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Single-Event Effects, from Space to Accelerator Environments

Single-Event Effects, from Space to Accelerator Environments

von Frédéric Wrobel, Jean-Luc Autran, Rubén García Alía und Ygor Quadros de Aguiar
Hardcover - 9783031717222
53,49 €
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Beschreibung

This book describes the fundamental concepts underlying radiation-induced failure mechanisms in electronic components operating in harsh environments, such as in space missions or in particle accelerators. In addition to providing an extensive overview of the dynamics and composition of different radiation environments, the authors discuss the failure mechanisms, known as single-event effects (SEEs), and dedicated failure modeling and prediction methodologies. Additionally, novel radiation-hardening-by-design (RHBD) techniques at physical layout and circuit levels are described.

Readers who are newcomers to this field will learn the fundamental concepts of particle interaction physics and electronics hardening design, starting from the composition and dynamics of radiation environments and their effects on electronics, to the qualification and hardening of components. Experienced readers will enjoy the comprehensive discussion of the state-of-the-art in modeling, simulation, and analysis of radiation effects developed in the recent years, especially the outcome of the recent European project, RADSAGA.

  • Describes both the fundamental concepts underlying radiation effects in electronics and state-of-the-art hardening methodologies
  • Addresses failure mechanisms, known as single-event effects (SEEs), and dedicated failure modeling and prediction methodologies
  • Reveals novel radiation-hardening-by-design (RHBD) techniques at physical layout and circuit levels
  • Offers readers the first book in which particle accelerator applications will be extensively included in the radiation effects context

This is an open access book.

 

Analysis, Prediction and Hardening by Design

Details

Verlag Springer International Publishing
Ersterscheinung 18. Oktober 2024
Maße 23.5 cm x 15.5 cm
Gewicht 426 Gramm
Format Hardcover
ISBN-13 9783031717222
Seiten 141

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