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Invited Review Article: High-speed flexure-guided nanopositioning: Mechanical design and control issues

Review of Scientific Instruments · 2012 · Vol. 83(12) · pp. 121101–121101
Yuen Kuan YongS. O. Reza MoheimaniBrian J. KentonKam K. Leang

Abstract

Recent interest in high-speed scanning probe microscopy for high-throughput applications including video-rate atomic force microscopy and probe-based nanofabrication has sparked attention on the development of high-bandwidth flexure-guided nanopositioning systems (nanopositioners). Such nanopositioners are designed to move samples with sub-nanometer resolution with positioning bandwidth in the kilohertz range. State-of-the-art designs incorporate uniquely designed flexure mechanisms driven by compact and stiff piezoelectric actuators. This paper surveys key advances in mechanical design and control of dynamic effects and nonlinearities, in the context of high-speed nanopositioning. Future challenges and research topics are also discussed.

Piezoelectric Actuators and ControlForce Microscopy Techniques and ApplicationsAdvanced Surface Polishing TechniquesBandwidth (computing)ActuatorComputer scienceNanolithographyContext (archaeology)Materials scienceNanotechnologyFabricationTelecommunicationsArtificial intelligence

Funding

  • National Science Foundation
Citations
449
FWCI
63.64
field-weighted impact
References
226
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100%
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Citations per year
References
High bandwidth nano-positioner: A robust control approach
Review of Scientific Instruments · 2002 · 416 citations
Atomic Force Microscope
Physical Review Letters · 1986 · 14,361 citations
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