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Engineering
Electrical Engineering
Electronic Devices and Circuits
1. Introduction to Electronics
2. Semiconductor Physics
3. The p-n Junction Diode
4. Diode Applications and Circuits
5. Bipolar Junction Transistors (BJTs)
6. Field-Effect Transistors (FETs)
7. Single-Stage Amplifiers
8. Multistage Amplifiers
9. Frequency Response of Amplifiers
10. Operational Amplifiers
11. Feedback in Amplifiers
12. Oscillators
13. Power Amplifiers
14. Power Supply Circuits
Feedback in Amplifiers
Feedback Fundamentals
Basic Feedback Concept
Forward Path
Feedback Path
Error Signal
Types of Feedback
Positive Feedback
Negative Feedback
Feedback Factor
Loop Gain
Closed-Loop Gain
Benefits of Negative Feedback
Gain Stabilization
Desensitivity Factor
Bandwidth Extension
Gain-Bandwidth Trade-off
Distortion Reduction
Harmonic Distortion Improvement
Noise Reduction
Input and Output Impedance Control
Feedback Topologies
Voltage-Series Feedback
Shunt Sampling
Series Mixing
Voltage-Shunt Feedback
Shunt Sampling
Shunt Mixing
Current-Series Feedback
Series Sampling
Series Mixing
Current-Shunt Feedback
Series Sampling
Shunt Mixing
Stability Analysis
Loop Gain Analysis
Nyquist Stability Criterion
Nyquist Plot
Encirclement Rule
Bode Stability Analysis
Gain Margin
Phase Margin
Stability Criteria
Root Locus Method
Compensation Techniques
Frequency Compensation
Dominant Pole Compensation
Lead Compensation
Lag Compensation
Miller Compensation
Feedforward Compensation
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10. Operational Amplifiers
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12. Oscillators