Introduction to Modeling HBTs

Author:   Matthias Rudolph
Publisher:   Artech House Publishers
Edition:   Unabridged edition
ISBN:  

9781580531443


Pages:   372
Publication Date:   31 March 2006
Format:   Hardback
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Introduction to Modeling HBTs


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Full Product Details

Author:   Matthias Rudolph
Publisher:   Artech House Publishers
Imprint:   Artech House Publishers
Edition:   Unabridged edition
Dimensions:   Width: 16.10cm , Height: 2.20cm , Length: 23.90cm
Weight:   0.576kg
ISBN:  

9781580531443


ISBN 10:   158053144
Pages:   372
Publication Date:   31 March 2006
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Hardback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

Table of Contents

Introduction Types of Models for Circuit Simulation. Preconditions for Model Development and Use. The Model as a Nonlinear Circuit. Two Model Restrictions in Circuit Simulators.; Compact Modeling Concepts Consistency of Large- and Small-Signal Model. Numerical Considerations. Dispersion. Calculating Self-Heating with a Circuit Simulator. Statistical Modeling.; HBT Physics and Technology Emitter-Base Junction. Base Transport. Base-Collector Junction. HBT Technology.; Modeling of HBTs The Equivalent Circuit, Basic Electro-Thermal Properties of HBTs. The Gummel-Poon Charge-Control Relation. Constant Time Delay. Bias-Dependent Time Delay. Thermal Instabilities. ; Noise Modeling Physical Noise Sources. Noise Sources at Large-Signal Excitation. Noise Calculation with Correlation Matrices. HBT Noise Model (Shot Noise, Thermal Noise, Complete White Noise Model, 1/F Noise).; HBT Model Reference SPICE Gummel-Poon Model. VBIC Model. UCSD HBT Model. Agilent HBT Model. FBH HBT Model.; Measurements and Parameter Extraction Numerical Considerations. Deembedding Techniques. Thermal Resistance and Time-Constants. Small-Signal Intrinsic HBT Parameters. Temperature-Dependent Large-Signal Model Parameters. Noise Model Parameters.; Summary.;

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