This paper presents a new population count circuit, suitable for very scaled CMOS technologies. The proposed circuit is optimized for the total area, instead of the number of transistors, in order to take full advantage of deeply scaled technology features. Moreover, the circuit is purely combinational, in order to simplify the control logic. The envisaged solution has been designed in a commercial 28 nm CMOS technology, and the design of the layout has been validated. The total silicon area is 14.04 x 0.905 mu m(2) for a counter from 0 to 8.

A very compact population count circuit for associative memories / L. Frontini, V. Liberali, A. Stabile - In: 2018 7th International Conference on Modern Circuits and Systems Technologies (MOCAST)[s.l] : IEEE, 2018 May. - ISBN 9781538647882. - pp. 1-3 (( Intervento presentato al 7. convegno International Conference on Modern Circuits and Systems Technologies (MOCAST) tenutosi a Thessaloniki nel 2018 [10.1109/MOCAST.2018.8376568].

A very compact population count circuit for associative memories

L. Frontini;V. Liberali;A. Stabile
2018

Abstract

This paper presents a new population count circuit, suitable for very scaled CMOS technologies. The proposed circuit is optimized for the total area, instead of the number of transistors, in order to take full advantage of deeply scaled technology features. Moreover, the circuit is purely combinational, in order to simplify the control logic. The envisaged solution has been designed in a commercial 28 nm CMOS technology, and the design of the layout has been validated. The total silicon area is 14.04 x 0.905 mu m(2) for a counter from 0 to 8.
Settore ING-INF/01 - Elettronica
mag-2018
IEEE
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/610069
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