Author:
Bolat Sami,Torres Sevilla Galo,Mancinelli Alessio,Gilshtein Evgeniia,Sastre Jordi,Cabas Vidani Antonio,Bachmann Dominik,Shorubalko Ivan,Briand Danick,Tiwari Ayodhya N.,Romanyuk Yaroslav E.
Abstract
AbstractThe rapid evolution of the neuromorphic computing stimulates the search for novel brain-inspired electronic devices. Synaptic transistors are three-terminal devices that can mimic the chemical synapses while consuming low power, whereby an insulating dielectric layer physically separates output and input signals from each other. Appropriate choice of the dielectric is crucial in achieving a wide range of operation frequencies in these devices. Here we report synaptic transistors with printed aluminum oxide dielectrics, improving the operation frequency of solution-processed synaptic transistors by almost two orders of magnitude to 50 kHz. Fabricated devices, yielding synaptic response for all audio frequencies (20 Hz to 20 kHz), are employed in an acoustic response system to show the potential for future research in neuro-acoustic signal processing with printed oxide electronics.
Funder
Strategic focus Area Advanced Manufacturing of ETH Domain
Publisher
Springer Science and Business Media LLC
Cited by
25 articles.
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