-

Mitsubishi Electric Develops Compact, High-energy Sub-nanosecond-pulse Deep-ultraviolet Laser System

Miniaturized design will support innovation in drug discovery, cancer treatment and other diverse fields

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it has developed, in collaboration with the Institute of Physical and Chemical Research (RIKEN) and the Institute for Molecular Science (IMS) of the National Institutes of Natural Sciences, a high-energy short-pulse (sub-nanosecond) deep ultraviolet (DUV) wavelength laser system that achieves an output energy of 235 millijoules, the world’s highest class pulse energy. The compact and portable laser system has been installed in a dedicated area of RIKEN’s facility at IMS in Japan, where it will be used for accelerator research and development.
Sub-nanosecond pulses were achieved by using a microchip laser capable of generating extremely short pulses, and high energy output was realized by optimizing the beam diameter. In addition, co-developed their Distributed Face Cooling technology is implemented in a high-heat dissipation chip developed by RIKEN and IMS, enabling the joule-class laser to operate at room temperature, unlike conventional high-power lasers that require low-temperature cooling.
Going forward, Mitsubishi Electric will continue to advance its laser acceleration technology and laser system miniaturization, thereby contributing to technological innovation in a wide range of fields.

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

Contacts

Customer Inquiries
Information Technology R&D Center
Mitsubishi Electric Corporation
www.MitsubishiElectric.com/ssl/contact/company/rd/form.html

Media Inquiries
Takeyoshi Komatsu
Public Relations Division
Mitsubishi Electric Corporation
Tel: +81-3-3218-2332
prd.gnews@nk.MitsubishiElectric.co.jp
www.MitsubishiElectric.com/news/

Mitsubishi Electric Corporation

TOKYO:6503

Release Versions

Contacts

Customer Inquiries
Information Technology R&D Center
Mitsubishi Electric Corporation
www.MitsubishiElectric.com/ssl/contact/company/rd/form.html

Media Inquiries
Takeyoshi Komatsu
Public Relations Division
Mitsubishi Electric Corporation
Tel: +81-3-3218-2332
prd.gnews@nk.MitsubishiElectric.co.jp
www.MitsubishiElectric.com/news/

More News From Mitsubishi Electric Corporation

Mitsubishi Electric to Ship Samples of NX-type 1.2kV IGBT Module for Industrial Use

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will begin shipping samples of ten new models of its industrial-use NX-type 1.2kV insulated gate bipolar transistor (IGBT) module on a sequential basis starting June 15. Designed for use in inverters that control machine tools, industrial robots and large-capacity motor drive systems, the modules are equipped with the latest eighth-generation IGBTs. Compared to existing IGBT modules, the modules reduce...

Mitsubishi Electric Announces Dividend for Fiscal 2026 (April 1, 2025 – March 31, 2026) and Dividend Forecast for Fiscal 2027 (April 1, 2026 – March 31, 2027)

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that the Board of Directors has resolved to pay a year-end dividend of 30 yen per share for fiscal 2026, as of the record date of March 31, 2026. Mitsubishi Electric has a basic policy in dividend payment of approximately 3% in adjusted DOE1 to ensure consistency from the perspective of providing appropriate returns to shareholders in line with the level of Mitsubishi Electric Corporation stockholders’ equity...

Mitsubishi Electric Technology Estimates Organic Carbon in Farmland Using Optical Measurements and Soil Organic Carbon Dynamics Models

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it has developed a technology to accurately estimate the amount of soil organic carbon (SOC) in agricultural land by combining optical measurements with two SOC dynamic models: a root biomass model1 and a microbially mediated organic matter decomposition model.2 The new technology will enable the efficient, low-cost, large-scale monitoring of SOC by eliminating the need for soil sampling and laboratory ch...
Back to Newsroom