Description
Course Outline
1. Demonstrate understanding of semiconductor theory
- Definition of terms
- Types of materials
- Insulators
- Conductors
- Semiconductors
- Types of semiconductor materials
- Intrinsic and Extrinsic
2. Demonstrate understanding of semiconductor diodes
- Definition of terms
- P-N junction
- Semiconductor diodes
- Forward and reverse characteristics
- Types of semiconductor diodes
- Application of semiconductor diodes
3. Demonstrate understanding of transistors
- Bipolar junction transistors (BJTs)
- Operation of NPN and PNP transistors
- Field effect transistors (FETs)
- Operation of N and P channel FETs
- Types of FETs
- BJTs and FETs biasing
- BJTs and FETs configuration
- Characteristics of transistors
- Gain of transistors
- DC and AC load lines
4. Apply special semiconductor devices
- Definition of terms
- Types of special semiconductor devices
- UJT
- SCR
- LASCR
- DIAC
- TRIAC
- SCS
- Application of special semiconductor devices
5. Perform rectification
- Definition of terms
- Classification of rectifiers
- Types of rectifiers
- Application of rectifiers
- Types of converters
- Application of converters
6. Apply amplifiers
- Definition of terms
- Types of amplifiers
- RC coupled amplifiers
- Small signal amplifiers
- Power amplifiers
- Wideband amplifiers
- Operational amplifiers (Op-Amp)
- DC amplifiers
- Differential simplifier
- Op-Amp characteristics
- Op-Amp circuits
- Application of amplifiers
7. Demonstrate understanding of oscillators
- Definition of terms
- Classification of oscillators
- Sinusoidal
- Non-sinusoidal
- Oscillator requirements
- Oscillator circuits
- Damped and undamped oscillators
8. Apply wave shaping and pulse generation circuits
- Definition of terms
- Wave shaping
- Pulse generation circuits
- Application of wave shaping and pulse generation circuits
9. Apply opto-electronics
- Theory of opto-electronics
- Lasers and masers
- Properties and drive requirement
- LED
- LCD
- Plasma
- Photo devices
- Application of optoelectronics
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