By Dennis Fitzpatrick

ISBN-10: 0080970958

ISBN-13: 9780080970950

Content material:
Front Matter

, Page iii

, Page iv

, Page ix

, Pages xi-xii
Chapter 1 - Getting Started

, Pages 1-19
Chapter 2 - DC Bias element Analysis

, Pages 21-37
Chapter three - DC Analysis

, Pages 39-52
Chapter four - AC Analysis

, Pages 53-61
Chapter five - Parametric Sweep

, Pages 63-81
Chapter 6 - Stimulus Editor

, Pages 83-99
Chapter 7 - temporary Analysis

, Pages 101-113
Chapter eight - Convergence difficulties and blunder Messages

, Pages 115-123
Chapter nine - Transformers

, Pages 125-132
Chapter 10 - Monte Carlo Analysis

, Pages 133-145
Chapter eleven - Worst Case Analysis

, Pages 147-156
Chapter 12 - functionality Analysis

, Pages 157-164
Chapter thirteen - Analog Behavioral Models

, Pages 165-171
Chapter 14 - Noise Analysis

, Pages 173-183
Chapter 15 - Temperature Analysis

, Pages 185-193
Chapter sixteen - including and growing PSpice Models

, Pages 195-216
Chapter 17 - Transmission Lines

, Pages 217-232
Chapter 18 - electronic Simulation

, Pages 233-245
Chapter 19 - combined Simulation

, Pages 247-252
Chapter 20 - growing Hierarchical Designs

, Pages 253-279
Chapter 21 - Magnetic components Editor

, Pages 281-300
Chapter 22 - try out Benches

, Pages 301-314
Appendix - PSpice size Definitions

, Pages 315-317

, Pages 319-329

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Additional resources for Analogue Design and Simulation using OrCAD Capture and PSpice

Example text

15 Twin T Notch filter implemented with one resistor and one capacitor value. 14. 6, R ¼ 27 kU and C ¼ 110 n. 2 Exercises 67 Exercise 1 67 Theory Exercise 2 Notch Filter Exercise 3 73 75 Active Notch Filter 75 72 73 A parametric sweep allows for a parameter to be swept through a range of values and can be performed when running a transient, AC or DC sweep analysis. Parameters that can be varied include a voltage or current source, temperature, a global parameter or a model parameter. A global parameter can represent a mathematical expression as well as a variable and is defined using the PARAM part from the Special library.

24). 24 Secondary DC sweep settings. 7. Place a current marker on the collector pin of the transistor and simulate. 8. 25. 25 Nested sweep showing transistor characteristic curves. 9. Select Plot > Axis Settings > YAxis, change the Data Range to User 10. 11. 12. 13. Defined and enter a range from 0 mA to 40 mA. Click on OK and see the change. Select Plot > Axis Settings > YGrid and uncheck Automatic and set the Major Spacing to 10 m. Click on OK and see the change. Select Plot > Axis Settings > XGrid and uncheck both Major and Minor Grids to None.

E. the connectivity of the components, has not changed. Remember that other analyses use the calculated results from a bias point analysis, so when you resimulate the circuit, assuming that the netlist has not changed, the initial bias point calculations can be saved and reused, thus reducing the simulation runtime. Saving the bias point is also useful when a simulation fails to converge to a solution. In the Simulation Profile Settings select Bias Point analysis and then select Save Bias Point.

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Analogue Design and Simulation using OrCAD Capture and PSpice by Dennis Fitzpatrick

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