RM MagiFloater
From May 25th to 26th, the third China Haptic Technology and Application Conference was successfully held in Tianjin, China. The conference gathered over 100 domestic and international research institutions and more than 500 industry professionals and representatives from cutting-edge outstanding enterprises.
Today, technology is rapidly iterating globally, the AI and the IoT are becoming increasingly sophisticated. Force haptic technology, as a key technique that connects the physical and digital worlds and enhances the human-computer interaction experience, plays a pivotal role in various fields such as intelligent manufacturing, robotics, virtual reality experiences, and innovative medical devices. It demonstrates unprecedented development potential and a broad application prospect.
In China, the continuous innovation and breakthroughs in force haptic technology, integrated with cutting-edge technologies such as Embodied Intelligence, are leading a new industrial revolution.
Alan Huang, CEO of RobustMotion, as well as a member of the standing committee of Force Haptic Perception and Interaction Committee of China Instrument and Control Society, shared the significant technological innovations and applications of RobustMotion in the field of precision force control in industrial motion control systems and electric actuators.He also introduced the new generation product“MagiFloater”, which integrates RobustMotion's exclusive precision force control technology as well as the leading magnetic levitation control technology in China.
This product, based on magnetic levitation planar motor technology, has a full range of motion capabilities with six degrees of freedom same as the robot,enabling the movement from 1D to 6D. It can hover at heights between 0-10mm with a positional accuracy of ±0.005mm.,It can also perform high-speed, precise movements, including tilt and rotation around the R-axis, demonstrating exceptional flexibility.
RobustMotion's R&D team, with its profound accumulation in precision motion control and force control algorithms, has spent over five years in in-depth research and development and rigorous testing then constructed a dynamic model of a multi-degree of freedom precision magnetic levitation system and developed efficient control algorithms. With the self-developed high-speed controller capable of handling complex control algorithms, we have achieved precise control of the magnetic levitation system, allowing for precise control and analysis of the mover's high-precision motion trajectory, showcasing the perfect combination of electromagnetics, circuit design, and software algorithms.