 
    Engineering productivity in integrated circuit product design and - velopment today is limited largely by the effectiveness of the CAD tools used. For those domains of product design that are highly dependent on transistor-level circuit design and optimization, such as high-speed logic and memory, mixed-signal analog-digital int- faces, RF functions, power integrated circuits, and so forth, circuit simulation is perhaps the single most important tool. As the complexity and performance of integrated electronic systems has increased with scaling of technology feature size, the capabilities and sophistication of the underlying circuit simulation tools have correspondingly increased. The absolute size of circuits requiring transistor-level simulation has increased dramatically, creating not only problems of computing power resources but also problems of task organization, complexity management, output representation, initial condition setup, and so forth. Also, as circuits of more c- plexity and mixed types of functionality are attacked with simu- tion, the spread between time constants or event time scales within the circuit has tended to become wider, requiring new strategies in simulators to deal with large time constant spreads.
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Engineering productivity in integrated circuit product design and - velopment today is limited largely by the effectiveness of the CAD tools used. For those domains of product design that are highly dependent on transistor-level circuit design and optimization, such as high-speed logic and memory, mixed-signal analog-digital int- faces, RF functions, power integrated circuits, and so forth, circuit simulation is perhaps the single most important tool. As the complexity and performance of integrated electronic systems has increased with scaling of technology feature size, the capabilities and sophistication of the underlying circuit simulation tools have correspondingly increased. The absolute size of circuits requiring transistor-level simulation has increased dramatically, creating not only problems of computing power resources but also problems of task organization, complexity management, output representation, initial condition setup, and so forth. Also, as circuits of more c- plexity and mixed types of functionality are attacked with simu- tion, the spread between time constants or event time scales within the circuit has tended to become wider, requiring new strategies in simulators to deal with large time constant spreads.
The Designer's Guide to SPICE and Spectre® is an in-depth guide to circuit simulators from a designer's perspective: the pitfalls of circuit simulation, such as convergence and accuracy problems, are explained in terms a circuit designer is comfortable with. The book gives designers insight into why these problems occur and how to avoid them. It also provides practical advice on how to make many difficult measurements with a circuit simulator, such as loop gain of an op-amp or distortion measurements of such clocked circuits as d-to-a converters and sample-and-hold circuits. Finally, suggestions are given about how to handle difficult classes of circuits, such as oscillators, charge-storage or very large circuits. After reading The Designer's Guide to SPICE and Spectre®, you will spend less time fighting your simulator and more time exploring, understanding and designing your circuits. 
 Audience: Written for practising analog and mixed-signal circuit designers who are already familiar with the basics of operating SPICE. Useful for anyone who uses a circuit simulator, no matter which, since the focus is on the fundamental characteristics and behavior of circuit simulators in general. 
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Gebunden. Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Engineering productivity in integrated circuit product design and - velopment today is limited largely by the effectiveness of the CAD tools used. For those domains of product design that are highly dependent on transistor-level circuit design and optimizat. Bestandsnummer des Verkäufers 5971591
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Buch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Engineering productivity in integrated circuit product design and - velopment today is limited largely by the effectiveness of the CAD tools used. For those domains of product design that are highly dependent on transistor-level circuit design and optimization, such as high-speed logic and memory, mixed-signal analog-digital int- faces, RF functions, power integrated circuits, and so forth, circuit simulation is perhaps the single most important tool. As the complexity and performance of integrated electronic systems has increased with scaling of technology feature size, the capabilities and sophistication of the underlying circuit simulation tools have correspondingly increased. The absolute size of circuits requiring transistor-level simulation has increased dramatically, creating not only problems of computing power resources but also problems of task organization, complexity management, output representation, initial condition setup, and so forth. Also, as circuits of more c- plexity and mixed types of functionality are attacked with simu- tion, the spread between time constants or event time scales within the circuit has tended to become wider, requiring new strategies in simulators to deal with large time constant spreads. 404 pp. Englisch. Bestandsnummer des Verkäufers 9780792395713
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Buch. Zustand: Neu. The Designer's Guide to Spice and Spectre® | Ken Kundert | Buch | xviii | Englisch | 1995 | Springer US | EAN 9780792395713 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu Print on Demand. Bestandsnummer des Verkäufers 102562998
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Buch. Zustand: Neu. Neuware -Engineering productivity in integrated circuit product design and - velopment today is limited largely by the effectiveness of the CAD tools used. For those domains of product design that are highly dependent on transistor-level circuit design and optimization, such as high-speed logic and memory, mixed-signal analog-digital int- faces, RF functions, power integrated circuits, and so forth, circuit simulation is perhaps the single most important tool. As the complexity and performance of integrated electronic systems has increased with scaling of technology feature size, the capabilities and sophistication of the underlying circuit simulation tools have correspondingly increased. The absolute size of circuits requiring transistor-level simulation has increased dramatically, creating not only problems of computing power resources but also problems of task organization, complexity management, output representation, initial condition setup, and so forth. Also, as circuits of more c- plexity and mixed types of functionality are attacked with simu- tion, the spread between time constants or event time scales within the circuit has tended to become wider, requiring new strategies in simulators to deal with large time constant spreads.Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 404 pp. Englisch. Bestandsnummer des Verkäufers 9780792395713
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Zustand: New. A guide to circuit simulators. It explains the pitfalls of circuit simulation, such as convergence and accuracy problems. It offers an insight into why these problems occur and how to avoid them. It also provides suggestions about how to handle difficult classes of circuits, such as oscillators, charge-storage or very large circuits. Series: The Designer's Guide Book Series. Num Pages: 382 pages, biography. BIC Classification: TJFC. Category: (P) Professional & Vocational; (UP) Postgraduate, Research & Scholarly. Dimension: 234 x 156 x 23. Weight in Grams: 742. . 1995. Hardback. . . . . Bestandsnummer des Verkäufers V9780792395713