Summary
In a multi-disciplinary approach, FIXIT aims at the development of a disruptive, ferroelectric ultra-low power memory and computing technology, fostering the hardware implementation of novel AI-driven electronic systems. Ferroelectricity is the most energy-efficient non-volatile storage technology. FIXIT leverages two recent European discoveries of CMOS compatible ferroelectric materials: ferroelectric HfO2 as first reported in 2011 by NaMLab – the coordinator of FIXIT, and ferroelectric wurtzite AlScN discovered by the Project partner CAU in 2019.
Our major goal is the scaling of ferroelectric synaptic devices to the
Our major goal is the scaling of ferroelectric synaptic devices to the
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More information & hyperlinks
Web resources: | https://cordis.europa.eu/project/id/101135398 |
Start date: | 01-11-2023 |
End date: | 30-04-2027 |
Total budget - Public funding: | 3 855 687,50 Euro - 3 855 687,00 Euro |
Cordis data
Original description
In a multi-disciplinary approach, FIXIT aims at the development of a disruptive, ferroelectric ultra-low power memory and computing technology, fostering the hardware implementation of novel AI-driven electronic systems. Ferroelectricity is the most energy-efficient non-volatile storage technology. FIXIT leverages two recent European discoveries of CMOS compatible ferroelectric materials: ferroelectric HfO2 as first reported in 2011 by NaMLab – the coordinator of FIXIT, and ferroelectric wurtzite AlScN discovered by the Project partner CAU in 2019.Our major goal is the scaling of ferroelectric synaptic devices to the
Status
SIGNEDCall topic
HORIZON-CL4-2023-DIGITAL-EMERGING-01-11Update Date
12-03-2024
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