Introduction to Semiconductor Device Modelling

Introduction to Semiconductor Device Modelling
Title Introduction to Semiconductor Device Modelling PDF eBook
Author Christopher M. Snowden
Publisher World Scientific
Pages 242
Release 1998
Genre Science
ISBN 9789810236939

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This book deals mainly with physical device models which are developed from the carrier transport physics and device geometry considerations. The text concentrates on silicon and gallium arsenide devices and includes models of silicon bipolar junction transistors, junction field effect transistors (JFETs), MESFETs, silicon and GaAs MESFETs, transferred electron devices, pn junction diodes and Schottky varactor diodes. The modelling techniques of more recent devices such as the heterojunction bipolar transistors (HBT) and the high electron mobility transistors are discussed. This book contains details of models for both equilibrium and non-equilibrium transport conditions. The modelling Technique of Small-scale devices is discussed and techniques applicable to submicron-dimensioned devices are included. A section on modern quantum transport analysis techniques is included. Details of essential numerical schemes are given and a variety of device models are used to illustrate the application of these techniques in various fields.

Semiconductor Device Physics and Simulation

Semiconductor Device Physics and Simulation
Title Semiconductor Device Physics and Simulation PDF eBook
Author J.S. Yuan
Publisher Springer Science & Business Media
Pages 352
Release 1998-05-31
Genre Technology & Engineering
ISBN 9780306457241

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The advent of the microelectronics technology has made ever-increasing numbers of small devices on a same chip. The rapid emergence of ultra-large-scaled-integrated (ULSI) technology has moved device dimension into the sub-quarter-micron regime and put more than 10 million transistors on a single chip. While traditional closed-form analytical models furnish useful intuition into how semiconductor devices behave, they no longer provide consistently accurate results for all modes of operation of these very small devices. The reason is that, in such devices, various physical mechanisms affect the device performance in a complex manner, and the conventional assumptions (i. e. , one-dimensional treatment, low-level injection, quasi-static approximation, etc. ) em ployed in developing analytical models become questionable. Thus, the use of numerical device simulation becomes important in device modeling. Researchers and engineers will rely even more on device simulation for device design and analysis in the future. This book provides comprehensive coverage of device simulation and analysis for various modem semiconductor devices. It will serve as a reference for researchers, engineers, and students who require in-depth, up-to-date information and understanding of semiconductor device physics and characteristics. The materials of the book are limited to conventional and mainstream semiconductor devices; photonic devices such as light emitting and laser diodes are not included, nor does the book cover device modeling, device fabrication, and circuit applications.

Semiconductor Device Modeling with Spice

Semiconductor Device Modeling with Spice
Title Semiconductor Device Modeling with Spice PDF eBook
Author Giuseppe Massabrio
Publisher McGraw Hill Professional
Pages 500
Release 1998-12-22
Genre Technology & Engineering
ISBN 9780071349550

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Publisher's Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.

SEMICONDUCTOR DEVICES

SEMICONDUCTOR DEVICES
Title SEMICONDUCTOR DEVICES PDF eBook
Author NANDITA DASGUPTA
Publisher PHI Learning Pvt. Ltd.
Pages 342
Release 2004-01-01
Genre Technology & Engineering
ISBN 812032398X

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Aimed primarily at the undergraduate students pursuing courses in semiconductor physics and semiconductor devices, this text emphasizes the physical understanding of the underlying principles of the subject. Since engineers use semiconductor devices as circuit elements, device models commonly used in the circuit simulators, e.g. SPICE, have been discussed in detail. Advanced topics such as lasers, heterojunction bipolar transistors, second order effects in BJTs, and MOSFETs are also covered. With such in-depth coverage and a practical approach, practising engineers and PG students can also use this book as a ready reference.

The Monte Carlo Method for Semiconductor Device Simulation

The Monte Carlo Method for Semiconductor Device Simulation
Title The Monte Carlo Method for Semiconductor Device Simulation PDF eBook
Author Carlo Jacoboni
Publisher Springer Science & Business Media
Pages 382
Release 1989-10-30
Genre Technology & Engineering
ISBN 9783211821107

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This volume presents the application of the Monte Carlo method to the simulation of semiconductor devices, reviewing the physics of transport in semiconductors, followed by an introduction to the physics of semiconductor devices.

Monte Carlo Simulation of Semiconductor Devices

Monte Carlo Simulation of Semiconductor Devices
Title Monte Carlo Simulation of Semiconductor Devices PDF eBook
Author C. Moglestue
Publisher Springer Science & Business Media
Pages 343
Release 2013-04-17
Genre Computers
ISBN 9401581339

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Particle simulation of semiconductor devices is a rather new field which has started to catch the interest of the world's scientific community. It represents a time-continuous solution of Boltzmann's transport equation, or its quantum mechanical equivalent, and the field equation, without encountering the usual numerical problems associated with the direct solution. The technique is based on first physical principles by following in detail the transport histories of indi vidual particles and gives a profound insight into the physics of semiconductor devices. The method can be applied to devices of any geometrical complexity and material composition. It yields an accurate description of the device, which is not limited by the assumptions made behind the alternative drift diffusion and hydrodynamic models, which represent approximate solutions to the transport equation. While the development of the particle modelling technique has been hampered in the past by the cost of computer time, today this should not be held against using a method which gives a profound physical insight into individual devices and can be used to predict the properties of devices not yet manufactured. Employed in this way it can save the developer much time and large sums of money, both important considerations for the laboratory which wants to keep abreast of the field of device research. Applying it to al ready existing electronic components may lead to novel ideas for their improvement. The Monte Carlo particle simulation technique is applicable to microelectronic components of any arbitrary shape and complexity.

Noise in Semiconductor Devices

Noise in Semiconductor Devices
Title Noise in Semiconductor Devices PDF eBook
Author Fabrizio Bonani
Publisher Springer Science & Business Media
Pages 241
Release 2013-03-09
Genre Technology & Engineering
ISBN 3662045303

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Provides an overview of the physical basis of noise in semiconductor devices, and a detailed treatment of numerical noise simulation in small-signal conditions. It presents innovative developments in the noise simulation of semiconductor devices operating in large-signal quasi-periodic conditions.