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Dieses Lehrbuch führt in die Grundlagen der Halbleiter-Schaltungstechnik ein. Ziel ist es, dem Leser die Prinzipien und die Funktionsweise von Bauelementen und Schaltungen zu vermitteln sowie ihn mit den Herstellungsverfahren integrierter Schaltungen vertraut zu machen. Nach einer verständlichen Einführung in die Halbleiterphysik behandelt der Autor die wichtigsten Bauelemente und Grundschaltungen und leitet die entsprechenden Gleichungen so ab, dass der Leser die Vorgehensweise auch auf andere, komplexe Schaltungen übertragen kann. Neben den analogen Grundschaltungen - vom einstufigen Spannungsverstärker bis zum integrierten Operationsverstärker - gibt das Buch eine Übersicht über den Entwurf digitaler Schaltungen in CMOS-Technologie. Eine Einführung in die Technologie zur Herstellung integrierter CMOS-Schaltungen rundet den Inhalt des Buches ab. Das interaktive Lernprogramm S.m.i.L.E ermöglicht es, komplexe Zusammenhänge mittels interaktiver Applets selbst zu veranschaulichen. Mit Hilfe von PSpice-Dateien kann der Leser die Funktion der im Buch vorgestellten Schaltungen an praktischen Beispielen selbst erproben. Die CD-ROM zum Buch enthält neben den PSpice-Dateien das Lernprogramm S.m.i.L.E und die Studentenversion des Schaltungssimulators OrCAD-PSpice 9.1.
Electronic circuits. --- Electronics. --- Microelectronics. --- Computer hardware. --- Circuits and Systems. --- Electronics and Microelectronics, Instrumentation. --- Computer Hardware.
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Introduction to Logic Synthesis Using Verilog HDL explains how to write accurate Verilog descriptions of digital systems that can be synthesized into digital system netlists with desirable characteristics. The book contains numerous Verilog examples that begin with simple combinational networks and progress to synchronous sequential logic systems. Common pitfalls in the development of synthesizable Verilog HDL are also discussed along with methods for avoiding them. The target audience is anyone with a basic understanding of digital logic principles who wishes to learn how to model digital systems in the Verilog HDL in a manner that also allows for automatic synthesis. A wide range of readers, from hobbyists and undergraduate students to seasoned professionals, will find this a compelling and approachable work. The book provides concise coverage of the material and includes many examples, enabling readers to quickly generate high-quality synthesizable Verilog models.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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Pragmatic Circuits: Frequency Domain goes through the Laplace transform to get from the time domain to topics that include the s-plane, Bode diagrams, and the sinusoidal steady state. This second of three volumes ends with a-c power, which, although it is just a special case of the sinusoidal steady state, is an important topic with unique techniques and terminology. Pragmatic Circuits: Frequency Domain is focused on the frequency domain. In other words, time will no longer be the independent variable in our analysis. The two other volumes in the Pragmatic Circuits series include titles on DC and Time Domain and Signals and Filters. These short lecture books will be of use to students at any level of electrical engineering and for practicing engineers, or scientists, in any field looking for a practical and applied introduction to circuits and signals. The author's “pragmatic” and applied style gives a unique and helpful “non-idealistic, practical, opinionated” introduction to circuits.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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High-Speed Digital System Design bridges the gap from theory to implementation in the real world. Systems with clock speeds in low megahertz range qualify for high-speed. Proper design results in quality digital transmissions and lowers the chance for errors. This book is for computer and electrical engineers who may or may not have learned electromagnetic theory. The presentation style allows readers to quickly begin designing their own high-speed systems and diagnosing existing designs for errors. After studying this book, readers will be able to: Design the power distribution system for a printed circuit board to minimize noise Plan the layers of a PCB for signals, power, and ground to maximize signal quality and minimize noise Include test structures in the printed circuit board to easily diagnose manufacturing mistakes Choose the best PCB design parameters such a trace width, height,and routed path to ensure the most stable characteristic impedance Determine the correct termination to minimize reflections Predict the delay caused by a given PCB trace Minimize driver power consumption using AC terminations Compensate for discontinuities along a PCB trace Use pre-emphasis and equalization techniques to counteract lossy transmission lines Determine the amount of crosstalk between two traces Diagnose existing PCBs to determine the sources of errors.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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This book provides practicing scientists and engineers a tutorial on the fundamental concepts and use of microcontrollers. Today, microcontrollers, or single integrated circuit (chip) computers, play critical roles in almost all instrumentation and control systems. Most existing books arewritten for undergraduate and graduate students taking an electrical and/or computer engineering course. Furthermore, these texts have beenwritten with a particular model of microcontroller as the target discussion. These textbooks also require a requisite knowledge of digital design fundamentals. This textbook presents the fundamental concepts common to all microcontrollers. Our goals are to present the over–arching theory of microcontroller operation and to provide a detailed discussion on constituent subsystems available in most microcontrollers. With such goals, we envision that the theory discussed in this book can be readily applied to a wide variety of microcontroller technologies, allowing practicing scientists and engineers to become acquainted with basic concepts prior to beginning a design involving a specific microcontroller. We have found that the fundamental principles of a given microcontroller are easily transferred to other controllers. Although this is a relatively small book, it is packed with useful information for quickly coming up to speed on microcontroller concepts.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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Pragmatic Circuits: Signals and Filters is built around the processing of signals. Topics include spectra, a short introduction to the Fourier series, design of filters, and the properties of the Fourier transform. The focus is on signals rather than power. But the treatment is still pragmatic. For example, the author accepts the work of Butterworth and uses his results to design filters in a fairly methodical fashion. This third of three volumes finishes with a look at spectra by showing how to get a spectrum even if a signal is not periodic. The Fourier transform provides a way of dealing with such non-periodic signals. The two other volumes in the Pragmatic Circuits series include titles on DC and Time Domain and Frequency Domain. These short lecture books will be of use to students at any level of electrical engineering and for practicing engineers, or scientists, in any field looking for a practical and applied introduction to circuits and signals. The author's “pragmatic” and applied style gives a unique and helpful “non-idealistic, practical, opinionated” introduction to circuits.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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Pragmatic Circuits: DC and Time Domain deals primarily with circuits and how they function, beginning with a review of Kirchhoff's and Ohm's Laws analysis of d-c circuits and op-amps, and the sinusoidal steady state. The author then looks at formal circuit analysis through nodal and mesh equations. Useful theorems like Thevenin are added to the circuits toolbox. This first of three volumes ends with a chapter on design. The two follow-up volumes in the Pragmatic Circuits series include titles on Frequency Domain and Signals and Filters. These short lecture books will be of use to students at any level of electrical engineering and for practicing engineers, or scientists, in any field looking for a practical and applied introduction to circuits and signals. The author's “pragmatic” and applied style gives a unique and helpful “non-idealistic, practical, opinionated” introduction to circuits.
Engineering. --- Electronic circuits. --- Control engineering. --- Robotics. --- Automation. --- Computers. --- Technology and Engineering. --- Electronic Circuits and Systems. --- Control, Robotics, Automation. --- Computer Hardware.
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Halbleiter-Leistungsbauelemente sind das Kernstück der Leistungselektronik. Sie bestimmen die Leistungsfähigkeit, sie machen neuartige und verlustarme Schaltungen erst möglich. Da für deren Anwendung nicht nur die Vorgänge im Halbleiter, sondern auch die thermischen und mechanischen Eigenschaften wesentlich sind, beinhaltet die Behandlung der Halbleiter-Leistungsbauelemente auch die Aufbau- und Verbindungstechnik. Das Buch geht auf die physikalischen Grundlagen ein, behandelt die Herstellungstechnologie, geht auf einzelne Bauarten wie Dioden, Transistoren, Thyristoren und MOS-Transistoren und IGBTs detailliert ein. Aufbau- und Verbindungstechnik sowie thermomechanische Probleme werden behandelt und die bekannten Zerstörungsmechanismen und Störungseffekte einzelner Bauarten werden beschrieben. Für den Systementwurf werden leistungselektronische Systeme als Ganzes betrachtet.
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"...a welcome addition to the SystemC literature. Those new to SystemC will find it a very good introduction, and those who have already been exposed to SystemC will find it a useful reference. The style is straightforward and the extensive use of examples gives quick insight into using SystemC in real designs...." (John Sanguinetti, Ph.D., Chief Technical Officer, Forte Design Systems) "...your book helped me bridge the gap in my understanding of the SystemC scheduler and the language features with examples that are easy to follow. The discussion on a TLM approach is also very insightful." (Suhas Pai, QUALCOMM, Inc.) "...well written, and a much-needed overview of SystemC. I like that the book introduces features in context, and with enough code to help the reader understand, but without burying them in code. I found it remarkably easy to read." (Andy Meyer, Cadence Design Systems, Inc.) SystemC provides a robust set of extensions to C++ that enables rapid development of complex hardware/software systems. This book focuses on the practical uses of the language for modeling real systems. The wealth of examples and downloadable code methodically guide the reader through the finer points of the SystemC language. This book will show you: -A step-by-step build-up of syntax, -NEW features of SystemC 2.1, -Code examples for each concept, -Many resource references, -Coding styles and guidelines, -Over 52 downloadable code examples (over 8,000 lines), -Exercises throughout the book, -How SystemC fits into the system design methodology, -Why features are as they are. Well known consultants in the EDA industry, both David Black and Jack Donovan have been involved in the adoption and teaching of new technologies and methodologies for a combined total of 42+ years. Recently, they jointly founded a consultancy, Eklectic Ally, focused on helping companies adopt SystemC methodologies.
systeemontwerp --- systemC --- Computer hardware. --- Computer Hardware. --- Engineering. --- Computer-aided engineering. --- Electrical engineering. --- Electronic circuits. --- Circuits and Systems. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Electrical Engineering. --- System design. --- Design, System --- Systems design --- Electronic data processing --- System analysis
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Moderne elektronische Produkte enthalten Schaltkreise mit Millionen von Transistoren sowie Leiterplatten höchster Packungsdichte. Der Layoutentwurf eines derartigen elektronischen Systems, d. h. die Übertragung der Schaltung in die konkrete Anordnung von Bauelementen und Leiterbahnen, ist nur noch mit rechnergestützten Entwurfssystemen möglich, da die Komplexität bei Handhabung traditioneller Methoden vom Ingenieur nicht mehr überblickt werden kann. Dieses Buch stellt leicht verständlich und anschaulich die Wirkungsweisen und die grundlegenden Algorithmen vor, die "unter der Haube" von Entwurfssystemen für die Layoutsynthese ablaufen. Damit vermittelt das Buch die Fähigkeit, sowohl einfache Entwurfsprogramme selbst zu schreiben als auch zu erkennen, wie ein kommerzielles Layout-Entwurfssystem arbeitet. Dem Autor gelingt es, die Brücke zwischen der Welt der Algorithmen, also dem "Innenleben" von modernen Entwurfssystemen, und deren Anwendung zu schlagen. Zu jedem der wesentlichen Schritte bei der Layoutsynthese erfolgt in übersichtlichen Kapiteln zuerst eine Problembeschreibung sowie die Vorstellung von Begriffen und Optimierungszielen. Danach wird auf die bedeutsamsten Algorithmen eingegangen, die den entsprechenden Entwurfswerkzeugen zugrunde liegen. Zahlreiche Beispiele und Aufgaben mit Lösungen dienen der Erhöhung der Anschaulichkeit. Zu jedem Kapitel ist ein umfangreicher Foliensatz über das Internet erhältlich.
Electrical engineering. --- Electronics. --- Microelectronics. --- Electronic circuits. --- Computer-aided engineering. --- Logic design. --- Electrical Engineering. --- Electronics and Microelectronics, Instrumentation. --- Circuits and Systems. --- Computer-Aided Engineering (CAD, CAE) and Design. --- Logic Design.
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