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Showing posts with the label Vacuum Feedthrough

High-Performance Ceramic-to-Metal Sealed Electrodes for Vacuum & High-Temperature Applications

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High-Performance Ceramic-to-Metal Sealed Electrodes for Vacuum & High-Temperature Applications We manufacture custom ceramic electrodes and vacuum ceramic feedthrough assemblies for high-demanding environments, delivering superior high-temperature resistance, vacuum integrity, and reliable electrical insulation.   A typical multi-pin vacuum ceramic electrode assembly featuring: – High-temperature insulating ceramic body – SUS304 stainless steel flange – Multi-electrode configuration (4–5 pins customizable) – O-ring sealing groove design – Precision machined mounting interface – Insulated stainless steel studs and nuts   This type of product is widely used in: – Vacuum furnaces – Semiconductor processing equipment – Analytical instruments – Plasma systems – High-temperature reactors – Power feedthrough systems   Our Core Manufacturing Capabilities Advanced Ceramic Processing We produce high-purity alumina insulating ceramics with: – Excellent dielectric strength – Long...

Metallized ceramic cylinders employed in vacuum interrupters and capacitors

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Metalized ceramic cylinders   are integral to the functionality and reliability of vacuum interrupters (VI) within vacuum circuit breakers (VCB), particularly in managing voltage surges in medium-voltage switchgear and distribution circuits. Innovacera’s focus on high-purity alumina metalized ceramic cylinders underscores the importance of quality and precision in these components. The specialization in  metallization techniques , particularly in molybdenum-manganese (Mo-Mn) and nickel plating, demonstrates a commitment to providing effective hermetic sealing essential for maintaining the required vacuum levels within interrupter chambers. This sealing is critical for ensuring the efficient extinguishing of arcs, which is fundamental to the safe and reliable operation of VCBs. Moreover, the emphasis on the mechanical strength of Mo-Mn metallization highlights the significance of durability and longevity in vacuum interrupters. By enhancing the service life of these components,...