"Motion & Navigation you can trust"
French manufacturer of miniature high-performance inertial navigation systems (IMU, AHRS, INS/GNSS) for land, sea, air, and unmanned platforms.
SBG Systems, founded in 2007 and headquartered in Carrières-sur-Seine, France, designs and manufactures miniature, high-performance inertial sensors and navigation systems based on MEMS technology. The company's product portfolio includes Inertial Measurement Units (IMU), Attitude and Heading Reference Systems (AHRS), and GNSS-aided Inertial Navigation Systems (INS/GNSS). Key product lines include the Ellipse series for compact applications, the Ekinox series for tactical-grade accuracy, and the Apogee series for high-end survey applications.
SBG Systems serves customers in more than 70 countries across defense, marine survey, autonomous vehicles, UAV, and mobile mapping sectors. With approximately 111 employees, the company generates nearly 90% of its revenue through exports. SBG Systems holds ISO 9001:2015 certification.
Primary type & automation activities this supplier delivers:
Compact MEMS-based inertial navigation system with embedded GNSS for UAV, robotics, and autonomous vehicle applications.
Tactical-grade MEMS INS/GNSS system for demanding land, sea, and airborne survey and navigation applications.
Contact SBG Systems
WEBSITE
http://www.sbg-systems.comPHONE
+33 1 80 88 45 00HEADQUARTERS
France
Company Facts
Founded
2007
Primary Role
Manufacturer
Company Size
-
Primary Region
Europe
Annual Sales
-
Funding Stage
-
Funding Total
-
Certifications & Memberships
Tokyo University's research team has developed an artificial skin that enables robots to accurately sense joint angles through its deformation. This bionic skin, designed with a tissue-like layered structure, was tested on the Musashi-W humanoid robot. The results indicated that the average estimation error for joint angles could be maintained within approximately 3 degrees, and further accuracy was achievable by integrating skin and muscle information. This advancement is significant as traditional muscle-driven humanoid robots face challenges in measuring joint angles directly, unlike conventional robotic joints that utilize encoders. Current methods rely on limited sensors, such as muscle length and tension sensors, to infer joint angles. The research team's approach mimics biological structures by embedding numerous small sensors within soft tissues, enhancing the robot's ability to discern between external disturbances and internal state changes. Moving forward, the integration of these sensors into robotic systems could revolutionize how robots perceive their own movements and interactions with the environment. No further timeline was disclosed at the time of publication.
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Spectrum.ieee.orgAutomaton Sep 11, 2026 Humanoid-robots Video-friday Drones Robot-videos Center-for-robot-assisted-search Quadruped-robotsACE Robotics and NTU S-Lab have announced the open-source release of Puffin-World, a multimodal world model that integrates physics, geometry, and appearance. This model utilizes the Puffin-16M dataset and achieves state-of-the-art camera absolute pose errors, reporting sub-degree accuracy across four public benchmarks. The significance of this release lies in its potential to enhance various applications in robotics and computer vision by providing a unified framework for understanding complex environments. By achieving such high accuracy in pose estimation, Puffin-World could facilitate advancements in autonomous navigation and scene understanding. Looking ahead, the impact of Puffin-World on the robotics community will be closely monitored, particularly in how it influences future research and development in multimodal models. No further timeline was disclosed at the time of publication.
PanDaily.com Sep 11, 2026Sandbox AQ has successfully tested its quantum sensor-based Magnetic Navigation (MagNav) on Northrop Grumman’s Lumberjack drone, marking a significant milestone in unmanned aircraft systems. This test is the first of its kind for an attritable drone, showcasing the potential of quantum navigation in GPS-denied environments, which is increasingly relevant given current military operations. The successful integration of MagNav with Lumberjack's visual navigation system is crucial as the U.S. military seeks alternatives to GPS for navigation and targeting. The ongoing conflicts in Ukraine and West Asia highlight the need for resilient navigation systems that can operate effectively even when GPS signals are jammed or spoofed. This advancement could enhance operational capabilities in contested domains. Looking ahead, the deployment of Sandbox AQ’s AQNav technology in various aircraft platforms could revolutionize military navigation. The ease of integration into existing systems, as demonstrated by the rapid installation on Lumberjack, suggests a promising future for quantum navigation solutions in defense applications. No further timeline was disclosed at the time of publication.
InterestingEngineering.com Sep 10, 2026 MilitaryTactile sensing technology is gaining prominence in the robotics industry as humanoid robots transition from exhibition spaces to factory floors. Since 2026, funding in the tactile sensing sector has exceeded 7 billion yuan, with the penetration rate of tactile sensors in commercial humanoid dexterous hands rising from 20% to over 60% this year. This rapid growth is notable within the robotics components sector, highlighting a shift in robotic applications. While visual-language-action models have enhanced robots' environmental understanding and task planning, precision assembly and flexible grasping require tactile feedback for effective force control and slip detection. According to Qianjue Robotics founder Ma Daolin, tactile sensing is essential for high-precision industrial operations. The evolution of technology supports this need, as Qianjue Robotics' VTLA model integrates tactile modalities into traditional frameworks, enabling real-time perception of deformation, texture, and force distribution during contact. Their comprehensive tactile solution expands sensing from fingertips to palms, achieving a sensor density of 125 points per square centimeter and a force accuracy of 0.03 Newtons. As hardware costs decrease and data accumulation accelerates, tactile sensing is becoming a necessary capability in real-world operational scenarios.
leaderobot.com Sep 10, 2026 Tactile Sensors Humanoid Robots Robotics Technology Industrial AutomationVention is set to demonstrate its unified industrial automation platform at IMTS 2026, featuring both Physical AI and Agentic AI. The platform combines these two layers of intelligence to enhance robotics and machine operations, showcasing innovations such as the MachineAgent agentic cell. The significance of this development lies in its potential to streamline manufacturing processes through an interactive, end-to-end automated workflow. Attendees can witness live demonstrations of Physical AI capabilities, including Rapid Operator AI for deep bin picking and goal-driven collision-free path planning, which utilize advanced autonomous perception and robotic motion. Looking ahead, industry professionals should monitor how Vention's integration of these AI technologies influences manufacturing efficiency and automation trends. No further timeline was disclosed at the time of publication.
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BySarah Bakery Apr 09, 2026SBG Systems has announced an expansion of its high-performance inertial navigation systems, including Ekinox, Apogee, and Navsight, by introducing new GNSS receiver options. This enhancement aims to provide users with increased flexibility while ensuring the precision and reliability that the company is recognized for. The update reflects SBG Systems' commitment to advancing navigation technology and meeting the evolving needs of its clients.
ROVplanet.com Mar 13, 2025 sbg systems gnss receiver navsight apogee ekinox