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Circa 200 words; this text will present the book in all promotional forms (e.g. flyers). Please describe the book in straightforward and consumer-friendly terms. [Recent advances in sensing technologies, especially those for Microsensor Integrated Systems, have led to several new commercial applications. Among these, low voltage and low power circuit architectures have gained growing attention, being suitable for portable long battery life devices. The aim is to improve the performances of actual interface circuits and systems, both in terms of voltage mode and current mode, in order to overcome the potential problems due to technology scaling and different technology integrations. Related problems, especially those concerning parasitics, lead to a severe interface design attention, especially concerning the analog front-end and novel and smart architecture must be explored and tested, both at simulation and prototype level. Moreover, the growing demand for autonomous systems gets even harder the interface design due to the need of energy-aware cost-effective circuit interfaces integrating, where possible, energy harvesting solutions. The objective of this Special Issue is to explore the potential solutions to overcome actual limitations in sensor interface circuits and systems, especially those for low voltage and low power Microsensor Integrated Systems. The present Special Issue aims to present and highlight the advances and the latest novel and emergent results on this topic, showing best practices, implementations and applications. The Guest Editors invite to submit original research contributions dealing with sensor interfacing related to this specific topic. Additionally, application oriented and review papers are encouraged.].
Linear integrated circuits. --- Linear ICs --- Analog integrated circuits
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Linear integrated circuits --- Design and construction --- Linear ICs --- Analog integrated circuits
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The rapidly growing wireless communication industry is increasingly demanding CMOS RF ICs due to their lower costs and higher integration levels. The RF front-end of such wireless systems often needs to handle widely disparate signal levels: small desired signals and large interferers. Therefore, it becomes necessary to have highly linear circuits to increase the system dynamic range. However, traditional CMOS circuit designs are usually limited in either their speed or in their linear performance. New techniques are needed to meet the demand for high linearity at radio frequencies. High-Linearity CMOS RF Front-End Circuits presents some unique techniques to enhance the linearity of both the receiver and transmitter. For example, using harmonic cancellation techniques, the linearity of the receiver front-end can be increased by few tens of dB with only minimal impact on the other circuit parameters. The new parallel class A&B power amplifier can not only increase the transmitter's output power in the linear range, but can also result in significant savings in power consumption. High-Linearity CMOS RF Front-End Circuits can be used as a textbook for graduate courses in RF CMOS design and will also be useful as a reference for the practicing engineer.
Linear integrated circuits. --- Integrated circuits. --- Linear ICs --- Analog integrated circuits --- Chips (Electronics) --- Circuits, Integrated --- Computer chips --- Microchips --- Electronic circuits --- Microelectronics --- Engineering. --- Engineering, general. --- Construction --- Industrial arts --- Technology
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Information systems with an abundance of graphics data are growing rapidly due to advances in data storage technology, the development of multimedia communications across networks, and the fact that parallel computers are leading to faster image processing systems.This book addresses image information retrieval and spatial reasoning using an approach called Symbolic Projection, which supports descriptions of the image content on the basis of the spatial relationships between the pictorial objects. Image information systems have a wide variety of applications, including information retrieva
Computer vision. --- Linear intergrated circuits. --- Stereoscopic views. --- Linear integrated circuits. --- Machine vision --- Vision, Computer --- Linear ICs --- Artificial intelligence --- Image processing --- Pattern recognition systems --- Views --- Analog integrated circuits
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Electronic analog computers --- Electronic circuit design --- Linear integrated circuits --- Linear ICs --- Analog integrated circuits --- Electronic circuits --- Analog computer circuits --- Circuits --- Design --- Électronique --- Électronique --- Integrated circuits
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Linear integrated circuits. --- Circuits intégrés linéaires --- analyse --- analysis --- calcul --- calculation --- Linear integrated circuits --- Linear ICs --- Analog integrated circuits --- Circuits intégrés linéaires --- Design --- Réseaux électriques (circuits) --- Analysis --- Circuit analogique --- Circuit intégré --- Circuits actifs --- Problème
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Application-specific integrated circuits --- Microelectronics --- Linear integrated circuits --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Electrical Engineering --- Design and construction --- Linear ICs --- ASICs (Integrated circuits) --- Analog integrated circuits --- Integrated circuits
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