SPICE-PIDE: A Methodology for Design and Optimization of Integrated Circuits
Abstract
In application-specific designs, owing to the trade-off between power consumption and speed, optimization of various circuit parameters has become a challenging task. Several of the performance metrics, viz. energy efficiency, gain, performance, and noise immunity, are interrelated and difficult to tune. Such efforts may result in a great deal of manual iterations which in turn increase the computational overhead. Thus, it is important to develop a methodology that not only explores large design space but also reduces the computational time. In this work, we investigate the viability of using a SPICE and Python IDE (PIDE) interface to optimize integrated circuits. The SPICE simulations are carried out using 22 nm technology node with a nominal supply voltage of 0.8 V. The SPICE-PIDE optimizer, as delineated in this work, is able to provide the best solution sets considering various performance metrics and design complexities for 5 transistor level converters.
Cite
@article{arxiv.2412.05323,
title = {SPICE-PIDE: A Methodology for Design and Optimization of Integrated Circuits},
author = {Jehan Taraporewalla and Arun KP and Sugata Ghosh and Abhishek Agarwal and Bijaydoot Basak and Dipankar Saha},
journal= {arXiv preprint arXiv:2412.05323},
year = {2024}
}
Comments
Table: 4, Figure: 4, and References: 18