Vishay Intertechnology Released New Power Modules

The company introduced four 650 V MOSFET modules designed for high-efficiency energy and industrial applications.

Updated on Oct. 1, 2026 in Semiconductors

Vishay Intertechnology Released New Power Modules

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Vishay Intertechnology has released four new power modules featuring 650 V superjunction MOSFET technology. These devices are designed for applications including solar power, hydrogen generation, and charging stations.

Why it matters

The modules aim to reduce power losses while maintaining fast switching performance for heavy-duty infrastructure. Their standardized packaging simplifies integration for engineers needing to replace existing designs.

The new modules support an operating temperature range of -55 °C to +150 °C. The low side chopper configuration specifically incorporates a 650 V SiC diode to support its current ratings.

The players

Vishay Intertechnology

An American manufacturer of discrete semiconductors and passive electronic components headquartered in Malvern, Pennsylvania.

The details

The SOT-227 package allows these modules to serve as drop-in replacements, eliminating the need for complex printed circuit board redesigns. They are engineered to balance conduction and switching losses for use in sensitive equipment like medical imaging machines.

Timeline

  1. October 1, 2026: Vishay Intertechnology introduced the new power modules.

  2. 12 weeks: Standard lead time for sample and production quantities.

The Tech Race

The use of the SOT-227 industry-standard package allows these new modules to integrate seamlessly into existing energy infrastructure. By updating internal MOSFET technology, the company maintains parity in the competitive high-power electronics sector.

Developers and engineers can utilize these parts as drop-in replacements to reduce hardware development time and avoid costly PCB modifications. The 12-week lead time provides a clear timeline for procurement and integration into future power-management systems.

The takeaway

The move toward standardized packages remains a critical strategy for manufacturers looking to support complex energy infrastructure without forcing clients into expensive redesigns. Engineers should account for the 12-week lead time when planning upcoming production cycles.

Further reading

For more information on the evolving hardware landscape, visit Semiconductors.

More information

View technical details in the VS-FC50LA65 product datasheet.

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Is now a good time to invest in upgrading industrial energy efficiency technology?