CMOS RF Circuit Design for Reliability and Variability

CMOS RF Circuit Design for Reliability and Variability
Title CMOS RF Circuit Design for Reliability and Variability PDF eBook
Author Jiann-Shiun Yuan
Publisher Springer
Pages 108
Release 2016-04-13
Genre Technology & Engineering
ISBN 9811008841

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The subject of this book is CMOS RF circuit design for reliability. The device reliability and process variation issues on RF transmitter and receiver circuits will be particular interest to the readers in the field of semiconductor devices and circuits. This proposed book is unique to explore typical reliability issues in the device and technology level and then to examine their impact on RF wireless transceiver circuit performance. Analytical equations, experimental data, device and circuit simulation results will be given for clear explanation. The main benefit the reader derive from this book will be clear understanding on how device reliability issues affects the RF circuit performance subjected to operation aging and process variations.

Energy Efficient and Reliable Embedded Nanoscale SRAM Design

Energy Efficient and Reliable Embedded Nanoscale SRAM Design
Title Energy Efficient and Reliable Embedded Nanoscale SRAM Design PDF eBook
Author Bhupendra Singh Reniwal
Publisher CRC Press
Pages 213
Release 2023-11-30
Genre Technology & Engineering
ISBN 1000985156

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This reference text covers a wide spectrum for designing robust embedded memory and peripheral circuitry. It will serve as a useful text for senior undergraduate and graduate students and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discusses low-power design methodologies for static random-access memory (SRAM) Covers radiation-hardened SRAM design for aerospace applications Focuses on various reliability issues that are faced by submicron technologies Exhibits more stable memory topologies Nanoscale technologies unveiled significant challenges to the design of energy- efficient and reliable SRAMs. This reference text investigates the impact of process variation, leakage, aging, soft errors and related reliability issues in embedded memory and periphery circuitry. The text adopts a unique way to explain the SRAM bitcell, array design, and analysis of its design parameters to meet the sub-nano-regime challenges for complementary metal-oxide semiconductor devices. It comprehensively covers low- power-design methodologies for SRAM, exhibits more stable memory topologies, and radiation-hardened SRAM design for aerospace applications. Every chapter includes a glossary, highlights, a question bank, and problems. The text will serve as a useful text for senior undergraduate students, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. Discussing comprehensive studies of variability-induced failure mechanism in sense amplifiers and power, delay, and read yield trade-offs, this reference text will serve as a useful text for senior undergraduate, graduate students, and professionals in areas including electronics and communications engineering, electrical engineering, mechanical engineering, and aerospace engineering. It covers the development of robust SRAMs, well suited for low-power multi-core processors for wireless sensors node, battery-operated portable devices, personal health care assistants, and smart Internet of Things applications.

Reliability of Nanoscale Circuits and Systems

Reliability of Nanoscale Circuits and Systems
Title Reliability of Nanoscale Circuits and Systems PDF eBook
Author Miloš Stanisavljević
Publisher Springer Science & Business Media
Pages 215
Release 2010-10-20
Genre Technology & Engineering
ISBN 1441962174

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This book is intended to give a general overview of reliability, faults, fault models, nanotechnology, nanodevices, fault-tolerant architectures and reliability evaluation techniques. Additionally, the book provides an in depth state-of-the-art research results and methods for fault tolerance as well as the methodology for designing fault-tolerant systems out of highly unreliable components.

Mitigating Process Variability and Soft Errors at Circuit-Level for FinFETs

Mitigating Process Variability and Soft Errors at Circuit-Level for FinFETs
Title Mitigating Process Variability and Soft Errors at Circuit-Level for FinFETs PDF eBook
Author Alexandra Zimpeck
Publisher Springer Nature
Pages 131
Release 2021-03-10
Genre Technology & Engineering
ISBN 3030683680

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This book evaluates the influence of process variations (e.g. work-function fluctuations) and radiation-induced soft errors in a set of logic cells using FinFET technology, considering the 7nm technological node as a case study. Moreover, for accurate soft error estimation, the authors adopt a radiation event generator tool (MUSCA SEP3), which deals both with layout features and electrical properties of devices. The authors also explore four circuit-level techniques (e.g. transistor reordering, decoupling cells, Schmitt Trigger, and sleep transistor) as alternatives to attenuate the unwanted effects on FinFET logic cells. This book also evaluates the mitigation tendency when different levels of process variation, transistor sizing, and radiation particle characteristics are applied in the design. An overall comparison of all methods addressed by this work is provided allowing to trace a trade-off between the reliability gains and the design penalties of each approach regarding the area, performance, power consumption, single event transient (SET) pulse width, and SET cross-section.

Lifetime Reliability-aware Design of Integrated Circuits

Lifetime Reliability-aware Design of Integrated Circuits
Title Lifetime Reliability-aware Design of Integrated Circuits PDF eBook
Author Mohsen Raji
Publisher Springer Nature
Pages 113
Release 2022-11-16
Genre Technology & Engineering
ISBN 3031153456

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This book covers the state-of-the-art research in design of modern electronic systems used in safety-critical applications such as medical devices, aircraft flight control, and automotive systems. The authors discuss lifetime reliability of digital systems, as well as an overview of the latest research in the field of reliability-aware design of integrated circuits. They address modeling approaches and techniques for evaluation and improvement of lifetime reliability for nano-scale CMOS digital circuits, as well as design algorithms that are the cornerstone of Computer Aided Design (CAD) of reliable VLSI circuits. In addition to developing lifetime reliability analysis and techniques for clocked storage elements (such as flip-flops), the authors also describe analysis and improvement strategies targeting commercial digital circuits.

Dielectrics for Nanosystems 4: Materials Science, Processing, Reliability, and Manufacturing

Dielectrics for Nanosystems 4: Materials Science, Processing, Reliability, and Manufacturing
Title Dielectrics for Nanosystems 4: Materials Science, Processing, Reliability, and Manufacturing PDF eBook
Author Electrochemical society. Meeting
Publisher The Electrochemical Society
Pages 588
Release 2010
Genre Dielectrics
ISBN 1566777925

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Dependable Multicore Architectures at Nanoscale

Dependable Multicore Architectures at Nanoscale
Title Dependable Multicore Architectures at Nanoscale PDF eBook
Author Marco Ottavi
Publisher Springer
Pages 294
Release 2017-08-28
Genre Technology & Engineering
ISBN 3319544225

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This book provides comprehensive coverage of the dependability challenges in today's advanced computing systems. It is an in-depth discussion of all the technological and design-level techniques that may be used to overcome these issues and analyzes various dependability-assessment methods. The impact of individual application scenarios on the definition of challenges and solutions is considered so that the designer can clearly assess the problems and adjust the solution based on the specifications in question. The book is composed of three sections, beginning with an introduction to current dependability challenges arising in complex computing systems implemented with nanoscale technologies, and of the effect of the application scenario. The second section details all the fault-tolerance techniques that are applicable in the manufacture of reliable advanced computing devices. Different levels, from technology-level fault avoidance to the use of error correcting codes and system-level checkpointing are introduced and explained as applicable to the different application scenario requirements. Finally the third section proposes a roadmap of future trends in and perspectives on the dependability and manufacturability of advanced computing systems from the special point of view of industrial stakeholders. Dependable Multicore Architectures at Nanoscale showcases the original ideas and concepts introduced into the field of nanoscale manufacturing and systems reliability over nearly four years of work within COST Action IC1103 MEDIAN, a think-tank with participants from 27 countries. Academic researchers and graduate students working in multi-core computer systems and their manufacture will find this book of interest as will industrial design and manufacturing engineers working in VLSI companies.