Evidence of Widely Distributed Time Constants in the Vertical Charge Loss of 3-D Charge-Trap NAND Flash Memories

David Gianluigi Refaldi, Gerardo Malavena, Luca Chiavarone, Alessandro Sottocornola Spinelli, Christian Monzio Compagnoni · IEEE Electron Device Letters · 2024

In this letter, through experimental evidence collected at room temperature and in the deep-cryogenic regime, we demonstrate that the so-called vertical charge loss from the gate stack of 3-D charge-trap NAND Flash memories is a process featuring widely distributed time constants. Results reveal that the turn-on of these time constants depends on the temperature at which the program operation is carried out. This, combined with the dependence of the time constants on the temperature at which vertical charge loss is monitored, gives rise to an apparent activation energy of the cell threshold-voltage transient during data retention that is close to zero when data retention and program occur at the same temperature. This phenomenology must be carefully taken into account when trying to extend the working temperature of NAND Flash memories down to the deep-cryogenic regime.

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