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Node list tolerance analysis : enhancing SPICE capabilities with Mathcad

Author: Robert Boyd
Publisher: Boca Raton, FL : CRC/Taylor & Francis, 2006.
Edition/Format:   Print book : CD for computer : EnglishView all editions and formats
Database:WorldCat
Summary:

Presents software methods that overcome the many limitations of SPICE WCA using less expensive tools. This book demonstrates correct and incorrect methods of extreme value analysis, demonstrates the  Read more...

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Genre/Form: CD-ROMs
Material Type: Internet resource
Document Type: Book, Internet Resource
All Authors / Contributors: Robert Boyd
ISBN: 0849370280 9780849370281
OCLC Number: 61456723
Notes: Includes index.
Description: 327 pages : illustrations ; 25 cm + 1 CD-ROM (4 3/4 in.)
Contents: Part I Nominal Analysis --
1.1 Nominal Analysis 3 --
1.1.2 The NDS Method of Nominal Circuit Analysis 4 --
1.2 Introduction to Node List Circuit Analysis 6 --
1.2.1 Rules and Definitions 6 --
Chapter 2 Passive Circuits 9 --
2.1 Introduction to Node List Circuit Analysis (Part One) 9 --
2.2 Introduction to Node List Circuit Analysis (Part Two) 16 --
2.3 All-Capacitive Circuit 21 --
2.4 All-Inductive Circuit 23 --
2.5 Twin-T RC Network 24 --
2.6 Broadband Pulse Transformer Model 27 --
2.7 All-Capacitive Loops (ACL) 30 --
2.8 All-Inductive Cutsets (ICS) 31 --
2.9 All-Capacitive Loop Example 32 --
Chapter 3 Controlled Sources 35 --
3.1 Controlled (Dependent) Sources 35 --
3.1.1 Voltage-Controlled Current Source (VCCS) 35 --
3.1.2 Current-Controlled Current Source (CCCS) 35 --
3.1.3 Voltage-Controlled Voltage Source (VCVS) 35 --
3.1.4 Current-Controlled Voltage Source (CCVS) 36 --
3.1.5 CCVS to VCVS 36 --
3.1.6 CCCS to VCCS 36 --
3.1.7 Four Rules that Must be Observed 37 --
3.2 Floating VCVS 38 --
3.3 Circuits with M> 1 41 --
3.4 First-Order MOSFET Model 44 --
3.5 VCVS and CCCS Example 46 --
3.6 Two Inputs, Three Outputs 50 --
3.7 Third-Order Opamp Model 54 --
3.8 A Subcircuit Scheme 56 --
3.9 Subcircuit Opamp Model 58 --
3.10 Fifth-Order Active Filter 59 --
3.11 State Variable Filter 60 --
3.12 Seventh-Order Elliptical Low-Pass Filter 63 --
3.12.1 Stepping One Resistor Value 68 --
3.12.2 Stepping All Seven Capacitor Values 71 --
3.13 Square Root of Frequency (+10 dB/decade) Circuit 74 --
3.14 HV (200 V) Shunt MOSFET Regulator 76 --
3.15 LTC 1562 Band-Pass Filter IC in a Quad IC 78 --
3.16 LTC 1562 Quad Band Filter IC 79 --
3.17 BJT Constant Current Source --
A Simple Linear Model Using the NDS Method 87 --
3.18 uA733 Video Amplifier 89 --
Chapter 4 Leverrier's Algorithm 97 --
4.1 Numerical Transfer Function [1] 97 --
4.2 Transfer Function Using Leverrier's Algorithm for Twin-T RC Network 100 --
Chapter 5 Stability Analysis 103 --
5.1 Unity Gain Differential Amplifiers 103 --
5.2 Stability of LM158 Opamp Model 106 --
5.3 High-Voltage Shunt Regulator --
Stability Analysis 109 --
Chapter 6 Transient Analysis 115 --
6.2 Switched Transient Analysis 118 --
6.3 N = 2 Switched Circuit Transient Response 120 --
6.4 Comparator 100-Hz Oscillator 123 --
6.5 Transient Analysis of Pulse Transformer 127 --
6.6 Passive RCL Circuit Transient Analysis 131 --
6.7 Mathcad's Differential Equation Solvers 133 --
6.8 A Mathematical Pulse Width Modulator (PWM) 135 --
6.9 Switching Power Supply Output Stage --
Buck Regulator 137 --
6.10 State Space Averaging 140 --
6.11 Simple Triangular Waveform Generator 143 --
6.12 Quadrature Oscillator 145 --
6.13 Wein Bridge Oscillator 148 --
Chapter 7 DC Circuit Analysis 151 --
7.1 Resistance Temperature Detector (RTD) Circuit 151 --
7.2 An Undergraduate EE Textbook Problem 152 --
7.2.1 Matrix Solution To Demonstrate the Utility of the NDS Method 153 --
7.3 DC Test Circuit 154 --
7.4 Stacking VCVS's and Paralleling VCCS's 158 --
7.5 DC Voltage Sweep (RTD Circuit) 159 --
7.6 RTD Circuit --
Step Resistor Value 161 --
7.7 Floating 5-V Input Source 164 --
Chapter 8 Three-Phase Circuits 167 --
8.1 Convert [Delta] Floating Voltage Inputs to Single-Ended Y Inputs 167 --
8.2 Three-Phase NDS Solution 170 --
8.2.1 Unbalanced Delta Load --
Single-Ended Inputs on A and B 170 --
8.2.2 Unbalanced Delta Load --
Single-Ended Inputs on A and C 172 --
8.3 Three-Phase Y --
Unbalanced Load 174 --
8.4 Three-Phase Y-Connected Unbalanced Load --
Floating Delta Input 177 --
8.5 Balanced Y- Load 181 --
Background Theory of NDS Method 187 --
A-I.1 Theory of NDS Method 196 --
A-I.1.1 An AC Floating VCVS 199 --
A-I.1.2 VCVS and CCCS 203 --
Part II Tolerance Analysis --
9.1.1 Tolerance Analysis of Circuits with Discrete Components 211 --
9.1.2 Analysis Methods 212 --
9.2 Some Facts about Tolerance Analysis 212 --
9.2.1 DC Analysis 212 --
9.2.1.1 Monte Carlo Analysis 213 --
9.2.2 AC Analysis 213 --
9.2.3 Transient Analysis 217 --
9.2.4 Asymmetric Tolerances 217 --
Chapter 10 DC Circuits 219 --
10.1 Resistance Temperature Detector (RTD) Circuit 219 --
10.2 A Note on Asymmetric Tolerances 221 --
10.3 Centered Difference Approximation --
Sensitivities 222 --
10.4 RTD Circuit Monte Carlo Analysis (MCA) 224 --
10.5 RTD MCA with R4 Tolerance = 10% 226 --
10.6 RTD Circuit Fast Monte Carlo Analysis (FMCA) 227 --
10.7 A CASE FMCA Greater than EVA 228 --
10.8 Tolerancing Inputs 231 --
10.9 Beta Distributions [4-6] 232 --
10.10 RTD MCA --
Beta (Skewed) Distribution 234 --
10.11 MCA of RTD Circuit using Bimodal (Gapped) Distribution Inputs 236 --
Chapter 11 AC Circuits 241 --
11.1 Circuit Output vs. Component Value 241 --
11.2 Exact Values of C1 Sensitivity 247 --
11.3 Multiple-Output EVA 248 --
11.4 Butterworth Low-Pass Filter Circuit 250 --
11.5 Butterworth Low-Pass Filter MCA 251 --
11.6 Butterworth Low-Pass Filter EVA 253 --
11.7 Butterworth Low-Pass Filter FMCA 254 --
11.8 Multiple-Feedback Band-Pass Filter (BPF) Circuit 255 --
11.9 Multiple-Feedback BPF MCA 256 --
11.10 Multiple-Feedback BPF EVA 257 --
11.11 Multiple-Feedback BPF FMCA 259 --
11.12 Switching Power Supply Compensation Circuit 260 --
11.13 Switching Power Supply Compensation MCA 261 --
11.14 Switching Power Supply Compensation EVA 262 --
11.15 Switching Power Supply Compensation FMCA 264 --
11.16 Sallen and Key Band-Pass Filter (BPF) Circuit 265 --
11.17 Sallen and Key BPF MCA 266 --
11.17.1 Sallen and Key BPF --
MCA with both Common and Precision Tolerances 267 --
11.18 Sallen and Key BPF EVA 268 --
11.19 Sallen and Key BPF FMCA 270 --
11.20 State Variable Filter Circuit 271 --
11.21 State Variable Filter MCA 272 --
11.22 State Variable Filter EVA 273 --
11.23 State Variable Filter FMCA and MCA Combined 275 --
11.24 High-Q Hum Notch Filter Circuit 276 --
11.25 High-Q Hum Notch Filter MCA 278 --
11.26 High-Q Hum Notch Filter EVA 279 --
11.27 High-Q Hum Notch Filter FMCA 280 --
11.28 LTC 1562 MCA 281 --
11.29 LTC 1562 EVA 282 --
Chapter 12 Transient Tolerance Analysis 285 --
12.1 Transient MCA --
Twin-T RC Network 285 --
12.2 Transient MCA --
Multiple Feedback BPF 286 --
12.3 AC and Transient MCA --
Bessel HPF 288 --
12.4 Transient MCA --
State Variable Filter 291 --
Chapter 13 Three-Phase Circuits 295 --
13.1 Three-Phase Y-Connected Unbalanced Load MCA 295 --
13.2 Three-Phase Y-Connected Unbalanced Load EVA 297 --
13.3 Three-Phase Y-Connected Unbalanced Load FMCA 300 --
Chapter 14 Miscellaneous Topics 303 --
14.1 Components Nominally Zero 303 --
14.2 Tolerance Analysis of Opamp Offsets 305 --
14.3 Best-Fit Resistor Ratios 309 --
14.4 Truncated Gaussian Distribution 311 --
14.5 LTC1060 Switched Capacitor Filter 313 --
14.5.1 Design Procedure from the Data Sheet 313 --
Summary of Tolerance Analysis Methods 319 --
DC 319 --
AC 319 --
Transient 319 --
Table of Subprograms 320 --
Part I Nominal Analysis Subprograms 320 --
Part II Tolerance Analysis Subprograms (Used with Part I Subprograms) 320 --
In Case of Difficulty 320.
Responsibility: Robert R. Boyd.
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