Industry-standard ceramic electrodes and targets for high-performance applications.
Driving Innovation across Semiconductor, Aerospace, and Renewable Energy sectors.
The global Ceramic Electrode market is undergoing a seismic shift driven by the "Third Generation Semiconductor" revolution. As a premier China Ceramic Electrode Supplier, Shanghai Creative Advanced Materials (SCA) sits at the nexus of this transformation. High-performance ceramic electrodes are no longer mere components; they are the enabling technology for high-voltage power devices, deep-sea exploration sensors, and aerospace thermal management systems.
Our high-purity ceramic targets and electrodes provide the extreme stability required for PVD and CVD processes in 300mm wafer fabrication, ensuring minimal particle contamination.
Utilizing Boron Carbide and Silicon Carbide's unique electrochemical properties to enhance the durability of electrodes in harsh, corrosive battery environments.
Lightweight, ultra-high temperature resistant ceramic components used in rocket engine nozzles and personnel protection armor systems.
Shanghai Creative Advanced Material Co., Ltd, established in Shanghai Industrial Comprehensive Development Zone, is a high-tech company that integrates the research and development, production, and sales of semiconductor ceramic targets, powder metallurgy targets, and ceramic components.
Our commitment to E-E-A-T (Experience, Expertise, Authoritativeness, and Trustworthiness) is reflected in our 100+ core technologies and 5000+ satisfied global clients. We provide full record traceability from raw materials to final products, ensuring every electrode meets rigorous aerospace and semiconductor standards.
Years Experience
Core Technologies
Professionals
Satisfied Customers
The evolution of Advanced Ceramic Materials through 2030.
Achieving theoretical density through unpressurized and Spark Plasma Sintering (SPS).
Integrating BN and Al2O3 to create ultra-insulating yet thermally conductive electrodes.
Using machine learning to optimize grain boundary structures for zero-defect production.
Unlike standard Ceramic Electrode Factories, SCA utilizes Cold Isostatic Pressing (CIP) combined with Vacuum Hot Pressing Sintering. This dual-approach eliminates micro-voids, increasing the dielectric strength of our ceramic electrodes by 35% compared to conventional atmospheric sintering.
Control of purity, particle size, and chemical stability.
Monitoring particle size distribution and loose tap density.
Automated presses for blank consistency and strength.
Hot pressing, pressureless, and reaction sintering options.
High-precision imported equipment for micron-level accuracy.
CMM size testing and powder performance verification.
Dust-free workshops and semiconductor-grade cleaning lines.
Global export qualifications and reliable logistics partners.
As a leading China Ceramic Electrode Factory, we adhere to ISO 9001:2015 and environmental protection standards. We provide localized technical support in Europe, North America, and Southeast Asia, ensuring our materials meet REACH and RoHS compliance for international integration.
Our team of 200+ professionals offers on-site consultation for electrode integration, helping clients optimize their plasma etching or high-temperature furnace configurations for maximum efficiency.
SiC electrodes offer significantly higher oxidation resistance and mechanical strength at temperatures exceeding 1000°C, leading to longer service life and reduced contamination in semiconductor processes.
Yes, SCA specializes in "Professional Design." We use high-precision CNC machining to create complex geometries, including nozzles, valve seats, and custom targets tailored to your specific equipment.
Thanks to our automated "Fast Delivery" system and extensive inventory of ceramic powders (B4C, SiC, Al2O3), standard components ship within 2-4 weeks, while custom designs vary based on complexity.
We perform GDMS (Glow Discharge Mass Spectrometry) testing on all semiconductor-grade targets to guarantee purity levels up to 99.999% (5N).