Papers
6
Total Citations
51
H-Index
4
About
Qijing Lin is a leading researcher in microelectromechanical systems (MEMS) and flexible sensing technologies, with a focus on high-precision force and tactile sensors for robotics, biomedical applications, and environmental monitoring. His major contributions include the development of a high-resolution MEMS capacitive force sensor featuring bionic swallow comb arrays, which enables ultralow multiphysics measurements critical for robotic micromanipulation and biological characterization. He also pioneered a miniaturized silicon-based capacitive six-axis force/torque sensor that achieves large range, high sensitivity, and low crosstalk, addressing key limitations in commercial sensors for minimally invasive surgery and narrow-space robotics. His work on three-axial micro-force sensors and flexible multifunctional sensors for material recognition and tactile sensing further demonstrates his versatility. With over 50 citations across his most-cited papers, Lin’s innovations have advanced the frontiers of precision sensing and robotic perception. Notable achievements include the design of wide-range flexible pressure sensors using MWCNTs/TPU composite fibers and carbon monoxide sensors for small-scale robots, showcasing his commitment to practical, real-world applications.
Research Focus
Key Achievements
Top Papers
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- 3A three-axial micro-force sensor based on MEMS technology8 citations · 2010
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