The rapid request increase for computing resources is leading to explore novel and often intriguing computing architectures. Among them, coupled oscillators have been rediscovered as a potential “beyond Moore” solution for several applications. We discuss in this work the realization of a complete set of logic gates (NOT and MAJORITY operators) as well as an inverter and a register employing coupled RLC oscillators with non-linear (cubic) resistance. The simple design allows for both analytical and numerical analysis, and it is ultimately realizable as discrete component hardware for testing purposes. It represents a simple tool to explore applications involving new computing paradigms.

Logic Gates Implementation with Coupled Oscillators / Bonnin, Michele; Bonani, Fabrizio; Traversa, Fabio L.. - ELETTRONICO. - (2018), pp. 1-4. (Intervento presentato al convegno 2018 IEEE Workshop on Complexity in Engineering (COMPENG) tenutosi a Firenze (Italy) nel 10-12 October) [10.1109/CompEng.2018.8536222].

Logic Gates Implementation with Coupled Oscillators

Bonnin, Michele;Bonani, Fabrizio;Traversa, Fabio L.
2018

Abstract

The rapid request increase for computing resources is leading to explore novel and often intriguing computing architectures. Among them, coupled oscillators have been rediscovered as a potential “beyond Moore” solution for several applications. We discuss in this work the realization of a complete set of logic gates (NOT and MAJORITY operators) as well as an inverter and a register employing coupled RLC oscillators with non-linear (cubic) resistance. The simple design allows for both analytical and numerical analysis, and it is ultimately realizable as discrete component hardware for testing purposes. It represents a simple tool to explore applications involving new computing paradigms.
2018
978-1-5386-5338-8
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2722712
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