Item type | Current library | Collection | Shelving location | Call number | Status | Date due | Barcode | Item holds | |
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BITS Pilani Hyderabad | 621 | General Stack (For lending) | 621.381 JAL-A (Browse shelf(Opens below)) | Available | 42048 |
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621.381 HEI-T Physics of nanoelectronics : | 621.381 HUG-J Practical electronics: | 621.381 INI-K Nanoelectronics : | 621.381 JAL-A Molecular electronics materials, devices and applications / | 621.3810 JAN-G Power electronics and drives / | 621.381 JOH-H High-speed digital design : | 621.381 JON-T Electromechanics and MEMS / |
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. Academics, researchers, students, and a oerandoma people looking for an exhaustive state of the art in nanotechnologies will find in Molecular Electronics Materials, Devices and Applications, accessible to most readers interested in sciences, the more complete reference on molecular electronics covering technologies, devices and architectures.
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