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Advanced Semiconductor Device Physics and Modeling Juin J. Liou

Advanced Semiconductor Device Physics and Modeling By Juin J. Liou

Advanced Semiconductor Device Physics and Modeling by Juin J. Liou


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Summary

Providing detailed information on semiconductor physics and modelling, this reference offers example problems, tabulated data, graphical illustrations and equations that help solve design problems. It sets out to aid understanding of semiconductor physics and its mathematical representations.

Advanced Semiconductor Device Physics and Modeling Summary

Advanced Semiconductor Device Physics and Modeling by Juin J. Liou

This reference provides detailed information which enables you to quickly understand the physics and modeling of mainstream devices. Packed with nearly 1,000 equations and 396 illustrations.

Table of Contents

Semiconductor device fundamentals - energy band theory, statistics of free carriers in semiconductors, generation and recombination processes, Boltzmann transport equation, drift and diffusion mechanisms, carrier scattering mechanisms, basic semiconductor device equations, Monte Carlo simulation; physics and models related to p/n junctions - description of p/n junctions, ambipolar transport equation, Linvill lumped circuit model, Sah transmission line circuit model, current and avalanche breakdown in reverse-biased junctions, tunnelling currents in p/n junctions, charge storage in p/n junctions, abrupt heterojunction diodes, abrupt heterojunctions with a setback layer, graded heterojunctions, references, problems; bipolar junction transistors - steady-state characteristics under forward-active operation, current-voltage characteristics including saturation and current-induced base pushout, effect of quasineutral base width modulation, effect of nonuniform doping concentration, avalanche multiplication in bipolar transistor, multidimensional effects, poly-emitter bipolar transistors, switching speed of BJTs, large- and small-signal models, references, problems; junction field-effect transistors - general theory, current-voltage characteristics of three-terminal JFETs, current-voltage characteristics of four-terminal JFETs, short-channel JFETs, large-and small-signal models, references, problems; metal-oxide-semiconductor field-effect devices - metal-oxide-semiconductor (MOS) diodes, metal-oxide semiconductor field-effect transistors (MOSFET), numerical and experimental results, hot-carrier effects, capacitance of intrinsic MOSFET, MOSFET equivalent circuit, references, problems; metal-semiconductor junction devices - Schottky diodes, ohmic contacts, metal-semiconductor field-effect transistors (MESFET), references, problems; heterojunction bipolar and field-effect transistors - single heterojunction bipolar transistors, abrupt HBTs with a setback layer, HBTs with a graded uunction, double heterojunction bipolar transistors, heterojunction field-effect transistors, references, problems; solar cells - basic concept, homojunction solar cells, heterojunction in solar cells, effect of V-groove surface on solar cell performance, references, problems; photoconductive diodes - device structure and concept, general theories, conductivity and current, effect of contact regions, two-dimensional analysis, transient behaviour of photoconductive diodes, references, problems.

Additional information

NPB9780890066966
9780890066966
0890066965
Advanced Semiconductor Device Physics and Modeling by Juin J. Liou
New
Hardback
Artech House Publishers
1994-12-19
520
N/A
Book picture is for illustrative purposes only, actual binding, cover or edition may vary.
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