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High-performance combined ring oscillators

Masoud Soltani (Department of Electrical and Electronic Engineering, Islamic Azad University Mashhad Branch, Mashhad, Iran)
Farzan Khatib (Islamic Azad University Mashhad Branch, Mashhad, Iran)
Seyyed Javad Seyyed Mahdavi Chabok (Islamic Azad University Mashhad Branch, Mashhad, Iran)

COMPEL - The international journal for computation and mathematics in electrical and electronic engineering

ISSN: 0332-1649

Article publication date: 16 April 2020

Issue publication date: 18 June 2020

97

Abstract

Purpose

The purpose of this paper is to investigate a more robust ring oscillator. Less sensitivity to power supply variations is a target. This is important since low-quality ring oscillators could be exploited in numerous systems to reduce die costs.

Design/methodology/approach

The method in this work is large signal analysis. Delay time as the large signal parameter is calculated symbolically to explore dependency on a power supply voltage. Then simulations are performed to make a comparison. In this work, mathematical justifications are verified via HSPICE circuit simulator outputs, while 0.18 µm TSMC CMOS technology is exploited.

Findings

At least two combined configurations are presented with higher robustness. These circuits are more appropriate in noisy conditions. Both theoretical calculations and simulation results verify less sensitive oscillation against supply voltage ripples and temperature variations.

Originality/value

Introducing a band-switched inverter in combined configurations is contribution. In this way, three structures are presented which both show higher stability in oscillation frequency. The band switched delay time calculations are quite new and also the validity of the symbolical delay time approach is verified by circuit simulations.

Keywords

Citation

Soltani, M., Khatib, F. and Seyyed Mahdavi Chabok, S.J. (2020), "High-performance combined ring oscillators", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 39 No. 3, pp. 535-550. https://doi.org/10.1108/COMPEL-01-2020-0039

Publisher

:

Emerald Publishing Limited

Copyright © 2020, Emerald Publishing Limited

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