Multi-functional multi-gate one-transistor process-in-memory electronics with foundry processing and footprint reduction

Author:

Dai MingzhiORCID,Song ZhitangORCID,Lin Chun-HoORCID,Dong Yemin,Wu TomORCID,Chu Junhao

Abstract

AbstractLogic gates are fundamental components of integrated circuits, and integration strategies involving multiple logic gates and advanced materials have been developed to meet the development requirements of high-density integrated circuits. However, these strategies are still far from being widely applicable owing to their incompatibility with the modern silicon-based foundry lines. Here, we propose a silicon-foundry-line-based multi-gate one-transistor design to simplify the conventional multi-transistor logic gates into one-transistor gates, thus reducing the circuit footprint by at least 40%. More importantly, the proposed configuration could simultaneously provide the multi-functionalities of logic gates, memory, and artificial synapses. In particular, our design could mimic the artificial synapses in three dimensions while simultaneously being implemented by standard silicon-on-insulator process technology. The foundry-line-compatible one-transistor design has great potential for immediate and widespread applications in next-generation multifunctional electronics.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Zhejiang Province

Natural Science Foundation of Ningbo

University of New South Wales

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,General Materials Science

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