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Power Integrity for Nanoscale Integrated Systems
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Power Integrity for Nanoscale Integrated Systems

Book Details

Format Hardback or Cased Book
ISBN-10 0071787763
ISBN-13 9780071787765
Publisher McGraw-Hill Education - Europe
Imprint McGraw-Hill Professional
Country of Manufacture US
Country of Publication GB
Publication Date Mar 16th, 2014
Print length 416 Pages
Weight 702 grams
Dimensions 23.60 x 15.30 x 2.60 cms
Product Classification: NanotechnologyCircuits & components
Ksh 25,550.00
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A comprehensive examination of the procedures necessary to mitigate the emission of noise in high-voltage circuitry design

Publisher''s Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality,  authenticity, or access to any online entitlements included with the product.

Proven methods for noise-tolerant nanoscale integrated circuit design

This leading-edge guide discusses the impact of power integrity from a design perspective, emphasizing phenomena and problems induced by power integrity degradation and the latest design trends, including low-power design. Power Integrity for Nanoscale Integrated Systems describes how these problems can be forecast early in the design process and the countermeasures that can be used to address them, such as the inclusion of inductance and accurate modeling for PI analysis, as well as robust circuit design. Detailed examples and a case study on the IBM POWER7+ processor illustrate real-world applications of the techniques presented in this practical resource.

Coverage includes:

  • Significance of power integrity for integrated circuits
  • Supply and substrate noise impact on circuits
  • Clock generation and distribution with power integrity
  • Signal and power integrity design for I/O circuits
  • Power integrity degradation and modeling
  • Lumped, distributed, and 3D modeling for power integrity
  • Chip temperature and PI impact
  • Low-power techniques and PI impact
  • Power integrity case study using the IBM POWER7+ processor chip
  • Carbon nanotube interconnects for power delivery


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