School of Electrical and Computer Engineering, Ulsan National Institute of Science and Technology, Ulsan 44919, Korea.
School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology, Ulsan 44919, Korea.
Sensors (Basel). 2017 Dec 29;18(1):78. doi: 10.3390/s18010078.
This study presents a flexible wireless electronic skin (e-skin) sensor system that includes a multi-functional sensor device, a triple-mode reconfigurable readout integrated circuit (ROIC), and a mobile monitoring interface. The e-skin device's multi-functionality is achieved by an interlocked micro-dome array structure that uses a polyvinylidene fluoride and reduced graphene oxide (PVDF/RGO) composite material that is inspired by the structure and functions of the human fingertip. For multi-functional implementation, the proposed triple-mode ROIC is reconfigured to support piezoelectric, piezoresistance, and pyroelectric interfaces through single-type e-skin sensor devices. A flexible system prototype was developed and experimentally verified to provide various wireless wearable sensing functions-including pulse wave, voice, chewing/swallowing, breathing, knee movements, and temperature-while their real-time sensed data are displayed on a smartphone.
本研究提出了一种灵活的无线电子皮肤(e-skin)传感器系统,包括多功能传感器装置、三模式可重构读出集成电路(ROIC)和移动监测接口。e-skin 设备的多功能性是通过互锁微穹顶阵列结构实现的,该结构使用了受人类指尖结构和功能启发的聚偏二氟乙烯和还原氧化石墨烯(PVDF/RGO)复合材料。为了实现多功能化,所提出的三模式 ROIC 通过单类型 e-skin 传感器设备重新配置为支持压电、压阻和热释电接口。开发了一个灵活的系统原型,并进行了实验验证,以提供各种无线可穿戴传感功能,包括脉搏波、声音、咀嚼/吞咽、呼吸、膝盖运动和温度,同时将实时感测数据显示在智能手机上。