Products

China Silicon Carbide Epitaxy Manufacturer, Supplier, Factory

Our company insists all along the quality policy of "product quality is base of enterprise survival; customer satisfaction is the staring point and ending of an enterprise; persistent improvement is eternal pursuit of staff" and the consistent purpose of "reputation first, customer first" for Silicon Carbide Epitaxy, TaC Coated Chuck, CVD TAC COATING, TAC COATING, TaC Chuck, Currently, we're seeking ahead to even bigger cooperation with abroad customers according to mutual gains. Please experience free of charge to get in touch with us for more specifics.
Silicon Carbide Epitaxy, With more and more Chinese solutions around the world, our international business is developing rapidly and economic indicators big increase year by year. We've enough confidence to provide you both better items and service, because we have been more and more powerful, professional and experience in domestic and international.

Hot Products

  • Alumina Ceramic Vacuum Chuck

    Alumina Ceramic Vacuum Chuck

    VeTek Semiconductor is a professional Alumina Ceramic Vacuum Chuck manufacturer and factory in China. Alumina Ceramic Vacuum Chuck uses high-purity aluminum oxide ceramics with excellent heat resistance, chemical resistance and mechanical strength. It is mainly used to fix and support wafers and substrates. It is a high-performance equipment for semiconductor processing. Welcome your further inquiries.
  • Thermal spraying technology MLCC capacitor

    Thermal spraying technology MLCC capacitor

    Vetek Semiconductor thermal spraying technology plays an extremely important role in the coating application of sintered crucibles for high-end multilayer ceramic capacitor (MLCC) materials. With the continuous miniaturization and high performance of electronic devices, the demand for thermal spraying technology MLCC capacitors is also growing rapidly, especially in high-end applications. Looking forward to setting up long term business with you.
  • SiC Ceramics Membrane

    SiC Ceramics Membrane

    Veteksemicon SiC ceramics membranes are a type of inorganic membrane and belong to solid membrane materials in membrane separation technology. SiC membranes are fired at a temperature above 2000℃. The surface of the particles is smooth and round. There are no closed pores or channels in the support layer and each layer. They are usually composed of three layers with different pore sizes.
  • C/C Composite Crucible

    C/C Composite Crucible

    Designed for the harsh environment of silicon single crystal production, the C/C Composite Crucible is an indispensable component of the semiconductor silicon single crystal production process.
  • CVD SiC coating barrel susceptor

    CVD SiC coating barrel susceptor

    VeTek Semiconductor CVD SiC coating barrel susceptor is the core component of the barrel type epitaxial furnace.With the help of CVD SiC coating barrel susceptor, the quantity and quality of epitaxial growth are greatly improved.VeTek Semiconductor is a professional manufacturer and supplier of SiC Coated Barrel Susceptor, and is at the leading level in China and even in the world.VeTek Semiconductor looks forward to establishing a close cooperative relationship with you in the semiconductor industry.
  • Graphite boat for PECVD

    Graphite boat for PECVD

    Veteksemicon graphite boat for PECVD is precision-machined from high-purity graphite and designed specifically for plasma-enhanced chemical vapor deposition processes. Leveraging our deep understanding of semiconductor thermal field materials and precision machining capabilities, we offer graphite boats with exceptional thermal stability, excellent conductivity, and a long service life. These boats are designed to ensure highly uniform thin film deposition across every wafer in the demanding PECVD process environment, improving process yield and productivity.

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