Noise In Solid State Devices And Circuits


Noise In Solid State Devices And Circuits
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Noise In Solid State Devices And Circuits


Noise In Solid State Devices And Circuits
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Author : Albert Van der Ziel
language : en
Publisher: Wiley-Interscience
Release Date : 1986-05-13

Noise In Solid State Devices And Circuits written by Albert Van der Ziel and has been published by Wiley-Interscience this book supported file pdf, txt, epub, kindle and other format this book has been release on 1986-05-13 with Technology & Engineering categories.


Gives basic and up-to-date information about noise sources in electronic devices. Demonstrates how this information can be used to calculate the noise performance, in particular the noise figure, of electronic circuits using these devices. Optimization procedures, both for the circuits and for the devices, are then devised based on these data. Gives an elementary treatment of thermal noise, diffusion noise, and velocity-fluctuation noise, including quantum effects in thermal noise and maser noise.



Solid State Devices And Circuits


Solid State Devices And Circuits
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Author : Abhishek Yadav
language : en
Publisher: Firewall Media
Release Date : 2008

Solid State Devices And Circuits written by Abhishek Yadav and has been published by Firewall Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2008 with Electronic circuits categories.




Noise In Electronic Devices And Systems


Noise In Electronic Devices And Systems
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Author : Michael J. Buckingham
language : en
Publisher: Ellis Horwood
Release Date : 1983

Noise In Electronic Devices And Systems written by Michael J. Buckingham and has been published by Ellis Horwood this book supported file pdf, txt, epub, kindle and other format this book has been release on 1983 with Science categories.




Noise And The Solid State


Noise And The Solid State
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Author : David A. Bell
language : en
Publisher:
Release Date : 1985

Noise And The Solid State written by David A. Bell and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1985 with Technology & Engineering categories.


The replacement of thermionic devices by solid-state devices did not affect the fundamentals of thermal noise and shot noise but introduced a new range of applications and some new phenomena which is the subject of this book. Among the latter are generation-recombination noise, the still controversial 1/f noise, noise in avalanche devices and transferred-electron devices. Besides such semiconductor devices, also considered is noise in cryogenic devices, in charge-coupled devices, in ferromagnetic and ferroelectric materials and in radiation detectors.



Introduction To Noise In Solid State Devices


Introduction To Noise In Solid State Devices
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Author : Julius Cohen
language : en
Publisher:
Release Date : 1982

Introduction To Noise In Solid State Devices written by Julius Cohen and has been published by this book supported file pdf, txt, epub, kindle and other format this book has been release on 1982 with categories.




Microwave Solid State Devices And Applications


Microwave Solid State Devices And Applications
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Author : D. V. Morgan
language : en
Publisher: Institution of Electrical Engineers
Release Date : 1980

Microwave Solid State Devices And Applications written by D. V. Morgan and has been published by Institution of Electrical Engineers this book supported file pdf, txt, epub, kindle and other format this book has been release on 1980 with Technology & Engineering categories.




Mosfet Modeling For Circuit Analysis And Design


Mosfet Modeling For Circuit Analysis And Design
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Author : Carlos Galup-Montoro
language : en
Publisher: World Scientific
Release Date : 2007

Mosfet Modeling For Circuit Analysis And Design written by Carlos Galup-Montoro and has been published by World Scientific this book supported file pdf, txt, epub, kindle and other format this book has been release on 2007 with Technology & Engineering categories.


This is the first book dedicated to the next generation of MOSFET models. Addressed to circuit designers with an in-depth treatment that appeals to device specialists, the book presents a fresh view of compact modeling, having completely abandoned the regional modeling approach.Both an overview of the basic physics theory required to build compact MOSFET models and a unified treatment of inversion-charge and surface-potential models are provided. The needs of digital, analog and RF designers as regards the availability of simple equations for circuit designs are taken into account. Compact expressions for hand analysis or for automatic synthesis, valid in all operating regions, are presented throughout the book. All the main expressions for computer simulation used in the new generation compact models are derived.Since designers in advanced technologies are increasingly concerned with fluctuations, the modeling of fluctuations is strongly emphasized. A unified approach for both space (matching) and time (noise) fluctuations is introduced.



A Guide To Noise In Microwave Circuits


A Guide To Noise In Microwave Circuits
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Author : Peter Heymann
language : en
Publisher: John Wiley & Sons
Release Date : 2021-12-29

A Guide To Noise In Microwave Circuits written by Peter Heymann and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2021-12-29 with Technology & Engineering categories.


A GUIDE TO NOISE IN MICROWAVE CIRCUITS A fulsome exploration of critical considerations in microwave circuit noise In A Guide to Noise in Microwave Circuits: Devices, Circuits, and Measurement, a team of distinguished researchers deliver a comprehensive introduction to noise in microwave circuits, with a strong focus on noise characterization of devices and circuits. The book describes fluctuations beginning with their physical origin and touches on the general description of noise in linear and non-linear circuits. Several chapters are devoted to the description of noise measurement ­techniques and the interpretation of measured data. A full chapter is dedicated to noise sources as well, including thermal, shot, plasma, and current. A Guide to Noise in Microwave Circuits offers examples of measurement problems—like low noise block (LNB) of satellite television – and explores equipment and measurement methods, like the Y, cold source, and 7-state method. This book also includes: A thorough introduction to foundational terms in microwave circuit noise, including average values, amplitude distribution, autocorrelation, cross-correlation, and noise spectra Comprehensive explorations of common noise sources, including thermal noise, the Nyquist formula and thermal radiation, shot noise, plasma noise, and more Practical discussions of noise and linear networks, including narrowband noise In-depth examinations of calculation methods for noise quantities, including noise voltages, currents, and spectra, the noise correlation matrix, and the noise of simple passive networks Perfect for graduate students specializing in microwave and wireless electronics, A Guide to Noise in Microwave Circuits: Devices, Circuits, and Measurement will also earn a place in the libraries of professional engineers working in microwave or wireless circuits and system design.



Noise And Fluctuations Control In Electronic Devices


Noise And Fluctuations Control In Electronic Devices
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Author : Alexander A. Balandin
language : en
Publisher: Amer Scientific Pub
Release Date : 2002-01-01

Noise And Fluctuations Control In Electronic Devices written by Alexander A. Balandin and has been published by Amer Scientific Pub this book supported file pdf, txt, epub, kindle and other format this book has been release on 2002-01-01 with Reference categories.


Noise and Fluctuations Control in Electronic Devices is the first single reference source to bring together the latest aspects of noise research for a wide range of multidisciplinary audiences. The goal of this book is to give an update of state-of-the-art in this interdisciplinary field, while focusing on new trends in electronic device noise research. Such new trends include investigation of noise in electronic devices based on novel materials, effects of the downscaling on the device noise performance, fluctuations and noise control in nanodevices, effective methods of noise control and suppression, etc. In addition, the book presents a historic overview of the development of the kinetic theory of fluctuation, essential for understanding of the present state-of-the art. This book contains 18 state-of-the-art review chapters written by 33 internationally renowned experts from 15 countries. This book has about 1,500 bibliographical citations and hundreds of illustrations, figures, tables and equations. This book is a definite reference source for students, scientists, engineers, and specialists both in academia and industry working in such different fields as electronic and optoelectronic devices, electrical and electronic engineering, solid-state physics, nanotechnology, wireless communication, telecommunication, and semiconductor device technology.



Microwave Noise In Semiconductor Devices


Microwave Noise In Semiconductor Devices
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Author : Hans Hartnagel
language : en
Publisher: John Wiley & Sons
Release Date : 2001-01-16

Microwave Noise In Semiconductor Devices written by Hans Hartnagel and has been published by John Wiley & Sons this book supported file pdf, txt, epub, kindle and other format this book has been release on 2001-01-16 with Technology & Engineering categories.


A thorough reference work bridging the gap between contemporary and traditional approaches to noise problems Noise in semiconductor devices refers to any unwanted signal or disturbance in the device that degrades performance. In semiconductor devices, noise is attributed to hot-electron effects. Current advances in information technology have led to the development of ultrafast devices that are required to provide low-noise, high-speed performance. Microwave Noise in Semiconductor Devices considers available data on the speed versus noise trade-off and discusses optimal solutions in semiconductors and semiconductor structures. These solutions are of direct interest in the research and development for fast, efficient, and reliable communications systems. As the only book of its kind accessible to practicing engineers, the material is divided into four parts-the kinetic theory of fluctuations and its corollaries, the methods of measurements of microwave noise, low-dimensional structures, and, finally, devices. With over 100 illustrations presenting recent experimental data for up-to-date semiconductor structures designed for ultrafast electronics, together with results of microscopic simulation where available, these examples, tables, and references offer a full comprehension of electronic processes and fluctuation in dimensionally quantizing structures. Bridging the apparent gap between the microscopic approach and the equivalent circuit approach, Microwave Noise in Semiconductor Devices considers microwave fluctuation phenomena and noise in terms of ultrafast kinetic processes specific to modern quantum-well structures. Scientists in materials science, semiconductor and solid-state physics, electronic engineers, and graduate students will all appreciate this indispensable review of contemporary and future microwave and high-speed electronics.