-

Mitsubishi Electric to Ship Samples of SBD-embedded SiC-MOSFET Module

For extra powerful and efficient inverter systems used in railways, electric power systems and more

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will begin shipping samples of a new Schottky barrier diode (SBD)-embedded silicon carbide (SiC) metal-oxide-semiconductor field-effect transistor (MOSFET) module, featuring dual-type 3.3kV withstand voltage and 6.0kVrms dielectric strength, on May 31. The new module is expected to support superior power, efficiency and reliability in inverter systems for large industrial equipment such as railways and electric power systems. It will be exhibited at major trade shows, including Power Conversion Intelligent Motion (PCIM) Europe 2023 in Nuremberg, Germany from May 9 to 11.
Mitsubishi Electric has already released four full-SiC modules and two 3.3kV high-voltage dual-type LV100 modules. To further contribute to high power output, efficiency and reliability in inverters for large industrial equipment, the company will soon begin providing samples of its new module, which reduces switching loss as an SiC-MOSFET with a built-in SBD and an optimized package structure.

Product Features

1)

SBD-embedded SiC-MOSFET reduces power loss and contributes to inverter output, efficiency and reliability

 

  • SBD-embedded SiC-MOSFET and optimized package structure reduce switching loss by 91% compared to company's existing Si power module and by 66% compared to existing SiC power module, thereby reducing inverter power loss and contributing to higher output and efficiency.
  • SBD-embedded SiC-MOSFET and optimized current capacity improve inverter reliability.

For the full text, please visit: www.MitsubishiElectric.com/news/

Contacts

Customer Inquiries
Semiconductor & Device Marketing Dept.A and Dept.B
Mitsubishi Electric Corporation
www.MitsubishiElectric.com/semiconductors/

Media Inquiries
Takeyoshi Komatsu
Public Relations Division
Mitsubishi Electric Corporation
Tel: +81-3-3218-2346
prd.gnews@nk.MitsubishiElectric.co.jp
www.MitsubishiElectric.com/news/

Mitsubishi Electric Corporation

TOKYO:6503

Release Versions

Contacts

Customer Inquiries
Semiconductor & Device Marketing Dept.A and Dept.B
Mitsubishi Electric Corporation
www.MitsubishiElectric.com/semiconductors/

Media Inquiries
Takeyoshi Komatsu
Public Relations Division
Mitsubishi Electric Corporation
Tel: +81-3-3218-2346
prd.gnews@nk.MitsubishiElectric.co.jp
www.MitsubishiElectric.com/news/

More News From Mitsubishi Electric Corporation

Mitsubishi Electric Completes Full Acquisition of Nozomi Networks

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today the completion of its acquisition of all outstanding shares of Nozomi Networks Inc., following the announcement on September 9, 2025 regarding its plan to make Nozomi a wholly-owned subsidiary. Overview of the Subsidiary Being Transferred Name Nozomi Networks Inc. Location Suite 3650, 575 Market St, San Francisco CA 94105 President & CEO Edgard Capdevielle Description of business Development and sales of O...

Mitsubishi Electric’s ME Innovation Fund Invests in Lucend, U.S. Startup Driving Data Center Operational Optimization

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that its ME Innovation Fund has invested in Lucend, a U.S.-based startup that provides an AI platform to optimize data center operations. This is the fund’s fourteenth investment to date. The rapid advancement of digitalization, including the widespread adoption of generative AI, has accelerated capital investment in data centers worldwide. Meanwhile, data center operators are being increasingly required to en...

Mitsubishi Electric Confirms World’s First Self-recovery Property of Highly Oriented Pyrolytic Graphite

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it has confirmed the world’s first self-recovery property of highly oriented pyrolytic graphite (HOPG), a van der Waals (vdW)-layered material, in joint research with the Solid Mechanics Laboratory (Hirakata Laboratory) of Kyoto University's Graduate School of Engineering. This achievement is expected to extend the operational lifetime of micro electro mechanical systems (MEMS) by utilizing vdW-layered ma...
Back to Newsroom