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Materials sciences --- Electronics --- Electrical engineering --- Production management --- Computer. Automation --- DFMA (design for manufacture and assembly) --- informatica --- elektronica --- elektrische circuits
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Materials sciences --- Electronics --- Electrical engineering --- Production management --- Computer. Automation --- DFMA (design for manufacture and assembly) --- informatica --- elektronica --- elektrische circuits
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Spectrometric and optical chemical analysis --- Electronics --- Motorcars engineering --- elektriciteit --- elektronica --- vermogenselektronica --- elektrische circuits --- auto's
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Solid state physics --- Electrical engineering --- Computer. Automation --- vaste stof --- materie (fysica) --- datacommunicatie --- elektrische circuits
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This book is based on the presentations during the 21st workshop on Advances in Analog Circuit Design. Expert designers provide readers with information about a variety of topics at the frontier of analog circuit design, including Nyquist analog-to-digital converters, capacitive sensor interfaces, reliability, variability, and connectivity. This book serves as a valuable reference to the state-of-the-art, for anyone involved in analog circuit research and development. Provides a state-of-the-art reference in analog circuit design, written by experts from industry and academia; Presents material in a tutorial-based format; Includes coverage of Nyquist A/D converters, capacitive sensor interfaces, reliability, variability, and connectivity.
Electronics --- Electrical engineering --- Applied physical engineering --- elektronica --- ingenieurswetenschappen --- elektrische circuits
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This book describes a unique approach to smart receiver system design. It starts with the analysis of a very basic, single-path receiver structure, then using similar methods, extends the analysis to a more complicated multi-path receiver. Within the multi-path structure, two different types of phased –array architectures are discussed: Analog beam-forming, and digital beam-forming. The pros and cons are studied, and the gaps are identified. Whereas previous books in this area focus mainly on phased-array circuit implementations, this book fills a gap by providing a system-level approach and introduces new methods for developing smart systems. Enables readers to design a smart phased-array receiver system, using spatial to frequency mapping techniques; Provides a generalized phased-array receiver simulation that enables analog and digital co-design; Discusses a flexible phased-array structure with both analog and digital beam-forming properties; Describes a real, low-cost integrated solution of the 30GHz phased-array front-end system and verifies its performance.
Electronics --- Electrical engineering --- Applied physical engineering --- Computer. Automation --- beeldverwerking --- elektronica --- ingenieurswetenschappen --- elektrische circuits --- signaalverwerking
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The promising high data rate wireless applications at millimeter wave frequencies in general and 60 GHz in particular have gained much attention in recent years. However, challenges related to circuit, layout and measurements during mm-wave CMOS IC design have to be overcome before they can become viable for mass market. 60-GHz CMOS Phase-Locked Loops focusing on phase-locked loops for 60 GHz wireless transceivers elaborates these challenges and proposes solutions for them. The system level design to circuit level implementation of the complete PLL, along with separate implementations of individual components such as voltage controlled oscillators, injection locked frequency dividers and their combinations, are included. Furthermore, to satisfy a number of transceiver topologies simultaneously, flexibility is introduced in the PLL architecture by using new dual-mode ILFDs and switchable VCOs, while reusing the low frequency components at the same time.
Fluid mechanics --- Optics. Quantum optics --- Solid state physics --- Spectrometric and optical chemical analysis --- Electrical engineering --- vaste stof --- materie (fysica) --- telecommunicatie --- elektrische circuits --- spectrometrie --- optica
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Analog Circuit Design contains the contribution of 18 tutorials of the 18th workshop on Advances in Analog Circuit Design. Each part discusses a specific to-date topic on new and valuable design ideas in the area of analog circuit design. Each part is presented by six experts in that field and state of the art information is shared and overviewed. This book is number 18 in this successful series of Analog Circuit Design, providing valuable information and excellent overviews of - Smart Data Converters, chaired by Prof. Arthur van Roermund, Eindhoven University of Technology - Filters on Chip, chaired by Herman Casier, AMI Semiconductor Fellow - Multimode Transmitters, chaired by Prof. Michiel Steyaert, Catholic University Leuven Analog Circuit Design is an essential reference source for analog circuit designers and researchers wishing to keep abreast with the latest development in the field. The tutorial coverage also makes it suitable for use in an advanced design course.
Electronics --- Electrical engineering --- Computer architecture. Operating systems --- microprocessoren --- architectuur (informatica) --- elektrische circuits
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While technology evolution is beneficial for digital circuits, it can cause performance limitations for analog circuits. To benefit from the technology evolution for analog circuits as well, the smart concept aims at improving the analog performance by using digital intelligence. In Smart AD and DA Conversion, the smart concept is applied to AD and DA converters by using on-chip intelligence to detect analog imperfections and to correct for them. First, general trends and challenges in data converter design are studied and a generalized view on smart conversion is introduced. Then, the smart concept is applied to solve specific imperfections in two design examples: a sub-binary variable-radix current-steering DA converter and a time-interleaved open-loop track&hold circuit. In both cases, the developed concepts are supported by theory and implemented test chips. The examples show that the smart concept can be successfully applied to improve the performance of AD and DA converters with respect to chip area, power consumption, static accuracy and/or dynamic accuracy.
Solid state physics --- Electrical engineering --- vaste stof --- materie (fysica) --- elektrische circuits
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