News / Discover the Future of Flight with Alpha Unmanned Systems /

Revolutionary Advanced MEMS IMU Boosts Control of Japanese SAR Satellites!

alpha unmanned systems logo.webp

Helicopter UAVs: Rotary Wing Drones for Maritime, Naval & Security Operations | UAS GCS

Revolutionary Advanced MEMS IMU Boosts Control of Japanese SAR Satellites!

Silicon Sensing Systems’ DMU30 IMU is providing crucial performance control within Japan’s first X-band SAR satellite, continuously stabilizing the advanced platform for four years


Advanced MEMS IMU Enhances Japanese SAR Satellite Control

Revolutionizing Satellite Control: The role of Silicon Sensing Systems’ DMU30 IMU

For the past four years, the DMU30 inertial measurement unit (IMU) from Silicon Sensing Systems has been integral to the control system of Japan’s pioneering X-band synthetic aperture radar (SAR) small satellite.

This advanced IMU, utilized by the Institute for Q-shu Pioneers of Space, Inc. (iQPS) based in Fukuoka,Japan,activates immediately after the satellite separates from its launch vehicle and remains operational throughout its mission duration.

The DMU30 collaborates with various systems to monitor angular velocity and attitude, while also detecting and correcting any oscillations that may arise during the deployment of critical components, such as the satellite’s large antenna.

Weighing just 100 kg, the iQPS satellite boasts a remarkable 1-metre resolution and is part of a constellation of 36 satellites designed to provide essential earth observation data. This data is crucial for applications like disaster response and land and infrastructure assessments.

The DMU30, a highly effective silicon MEMS IMU, is the predecessor to the latest model from Silicon Sensing Systems, the DMU41.

In a 2020 statement, Masahiko Uetsuhara, Project manager at iQPS, noted, “Typically, gyro sensors produce outputs that accumulate errors over time and with significant temperature fluctuations, necessitating calibration. However, with the DMU30, such calibration is unnecessary.

“This not only saves man-hours but also enhances operational efficiency, both of which are critical for our work. The product has proven its reliability in satellite missions, is ITAR compliant, and offers an attractive price point for its performance level.”

David Somerville, General Manager at Silicon sensing, remarked, “Our MEMS technology provides significant advantages in this context compared to customary high-performance inertial systems like fiber optic and ring laser gyros.

“This IMU can deliver performance comparable to a FOG unit but in a more compact and durable design, making it ideal for platforms like the iQPS satellite that have stringent space and weight constraints, as well as for extended operations in harsh environments.”

a900 naval drones e1681728435142.jpeg
Helicopter UAVs: Rotary Wing Drones for Maritime, Naval & Security Operations | UAS GCS

Avenida Fuente Nueva 14, Nave 16-A, San Sebastián de los Reyes, Madrid 28703

Send Message

Supplier's Products

Revolutionizing Navigation: The Vessel-Based Control System
Portable tracking antenna system for long-range maritime UAV communications
Unleashing Innovation: The Alpha 800 UAV Helicopter
Versatile small unmanned helicopter for ISTAR and Civilian missions
Unlocking Potential: The G-Case Duo UAS Ground Control Station
Portable GCS with dual anti-reflective screens and rugged carry case
Discover the Cutting-Edge Alpha A900 Helicopter UAV: Revolutionizing Aerial Technology!
STANAG-compliant for maritime ISR Missions and Border Control
Discover the A900 T: The Next Generation of Unmanned Aerial Targets!
25 kg MTOW helicopter target drone with up to 4 hours of flight endurance

More News from Discover the Future of Flight with Alpha Unmanned Systems