We show that any TRNG architecture based on the cascade of a noise source, an ADC, and a digital postprocessor can be simplified getting rid of the explicit noise source, by codifying the ADC to simultaneously act as both an entropy source and a data acquisition block. Though gains may vary, this is practicable with any ADC type and can be seen as the generalization of a recent proposal where a TRNG was obtained out of the 1+1/2 bit stages of a pipeline converter.

ADCs, Chaos and TRNGs: a Generalized View Exploiting Markov Chain Lumpability Properties / S. Callegari; G. Setti. - STAMPA. - (2007), pp. 213-216. (Intervento presentato al convegno IEEE International Symposium on Circuits and Systems tenutosi a New Orleans (USA) nel Maggio 2007).

ADCs, Chaos and TRNGs: a Generalized View Exploiting Markov Chain Lumpability Properties

CALLEGARI, SERGIO;
2007

Abstract

We show that any TRNG architecture based on the cascade of a noise source, an ADC, and a digital postprocessor can be simplified getting rid of the explicit noise source, by codifying the ADC to simultaneously act as both an entropy source and a data acquisition block. Though gains may vary, this is practicable with any ADC type and can be seen as the generalization of a recent proposal where a TRNG was obtained out of the 1+1/2 bit stages of a pipeline converter.
2007
Proceedings of the IEEE International Symposium on Circuits and Systems (ISCAS) 2007
213
216
ADCs, Chaos and TRNGs: a Generalized View Exploiting Markov Chain Lumpability Properties / S. Callegari; G. Setti. - STAMPA. - (2007), pp. 213-216. (Intervento presentato al convegno IEEE International Symposium on Circuits and Systems tenutosi a New Orleans (USA) nel Maggio 2007).
S. Callegari; G. Setti
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/46542
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