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Explicit modelling of the double‐gate MOSFET with VHDL‐AMS
Authors:Fabien Prgaldiny  Franois Krummenacher  Birahim Diagne  Franois Pêcheux  Jean‐Michel Sallese  Christophe Lallement
Abstract:This paper presents a new compact model for the undoped, long‐channel double‐gate (DG) MOSFET under symmetrical operation. In particular, we propose a robust algorithm for computing the mobile charge density as an explicit function of the terminal voltages. It allows to greatly reduce the computation time without losing any accuracy. In order to validate the analytical model, we have also developed the 2D simulations of a DG MOSFET structure and performed both static and dynamic electrical simulations of the device. Comparisons with the 2D numerical simulations give evidence for the good behaviour and the accuracy of the model. Finally, we present the VHDL‐AMS code of the DG MOSFET model and related simulation results. Copyright © 2006 John Wiley & Sons, Ltd.
Keywords:DG MOSFET  VHDL‐AMS  EKV  numerical inversion  compact modelling
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