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FeFET: A versatile CMOS compatible device with game-changing potential

Authors :
Johannes Müller
Antoine Benoist
Konrad Seidel
Dirk Utess
Andreas Hellmich
Stefan Müller
Menno Mennenga
Ali Pourkeramati
Thomas Kampfe
Halid Mulaosmanovic
Martin Trentzsch
Jan Paul
Thomas Mikolajick
Haidi Zhou
Maximilian Lederer
M. Schuster
Fabio Tassan
J. Ocker
M. Noack
Evelyn T. Breyer
Tarek Ali
Sven Beyer
Dominik Kleimaier
John Pellerin
Stefan Slesazeck
Stefan Dunkel
R. Hoffmann
Franz Muller
Source :
2020 IEEE International Memory Workshop (IMW).
Publication Year :
2020
Publisher :
IEEE, 2020.

Abstract

With the discovery of ferroelectricity in HfO 2 based thin films and the co-integration of ferroelectric field effect transistors (FeFET) into standard high-k metal gate (HKMG) CMOS platforms, the FeFET has emerged from a theoretical dream to an applicable reality. This paper summarizes the status of GLOBALFOUNDRIES FeFET technology and some of its potential applications. We show excellent 0.12µm2 SRAM yields of our mature 28nm CMOS platform, with co-integrated FeFETs, exhibiting a solid memory window of 1.4V. In contrast to conventional embedded memory cells, the FeFET can be integrated like a regular 26A EOT transistor, exhibiting two reversibly programmable VT states, while offering full design flexibility. We show state of the art across wafer VT variability of the programmed and erased states of the FeFETs and discuss its layout-dependence. Embedded size-competitive FeFETs already allow solid separation of the memory states, approaching a mature 6Sigma distribution. Reasonable endurance and stable data retention are demonstrated. Moreover, an outlook of this technology beyond the von Neumann computing will be discussed, considering some of the various applications of this new, versatile device.

Details

Database :
OpenAIRE
Journal :
2020 IEEE International Memory Workshop (IMW)
Accession number :
edsair.doi...........aad8e14efc2882797806718d2a0b6aeb
Full Text :
https://doi.org/10.1109/imw48823.2020.9108150