The Wuxi lMU base with an annualproduction capacity of 500,000 sets
A workshop in Beijing with an annualproduction capacity of 150,000 sets

The Wuxi lMU base with an annualproduction capacity of 500,000 sets
A workshop in Beijing with an annualproduction capacity of 150,000 sets
Chongqing Xuhuan Digital Technology Co., Ltd. is a high-tech enterprise specialzing in the research and development of inertialsensing technology and produc integration. from the first- generation mechanicalplatform to the second-generation optical strap-down, and now to the third-generation MEMS micro-electromechanical inertial naviaation,Xunhuan Digital Technology has stayed ahead of technological advancements for over 20 years, continuously breaking new ground and commited to providing customers with cutting-edge products and superior service.
The company's products cover MEMS inertial chips, Fiber Optic Gyroscope,MEMS&FOG inertial measurement units, integrated navigation systems, GNSS-INS integrated Systems, inertial testing systems, etc. Its business covers fields such as robots,unmanned aerial vehicles, driverless vehicles, construction machinery,smart agricultural machinery,sateite communications, and special equipment.
Highly adaptable carrier dynamics constraint model Navigation parameter training algorithm based on neural network
Multi-chip array technology reduces costs and increases efffciency Effectively improve the accuracy and stability of the system
Full-temperature characteristic compensation technology based on neural networks and deep learning; with no human intervention throughout the entire process
It is feasible to eliminate the positioning wild points and improve the positioning accuracy and reliability by determining the relative position of the master and slave antennas
Integrated navigation achieves an ultra-short baseline of 0.3 meters and the heading accuracy within 0.3 degrees
inertial navigation and algorithms achieves the high-precision and multi-source fusion positioning of ultra-small volume and ultra-low power consumption
Highly adaptable carrier dynamics constraint model Navigation parameter training algorithm based on neural network
Multi-chip array technology reduces costs and increases efffciency Effectively improve the accuracy and stability of the system
Full-temperature characteristic compensation technology based on neural networks and deep learning; with no human intervention throughout the entire process
It is feasible to eliminate the positioning wild points and improve the positioning accuracy and reliability by determining the relative position of the master and slave antennas
Integrated navigation achieves an ultra-short baseline of 0.3 meters and the heading accuracy within 0.3 degrees
inertial navigation and algorithms achieves the high-precision and multi-source fusion positioning of ultra-small volume and ultra-low power consumption
Revealing the 'Sixth Sense' of Humanoid Robots! How IMUs Help Them Walk Steadily and Perform Parkour?
When you see the Boston Dynamics Atlas doing a backflip, wonder how it can be as stable as a cat? The answer lies in its "secret weapon hidden in the body" ——IMU (Inertial Measurement Unit)!
MEMS, technology and its MEMS inertia technology introduction
In today's interconnected and intelligent era, a' micro giant' technology is quietly driving the precise perception and intelligent decision-making of countless devices
Current situation and future trend of MEMS inertial technology
Microelectromechanical Systems (MEMS) inertial technology integrates classical mechanics principles with modern semiconductor manufacturing processes
Precision Boundaries: A Practical Guide to High-Precision MEMS Inertial Devices Across Different Applications
Precision grading unlocks the application scenarios of MEMS inertial devices