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Bipolar transistors --- -Linear integrated circuits --- -Metal oxide semiconductors --- -Computer-aided design --- Computer-aided design --- elektronica --- micro-elektronica --- 621.3'7 --- -IC --- geïntegreerde schakelingen --- Linear integrated circuits --- -Unipolar transistors --- Semiconductors --- Transistors --- Charge coupled devices --- Linear ICs --- Analog integrated circuits --- Two-junction transistors --- Electrical engineering--?'7 --- 621.3'7 Electrical engineering--?'7 --- -Computer-aided design. --- Computer-aided design. --- -Electrical engineering--?'7 --- -Semiconductors --- Unipolar transistors --- Metal oxide semiconductors --- -Linear ICs
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Environmental electromagnetic pollution has drastically increased over the last decades. The omnipresence of communication systems, various electronic appliances and the use of ever increasing frequencies, all contribute to a noisy electromagnetic environment which acts detrimentally on sensitive electronic equipment. Integrated circuits must be able to operate satisfactorily while cohabiting harmoniously in the same appliance, and not generate intolerable levels of electromagnetic emission, while maintaining a sound immunity to potential electromagnetic disturbances: analog integrated circuits are in particular more easily disturbed than their digital counterparts, since they don't have the benefit of dealing with predefined levels ensuring an innate immunity to disturbances. In addition, as different electronic systems are compactly integrated in the same apparatus, the parasitic electromagnetic coupling between these circuits sharing the same signal, power and ground lines, is a critical design parameter that can no longer be safely excluded from a product design flow: as an example, Bluetooth, GSM and WiFi services have to coexist and operate in harmony within the crammed confinement of a modern mobile phone. The objective of the research domain presented in EMC of Analog Integrated Circuits is to improve the electromagnetic immunity of considered analog integrated circuits, so that they start to fail at relevantly higher conduction levels than before.
Electromagnetic compatibility. --- Linear integrated circuits -- Design and construction. --- Linear integrated circuits -- Noise. --- Electromagnetic compatibility --- Linear integrated circuits --- Electrical Engineering --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Design and construction --- Noise --- Design and construction. --- Noise. --- Linear ICs --- Compatibility, Electromagnetic --- EMC (Electronics) --- Engineering. --- Solid state physics. --- Spectroscopy. --- Microscopy. --- Electrical engineering. --- Electronic circuits. --- Circuits and Systems. --- Communications Engineering, Networks. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Analog integrated circuits --- Electronics --- Systems engineering. --- Telecommunication. --- Electric communication --- Mass communication --- Telecom --- Telecommunication industry --- Telecommunications --- Communication --- Information theory --- Telecommuting --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Optics --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Physics --- Solids --- Electric engineering --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Qualitative --- Analytical chemistry
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High-Speed DSP and Analog System Design is based on Dr. Thanh T. Tran’s 25 years of experience in high-speed DSP and computer systems and courses in both digital and analog systems design at Rice University. It provides hands-on, practical advice for working engineers, including: Tips on cost-efficient design and system simulation that minimize late-stage redesign costs and product shipment delays Emphasis on good high-speed and analog design practices that minimize both component and system noise and ensure system design success Guidelines to be used throughout the design process to reduce noise and radiation and to avoid common pitfalls while improving quality and reliability Hands-on design examples focusing on audio, video, analog filters, DDR memory, and power supplies The inclusion of analog systems and related issues cannot be found in other high-speed design books “This book is an essential resource for all engineers either interested in or working on system designs. It was created by a recognized system design expert who not only teaches these principles daily but who brings years of hands on design expertise as the creator of some of the personal computer industries’ most differentiated audio solutions” —Jim Ganthier, Vice President of Marketing and Solutions, Industry Standard Servers- Hewlett-Packard “This book helps designers by highlighting the pitfalls of high-speed systems design and providing solutions that improve the probability of success. Investing a small amount of time in the use of low-noise and low-radiation design methods from the very beginning of the development cycle will generate a high payoff by minimizing late-stage redesign costs and delays in the product ship date. To improve the probability of design success, applying the rules outlined in this book is a must-do.”—Gene Frantz, Principle Fellow, Texas Instruments Incorporated. High-Speed DSP and Analog System Design is appropriate for advanced undergraduate and graduate students, researchers and professionals in signal processing and system design.
Linear integrated circuits -- Design. --- Signal processing. --- System design. --- Very high speed integrated circuits -- Design and construction. --- Very high speed integrated circuits --- Linear integrated circuits --- Signal processing --- System design --- Electrical & Computer Engineering --- Engineering & Applied Sciences --- Applied Physics --- Electrical Engineering --- Telecommunications --- Design and construction --- Design --- Design and construction. --- Design. --- Linear ICs --- VHSIC --- Engineering. --- Electronics. --- Microelectronics. --- Electrical engineering. --- Electronic circuits. --- Communications Engineering, Networks. --- Circuits and Systems. --- Signal, Image and Speech Processing. --- Electronics and Microelectronics, Instrumentation. --- Analog integrated circuits --- Integrated circuits --- Very large scale integration --- Telecommunication. --- Systems engineering. --- Electrical engineering --- Physical sciences --- Engineering systems --- System engineering --- Engineering --- Industrial engineering --- System analysis --- Electric communication --- Mass communication --- Telecom --- Telecommunication industry --- Communication --- Information theory --- Telecommuting --- Image processing. --- Speech processing systems. --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Electronics --- Microtechnology --- Semiconductors --- Miniature electronic equipment --- Computational linguistics --- Electronic systems --- Modulation theory --- Oral communication --- Speech --- Telecommunication --- Singing voice synthesizers --- Pictorial data processing --- Picture processing --- Processing, Image --- Imaging systems --- Optical data processing --- Processing, Signal --- Information measurement --- Signal theory (Telecommunication) --- Electron-tube circuits --- Electric circuits --- Electron tubes --- Electric engineering
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