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Systems on a chip. --- Low voltage systems. --- Low-tension systems --- Electric apparatus and appliances --- SOC design --- Systems on chip --- Embedded computer systems
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Artificial intelligence --- Biomedical engineering. --- Low voltage systems. --- Medical applications. --- Low-tension systems --- Electric apparatus and appliances --- Clinical engineering --- Medical engineering --- Bioengineering --- Biophysics --- Engineering --- Medicine --- Data processing
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Energy harvesting. --- Low voltage systems.. --- Low-tension systems --- Electric apparatus and appliances --- Energy scavenging --- Harvesting, Energy --- Power harvesting --- Force and energy --- Power resources
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Although energy dissipation has improved with each new technology node, because SoCs are integrating tens of million devices on-chip, the energy ex pended per operation has become a critical consideration in digital and ana log integrated circuits. The focus of this book is sub-threshold circuit design, which involves scaling voltages below the device thresholds. In this region, the energy per operation cair be reduced by an order of magnitude compared to conventional operation but at the cost of circuit performance. In many emerging applications such as self-powered RFID, wireless sensors networks, and portable devices (PDAs, medical monitoring, etc. ), the overall battery life time is the primary design metric. Sub-threshold design can also be applied to burst mode applications (e. g. , a cell-phone processor) where the process spends a significant amount of time in the standby mode. The supply voltage can be reduced to the deep sub-threshold region, dramatically saving power in logic and memory. Extremely low-power design was first explored in the 1970s for the design of applications such as wristwatch and calculator circuits. Dr. Eric Vittoz pioneered the design and modeling of weak-inversion circuits. In this book, Eric provides his perspective on the evolution of sub-threshold circuit design. Dr. Eric Vittoz and Dr. Christian Enz introduce key models necessary for the design and optimization of weak inversion circuits. Design using weak inversion has been widely adopted in analog circuits, and Eric introduces the key design considerations.
Low voltage systems --- Power electronics. --- Design and construction. --- Electronics, Power --- Electric power --- Electronics --- Low-tension systems --- Electric apparatus and appliances --- Basse tension --- Electronique de puissance --- Conception et construction --- EPUB-LIV-FT SPRINGER-B LIVINGEN
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Information is provided for selecting the proper circuit breaker for a particular application. This recommended practice helps the application engineer specify the type of circuit breaker, ratings, trip functions, accessories, acceptance tests, and maintenance requirements. It also discusses circuit breakers for special applications, e.g., instantaneous only and switches. In addition, it provides information for applying circuit breakers at different locations in the power system, and for protecting specific components. Guidelines are also given for coordinating combinations of line-side and load-side devices.
Electric circuit-breakers --- Electric power systems --- Low voltage systems --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Standards --- Protection --- Low-tension systems --- Power systems, Electric --- Systems, Electric power --- Circuit-breakers, Electric --- Electric apparatus and appliances --- Electric power production
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. Low-Power Electronics Design covers all major aspects of low-power design of ICs in deep submicron technologies, and addresses emerging topics related to future design. It explores the many different domains and disciplines that impact power consumption, including processors, complex circuits, software, CAD tools, and energy sources and management. The authors present techniques that are promising but are not yet reality, such as nanotechnologies, optical circuits, ad hoc networks, e-textiles, as well as human powered sources of energy. This volume delivers a complete picture of today's methods for reducing power, as well as future advances in chip design.
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Power Electronics Design Handbook covers the basics of power electronics theory and components while emphasizing modern low-power components and applications. Coverage includes power semiconductors, converters, power supplies, batteries, protection systems, and power ICs.One of the unique features of the Power Electronics Design Handbook is the integration of component and system theory with practical applications, particularly energy-saving low-power applications. Many chapters also include a section that looks forward to future developments in that area. References for further inform
Power electronics --- Low voltage systems --- Design and construction. --- Application-specific integrated circuits. --- Low voltage integrated circuits. --- Low power consumption chips --- Low power integrated circuits --- Reduced voltage integrated circuits --- ASICs (Integrated circuits) --- Electronics, Power --- Electric power --- Electronics --- Low-tension systems --- Electric apparatus and appliances --- Integrated circuits --- 621.314 --- 621.314 Transformation. Transformers. Convertors. Rectifiers --- Transformation. Transformers. Convertors. Rectifiers --- Design and construction --- Engineering --- General and Others
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Compliance with the Low Voltage Directive (LVD) is now essential for CE marking. Products cannot leave your firm without it. This book provides essential and informative reading for company directors, engineers, designers and students designing, manufacturing or studying the design of electrical products covered by the Low Voltage Directive.Unlike many textbooks that offer general guidance only this book provides illustrated examples of non-compliant products and suggests solutions. It also provides detailed guidance notes to EN60950 - one of the most widely used harmonised standards
Electric engineering -. --- Electric engineering--Safety regulations--European Economic Community countries. Low voltage systems--European Economic Community countries--Safety measures. Product safety--Standards--European Econom. --- Low voltage systems -. --- Electrical engineering --- Low voltage systems --- Product safety --- Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Safety measures --- Standards --- Safety regulations --- Safety measures. --- Low-tension systems --- Electric engineering --- Electric apparatus and appliances --- Engineering
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Kularatna's new book describes modern component families and how to design circuit blocks using them. While much of this information may be available elsewhere, in Modern Component Families and Circuit Block Design it is integrated with additional design hints that are unique. The discussion covers most components necessary in an embedded design or a DSP-based real time system design. The chapter on modern semi-conductor sensors allows system designers to use the latest sensor ICs for real-world physical parameter sensing.*Covers the most recent low-power components*Written by
Electronic circuit design. --- Low voltage systems - Design and construction. --- Power electronics--Design and construction. Low voltage systems--Design and construction. Electronic circuit design. --- Power electronics --- Low voltage systems --- Electronic circuit design --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Design and construction --- Design and construction. --- Electronic circuits --- Low-tension systems --- Electronics, Power --- Design --- Electric apparatus and appliances --- Electric power --- Electronics
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Support vector machines. --- Distributed generation of electric power. --- Low voltage systems. --- Low-tension systems --- Electric apparatus and appliances --- Decentralized generation of electric power --- Generation of electric power, Distributed --- Distributed resources (Electric utilities) --- Electric power production --- SVMs (Algorithms) --- Algorithms --- Kernel functions --- Supervised learning (Machine learning)
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