The development of large-scale integrated systems on a chip has had a dramatic effect on circuit design methodology.
Recent years have seen an escalation of interest in systems level integration (system-on-a-chip) and the development of low power, high chip density circuits and systems. Kurt Hoffmann sets out to address a wide range of issues relating to the design and integration of integrated circuit components and provides readers with the methodology by which simple equations for the estimation of transistor geometries and circuit behaviour can be deduced. The broad coverage of this unique book ranges from field effect transistor design, MOS transistor modelling and the fundamentals of digital CMOS circuit design through to MOS memory architecture and design.
Drawing upon considerable experience within both industry and academia, Hoffmann’s outstanding text, will prove an invaluable resource for designers, practising engineers in the semiconductor device field and electronics systems industry as well as Postgraduate students of microelectronics, electrical and computer engineering.
"synopsis" may belong to another edition of this title.
Kurt Hoffmann is a professor of electrical engineering at the Bundeswehr University in Munich. He is a member of the Institute of Electrical and Electronics Engineers and received the IEEE Third Millennium Medal in 2000. Over the last 15 years, he has presented numerous well-received seminars and papers and has drawn on his considerable experience in both academia and industry to write this book.
The development of large-scale integrated systems-on-a-chip has had a dramatic effect on circuit design methodology. Escalating requirements for low-power, high-chip density circuits and systems have resulted in increasingly complex Bipolar, CMOS and BICMOS technologies. In order to design cost-effective and reliable systems a thorough understanding of the relationship between the individual components and their impact on the performance of the integrated system is required. Bridging the gap between semiconductor device physics and practical circuit design, this book:
Combining coverage of semiconductor physics, digital VLSI design and analog integrated circuits in one volume, this book will appeal to practising engineers, circuit designers and physicists working in IC-production, product engineering, quality management and quality testing. Postgraduate students in microelectronics, electrical and computer engineering will also find this book a useful reference.
The development of large-scale integrated systems-on-a-chip has had a dramatic effect on circuit design methodology. Escalating requirements for low-power, high-chip density circuits and systems have resulted in increasingly complex Bipolar, CMOS and BICMOS technologies. In order to design cost-effective and reliable systems a thorough understanding of the relationship between the individual components and their impact on the performance of the integrated system is required. Bridging the gap between semiconductor device physics and practical circuit design, this book:
Combining coverage of semiconductor physics, digital VLSI design and analog integrated circuits in one volume, this book will appeal to practising engineers, circuit designers and physicists working in IC-production, product engineering, quality management and quality testing. Postgraduate students in microelectronics, electrical and computer engineering will also find this book a useful reference.
"About this title" may belong to another edition of this title.
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