Superconductor Logic Implementation With All-JJ Inductor-Free Cell Library

Single flux quantum (SFQ) technology has garnered significant attention due to its low switching power and high operational speed. Researchers have been actively pursuing more advanced devices and technologies to further reduce the reliance on inductors, bias, and dynamic power. Recently, innovative...

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Veröffentlicht in:IEEE transactions on applied superconductivity 2024-12, Vol.34 (9), p.1-10
Hauptverfasser: Cong, Haolin, Razmkhah, Sasan, Karamuftuoglu, Mustafa Altay, Pedram, Massoud
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container_issue 9
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creator Cong, Haolin
Razmkhah, Sasan
Karamuftuoglu, Mustafa Altay
Pedram, Massoud
description Single flux quantum (SFQ) technology has garnered significant attention due to its low switching power and high operational speed. Researchers have been actively pursuing more advanced devices and technologies to further reduce the reliance on inductors, bias, and dynamic power. Recently, innovative magnetic Josephson junction devices have emerged, enhancing the field of superconductor electronics logic. This article introduces a novel cell library design that relies entirely on Josephson junctions, showing promising potential for eliminating the need for inductors in conventional SFQ cells. This results in a 55% reduction in cell size and an 80% decrease in both static and dynamic power consumption. The proposed library implements a half flux quantum logic, where each pulse duration is half that of a SFQ pulse. This article presents the schematics of the basic cells, emphasizing critical circuit parameters and their margins. In addition, it examines layout blueprints, showcasing the advantageous area-saving characteristics of the proposed design.
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subjects All-Josephson junction (JJ)
Circuits
half flux quantum (HFQ)
Inductors
Josephson junctions
Junctions
Layout
Logic
Logic gates
Power management
Pulse duration
single flux quantum (SFQ)
superconductor electronics
Switches
title Superconductor Logic Implementation With All-JJ Inductor-Free Cell Library
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