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Reducing Soft Error Rate of SoCs Analog-to-Digital Interfaces with Design Diversity Redundancy

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Tipo de produção

Artigo

Data de publicação

2020-03-05

Texto completo (DOI)

Periódico

IEEE Transactions on Nuclear Science

Editor

Citações na Scopus

6

Autores

GONZALEZ, C. J.
ADDED, N.
MACCHIONE, E. L. A.
AGUIAR, V. A. P.
KASTENSMIDT, F. G. L.
PUCHNER, H. K.
Marcilei Aparecida Guazzelli
MEDINA, N. H.
BALEN, T. R.

Orientadores

Resumo

© 1963-2012 IEEE.In this article, a commercial programmable system-on-chip (PSoC 5, from Cypress Semiconductor) is tested under heavy-ion irradiation with a focus on the analog-to-digital interface blocks of the system. For this purpose, a data acquisition system (DAS) was programmed into the device under test and protected with a design diversity redundancy technique. This technique implements different levels of diversity (architectural and temporal) by using two different architectures of converters (a Σ Δ converter and two successive approximation register (SAR) converters) operating with distinct sampling rates. The experiment was performed in a vacuum chamber, using a 16O ion beam with 36-MeV energy and sufficient penetration into the silicon to produce an effective linear energy transfer (LET) of 5.5 MeV/mg/cm2 at the active region. The average flux was approximately 350 particles/s/cm2 for 246 min. The individual susceptibility of each converter to single-event effects is evaluated, as well as the whole system cross section. Results show that the proposed technique is effective to mitigate errors originating at the converters since 100% of such errors were corrected by using the diversity redundancy technique. Results also show that the processing unit of the system is susceptible to hangs that can be mitigated using watchdog techniques.

Citação

GONZALEZ, C. J.; ADDED, N.; MACCHIONE, E. L. A.; AGUIAR, V. A. P.; KASTENSMIDT, F. G. L.; PUCHNER, H. K.; GUAZZELLI, M. A.; MEDINA, N. H.; BALEN, T. R. Reducing Soft Error Rate of SoCs Analog-to-Digital Interfaces with Design Diversity Redundancy. IEEE Transactions on Nuclear Science, v. 67, n. 3, p. 518-524, march, 2020.

Palavras-chave

Keywords

Design diversity; mixed signal; programmable system-on-chip (PSoC); single-event effects (SEEs); soft errors

Assuntos Scopus

Design diversity; Mixed signal; Programmable system on chips; Single event effects; Soft error

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