Crosstalk in Modern On-Chip Interconnects

A FDTD Approach

Nonfiction, Science & Nature, Technology, Nanotechnology, Electronics
Cover of the book Crosstalk in Modern On-Chip Interconnects by B.K. Kaushik, V. Ramesh Kumar, Amalendu Patnaik, Springer Singapore
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Author: B.K. Kaushik, V. Ramesh Kumar, Amalendu Patnaik ISBN: 9789811008009
Publisher: Springer Singapore Publication: April 6, 2016
Imprint: Springer Language: English
Author: B.K. Kaushik, V. Ramesh Kumar, Amalendu Patnaik
ISBN: 9789811008009
Publisher: Springer Singapore
Publication: April 6, 2016
Imprint: Springer
Language: English

The book provides accurate FDTD models for on-chip interconnects, covering most recent advancements in materials and design. Furthermore, depending on the geometry and physical configurations, different electrical equivalent models for CNT and GNR based interconnects are presented. Based on the electrical equivalent models the performance comparison among the Cu, CNT and GNR-based interconnects are also discussed in the book. The proposed models are validated with the HSPICE simulations.

The book introduces the current research scenario in the modeling of on-chip interconnects. It presents the structure, properties, and characteristics of graphene based on-chip interconnects and the FDTD modeling of Cu based on-chip interconnects. The model considers the non-linear effects of CMOS driver as well as the transmission line effects of interconnect line that includes coupling capacitance and mutual inductance effects. In a more realistic manner, the proposed model includes the effect of width-dependent MFP of the MLGNR while taking into account the edge roughness.

View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

The book provides accurate FDTD models for on-chip interconnects, covering most recent advancements in materials and design. Furthermore, depending on the geometry and physical configurations, different electrical equivalent models for CNT and GNR based interconnects are presented. Based on the electrical equivalent models the performance comparison among the Cu, CNT and GNR-based interconnects are also discussed in the book. The proposed models are validated with the HSPICE simulations.

The book introduces the current research scenario in the modeling of on-chip interconnects. It presents the structure, properties, and characteristics of graphene based on-chip interconnects and the FDTD modeling of Cu based on-chip interconnects. The model considers the non-linear effects of CMOS driver as well as the transmission line effects of interconnect line that includes coupling capacitance and mutual inductance effects. In a more realistic manner, the proposed model includes the effect of width-dependent MFP of the MLGNR while taking into account the edge roughness.

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