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SoC physical design : a comprehensive guide

By: Chakravarthi, Veena S.
Contributor(s): Koteshwar, Shivananda R.
Publisher: Cham : Springer International Publishing, 2022Description: xxiv, 155 p. ; ill., (Some Color) 24 cm.ISBN: 9783030981112.Subject(s): Circuits integres a tres grande echelle | Integrated circuits Very large scale integration | Systems on a chip DesignDDC classification: 621.395 Summary: SoC Physical Design is a comprehensive practical guide for VLSI designers that thoroughly examines and explains the practical physical design flow of system on chip (SoC). The book covers the rationale behind making design decisions on power, performance, and area (PPA) goals for SoC and explains the required design environment algorithms, design flows, constraints, handoff procedures, and design infrastructure requirements in achieving them. The book reveals challenges likely to be faced at each design process and ways to address them in practical design environments. Advanced topics on 3D ICs, EDA trends, and SOC trends are discussed in later chapters. Coverage also includes advanced physical design techniques followed for deep submicron SOC designs. The book provides aspiring VLSI designers, practicing design engineers, and electrical engineering students with a solid background on the complex physical design requirements of SoCs which are required to contribute effectively in design roles. Provides a comprehensive overview of the skills required for complex SoC design and development; Examines SOC design challenges in nanotechnology scales; Offers readers professional tricks to using tools for optimal design runs.
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Item type Current location Call number Status Date due Barcode
Books 621.395 CHA (Browse shelf) Checked out 15/05/2024 033380

Includes bibliographical references and index.

SoC Physical Design is a comprehensive practical guide for VLSI designers that thoroughly examines and explains the practical physical design flow of system on chip (SoC). The book covers the rationale behind making design decisions on power, performance, and area (PPA) goals for SoC and explains the required design environment algorithms, design flows, constraints, handoff procedures, and design infrastructure requirements in achieving them. The book reveals challenges likely to be faced at each design process and ways to address them in practical design environments. Advanced topics on 3D ICs, EDA trends, and SOC trends are discussed in later chapters. Coverage also includes advanced physical design techniques followed for deep submicron SOC designs. The book provides aspiring VLSI designers, practicing design engineers, and electrical engineering students with a solid background on the complex physical design requirements of SoCs which are required to contribute effectively in design roles. Provides a comprehensive overview of the skills required for complex SoC design and development; Examines SOC design challenges in nanotechnology scales; Offers readers professional tricks to using tools for optimal design runs.

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