Juan Pablo Borja & Toh-Ming Lu 
Dielectric Breakdown in Gigascale Electronics [PDF ebook] 
Time Dependent Failure Mechanisms

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This book focuses on the experimental and theoretical aspects of the time-dependent breakdown of advanced dielectric films used in gigascale electronics. Coverage includes the most important failure mechanisms for thin low-k films, new and established experimental techniques, recent advances in the area of dielectric failure, and advanced simulations/models to resolve and predict dielectric breakdown, all of which are of considerable importance for engineers and scientists working on developing and integrating present and future chip architectures. The book is specifically designed to aid scientists in assessing the reliability and robustness of electronic systems employing low-k dielectric materials such as nano-porous films. Similarly, the models presented here will help to improve current methodologies for estimating the failure of gigascale electronics at device operating conditions from accelerated lab test conditions. Numerous graphs, tables, and illustrations are included to facilitate understanding of the topics. Readers will be able to understand dielectric breakdown in thin films along with the main failure modes and characterization techniques. In addition, they will gain expertise on conventional as well as new field acceleration test models for predicting long term dielectric degradation.

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Table des matières

Introduction.- General Theories.- Measurement Tools and Test Structures.- Experimental Techniques.- Breakdown Experiments.- Kinetics of Charge Carrier Confinement in Thin Dielectrics.- Theory of Dielectric Breakdown in Nanoporous Thin Films.- Dielectric Breakdown in Copper Interconnects.- Reconsidering Conventional Models.

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Langue Anglais ● Format PDF ● Pages 105 ● ISBN 9783319432205 ● Taille du fichier 4.3 MB ● Maison d’édition Springer International Publishing ● Lieu Cham ● Pays CH ● Publié 2016 ● Téléchargeable 24 mois ● Devise EUR ● ID 4976405 ● Protection contre la copie DRM sociale

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