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Experimental time evolution study of the HfO2-based IMPLY gate operation

Author
Maestro, M.; Martin, J.; Crespo, A.; Escudero, M.; Rodríguez, R.; Nafría, M.; Aymerich , X.; Rubio, A.
Type of activity
Journal article
Journal
IEEE transactions on electron devices
Date of publication
2018-02-01
Volume
65
Number
2
First page
404
Last page
410
DOI
https://doi.org/10.1109/TED.2017.2778315 Open in new window
Project funding
Multilevel approach to the reliability-aware design of analog and digital integrated circuits
Towards Trusted Low-Power Things: Devices, Circuits and Architectures
Repository
http://hdl.handle.net/2117/113202 Open in new window
URL
http://ieeexplore.ieee.org/document/8245876/?arnumber=8245876&source=authoralert Open in new window
Abstract
In the last years, memristor devices have been proposed as key elements to develop a new paradigm to implement logic gates. In particular, the memristor-based material implication (IMPLY) gate has been presented as a potential powerful basis for logic applications. In the literature, the IMPLY operation has been widely simulated but most of the efforts have been just focused on accomplishing its truth table, only considering the initial and final states of the gate. However, a complete understan...
Citation
Maestro, M., Marin-Martinez, J., Crespo-Yepes, A., Escudero, M., Rodriguez, R., Nafria, M., Aymerich, X., Rubio, A. Experimental time evolution study of the HFO-based IMPLY gate operation. "IEEE transactions on electron devices", 1 Febrer 2018, vol. 65, núm. 2, p. 404-410.
Keywords
IMPLY, Material Implication, Resistive Switching, logic, memristors
Group of research
HIPICS - High Performance Integrated Circuits and Systems

Participants

  • Maestro Izquierdo, Marcos  (author)
  • Martin Martínez, Javier  (author)
  • Crespo Yepes, Albert  (author)
  • Escudero Lopez, Manuel  (author)
  • Rodríguez Martínez, Rosana  (author)
  • Nafría Maqueda, Montserrat  (author)
  • Aymerich Humet, Xavier  (author)
  • Rubio Sola, Jose Antonio  (author)

Attachments

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