Substrate Noise Coupling in Mixed-Signal ASICs

Substrate Noise Coupling in Mixed-Signal ASICs
Author: Stéphane Donnay
Publisher: Springer Science & Business Media
Total Pages: 311
Release: 2006-05-31
Genre: Technology & Engineering
ISBN: 0306481707

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This book is the first in a series of three dedicated to advanced topics in Mixed-Signal IC design methodologies. It is one of the results achieved by the Mixed-Signal Design Cluster, an initiative launched in 1998 as part of the TARDIS project, funded by the European Commission within the ESPRIT-IV Framework. This initiative aims to promote the development of new design and test methodologies for Mixed-Signal ICs, and to accelerate their adoption by industrial users. As Microelectronics evolves, Mixed-Signal techniques are gaining a significant importance due to the wide spread of applications where an analog front-end is needed to drive a complex digital-processing subsystem. In this sense, Analog and Mixed-Signal circuits are recognized as a bottleneck for the market acceptance of Systems-On-Chip, because of the inherent difficulties involved in the design and test of these circuits. Specially, problems arising from the use of a common substrate for analog and digital components are a main limiting factor. The Mixed-Signal Cluster has been formed by a group of 11 Research and Development projects, plus a specific action to promote the dissemination of design methodologies, techniques, and supporting tools developed within the Cluster projects. The whole action, ending in July 2002, has been assigned an overall budget of more than 8 million EURO.


Substrate Noise Coupling in Mixed-Signal ASICs
Language: en
Pages: 311
Authors: Stéphane Donnay
Categories: Technology & Engineering
Type: BOOK - Published: 2006-05-31 - Publisher: Springer Science & Business Media

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This book is the first in a series of three dedicated to advanced topics in Mixed-Signal IC design methodologies. It is one of the results achieved by the Mixed
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Type: BOOK - Published: 2013-03-09 - Publisher: Springer Science & Business Media

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Modern microelectronic design is characterized by the integration of full systems on a single die. These systems often include large high performance digital ci
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