Papers
1
Total Citations
16
H-Index
1
About
Min Du is a leading researcher in microelectromechanical systems (MEMS), with a particular focus on high-precision inertial sensors and actuator feedback mechanisms. Their most cited work, "Analysis and fabrication of a novel MEMS pendulum angular accelerometer with electrostatic actuator feedback" (2012, 16 citations), introduces a groundbreaking design that integrates electrostatic actuation for enhanced sensitivity and stability in angular acceleration measurement. This contribution addresses critical challenges in miniaturized sensor performance, enabling applications in navigation, robotics, and aerospace. Du’s research bridges theoretical modeling and practical fabrication, advancing the reliability of MEMS devices under dynamic conditions. By combining pendulum-based sensing with closed-loop feedback control, their work has influenced subsequent developments in micro-scale inertial systems. With a growing citation impact, Du continues to push the boundaries of MEMS technology, offering innovative solutions for precise motion detection in constrained environments. Their achievements underscore a commitment to engineering robust, high-performance sensors that meet the demands of modern autonomous systems.
Research Focus
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Top Papers
- 1