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Basic Electronics and Lab. Instructor: Prof. T. S. Natarajan, Department of Physics, IIT Madras. This course provides an understanding of basic principles of electronic devices and circuits.
1111 years
40
Passive Components: Resistors, Capacitors, inductors, Semiconductor Diodes, Different types of these components and their applications, Ohm's law, related theorems like Thevenin's, Norton's, Maximum Power transfer, etc.
Active Components: Transistors, FET, UJT and SCR. Brief introduction and simple applications.
Operational Amplifiers: Operational amplifiers, Op Amp characteristics, Feed-back, Different Feedback configurations, Current-to-voltage and Voltage-to-current converters, voltage amplifier and current amplifiers, Mathematical operations, summing, differential, Integrating amplifiers, Instrumentation amplifiers, Comparators, Relaxation oscillators, RC-Oscillators, Active filters. (from nptel.ac.in)
Course Currilcum
- Lecture 01 – Introduction to Basic Electronics Unlimited
- Lecture 02 – Electronic Devices: Resistors, Ohm’s Law, Ideal Voltage Source Unlimited
- Lecture 03 – Electronic Devices: Resistors in Series and Parallel, Capacitors, Coils Unlimited
- Lecture 04 – Kirchoff’s Laws, Maximum Power Transfer Theorem, Superposition Theorem Unlimited
- Lecture 05 – Thevenin’s Theorem Unlimited
- Lecture 06 – Diodes: Vacuum Tube Diodes, Semiconductor Diodes Unlimited
- Lecture 07 – Application of Diodes: Diode as a Rectifier, Half and Full Wave Rectifiers, Bridge Rectifier Unlimited
- Lecture 08 – Wave Shaping using Diodes, Voltage Multiplier, Diode as Voltage Doubler Unlimited
- Lecture 09 – Applications of Zener Diode: Zener Diode as Regulator Unlimited
- Lecture 10 – Transistors Unlimited
- Lecture 11 – Transistor Biasing – Common Emitter Circuits, Fixed Bias, Collector to Base Bias Unlimited
- Lecture 12 – Transistor Biasing (Emitter Current Biasing), Transistor Amplifiers Unlimited
- Lecture 13 – Basic Characteristic of an Amplifier, Common Emitter Amplifier Unlimited
- Lecture 14 – Hybrid Equivalent Circuit, H- Parameters Unlimited
- Lecture 15 – Circuit Analysis using H-parameters Unlimited
- Lecture 16 – Frequency Response of Amplifiers Unlimited
- Lecture 17 – Frequency Analysis Unlimited
- Lecture 18 – Power Amplifiers Unlimited
- Lecture 19 – Differential Amplifiers Unlimited
- Lecture 20 – Integrated Circuits, Introduction to Operational Amplifier Unlimited
- Lecture 21 – Typical Characteristics of Operational Amplifiers Unlimited
- Lecture 22 – Four Types of Feedback Unlimited
- Lecture 23 – Four Types of Feedback (cont.), Mathematical Operations Unlimited
- Lecture 24 – Mathematical Operations: Summing Amplifier, The Averager, D/A Converter Unlimited
- Lecture 25 – Mathematical Operations: Difference Amplifier, Integration Amplifier Unlimited
- Lecture 26 – Mathematical Operations: Differentiation Amplifier, Applications Unlimited
- Lecture 27 – Characteristics of Operational Amplifiers Unlimited
- Lecture 28 – Characteristics of Operational Amplifiers: Output Resistance, CMRR Unlimited
- Lecture 29 – Characteristics of Op-Amps: Transfer Characteristics, Gain Bandwidth, Slew Rate Unlimited
- Lecture 30 – Op-Amps: Inverter/Non-inverter Circuits Unlimited
- Lecture 31 – Applications of Op-Amps: Instrumentation, Transducers, Current Booster Unlimited
- Lecture 32 – Nonlinear Op-Amp Circuits: Comparators Unlimited
- Lecture 33 – Nonlinear Op-Amp Circuits: Window Comparator, Relaxation Oscillator Unlimited
- Lecture 34 – Active Diode Circuits: Wave Rectifier, Active Peak Detector, Clipper and Clamper Unlimited
- Lecture 35 – Oscillators: Phase Shift, Wein Bridge, Twin-T Unlimited
- Lecture 36 – Logarithmic and Antilogarithmic Amplifier Unlimited
- Lecture 37 – Filters: Low, High, Band Pass, Band Stop Unlimited
- Lecture 38 – Unit junction Transistor (UJT) Unlimited
- Lecture 39 – Silicon Controlled Rectifier (SCR) Unlimited
- Lecture 40 – Field Effect Transistor (FET) Unlimited