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Feedback and Stability Theory:Block Diagram Math and Manipulations, Bode Analysis of Feedback Circuits

<< Single Supply Op Amp Design Techniques:Circuit Analysis, Simultaneous Equations
Development of the Non Ideal Op Amp Equations:Noninverting Op Amps, Inverting Op Amps >>



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Table of Contents:
  1. The Op Amp’s Place In The World
  2. Review of Circuit Theory:Laws of Physics, Voltage Divider Rule, Thevenin’s Theorem
  3. Development of the Ideal Op Amp Equations:The Noninverting Op Amp, The Differential Amplifier
  4. Single Supply Op Amp Design Techniques:Circuit Analysis, Simultaneous Equations
  5. Feedback and Stability Theory:Block Diagram Math and Manipulations, Bode Analysis of Feedback Circuits
  6. Development of the Non Ideal Op Amp Equations:Noninverting Op Amps, Inverting Op Amps
  7. Voltage-Feedback Op Amp Compensation:External Compensation, Stability, and Performance
  8. Current-Feedback Op Amp Analysis:Development of the Stability Equation, The Inverting CFA
  9. Voltage- and Current-Feedback Op Amp Comparison:Precision, Bandwidth
  10. Op Amp Noise Theory and Applications:Characterization, Types of Noise, Noise Colors
  11. Understanding Op Amp Parameters:Operational Amplifier Parameter Glossary, Slew Rate at Unity Gain
  12. Instrumentation: Sensors to A/D Converters:Design Procedure, ADC Characterization
  13. Wireless Communication: Signal Conditioning for IF Sampling:Anti-Aliasing Filters
  14. Interfacing D/A Converters to Loads:Understanding the D/A Converter and its Specifications
  15. Sine Wave Oscillators:Phase Shift in the Oscillator, Gain in the Oscillator
  16. Active Filter Design Techniques:Fundamentals of Low-Pass Filters, Practical Design Hints
  17. Circuit Board Layout Techniques:PCB Mechanical Construction, Decoupling, Packages
  18. Designing Low-Voltage Op Amp Circuits:Dynamic Range, Shutdown and Low Current Drain
  19. Appendix A:Single-Supply Circuit Collection, Computing Circuits, Oscillators
  20. Appendix B:Single-Supply Op Amp Selection Guide