2017Unpublished venueRequires access

Analysis of various delay elements @ 16-nm technology node

Amit Krishna Dwivedi, Agnish Mal, Aminul Islam

Open publisher page 3 citations

Abstract

This paper makes a profound study of seven different non-programmable delay elements. Signals can be delayed by a desired amount by passing it through these delay elements. Maintaining the signal integrity while incorporating certain delay is also a vital role of these delay elements. Performance evaluation of these delay circuits is presented in terms of different design metrics to lay down comparison among these circuits. This work will help design engineers to select appropriate delay elements based upon their specific requirements. Reported results are based on extensive simulations performed on SPICE simulator using predictive technology model (PTM) @ 16-nm technology node.

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What this paper is about

This paper makes a profound study of seven different non-programmable delay elements. Signals can be delayed by a desired amount by passing it through these delay elements. Maintaining the signal integrity while incorporating certain delay is also a vital role of these delay elements. Performance evaluation of these delay circuits is presented in terms of different design metrics to lay down comparison among these circuits. This work will help design engineers to select appropriate delay elements based upon their specific requirements. Reported results are based on extensive simulations performed on SPICE simulator using predictive technology model (PTM) @ 16-nm technology node.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper makes a profound study of seven different non-programmable delay elements. Signals can be delayed by a desired amount by passing it through these delay elements. Maintaining the signal integrity while incorporating certain delay is also a vital role of these delay elements. Performance evaluation of these delay circuits is presented in terms of different design metrics to lay down comparison among these circuits. This work will help design engineers to select appropriate delay elements based upon their specific requirements. Reported results are based on extensive simulations performed on SPICE simulator using predictive technology model (PTM) @ 16-nm technology node.

Key concepts: Spice, Node (physics), Computer science, Delay calculation, Propagation delay, Signal integrity, Group delay and phase delay, Electronic engineering

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