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Sunday, September 14, 2025

IXYS MCC22016I01B – High-Performance Thyristor Module for Industrial Applications

For more detailed specifications and to purchase the MCC22016I01B, you can visit https://www.uscomponent.com/buy/IXYS/MCC22016i01B, the official IXYS distributor. They offer genuine IXYS products with secure transactions and fast delivery, ensuring that professionals have access to high-quality components for their projects.


The IXYS MCC22016I01B is a high-performance thyristor module designed for demanding industrial applications. With a peak repetitive off-state voltage of 1600V and a maximum on-state RMS current of 400A, this module is engineered to handle high-power switching and control tasks efficiently. Its robust construction ensures reliable operation under challenging conditions, making it suitable for motor drives, power converters, and other power control applications.


This IXYS thyristor module features a series connection of two SCRs, providing enhanced current handling capabilities. The use of planar passivated chips and a direct copper-bonded Al₂O₃-ceramic base plate contributes to improved thermal performance and power cycling capabilities. Additionally, the module offers an isolation voltage of 3600V~, ensuring safe and reliable operation in high-voltage environments.


The MCC22016I01B is designed with an international standard package, facilitating easy integration into various industrial systems. Its chassis mount design and Y2-DCB package type ensure secure mounting and efficient heat dissipation, which is crucial for maintaining performance and longevity in demanding applications.


Investing in the IXYS MCC22016I01B is a strategic choice for professionals seeking reliable and efficient thyristor modules for industrial electronics. Whether upgrading existing equipment or designing new high-power systems, this power module delivers unmatched performance, thermal stability, and consistent power handling. Enhance your industrial electronics projects with the MCC22016I01B and ensure optimal efficiency and reliability in your applications.


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