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Module - 1 Lecture - 2 PN Junction Diodes
Module - 1 Lecture - 3 Diode Equivalent Circuits
Module - 1 Lecture - 6 Clipping and Clamping Circuits
Module - 1 Lecture - 4 Diode Rectifier Circuits
Module - 2 Lecture - 1 Transistor Operation-Part-1
Mod-2 Lec-2 Transistor Operation Part-2
Module - 2 Lecture - 3 Biasing the BJT
Module - 2 Lecture - 4 Biasing the BJT-Part-2
Module - 2 Lecture - 5 BJT Small Signal Analysis
Module - 2 Lecture - 6 BJT Amplifier-Part-1
Module - 2 Lecture - 7 BJT Amplifier Part - 2
Module - 2 Lecture - 8 Frequency Response of BJT Analysis-Part-1
Module - 2 Lecture - 9 Frequency Response of BJT Analysis Part-2
Module - 3 Lecture - 1 Metal Oxide Semiconductor Field
Module - 3 Lecture - 2 Metal Oxide Semiconductor Field Effect Transistor(MOSFET)-Part-2
Module - 3 Lecture - 3 MOSFET under dc operation
Module - 3 Lecture - 4 Mosfet as an Amplifier
Module - 3 Lecture - 5 Small signal model of MOSFET - Part 1
Module- 3 Lecture - 6 Small signal model of MOSFET Part -2
Lecture 81 : Current mirror circuits (Part-A)
Lecture 82 : Current mirror circuits (Part-B)
Module - 4 Lecture - 1 Operational Amplifier (Introduction)
Module - 4 Lecture - 2 Ideal Op-Amp
Module - 4 Lecture - 3 Op-Amp applications Part -1
Module - 4 Lecture - 5 Op-Amp Applications Part - 3
Module - 4 Lecture - 8 Comparator
Module - 4 Lecture - 7 Positive feedback and oscillation
Lecture 12: Energy Spectral Density
Lecture 13: Power Spectral Density
Lec 05 | Principles of Communication-II | AWGN Properties | IIT Kanpur
Random Process (Contd.) - 3
Lecture 17: Amplitude Modulation (Contd.) - 2
Lecture 47 : Frequency Modulation
Lecture 52 : Frequency Modulation (Contd.) - 5
Lec 11 | Principles of Communication Systems-I | Spectrum of AM Signals| IIT KANPUR
Lec 32 | Principles of Communication Systems-I |Spectrum of FM Signals| IIT KANPUR
Lecture -13 Superhet Receiver etc
Lec 27 | Principles of Communication-II | Introduction to Entropy | IIT Kanpur
Lec 33 | Principles of Communication-II | Mutual Information | IIT Kanpur
Lec 35 | Principles of Communication-II | Channel Capacity | IIT Kanpur
Lecture 60 : Pulse Coded Modulation
Lec 47 | Principles of Communication Systems-I |DPCM, DPCM Signal Reconstruction|KANPUR
Lec 11 | Principles of Communication-II | Binary Phase Shift Keying (BPSK) Modulation | IIT Kanpur
Lec 12 | Principles of Communication-II | Amplitude Shift Keying (ASK) Modulation | IIT Kanpur
Lec 15 | Principles of Communication-II | Introduction to Frequency Shift Keying (FSK) | IIT Kanpur
Lec 22 | Principles of Communication-II | Introduction to M-ary QAM -I | IIT Kanpur
Mod-01 Lec-10 Coherence Bandwidth of the Wireless Channel
Lecture 22: Delay Spread and Inter Symbol Interference
Detection : Maximum Aposteriori Probability (MAP) Detector & Maximum Likelihood (ML) Detector
Week 4-Lecture 22
Lec 06 | Principles of Communication-II | Structure of Digital Communication Receiver | IIT Kanpur
Lecture 06: Bit Error Rate (BER) Performance
Lecture - 15 Error Detection and Correction
Week 12-Lecture 64
Control Engineering - Lecture 1: Introduction to Systems and Control, Signal Flow Graph, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 8: Transfer Function of Modelling Block Diagram Representation, Signal Flow Graph, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 10: Block Diagram Reduction, Signal Flow Graph, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 11: Solving Problems on Block Diagram Reduction, Signal Flow Graphs, Prof. Ramkrishna Pasumarthy
Analog IC Design - Lecture 38: Step Response, Sinusoidal Steady State Response, Prof. S. Aniruddhan
Control Engineering - Lecture 24: Introduction to Frequency Response, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 16: Routh Hurwitz Criterion, Prof. Ramkrishna Pasumarthy
Analog IC Design - Lecture 10: Nyquist Criterion; Phase Margin, Prof. Nagendra Krishnapura
Control Engineering - Lecture 27: Bode plots, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 20: Root Locus Plots, Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 37: Design of Lead Compensator using Bode Plots,Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 38: Design of Lag Compensator using Bode Plots Part 2 ,Prof. Ramkrishna Pasumarthy
Control Engineering - Lecture 39: Design of Lead-Lag Compensator using Bode Plots,Prof. Ramkrishna Pasumarthy
Advanced Linear Continuous Control Systems: Applications with MATLAB Programming and Simulink - Lecture 2 State Space Representation , Prof. Yogesh Vijay Hote
Advanced Linear Continuous Control Systems: Applications with MATLAB Programming and Simulink - Lecture 22: Solution of State Equation, Prof. Yogesh Vijay Hote
Lecture 21 : Number System
Lecture 07: Fundamentals of Boolean Algebra
Lecture 08: Boolean Function to Truth Table and Implementaion Issues
Lecture 09: Truth Table to Boolean Function and Implementaion Issues
Lecture 10: Karnugh Map and Digital Circuit Realization
Lecture 06: Basic Gates and their representations
CMOS+Electrical Properties
Lecture 23 : Arithmetic Building Blocks - I
Lecture 24 : Arithmetic Building Blocks - II
Lecture 9 - Code Converters
Lecture 16 : Multiplexer: Part I
Lecture 17 : Multiplexer: Part II
Lecture 18 : Demultiplexer / Decoder
Lecture 19 : Decoder with BCD Input and Encoder
Lecture 31: SR Latch and Introduction to Clocked Flip-Flop
Lecture 32: Edge-Triggered Flip-Flop
Lecture 33: Representations of Flip-Flops
Lecture 34: Analysis of Sequential Logic Circuit
Lecture 35 - MSI and LSI Based Implementation of Sequential
Lecture 41: Asynchronous Counter
Lecture 42: Decoding Logic and Synchronous Counter
Lecture 43: Cascading: Mod 2, 3, 5 to Mod 6, 10, 1000 Counter
Lecture 44: Counter Design with Asynchronous Reset and Preset
Lecture 45: Counter Design as Synthesis Problem and Few Other Uses of Counter
Lecture 36: Register and Shift Register: PIPO and SISO
Lecture 37: Shift Register: SIPO, PISO and Universal Shift Register
Lecture 38: Application of Shift Register
Lecture 46 : Synthesis of Sequential Logic Circuit: Moore Model and Mealy Model
Lecture 47 : Moore Model and Mealy Model: Realization of Digital Logic Circuit
Digital Circuits & Systems L25: Sequential Element Delays
Digital Circuits & Systems L33: Timing Sequential Circuits
Digital Circuits & Systems L24: Delays
Lecture 37
Lecture 51 : Digital to Analog Conversion - I
Lecture 52 : Digital to Analog Conversion - II
Lecture 53 : Analog to Digital Conversion - I
Lecture 54 : Analog to Digital Conversion - II
Lecture 59: Read Only Memory (ROM)
Lecture 57: Static Random Access Memory (SRAM)
Lecture 58: Dynamic RAM(DRAM) and Memory Expansion
Mod-02 Lec-04 Instructions, Addressing Modes
Lecture 27 : Arithmetic Logic Unit (ALU)
Lecture - 5 Processor As a State Machine
Lecture - 6 Data Path Architecture
Digital Circuits & Systems L43: Pipelining
Maxwell's Equations
Boundary conditions at Media Interface
Uniform plane wave
Power flow and Poynting vector
Reflection and refraction at media interface
Wave polarization
Transmission Lines : Velocities of Propagation,Transmission Lines Charts
Propagation of wave
Wave propagation in conducting medium
Wave propagation and phase velocity
Equations of Voltage and Current on TX line
Propagation constant, Characteristic impedance and reflection coefficient
Impedance Matching
Impedance Transformation
Smith Chart
Week 3-Lecture 15 : S - Parameters
Lec 5: Introduction to Waveguides and Rectangular Waveguide
Lec 6: Circular Waveguide
Mod-01 Lec-03 Ray Model -I
Mod-01 L4-Ray Model -II
Radiation (Antenna)
Radiation Parameters of antenna
Monopole and Dipole antenna
Antenna arrays
Uniform Linear array
Fundamentals of semiconductor devices - Introduction to semiconductors, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Introduction to energy bands, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Fundamentals of Band Structure, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Band Structure (contd.) and Fermi-Dirac distribution, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Density of states, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Doping and intrinsic carrier concentration, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Equilibrium carrier concentration, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - Temperature dependance of carrier concentration, Prof. Digbijoy N. Nath
Fundamentals of semiconductor devices - High doping effects and incomplete ionization , Prof. Digbijoy N. Nath
Processing of Semiconducting Materials - Mod-01 Lec-03: Direct and Indirect Band Semiconductors, Prof. Pallab Banerji
Processing of Semiconducting Materials - Mod-01 Lec-24: p - n Junction, Prof. Pallab Banerji
Processing of Semiconducting Materials - Mod-01 Lec 25: Carrier Transport in P-N Junction, Prof. Pallab Banerji
Basic Electronics - Mod-1 Lec-5 : Zener Diode and Applications, Prof. Chitralekha Mahanta
Semiconductor Devices and Circuits - Lecture 29: Bipolar Junction Transistors( BJT ), Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 30: BJT : IV Characteristics , Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 31 : BJT : Non-Idealities and Equivalent Circuit Modeling , Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 32: Metal Oxide Semiconductor Capacitor (MOSCAP), Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 33: MOSCAP - Continued, Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 34: MOSCAP : CV Characteristics , Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 35: MOSCAP : CV Characteristics - Continued , Prof. Sanjiv Sambandan
Fundamentals of Semiconductor Devices - Lecture 34 : MOSFET - An Introduction , Prof. Digbijoy N. Nath
Fundamentals of Semiconductor Devices - Lecture 35 : Gradual Channel Approximation : Derivation of I-V characteristics , Prof. Digbijoy N. Nath
Fundamentals of Semiconductor Devices - Lecture 36 : Substrate bias effect and subthreshold conduction in MOSFET , Prof. Digbijoy N. Nath
Fundamentals of Semiconductor Devices - Lecture 37 : Short Channel Effects in MOSFET
Fundamentals of Semiconductor Devices - Lecture 51: Basics of LED, Prof. Digbijoy N. Nath
Semiconductor Optoelectronics - Lecture 43: Semiconductor Photo-Diodes, Prof. M. R. Shenoy
Fundamentals of Semiconductor Devices - Lecture 44: Solar Cell Basics, Prof. Digbijoy N. Nath
Semiconductor Devices and Circuits - Lecture 15: Recombination and Generation, Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 15: Recombination and Generation - Continued, Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 16: Recombination and Generation - Continued, Charge Transport ,Prof. Sanjiv Sambandan
Semiconductor Devices and Circuits - Lecture 17: Charge Transport - Continued ,Prof. Sanjiv Sambandan
Solid State Devices - Lecture 12: Carrier Transport, Prof. S. Karmalkar
Semiconductor Devices and Circuits - Lecture 14: Recombination and Generation,Prof. Sanjiv Sambandan
Biostatics and Design of Experiments - Lecture 4: Poisson Distribution, Prof. Mukesh Doble
Semiconductor Devices and Circuits - Lecture 18: Continuity Equation,Prof. Sanjiv Sambandan
Lecture 36: System of Linear Equations
Lecture 37: System of Linear Equations -Gauss Elimination
Lecture 38: System of Linear Equations -Gauss Elimination (Cont.)
Lecture 39: Linear Algebra - Vector Spaces
Lecture 40: Linear Independence of Vectors
Lecture 41: Vector Spaces -Spanning Set
Lecture 42: Vector Spaces -Basis and Dimension
Lecture 46: Eigenvalues & Eigenvectors
Lecture 47: Eigenvalues & Eigenvectors (Cont.)
Lecture 48: Eigenvalues & Eigenvectors (Cont.)
Lecture 49: Eigenvalues & Eigenvectors (Cont.)
Lecture 50: Eigenvalues & Eigenvectors: Diagonalization
Lecture 43: Rank of a Matrix
Lecture 44: Linear Transformations
Lecture 45: Linear Transformations (cont.)
Lecture 02: Mean Value Theorems
Lecture 03: Indeterminate Forms Part I
Lecture 04 : Indeterminate Forms Part II
Lecture 21: Improper Integrals
Lecture 22: Improper Integrals (Cont.)
Lecture 23: Improper Integrals (Cont.)
Lecture 24: Improper Integrals (Cont.)
Lecture 25: Beta & Gamma Function
Lecture 26 : Beta & Gamma Function (Cont.)
Lecture : 06 Limit of Function of Two Variables
Lecture 07: Evaluation of Limit of Function of Two Variable
Lecture 08 : Continuity of Function of Two Variable
Lecture 09 : Partial Derivatives of Function of Two Variable
Lecture 10 Partial Derivatives of Higher Order
Lecture 11: Derivative & Differentiability
Lecture 12 : Differentiability of Functions of Two Variables
Lecture 13: Differentiability of Functions of Two Variables (Cont.)
Lecture 14 : Differentiability of Functions of Two Variables (Cont.)
Lecture 15 :Composite and Homogeneous Functions
Lecture 17: Maxima & Minima of Functions of Two Variables
Lecture 18: Maxima & Minima of Functions of Two Variables (Cont.)
Lecture 19: Maxima & Minima of Functions of Two Variables (Cont.)
Lecture 20: Constrained Maxima & Minima
Lecture 27: Differentiation Under Integral Sign
Lecture 28 : Double Integrals
Lecture 29 : Double Integrals (Cont.)
Lecture 30: Double Integrals (Cont.)
Lecture 31: Integral Calculus -Double Integrals in Polar Form
Lecture 32: Integral Calculus - Double Integrals: Change of Variables
Lecture 33: Integral Calculus -Double Integrals: Surface Area
Lecture 34: Integral Calculus -Triple Integrals
Lecture 35: Integral Calculus - Triple Integrals (Cont.)
Lecture 05 : Taylor Polynomial Taylor Series
Lecture 16: Taylor's Theorem for Functions of Two Variables
Lecture 51:Differential Equations - Introduction
Lecture 56: Higher Order Linear Differential Equations
Lecture 60: Cauchy-Euler Equations
Lecture 57: Solution of Higher Order Homogeneous Linear Equations
Lecture 58: Solution of Higher Order Non-Homogeneous Linear Equations
Lecture 59: Solution of Higher Order Non-Homogeneous Linear Equations (cont.)
Lecture 01: Vector Functions
Lecture 02: Vector and Scalar Fields
Lecture 03: Divergence and Curl of a Vector Field
Lecture 04: Line Integrals
Lecture 10: Divergence Theorem
Lecture 06: Green's Theorem
Lecture 07: Surface Integral - I
Lecture 08: Surface Integral - II
Lecture 09: Stoke's Theorem
Lecture 11: Complex Numbers and Functions
Lecture 12 : Differentiability of Complex Functions
Lecture 13: Analytic Functions
Lecture 14: Line Integral
Lecture 15: Cauchy's Integral Theorem
Lecture 16: Cauchy Integral Formula
Lecture 17: Taylor's Series
Lecture 18: Laurent's Series
Lecture 19: Singularities
Lecture 20 : Residue
Mod-05 Lec-21 Statistics : Mean and variance
Lecture 12
Lecture 13
Lecture 14
Lecture 16
Lecture 17
Lecture 18
Probability Distributions
Lecture 19
Lecture 06-Poisson Distribution
Lecture 29: Quantification of Basic Events - Exponential Distribution
Lecture 20
Lecture 15
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Lecture 24: Roots of Algebraic and Transcendental Equations
Lecture 25: "Roots of Algebraic and Transcendental Equations (Cont.)"
Lecture 26: Polynomial Interpolation
Lecture 27: "Polynomial Interpolation (Cont.)"
Lecture 29: "Polynomial Interpolation (Cont.)"
Lecture 30: Numerical Integration
Mod-02 Lec-02 Single - Step Methods for IVPs
Mod-03 Lec-03 Analysis of Single Step Methods
Mod-04 Lec-04 Runge - Kutta Methods for IVPs
Mod-09 Lec-09 Multi-Step Methods (Explicit)
Mod-10 Lec-10 Multi-Step Methods (Implicit)
Lecture 15 - Tests of Convergence
Network Analysis - Lecture 64: Mesh Analysis with Graph Theory, Prof. Tapas Kumar Bhattacharya
Network Analysis - Lecture 65: Nodal Analysis with Graph Theory, Prof. Tapas Kumar Bhattacharya
Basic Electrical Circuits - Lecture 61: Superposition Theorem, Prof. Nagendra Krishnapura
Network Analysis - Lecture 54: Thevenin Theorem, Prof. Tapas Kumar Bhattacharya
Network Analysis - Lecture 53: Norton's Theorem, Prof. Tapas Kumar Bhattacharya
Network Analysis - Lecture 57: Reciprocity Theorem, Prof. Tapas Kumar Bhattacharya
Basic Electrical Technology - Lecture 13: Phasor Analysis, Prof. L. Umanand
Network Analysis - Lecture 31: Expression for Complex Power in A.C Circuit, Prof. Tapas Kumar Bhattacharya
Network Analysis - Lecture 58: Maximum Power Transfer Theorem, Prof. Tapas Kumar Bhattacharya
Network Analysis - Lecture 12: R-L Series Circuit Analysis, Prof. Tapas Kumar Bhattacharya
Basic Electrical Circuits - Lecture 110: First Order RC Circuit with Zero input - Example, Prof. Nagendra Krishnapura
Basic Electrical Circuits - Lecture 137: Series and Parallel RLC Circuits, Prof. Nagendra Krishnapura
Basic Electrical Circuits - Mod - 01: Lecture 21 : Sinusoidal steady state response of RC and RLC circuits, Dr. Nagendra Krishnapura
Optimal Control - Mod-01 Lec-43 : Frequency Domain Interpretation of LQR Controlled System, Prof. G.D. Ray
Networks and Systems - Lecture 26: Applications of Laplace Transforms(1), Prof. V.G.K. Murti
Networks and Systems - Lecture 27: Applications of Laplace Transforms(2), Prof. V.G.K. Murti
Networks and Systems - Lecture 28: Applications of Laplace Transforms(3), Prof. V.G.K. Murti
Networks and Systems - Lecture 29: Applications of Laplace Transforms(4), Prof. V.G.K. Murti
Circuit Theory - Lecture 24: The Hybrid and Transmission Parameters of 2 Ports, Prof. S. C. Dutta Roy
Circuit Theory - Lecture 26 : Two - port Network Parameters, Prof. S. C. Dutta Roy
Circuit Theory - Lecture 27 : Two - port Interconnections, Prof. S. C. Dutta Roy
Circuit Theory - Lecture 31 : Scattering Parameters of a Two - port, Prof. S. C. Dutta Roy
Network Analysis - Lecture 54: Thevenin Theorem, Prof. T.K. Bhattacharya
Network Analysis - Lecture 55: Star-Delta and Delta-Star Transformation, Prof. T.K. Bhattacharya
Fourier Series
Fourier Transforms
Sampling
Sampling Theorem (Contd.)
Definition, Inverse DTFT, Convergence,DTFT and z-Transform, DTFT
Discrete time fourier transform
Definition, Inverse DFT, Relation between DFT and DFS, Relation between DFT and DTFT, Properties
Discrete Fourier transform
Z-Transform
Z-Transform of LTI System
Digital Processing of Continuous Time Signals
Introduction
Linearity and Time Invariance
Properties and Analysis of LTI systems-I
Properties and Analysis of LTI systems-III
LTI System Causality and Stability
LTI Systems Step & Impulse Responses, Convolution
Laplace Transform Properties-II
Frequency Response of Discrete LTI System
Group/ Phase Delay – Part I
Group/ Phase Delay – Part II