Ir directamente a la navegación principal Ir directamente a la búsqueda Ir directamente al contenido principal

A Polymorphic Electro-Optic Logic Gate for High-Speed Reconfigurable Computing Circuits

Producción científica: Conference contributionrevisión exhaustiva

5 Citas (Scopus)

Resumen

In the wake of dwindling Moore's law, integrated electro-optic (E-O) computing circuits have shown revolutionary potential to provide progressively faster and more efficient hardware for computing. The E-O circuits for computing from the literature can operate with minimal latency at high bitrates. However, they face shortcomings due to their operand handling complexity, non-amortizable high area and static power overheads, and general unsuitability for large-scale integration on reticle-limited chips. To alleviate these shortcomings, in this paper, we present a microring resonator (MRR) based polymorphic E-O logic gate (MRR-PEOLG) that can be dynamically programmed to implement different logic functions at different times. Our MRR-PEOLG can provide compactness and polymorphism to E-O circuits, to consequently improve their operand handling and amortization of area and static power overheads. We model our MRR-PEOLG using photonics foundry-validated tools to perform frequency and time-domain analysis of its polymorphic logic functions. Our evaluation shows that the use of our MRR-PEOLG in two E-O circuits from prior works can reduce their area-energy-delay product by up to 82.6×. A tutorial on the modeling and simulation of our MRR-PEOLG, along with related codes and files, is available on https://github.com/ukyUC AT /MR R -PE OL G.

Idioma originalEnglish
Título de la publicación alojadaProceedings of the 24th International Symposium on Quality Electronic Design, ISQED 2023
ISBN (versión digital)9798350334753
DOI
EstadoPublished - 2023
Evento24th International Symposium on Quality Electronic Design, ISQED 2023 - San Francisco, United States
Duración: abr 5 2023abr 7 2023

Serie de la publicación

NombreProceedings - International Symposium on Quality Electronic Design, ISQED
Volumen2023-April
ISSN (versión impresa)1948-3287
ISSN (versión digital)1948-3295

Conference

Conference24th International Symposium on Quality Electronic Design, ISQED 2023
País/TerritorioUnited States
CiudadSan Francisco
Período4/5/234/7/23

Nota bibliográfica

Publisher Copyright:
© 2023 IEEE.

Financiación

ACKNOWLEDGMENT We thank the anonymous reviewers for their valuable feedback. This research is supported by a grant from NSF (CNS-2139167).

FinanciadoresNúmero del financiador
National Science Foundation Arctic Social Science Program2139167, CNS-2139167

    ASJC Scopus subject areas

    • Hardware and Architecture
    • Electrical and Electronic Engineering
    • Safety, Risk, Reliability and Quality

    Huella

    Profundice en los temas de investigación de 'A Polymorphic Electro-Optic Logic Gate for High-Speed Reconfigurable Computing Circuits'. En conjunto forman una huella única.

    Citar esto