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Interface Design and Material Strategies for High-Fidelity Electrotactile Haptic Displays
Abdulhameed Abdal1,2,3, Tarek Rafeedi4, Ritwik Vatsyayan2
1Department of Mechanical and Aerospace Engineering, University of California, San Diego, 9500 Gilman Drive, Mail Code 0448, La Jolla, California 92093-0448, United States.
Abstract:
Electrotactile devices can convey touch information in wearable and extended reality hardware. They offer cutaneous stimuli while being free from moving parts. Electrotactile systems often yield sensations that are inconsistent, skin-irritating, and unnatural. The dynamism and heterogeneity of skin, the disparate properties between skin and electrode, and the challenge of targeting receptors selectively, can cause the inconsistency in stimulation. Previous research has examined stimulus modulation to address these problems. Recent works, however, expand into electrode design, materials, and mechanics for improved stimulation. Conductive polymer and nano-textured electrodes have reduced and stabilized impedances while minimizing obstruction to wearability. Here, we discuss these challenges and their proposed solutions in literature. We emphasize the role of psychophysical evaluation in obtaining desired tactile percepts. We highlight advancements in electrotactile applications in wearables and interactive surfaces. The convergence of insight in materials, electronics, and perceptual study aims to broaden acceptance and deployment of this technology.