Overview Introduction, Sampling, Quantization , PCM and Delta Modulation, Probability and Random Processes, Channel Models, Information Theory, Bandpass Signal Representation, Digital Modulation Techniques, Probability of Error Calculation, Equalizers, Source Coding, Channel Coding and Fundamentals of OFDM.
32 Lessons
29:08:25 Hours
Overview Introduction - Diode - Diode Characteristics - Rectifier - Voltage Multiplier - Full Wave Rectifier and Peak Detector - Diode as a GATE - Analog GATE - Small Signal Analysis of Diode Circuit - Zener Regulator and Voltage Regulator
38 Lessons
33:26:57 Hours
Overview Feed Back Theory - Negative Feedback - Y - Feedback - h and g Negative Feedback - g Feedback With MOSFET - Operational Amplifier In Negative Feedback - Positive Feedback (Regenerative) - Experimental Demonstration - Instrumentation Amplifiers - Active Filters - Simulation of Harmonic Oscillators - Oscillators - Frequency Compensation in Negative Feedback - Frequency Compensation - Wideband (video) Amplifiers - Wideband Amplifiers - ICs For Video And Tuned Amplifier Applications - Power Amplifier - Class B and C Power Amplifiers - Class-B Power Amplifier Load and Drive - Control Circuits - Voltage Regulators - Converters - Analog Multipliers (Modems, Mixers) - Log-Antilog Multipliers - Multipliers - AGC/AVC - Experimental Demonstration - PLL (Phase Locked Loop) - Lock Range Capture Range and FSK and FM
39 Lessons
33:15:49 Hours
Overview Introduction, Evoluation of MEMS, Microsensors. MEMS Materials, Microelectronic Technology, Etch Stop Techniques, Fabrication of Micromachined Microstructure, Microstereolithography, MEMS Pressure and Flow Sensor, MEMS Gyro Sensor, MEMS for Space Application, Wafer Bonding, Packaging of MEMS, MEMS for Biomedical Applications (Bio-MEMS).
31 Lessons
30:55:14 Hours
Overview Introduction, Semiconductor, Equilibrium Carrier Concentration, Carrier Transport, Excess Carriers, PN Junction, Procedure for Device Analysis, Bipolar Junction Transistor (BJT), Metal-Oxide-Semiconductor(MOS)Junction, MOS Field Effect Transistor (MOSFET).
42 Lessons
41:25:30 Hours
Transmission lines are used to transfer electromagnetic energy from one point to another with minimum losses over a wideband of frequencies. There are three major types of transmission lines: transverse electromagnetic (TEM) mode, transverse electric (TE) mode and transverse magnetic (TM) mode.
59 Lessons
52:29:05 Hours
Overview Introduction to Basic Electronics, Electronic Devices, Semi Conductor Diodes, Wave Shaping using Diodes, Zener Diode Characteristics, Transistor Biasing, H-Parameters, Frequency Analysis, Differential Amplifiers, Types of Feed Back, Characteristics of Operation Amplifier, Oscillatiors, Unit Junction Transistor (UJT).
40 Lessons
38:01:08 Hours
Overview Contents: Overview Of Linear Dynamical Systems - Linear Functions - Linearization - Nullspace Of A Matrix - Orthonormal Set Of Vectors - Least-Squares - Least-Squares Polynomial Fitting - Multi-Objective Least-Squares - Least-Norm Solution - Examples Of Autonomous Linear Dynamical Systems - Solution via Laplace Transform And Matrix Exponential - Time Transfer Property - Markov Chain (Example) - Jordan Canonical Form - DC Or Static Gain Matrix - RC Circuit (Example) - Gain Of A Matrix In A Direction - Sensitivity Of Linear Equations To Data Error - Reachability, Controllable System - Continuous - Time Reachability
20 Lessons
24:26:51 Hours
Overview Contents: Introduction - Guest-Logistics, Convex Functions - Vector Composition - Optimal And Locally Optimal Points - Linear-Fractional Program - Generalized Inequality Constraints - Lagrangian, Lagrange Dual Function - Complementary Slackness - Applications Section Of The Course-Statistical Estimation - Continue On Experiment Design - Linear Discrimination (Cont.),LU Factorization (Cont.) - Algorithm Section Of The Course - Continue On Unconstrained Minimization - Newton - Logarithmic Barrier-Interior-Point Methods
19 Lessons
24:00:05 Hours