Products

Semiconductor Quartz

View as  
 
Quartz Gas Distribution Plate

Quartz Gas Distribution Plate

The Quartz Shower Head, also known as a Quartz Gas Distribution Plate, is a critical component used in semiconductor thin-film deposition processes such as CVD(Chemical Vapor Deposition), PECVD (Plasma-Enhanced CVD),and ALD (Atomic Layer Deposition). Made from high-purity fused quartz, this component ensures ultra-low contamination and excellent thermal stability, enabling precise gas delivery and uniform film growth across the wafer surface. Looking forward to your further consultation.
Semiconductor quartz screen

Semiconductor quartz screen

Veteksemicon Semiconductor Quartz Screen is a vital component in Metal-Organic Chemical Vapor Deposition (MOCVD) systems, playing a crucial role in optimizing thin film growth processes. This product detail page highlights Veteksemicon's high-purity quartz screens, designed to enhance the uniformity, purity, and maintenance efficiency of MOCVD equipment.
High Purity Quartz Crucible

High Purity Quartz Crucible

High purity quartz crucible is essential core component in advanced semiconductor manufacturing processes, especially for applications that require extremely high thermal stability, chemical purity, and dimensional accuracy. Veteksemicon offers superior high purity quartz crucibles designed to meet the extreme demands of semiconductor processes.
Quartz Wafer Boats

Quartz Wafer Boats

Our Quartz Wafer Boats are high-purity wafer carrier solution tailored for semiconductor, LED, solar cell, and battery manufacturing processes. Engineered to endure high temperatures and chemically aggressive environments, this quartz boat features low thermal expansion, excellent electrical insulation, and long-term dimensional stability. Ideal for diffusion, oxidation, and LPCVD processes, it supports precise wafer alignment and is available in various sizes to meet different equipment requirements.
High purity quartz boat

High purity quartz boat

Our High purity quartz boat is made of fused quartz (SiO₂ content ≥ 99.99%). With its excellent resistance to extreme environments, low thermal expansion coefficient, and long life cycle, it has become an irreplaceable key consumable in the semiconductor and new energy industries.
Focus ring for Etching

Focus ring for Etching

Focus ring for Etching is the key component to ensure process accuracy and stability. These components are precisely assembled in a vacuum chamber to achieve uniform machining of nanoscale structures on the wafer surface through precise control of plasma distribution, edge temperature and electric field uniformity.

Find high-purity Semiconductor Quartz components at Veteksemicon—trusted source for quartz-based semiconductor materials.


Veteksemicon offers semiconductor-grade quartz products made from ultra-pure raw materials, ideal for CVD, RTP, diffusion, and wafer cleaning processes.


With excellent thermal stability, optical clarity, and extremely low impurity levels, our quartz components are suitable for applications such as wafer boats, support rings, furnace tubes, and liners. Available for 150mm, 200mm, and 300mm wafer platforms, our quartz delivers exceptional dimensional precision and high thermal resistance. The low thermal expansion and minimal particle generation make it ideal for high-temperature environments like photolithography and advanced packaging.


Whether for thermal processing or optical exposure systems, Veteksemicon provides reliable, cleanroom-compatible quartz solutions engineered for performance.


To learn more, please visit Veteksemicon’s Semiconductor Quartz product page or contact us for technical specifications.


As a professional Semiconductor Quartz 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 Semiconductor Quartz made in China, you can leave us a message.
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