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Validating a Novel Approach to Rendering Fingertip Contact Sensations.

, , , and . Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems, page 217-224. IEEE Computer Society, (2002)

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Building a navigable fine texture design space., , , and . CoRR, (2020)ShiverPaD: A Glass Haptic Surface That Produces Shear Force on a Bare Finger., , and . IEEE Trans. Haptics, 3 (3): 189-198 (2010)The Cobotic Hand Controller: Design, Control and Performance of a Novel Haptic Display., , and . Int. J. Robotics Res., 25 (11): 1099-1119 (2006)Design of an active one-degree-of-freedom lower-limb exoskeleton with inertia compensation., , , and . Int. J. Robotics Res., 30 (4): 486-499 (2011)Controlling the Apparent Inertia of Passive Human-interactive Robots., , , and . ICRA, page 1179-1184. IEEE, (2004)UltraShiver: Lateral force feedback on a bare fingertip via ultrasonic oscillation and electroadhesion., , and . HAPTICS, page 198-203. IEEE, (2018)On the electrical characterization of electroadhesive displays and the prominent interfacial gap impedance associated with sliding fingertips., , and . HAPTICS, page 151-157. IEEE, (2018)Passive Implementations for a Class of Static Nonlinear Environments in Haptic Display., , and . ICRA, page 2937-2942. IEEE Robotics and Automation Society, (1999)Cobots for the Automobile Assembly Line., , , , , , , , and . ICRA, page 728-733. IEEE Robotics and Automation Society, (1999)Surface haptic interactions with a TPad tablet., , , , and . UIST (Adjunct Volume), page 7-8. ACM, (2013)