2015Advanced MaterialsRequires access

Skin‐Inspired Haptic Memory Arrays with an Electrically Reconfigurable Architecture

Bowen Zhu, Hong Wang, Yaqing Liu, Dianpeng Qi, Zhiyuan Liu, Hua Wang, Jiancan Yu, Matthew Sherburne, Zhaohui Wang, Xiaodong Chen

Open publisher page 210 citations

Abstract

Skin-inspired haptic-memory devices, which can retain pressure information after the removel of external pressure by virtue of the nonvolatile nature of the memory devices, are achieved. The rise of haptic-memory devices will allow for mimicry of human sensory memory, opening new avenues for the design of next-generation high-performance sensing devices and systems.

About this research paper

What this paper is about

Skin-inspired haptic-memory devices, which can retain pressure information after the removel of external pressure by virtue of the nonvolatile nature of the memory devices, are achieved. The rise of haptic-memory devices will allow for mimicry of human sensory memory, opening new avenues for the design of next-generation high-performance sensing devices and systems.

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OpenAlex reports 210 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Skin-inspired haptic-memory devices, which can retain pressure information after the removel of external pressure by virtue of the nonvolatile nature of the memory devices, are achieved. The rise of haptic-memory devices will allow for mimicry of human sensory memory, opening new avenues for the design of next-generation high-performance sensing devices and systems.

Key concepts: Materials science, Haptic technology, Electronic skin, Non-volatile memory, Shape-memory alloy, Sensory memory, Computer science, Nanotechnology

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