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Kirjailija

Fabien Clermidy

Kirjat ja teokset yhdessä paikassa: 4 kirjaa, julkaisuja vuosilta 2008-2014, suosituimpien joukossa Molecular Electronics Materials, Devices and Applications. Vertaile teosten hintoja ja tarkista saatavuus suomalaisista kirjakaupoista.

4 kirjaa

Kirjojen julkaisuhaarukka 2008-2014.

Disruptive Logic Architectures and Technologies

Disruptive Logic Architectures and Technologies

Pierre-Emmanuel Gaillardon; Ian O’Connor; Fabien Clermidy

Springer-Verlag New York Inc.
2014
nidottu
This book discusses the opportunities offered by disruptive technologies to overcome the economical and physical limits currently faced by the electronics industry. It provides a new methodology for the fast evaluation of an emerging technology from an architectural prospective and discusses the implications from simple circuits to complex architectures. Several technologies are discussed, ranging from 3-D integration of devices (Phase Change Memories, Monolithic 3-D, Vertical NanoWires-based transistors) to dense 2-D arrangements (Double-Gate Carbon Nanotubes, Sublithographic Nanowires, Lithographic Crossbar arrangements). Novel architectural organizations, as well as the associated tools, are presented in order to explore this freshly opened design space.
Disruptive Logic Architectures and Technologies

Disruptive Logic Architectures and Technologies

Pierre-Emmanuel Gaillardon; Ian O’Connor; Fabien Clermidy

Springer-Verlag New York Inc.
2012
sidottu
This book discusses the opportunities offered by disruptive technologies to overcome the economical and physical limits currently faced by the electronics industry. It provides a new methodology for the fast evaluation of an emerging technology from an architectural prospective and discusses the implications from simple circuits to complex architectures. Several technologies are discussed, ranging from 3-D integration of devices (Phase Change Memories, Monolithic 3-D, Vertical NanoWires-based transistors) to dense 2-D arrangements (Double-Gate Carbon Nanotubes, Sublithographic Nanowires, Lithographic Crossbar arrangements). Novel architectural organizations, as well as the associated tools, are presented in order to explore this freshly opened design space.
Molecular Electronics Materials, Devices and Applications

Molecular Electronics Materials, Devices and Applications

Antoine Jalabert; Amara Amara; Fabien Clermidy

Springer
2010
nidottu
How to develop innovative architectures based on emerging molecular devices? The simple yet ambitious objective of Molecular Electronics Materials, Devices and Applications is to give the reader the necessary information to understand the challenges and opportunities of this recent field of research. In order to provide a good overview and understanding, the main molecular devices are first presented. A complete set of presentation and discussion of the actual molecular architectures follows. Nevertheless, another goal of Molecular Electronics Materials, Devices and Applications is also to promote a practical approach. As a starting point for future developments, a pragmatic methodology for VHDL-AMS device modelling and circuit design based on experimental data is then proposed. It includes an original fault tolerant memory architecture based on molecular electronics.
Molecular Electronics Materials, Devices and Applications

Molecular Electronics Materials, Devices and Applications

Antoine Jalabert; Amara Amara; Fabien Clermidy

Springer-Verlag New York Inc.
2008
sidottu
How to develop innovative architectures based on emerging molecular devices? The simple yet ambitious objective of Molecular Electronics Materials, Devices and Applications is to give the reader the necessary information to understand the challenges and opportunities of this recent field of research. In order to provide a good overview and understanding, the main molecular devices are first presented. A complete set of presentation and discussion of the actual molecular architectures follows. Nevertheless, another goal of Molecular Electronics Materials, Devices and Applications is also to promote a practical approach. As a starting point for future developments, a pragmatic methodology for VHDL-AMS device modelling and circuit design based on experimental data is then proposed. It includes an original fault tolerant memory architecture based on molecular electronics.