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Role of fingerprint mechanics and non-Coulombic friction in ultrasonic devices.

, , , , , and . World Haptics, page 43-48. IEEE, (2015)

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Electrovibration Signal Design - A Simulative Approach., and . EuroHaptics (2), volume 9775 of Lecture Notes in Computer Science, page 304-314. Springer, (2016)The Perception of Ultrasonic Square Reductions of Friction With Variable Sharpness and Duration., , , , and . IEEE Trans. Haptics, 12 (2): 179-188 (2019)Electrovibration Modeling Analysis., , , and . EuroHaptics (2), volume 8619 of Lecture Notes in Computer Science, page 369-376. Springer, (2014)Psychophysical Power Optimization of Friction Modulation for Tactile Interfaces., , , , , and . EuroHaptics (2), volume 9775 of Lecture Notes in Computer Science, page 354-362. Springer, (2016)Understanding users' perception of simultaneous tactile textures., , and . MobileHCI, page 5:1-5:6. ACM, (2017)Texture Rendering Strategies with a High Fidelity - Capacitive Visual-Haptic Friction Control Device., , , , and . EuroHaptics (1), volume 9774 of Lecture Notes in Computer Science, page 251-260. Springer, (2016)Role of fingerprint mechanics and non-Coulombic friction in ultrasonic devices., , , , , and . World Haptics, page 43-48. IEEE, (2015)Experimental evaluation of friction reduction in ultrasonic devices., , , , , and . World Haptics, page 37-42. IEEE, (2015)Localized Haptic Texture: A Rendering Technique based on Taxels for High Density Tactile Feedback., , , and . CHI, page 5006-5015. ACM, (2017)Feeling multiple edges: The tactile perception of short ultrasonic square reductions of the finger-surface friction., , , , and . WHC, page 125-129. IEEE, (2017)