Classical and Object-oriented Software Engineering with UML and C++

Classical and Object-oriented Software Engineering with UML and C++
Title Classical and Object-oriented Software Engineering with UML and C++ PDF eBook
Author Stephen R. Schach
Publisher McGraw-Hill Companies
Pages 658
Release 1999
Genre Computers
ISBN

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The Universal Modeling Language (UML) has become an industry standard in software engineering. In this text, it is used for object-oriented analysis and design as well as when diagrams depict objects and their interrelationships.

Operation and Modeling of the MOS Transistor

Operation and Modeling of the MOS Transistor
Title Operation and Modeling of the MOS Transistor PDF eBook
Author Yannis Tsividis
Publisher
Pages 0
Release 2011
Genre Metal oxide semiconductor field-effect transistors
ISBN 9780195170153

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The MOS (Metal Oxide Semiconductor) transistor is the most important building block of modern silicon integrated circuits. This book fills an important gap in the literature by presenting a unified treatment of the operation and modeling of the MOS transistor that is complemented withextensive intuitive discussions.The MOS transistor is the dominant VLSI (Very Large Scale Integration) device, and understanding of this device is mandatory for those people planning a career in device physics and modeling as well as in circuit design. Especially important for university courses,there is a logical, systematic and progressive description that starts with semiconductor fundamentals and builds up to a comprehensive understanding of the basics of MOS transistors. For practicing professionals there are details of nuances observed in MOS transistor behavior, and variousapproaches to modeling these are presented. Detailed derivations are given for modeling dc currents, charges for large-signal operation, small-signal operation at low frequencies and high frequencies, and noise.

Instructor's Solution Manaul for Operation and Modeling of the Mo 3rd Ed

Instructor's Solution Manaul for Operation and Modeling of the Mo 3rd Ed
Title Instructor's Solution Manaul for Operation and Modeling of the Mo 3rd Ed PDF eBook
Author Charles Batchelor Professor of Electrical Engineering Yannis Tsividis
Publisher
Pages 248
Release 2010-12-14
Genre Metal oxide semiconductor field-effect transistors
ISBN 9780199733774

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Charge-Based MOS Transistor Modeling

Charge-Based MOS Transistor Modeling
Title Charge-Based MOS Transistor Modeling PDF eBook
Author Christian C. Enz
Publisher John Wiley & Sons
Pages 328
Release 2006-08-14
Genre Technology & Engineering
ISBN 0470855452

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Modern, large-scale analog integrated circuits (ICs) are essentially composed of metal-oxide semiconductor (MOS) transistors and their interconnections. As technology scales down to deep sub-micron dimensions and supply voltage decreases to reduce power consumption, these complex analog circuits are even more dependent on the exact behavior of each transistor. High-performance analog circuit design requires a very detailed model of the transistor, describing accurately its static and dynamic behaviors, its noise and matching limitations and its temperature variations. The charge-based EKV (Enz-Krummenacher-Vittoz) MOS transistor model for IC design has been developed to provide a clear understanding of the device properties, without the use of complicated equations. All the static, dynamic, noise, non-quasi-static models are completely described in terms of the inversion charge at the source and at the drain taking advantage of the symmetry of the device. Thanks to its hierarchical structure, the model offers several coherent description levels, from basic hand calculation equations to complete computer simulation model. It is also compact, with a minimum number of process-dependant device parameters. Written by its developers, this book provides a comprehensive treatment of the EKV charge-based model of the MOS transistor for the design and simulation of low-power analog and RF ICs. Clearly split into three parts, the authors systematically examine: the basic long-channel intrinsic charge-based model, including all the fundamental aspects of the EKV MOST model such as the basic large-signal static model, the noise model, and a discussion of temperature effects and matching properties; the extended charge-based model, presenting important information for understanding the operation of deep-submicron devices; the high-frequency model, setting out a complete MOS transistor model required for designing RF CMOS integrated circuits. Practising engineers and circuit designers in the semiconductor device and electronics systems industry will find this book a valuable guide to the modelling of MOS transistors for integrated circuits. It is also a useful reference for advanced students in electrical and computer engineering.

Mosfet Modeling For Circuit Analysis And Design

Mosfet Modeling For Circuit Analysis And Design
Title Mosfet Modeling For Circuit Analysis And Design PDF eBook
Author Carlos Galup-montoro
Publisher World Scientific
Pages 445
Release 2007-02-27
Genre Technology & Engineering
ISBN 9814477974

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This is the first book dedicated to the next generation of MOSFET models. Addressed to circuit designers with an in-depth treatment that appeals to device specialists, the book presents a fresh view of compact modeling, having completely abandoned the regional modeling approach.Both an overview of the basic physics theory required to build compact MOSFET models and a unified treatment of inversion-charge and surface-potential models are provided. The needs of digital, analog and RF designers as regards the availability of simple equations for circuit designs are taken into account. Compact expressions for hand analysis or for automatic synthesis, valid in all operating regions, are presented throughout the book. All the main expressions for computer simulation used in the new generation compact models are derived.Since designers in advanced technologies are increasingly concerned with fluctuations, the modeling of fluctuations is strongly emphasized. A unified approach for both space (matching) and time (noise) fluctuations is introduced.

Mosfet Modeling For Vlsi Simulation: Theory And Practice

Mosfet Modeling For Vlsi Simulation: Theory And Practice
Title Mosfet Modeling For Vlsi Simulation: Theory And Practice PDF eBook
Author Narain Arora
Publisher World Scientific
Pages 633
Release 2007-02-14
Genre Technology & Engineering
ISBN 9814365491

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A reprint of the classic text, this book popularized compact modeling of electronic and semiconductor devices and components for college and graduate-school classrooms, and manufacturing engineering, over a decade ago. The first comprehensive book on MOS transistor compact modeling, it was the most cited among similar books in the area and remains the most frequently cited today. The coverage is device-physics based and continues to be relevant to the latest advances in MOS transistor modeling. This is also the only book that discusses in detail how to measure device model parameters required for circuit simulations.The book deals with the MOS Field Effect Transistor (MOSFET) models that are derived from basic semiconductor theory. Various models are developed, ranging from simple to more sophisticated models that take into account new physical effects observed in submicron transistors used in today's (1993) MOS VLSI technology. The assumptions used to arrive at the models are emphasized so that the accuracy of the models in describing the device characteristics are clearly understood. Due to the importance of designing reliable circuits, device reliability models are also covered. Understanding these models is essential when designing circuits for state-of-the-art MOS ICs.

CMOS Analog Design Using All-Region MOSFET Modeling

CMOS Analog Design Using All-Region MOSFET Modeling
Title CMOS Analog Design Using All-Region MOSFET Modeling PDF eBook
Author Márcio Cherem Schneider
Publisher Cambridge University Press
Pages 505
Release 2010-01-28
Genre Computers
ISBN 052111036X

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The essentials of analog circuit design with a unique all-region MOSFET modeling approach.