technical ceramic solutions

Project Tags Semiconductor

High Purity Alumina Ceramics for Semiconductor and Laboratory Applications

High Purity Alumina (Al₂O₃) ceramics are advanced technical ceramics with purity levels ranging from 96% to 99.8%, offering exceptional combinations of hardness, chemical inertness, electrical insulation, and thermal stability up to 1800°C. These ceramics exhibit Vickers hardness of 1500-1800 HV, compressive strength exceeding 3000 MPa, and excellent resistance to acids, alkalis, and organic solvents. High purity alumina is the material of choice for semiconductor processing equipment, including wafer carriers, chamber liners, and implantation components, where contamination control is critical. In laboratory applications, alumina crucibles, tubes, and boats withstand aggressive thermal and chemical environments for materials synthesis, thermal analysis, and high-temperature experiments. Innovacera manufactures high purity alumina ceramics using advanced isostatic pressing, injection molding, and precision machining, ensuring consistent material properties and tight dimensional tolerances for the most demanding scientific and industrial applications.

Pyrolytic Boron Nitride Crucibles for MBE and Semiconductor Crystal Growth

Pyrolytic Boron Nitride (PBN) crucibles are ultra-high purity ceramic containers manufactured by chemical vapor deposition (CVD), achieving purity levels exceeding 99.99% with exceptional thermal stability up to 2000°C in inert atmospheres. Unlike conventional sintered ceramics, PBN exhibits anisotropic thermal conductivity, excellent thermal shock resistance, and non-wetting properties against molten metals and semiconductors. These crucibles are indispensable for Molecular Beam Epitaxy (MBE) systems, compound semiconductor crystal growth (GaAs, InP, GaN), and high-temperature evaporation processes. Innovacera's PBN crucibles are engineered with precise wall thickness control and customizable geometries, ensuring contamination-free environments for the most demanding semiconductor manufacturing applications.


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