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Linear induction actuators for a haptic interface: A quasi-perfect transparent mechanism.

, , , , and . WHC, page 575-580. IEEE, (2017)

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Haptic interface transparency achieved through viscous coupling., , , , and . Int. J. Robotics Res., 31 (3): 319-329 (2012)Robust Hybrid Control of an Atomic Force Microscope for the Characterization of Interaction Force Regions at the Nanoscale., , , and . IEEE Trans. Control. Syst. Technol., 29 (4): 1689-1703 (2021)Rotating Magnetic Miniature Swimming Robots With Multiple Flexible Flagella., , and . IEEE Trans. Robotics, 30 (1): 3-13 (2014)Compliant beam networks optimization for microsystems., , and . IROS, page 474-479. IEEE, (2000)Design and fabrication of a novel resonant surface sensitive to out-of-plane forces for the indentation and injection of living cells., , and . IROS, page 913-918. IEEE, (2011)Micro-scale propulsion using multiple flexible artificial flagella., , , , and . IROS, page 1687-1692. IEEE, (2011)Voltage/frequency rate dependent modeling for nano-robotic systems based on piezoelectric stick-slip actuators., , , , and . IROS, page 5297-5303. IEEE, (2016)Inverse Hysteresis Control of Stick-Slip SEM Integrated Nano-Robotic Systems., , , , and . CDC, page 6851-6856. IEEE, (2019)Feedback Control Strategy for a High Speed Differential Piezo-Driven Stage by an Exclusive use of Piezoelectric Sensors., , , and . ACC, page 4389-4396. IEEE, (2022)Selective Pick-and-Place of Thin Film by Robotic Micromanipulation., , , , , , and . Int. J. Intell. Mechatronics Robotics, 2 (3): 24-37 (2012)