Precision Ceramic Substrate/Substrate Product
Covering various common advanced ceramic materials such as alumina and silicon nitride, precision ceramic substrates are renowned for their excellent thermal conductivity, superior mechanical strength, and outstanding chemical stability. They are widely used in the electronics, semiconductor industries, and various high-tech fields. Whether you need high-performance substrates for applications like integrated circuits, power devices, optoelectronic devices, or stable substrates resistant to high temperatures and corrosion, we offer solutions in multiple specifications and materials.
By material

99.7% Alumina Ceramic Polished Sheet
The 99.7% Alumina Ceramic Polished Sheet is a high-purity advanced ceramic material engineered for applications requiring exceptional hardness, thermal stability, and electrical insulation. Made from 99.7% high-purity Al₂O₃, this polished sheet features a dense microstructure, mirror-like surface finish, and excellent chemical inertness. It performs reliably in environments with high temperature, strong wear, and demanding dielectric requirements.
With precision polishing and tight dimensional tolerance, the material is widely used in semiconductor equipment, precision machinery, laser systems, vacuum devices, and electronic components. It ensures long-term performance stability and outstanding resistance to corrosion, impact, and thermal shock.

2/3/4/5/6/7/8/9/10/100*100mm Zirconia Ceramic Plate
2/3/4/5/6/7/8/9/10/100*100mm Zirconia Ceramic Plate,also used in food filling as metering pump components. These precision-engineered units offer precise fluid control with high hardness and strength, ensuring stable performance and longevity under demanding conditions of pressure and flow.

99% Alumina Ceramic Substrate Chip
99% Alumina Ceramic Substrate Chip, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

Customized 96/99 Alumina Ceramic Heat Sink
Customized 96/99 Alumina Ceramic Heat Sink, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

High Precision Alumina Ceramic Components for Industrial Applications
High Precision Alumina Ceramic Components for Industrial Applications, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

Customize Alumina Structural Parts Processing 99.5/99.7 Ceramic Manufacturer
Alumina Structural Parts Processing 99.5/99.7 Ceramic Manufacturer, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

Insulation Laser Scribing 96 Alumina Ceramic Sheet
Insulation Laser Scribing 96 Alumina Ceramic Sheet, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

High Thermal Conductivity Alumina Ceramic Substrate
High Thermal Conductivity Alumina Ceramic Substrate, also known as porous retaining rings, feature precise designs with drilled holes for secure connection. Their high hardness and strength ensure stability and durability under pressure, ideal for long-lasting equipment performance.

CNC Zirconia Zirconium Oxide Ceramic Substrate
CNC Zirconia Zirconium Oxide Ceramic Substrate,also used in food filling as metering pump components. These precision-engineered units offer precise fluid control with high hardness and strength, ensuring stable performance and longevity under demanding conditions of pressure and flow.
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