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Statistical Simulation of Leakage Currents in MOS and Flash Memory Devices with a new multi-Phonon Trap-Assisted Tunneling Model

Articolo
Data di Pubblicazione:
2003
Citazione:
Statistical Simulation of Leakage Currents in MOS and Flash Memory Devices with a new multi-Phonon Trap-Assisted Tunneling Model / Larcher, Luca. - In: IEEE TRANSACTIONS ON ELECTRON DEVICES. - ISSN 0018-9383. - STAMPA. - 50:5(2003), pp. 1246-1253. [10.1109/TED.2003.813236]
Abstract:
A new physics-based model of leakage current suitable for MOS and Flash memory gate oxide is presented in this paper. This model, which assumes the multi-Phonon Trap-Assisted Tunneling as conduction mechanism, calculates the total leakage current summing the contributions of the percolation paths formed by one or more aligned traps. Spatial positions and energetic levels of traps have been randomly generated within the oxide by a random number generator which has been integrated into the model. Using this model, statistical simulations of leakage currents measured from both MOS and Flash EEPROM memory tunnel oxides have been carried out. In this way, experimental leakage current distributions can be directly reproduced, thus opening a wide range of useful applications in MOS and Flash EEPROM memory reliability prediction.
Tipologia CRIS:
Articolo su rivista
Keywords:
MOS device; Flash memories; semiconductor device reliability; modeling; oxide reliability; leakage currents; SILC
Elenco autori:
Larcher, Luca
Link alla scheda completa:
https://iris.unimore.it/handle/11380/18471
Pubblicato in:
IEEE TRANSACTIONS ON ELECTRON DEVICES
Journal
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