-

Mitsubishi Electric, ME Innovation Fund Invests in Zenno Astronautics Ltd.

To increase the competitiveness of the space business using superconducting technology for space applications

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that its ME Innovation Fund has invested in Zenno Astronautics Ltd., a New Zealand-based startup company that develops superconducting technology for space applications. This is the ninth investment that the fund has made to date.
As satellites have become smaller and cheaper and the number of satellite launches is increasing rapidly, the importance of attitude control, a vital technology for the operation of artificial satellites, has also increased. Attitude control plays a crucial role in the success of a satellite’s mission such as communication, observation, and data collection by adjusting and maintaining the satellite’s attitude, allowing for precise positioning of communication antennas, cameras, and sensors.
Zenno Astronautics, led by a CEO who has been studying space applications of superconducting technology for many years, is a developer of an innovative satellite attitude control component that uses superconducting technology to efficiently generate a magnetic field with small energy loss. In addition to being smaller than conventional components, this component has advantages in many areas including generation of high-efficiency torque with lower power consumption.
By investing in Zenno Astronautics, the goal of Mitsubishi Electric is to boost the company’s competitiveness in the space business by studying and evaluating the technology of Zenno Astronautics’ satellite attitude control component with the vision of applying it to the company’s satellites.

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

Contacts

Customer Inquiries
Business Innovation Group
Mitsubishi Electric Corporation
Tel: +81-3-3218-4885
www.MitsubishiElectric.com/

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
Business Innovation Group
Mitsubishi Electric Corporation
Tel: +81-3-3218-4885
www.MitsubishiElectric.com/

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 Technology Detects Intoxication During Driving to Provide Driver Alerts and Even Vehicle-control Interventions

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it has developed a technology that accurately detects intoxication levels indicated by driver distraction and drowsiness, and provides driver alerts and vehicle-control interventions as needed to help prevent alcohol-related accidents. The system detects intoxication using a combination of non-contact pulse-rate measurements, which are based on images captured with a driver monitoring system (DMS), and ve...

Mitsubishi Electric to Participate in FIBA 3x3 Women’s Series as First Japanese Company

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that it will participate in the FIBA 3x3 Women’s Series, an international 3x3 women’s basketball competition organized by the International Basketball Federation (FIBA), starting in the 2026 season. This marks the first time a Japanese company will take part in the competition. Established in 2019, the FIBA 3x3 Women’s Series is the world’s premier professional 3x3 basketball competition for women, featuring b...

Mitsubishi Electric Achieves World’s First Mechanism for Elucidating Ozone Oxidation Enhanced with Negative Ions

TOKYO--(BUSINESS WIRE)--Mitsubishi Electric Corporation (TOKYO: 6503) announced today that in collaboration with Professor Toshiaki Kamachi and colleagues from the School of Life Science and Technology at Institute of Science Tokyo (Science Tokyo) they have achieved the world’s first mechanism for elucidating the combined use of negative ions to enhance the oxidative action of ozone. In their joint study, they discovered that dissolving negative ions in the moisture surrounding viruses and othe...
Back to Newsroom