Circuit Analysis for Analog, Mixed-Signal and RF Designers
Circuit Analysis for Analog, Mixed-Signal and RF Designers
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Author(s): Pavan, Shanthi
ISBN No.: 9781394275007
Pages: 496
Year: 202608
Format: Trade Cloth (Hard Cover)
Price: $ 211.18
Dispatch delay: Dispatched between 7 to 15 days
Status: Available

1 Introduction and Basic Concepts 1 1.1 Classification of Circuits 2 1.2 Circuit Components 5 1.3 Kirchhoff's Laws and the Incidence Matrix 8 1.4 Tellegen's Theorem 11 1.5 The Incremental Network and Small-Signal Analysis 14 1.6 Solving Linear Networks using Modified Nodal Analysis 16 1.7 Bilinear Form of a Transfer Function, and the Extra-Element Theorem 32 1.


8 Transposed MNA Stamps 37 1.9 Reciprocity and Inter-Reciprocity 40 1.10 Why are Reciprocity and Interreciprocity Useful? 46 1.11 Transfer-Function Sensitivity 50 2 Noise in Linear Time-Invariant Networks 65 2.1 Noise in Network Components 66 2.2 Multiple Noise Sources 73 2.3 Equivalent Noise of a One Port 74 2.4 Total Integrated Noise in RLC Networks 76 2.


5 Equivalent Noise Sources in a Two-Port Network 85 2.6 Noise with Impedance Scaling and Differential Operation 92 2.7 The Noise Factor of a Two Port 95 2.8 Example Noise-Factor Calculations 96 3 Weak Nonlinearities in Circuits 111 3.1 Third-Order Nonlinearity 119 3.2 DC Transfer-Curve Derivatives: A Quick Nonlinearity Diagnostic 126 3.3 The Method of Current Injection 128 4 Introduction to Distributed Circuits 163 4.1 The Transmission Line 164 4.


2 Transmission-Line Circuit Analysis 167 4.3 The Uniformly Distributed RC Line 179 4.4 Scattering Parameters and the Scattering Matrix 183 4.5 Some Properties of Scattering Matrices 191 4.6 Measuring S-Parameters: The Vector Network Analyzer 193 5 Basics of Linear Time-Varying Circuits and Systems 205 5.1 Motivation 205 5.2 Linearity and Time (In)variance 212 5.3 Linear Time-Varying Systems 213 5.


4 Linear Periodically Time-Varying (LPTV) Systems 218 5.5 Calculating Harmonic Transfer Functions 226 5.6 Impedance and Admittance in LPTV Circuits 246 5.7 Thevenin- and Norton-Equivalent Circuits 249 5.8 The N-Path Principle 250 6 LPTV Circuits and Systems: Advanced Topics 271 6.1 Reciprocity and Inter-Reciprocity 271 6.2 A Chopped Amplifier as an LPTV System 294 6.3 Time Domain Implications of Reciprocity and Inter-reciprocity 299 6.


4 LPTV Systems With Sampled Outputs 305 6.5 LPTV Systems Driven by a Class of Modulated Signals 318 6.6 Noise in LPTV Networks 323 6.7 Application Examples 340 7 Continuous-Time Filters 351 7.1 Magnitude-Approximation Principles 354 7.2 The Maximally Flat (Butterworth) Approximation 357 7.3 The Chebyshev Approximation 366 7.4 Butterworth versus Chebyshev Filters 374 7.


5 Realization of Filters 376 7.6 Noise in Opamp-RC Sections 390 7.7 Dynamic-Range Scaling 397 7.8 Fully-Differential Signal Processing, Integrators and Filters 402 7.9 Effect of Opamp Finite Gain-Bandwidth Product 408 7.10 Transconductance-Capacitance Integrators and Filters 419 8 Switched-Capacitor Circuits and Filters 435 8.1 Switched-Capacitor Filters 442 8.2 Switched-Capacitor Filter Stages 451 8.


3 Switched-Capacitor Amplifiers 462 8.4 Nonideal Effects in Switched-Capacitor Circuits 465 8.5 Noise in Switched-Capacitor Circuits 480 8.6 The History of Switched-Capacitor Filters 486 Index.


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