-

Mitsubishi Electric to Release 6.5W Silicon RF High-power MOSFET Samples for Commercial Handheld Two-way Radios

Will expand communication range and reduce power consumption

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will begin shipping samples of its new 6.5W silicon radio-frequency (RF) high-power metal-oxide semiconductor field-effect transistor (MOSFET) for use in RF high-power amplifiers of commercial handheld two-way radios (walkie-talkies) on February 28. The model, which achieves an industry-leading 6.5W output power from a 3.6V single-cell lithium-ion battery, is expected to extend the range and reduce the power consumption of commercial radio equipment.
With the growing popularity of 3.6V lithium-ion batteries in smartphones, the commercial radio industry has been expected to develop higher power products using these batteries, which are less expensive than conventional 7.2V batteries. But until now, the use of 3.6V batteries resulted in reduced output power for commercial radio amplifiers which require higher output than smartphones, so the market has been waiting for MOSFETs capable of increasing the output power of 3.6V batteries.

In response, Mitsubishi Electric has now developed a high-power silicon MOSFET (RD06LUS2) that achieves unmatched power output and high drain efficiency for commercial radios operating at 3.6V. In addition, a package containing two of these MOSFET chips can save space on printed circuit boards for commercial radios and contribute to lower assembly costs.

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

Contacts

Customer Inquiries
Semiconductor & Device Marketing Div.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 Div.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