Compact Models and Measurement Techniques for High-Speed Interconnects provides detailed analysis of issues related to high-speed interconnects from the perspective of modeling approaches and measurement techniques. Particular focus is laid on the unified approach (variational method combined with the transverse transmission line technique) to develop efficient compact models for planar interconnects. This book will give a qualitative summary of the various reported modeling techniques and approaches and will help researchers and graduate students with deeper insights into interconnect models in particular and interconnect in general. Time domain and frequency domain measurement techniques and simulation methodology are also explained in this book.
| ISBN: | 9781461410706 |
| Publication date: | 17th February 2012 |
| Author: | Rohit Y Sharma, Tapas Chakravarty |
| Publisher: | Springer an imprint of Springer New York |
| Format: | Paperback |
| Pagination: | 69 pages |
| Series: | SpringerBriefs in Electrical and Computer Engineering |
| Genres: |
Electronics: circuits and components Computer architecture and logic design |
Compact Models and Measurement Techniques for High-Speed Interconnects provides detailed analysis of issues related to high-speed interconnects from the perspective of modeling approaches and measurement techniques. Particular focus is laid on the unified approach (variational method combined with the transverse transmission line technique) to develop efficient compact models for planar interconnects.
Compact Models and Measurement Techniques for High-Speed Interconnects features in the following genres: Electronics: circuits and components, Computer architecture and logic design
Paperback. Not Available.
Compact Models and Measurement Techniques for High-Speed Interconnects was written by Rohit Y Sharma, Tapas Chakravarty and published by Springer an imprint of Springer New York
Compact Models and Measurement Techniques for High-Speed Interconnects has 69 pages
Yes it is part of SpringerBriefs in Electrical and Computer Engineering series