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Engineering
Electrical Engineering
Microelectronic Circuits
1. Introduction to Microelectronics
2. Semiconductor Physics Fundamentals
3. The p-n Junction and Diode Devices
4. Bipolar Junction Transistors
5. Metal-Oxide-Semiconductor Field-Effect Transistors
6. Analog Integrated Circuit Design
7. Active Filters and Signal Processing
8. Digital Integrated Circuits
9. IC Fabrication and Physical Design
Active Filters and Signal Processing
Filter Fundamentals
Filter Classifications
Low-Pass Filters
High-Pass Filters
Band-Pass Filters
Band-Stop Filters
All-Pass Filters
Filter Specifications
Passband and Stopband
Cutoff Frequency
Transition Band
Ripple and Attenuation
Filter Approximations
Butterworth Response
Chebyshev Response
Elliptic Response
Bessel Response
Active Filter Design
First-Order Active Filters
Single-Pole Filters
Op-Amp Implementations
Second-Order Active Filters
Sallen-Key Topology
Multiple Feedback Topology
State-Variable Filters
Higher-Order Filter Design
Cascade Design
Sensitivity Considerations
Switched-Capacitor Filters
Sampling and Filtering
Clock Feedthrough
Aliasing Effects
Oscillators and Signal Generators
Oscillation Principles
Barkhausen Criterion
Positive Feedback
Amplitude Control
Sinusoidal Oscillators
Wien Bridge Oscillator
Phase Shift Oscillator
Quadrature Oscillator
LC Oscillators
Colpitts Oscillator
Hartley Oscillator
Crystal Oscillators
Relaxation Oscillators
Astable Multivibrators
Voltage-Controlled Oscillators
Function Generators
Triangle Wave Generation
Square Wave Generation
Sawtooth Wave Generation
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8. Digital Integrated Circuits