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Multi-Threshold CMOS Digital Circuits Managing Leakage Power discusses the Multi-threshold voltage CMOS (MTCMOS) technology, that has emerged as an increasingly popular technique to control the escalating leakage power, while maintaining high performance. The book addresses the leakage problem in a number of designs for combinational, sequential, dynamic, and current-steering logic. Moreover, computer-aided design methodologies for designing low-leakage integrated circuits are presented. The book give an excellent survey of state-of-the-art techniques presented in the literature as well as proposed designs that minimize leakage power, while achieving high-performance. Multi-Threshold CMOS Digital Circuits Managing Leakage Power is written for students of VLSI design as well as practicing circuit designers, system designers, CAD tool developers and researchers. It assumes a basic knowledge of digital circuit design and device operation, and covers a broad range of circuit design techniques.
Digital integrated circuits --- Metal oxide semiconductors, Complementary --- Electric leakage --- Prevention --- CMOS (Electronics) --- Complementary metal oxide semiconductors --- Semiconductors, Complementary metal oxide --- Digital electronics --- Logic circuits --- Transistor-transistor logic circuits --- Electric action of points --- Integrated circuits --- Electronic circuits. --- Electrical engineering. --- Computer-aided engineering. --- Circuits and Systems. --- Electrical Engineering. --- Computer-Aided Engineering (CAD, CAE) and Design. --- CAE --- Engineering --- Electric engineering --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Data processing --- Electric leakage - Prevention
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Nowadays, real-time applications of Fuzzy Logic in different domains are being increasingly reported. ASIC-based analog hardware becomes an interesting solution for these kinds of applications because it benefits from: savings on silicon surface and power consumption, readily accomplishment with strict timing constraints and cost-effective production. This book focuses in-depth on the VLSI CMOS implementation and application of programmable analog Fuzzy Logic Controllers following a mixed-signal philosophy. This is to say, signals are processed in the analog domain whereas programmability is achieved by means of standard digital memories. This approach highlights the following crucial aspects: *The comprehensive study and analysis of the main analog fuzzy operators: Fuzzy Membership Functions, T-Norm, T-CoNorm and Defuzzifier circuits. *The study and development of mixed-signal Fuzzy Controllers architectures targeting the requirements for different applications. *The fabrication and test of full-ended demonstrators. *The partial fabrication and test of a prototype corresponding to a real-time Fuzzy Logic application in the field of Signal Processing.
Soft computing --- Fuzzy logic --- Programmable controllers --- Metal oxide semiconductors, Complementary --- Engineering & Applied Sciences --- Computer Science --- Electronic circuits. --- Electrical engineering. --- Circuits and Systems. --- Electrical Engineering. --- Soft computing. --- Programmable controllers. --- Metal oxide semiconductors, Complementary. --- Fuzzy logic. --- Electric engineering --- Engineering --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Nonlinear logic --- Fuzzy mathematics --- Logic, Symbolic and mathematical --- Fuzzy systems --- CMOS (Electronics) --- Complementary metal oxide semiconductors --- Semiconductors, Complementary metal oxide --- Digital electronics --- Logic circuits --- Transistor-transistor logic circuits --- Controllers, Programmable --- Electronic controllers --- Automatic control --- Cognitive computing --- Electronic data processing --- Computational intelligence
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One of the main trends of microelectronics is toward design for integrated systems, i.e., system-on-a-chip (SoC) or system-on-silicon (SoS). Due to this development, design techniques for mixed-signal circuits become more important than before. Among other devices, analog-to-digital and digital-to-analog converters are the two bridges between the analog and the digital worlds. Besides, low-power design technique is one of the main issues for embedded systems, especially for hand-held applications. Modular Low-Power, High-Speed CMOS Analog-to-Digital Converter for Embedded Systems aims at design techniques for low-power, high-speed analog-to-digital converter processed by the standard CMOS technology. Additionally this book covers physical integration issues of A/D converter integrated in SoC, i.e., substrate crosstalk and reference voltage network design.
Engineering. --- Electrical engineering. --- Electronic circuits. --- Circuits and Systems. --- Electrical Engineering. --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electronics --- Electric engineering --- Engineering --- Construction --- Industrial arts --- Technology --- Analog-to-digital converters --- Metal oxide semiconductors, Complementary --- Embedded computer systems --- Low voltage integrated circuits --- Embedded systems (Computer systems) --- Computer systems --- Architecture Analysis and Design Language --- CMOS (Electronics) --- Complementary metal oxide semiconductors --- Semiconductors, Complementary metal oxide --- Digital electronics --- Logic circuits --- Transistor-transistor logic circuits --- Low power consumption chips --- Low power integrated circuits --- Reduced voltage integrated circuits --- Integrated circuits --- Low voltage systems --- Analog-digital converters --- Analog electronic systems --- Computer input-output equipment --- Electronic data processing --- Design and construction
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