电子线路
晶体管
数码产品
计算机科学
试验台
印刷电子产品
可穿戴计算机
电气工程
电子工程
材料科学
作者
Miloš Kostić,Vladimir Kojić,Savo Ičagić,Peter Andersson Ersman,Mohammad Yusuf Mulla,Jan Strandberg,Lars Herlogsson,Thierry Keller,Matija Štrbac
摘要
This paper presents the first successful implementation of fully printed electronics for flexible and wearable smart multi-pad stimulation electrodes intended for use in medical, sports and lifestyle applications. The smart multi-pad electrodes with the electronic circuits based on organic electrochemical transistor (OECT)-based electronic circuits comprising the 3–8 decoder for active pad selection and high current throughput transistors for switching were produced by multi-layer screen printing. Devices with different architectures of switching transistors were tested in relevant conditions for electrical stimulation applications. An automated testbed with a configurable stimulation source and an adjustable human model equivalent circuit was developed for this purpose. Three of the proposed architectures successfully routed electrical currents of up to 15 mA at an output voltage of 30 V, while one was reliably performing even at 40 V. The presented results demonstrate feasibility of the concept in a range of conditions relevant to several applications of electrical stimulation.
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