. VeTek Semiconductor has industry-leading processing capabilities and can meet customers' various customized requirements for SiC coated wafer carriers. VeTek Semiconductor looks forward to establishing a long-term cooperative relationship with you and growing together.

Send Inquiry

X
We use cookies to offer you a better browsing experience, analyze site traffic and personalize content. By using this site, you agree to our use of cookies. Privacy Policy
Reject Accept