Application of the power contributors method for the AOI22 CMOS cell

N Karagiorgos, S Nikolaidis - 2019 8th International …, 2019 - ieeexplore.ieee.org
The prediction of the static power consumption and the leakage currents, flowing in CMOS
cells, is a very important task. This task has to be completed early in the design cycle …

Modeling leakage currents of different CMOS cells by the power contributors method

N Karagiorgos, I Messaris, M Ntogramatzi… - Proceedings of the 19th …, 2015 - dl.acm.org
This paper illustrates the Power Contributors method into modeling of leakage currents and
static power consumption for different CMOS cells from the NanGate OpenCell library. These …

An evaluation of the equivalent inverter modeling approach

I Messaris, C Galani, M Ntogramatzi… - Circuits, Systems, and …, 2018 - Springer
Accurate modeling of CMOS logic gates for timing and power characterization is a very
important task in integrated circuits technology since it facilitates significantly the design …

[PDF][PDF] Static Power Estimation of Digital Circuits by means of Power Contributors

N Karagiorgos, I Messaris, M Ntogramatzi… - … in Modern Circuits … - mocast.physics.auth.gr
This paper examines the efficiency of the power contributor approach in modeling the
leakage currents and static power consumption of CMOS cells. Different CMOS cells …

Applying the Power Contributors Method in a complex CMOS cell

N Karagiorgos, GP Kousiopoulos… - … on Modern Circuits …, 2020 - ieeexplore.ieee.org
The evaluation of a circuit library in terms of leakage currents and static power consumption
is obligatory for low power designs. It has to be done early in the design process and it …

[PDF][PDF] An Approach for Modeling CMOS Gates

S Nikolaidis - … Journal of Electronics and Communication Engineering, 2014 - Citeseer
A modeling approach for CMOS gates is presented based on the use of the equivalent
inverter. A new model for the inverter has been developed using a simplified transistor …

[引用][C] Power Contributor Models for Static Power Estimation of Digital Circuits.

N Karagiorgos, I Messaris, M Ntogramatzi, S Nikolaidis