IEEE Transactions on Circuits and Systems I Regular Papers · 2021 · 25 citations · 42 references
Verification StepsEngineeringVlsi DesignElectronic DesignComputer ArchitectureSystem-level DesignIntegrated CircuitsHardware SystemsHardware SecurityHybrid Cmos/memristor Systems—partSystems EngineeringDesign FlowMemory DeviceMemristive TechnologyElectrical EngineeringComputer EngineeringCustom Memristor ModelMicroelectronicsCircuit DesignMemristor ModelSemiconductor MemoryCircuit Simulation
Memristive technology has experienced explosive growth in the last decade, with multiple device structures being developed for a wide range of applications. However, transitioning the technology from the lab into the marketplace requires the development of an accessible and user-friendly design flow, supported by an industry-grade toolchain. In this work, we demonstrate the behaviour of our in-house fabricated custom memristor model and its integration into the Cadence Electronic Design Automation (EDA) tools for verification. Various input stimuli were given to record the memristive device characteristics both at the device level as well as the schematic level for verification of the memristor model. This design flow from device to industrial level EDA tools is the first step before the model can be used and integrated with Complementary Metal-Oxide Semiconductor (CMOS) in applications for hybrid memristor/CMOS system design.
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Dmitri B. Strukov, Gregory S. Snider, Duncan R. Stewart et al. · Nature · 2008 · 11.2K citations
Memristive devices and systems
Leon O. Chua, Sung Mo Kang · Proceedings of the IEEE · 1976 · 2.5K citations
Resistance switching memories are memristors
Leon O. Chua · Applied Physics A · 2011 · 1.4K citations · Full text