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An analytical model for the forming process of conductive-bridge resistive-switching random-access memory is developed. The measurable forming time can be calculated using this model giving the biasing condition and is verified to be correct through comparison with the experimental data. The forming time has been shown to have multiple-slopes in exponential dependence on the applied voltage, in agreement...
Analytical solutions (i.e., compact model) to differential equations governing the surface movement of conductive filament (CF) in CBRAM have been developed. Time needed for forming and switching of memory cell can readily be evaluated based on the device structure and the applied bias. The accuracy of the model has been verified by comparison to both experimental and numerical simulation results...
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