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Related lectures (28)
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Analog Circuits and Systems: Q&A Session
Covers a Q&A session on analog circuits, focusing on practice exams, filters, oscillators, and feedback structures.
Series RLC Circuit: Solutions
Covers the solutions of a series RLC circuit and the voltage jump across it.
Continuous-Time Filters: Design and Analysis
Covers the design and analysis of continuous-time filters, including MOSFET-C filters and Gm-C filters.
Feedback Amplifiers: Stability Analysis
Covers stability analysis of feedback amplifiers and Butterworth and Chebyshev filter design.
Antennas Network Synthesis
Explores the synthesis of antennas networks, including beam width and radiation patterns.
Digital Filters Synthesis: Bilinear Transformation and Frequency Response
Explores the synthesis of digital filters from analog filters using the bilinear transformation method and Chebyshev's criterion.
Switched-Capacitor Filters: Design and Synthesis
Covers the design and synthesis of switched-capacitor filters focusing on cascade and ladder filter designs.
Voltage Jump in Series RLC Circuit
Covers the derivation of the voltage jump across a series RLC circuit.
Signal Processing: Filter Synthesis and Random Variables
Explores filter synthesis methods and the role of random variables in measurement systems.
Filters Fundamentals: Chebyshev Polynomials and Filter Design
Covers Chebyshev polynomials, all-pole filter design, RLC filters, and active-RC and OTA-C filter implementations.
Filters Fundamentals: Chebyshev Approximation
Explores the fundamentals of Chebyshev approximation in filters, covering polynomials, pole locations, order determination, and design procedures.
Active Filters: Second-order and High-order Realizations
Covers the design and implementation of active filters, focusing on second-order and high-order realizations.
Filters Fundamentals: LP-to-HP Transformation
Covers the fundamentals of filters, LP-to-HP transformation, LP-to-BP transformation, and analytical approximations like Butterworth and Chebyshev.
Digital Filters: Frequency Response Approximation
Explores digital filter synthesis, emphasizing frequency response approximation and pole-zero placement.
Filter Theory: Introduction and Methods
Introduces filter theory methods such as discretization, pole shifting, and scaling in filter design.
Analog Filters: General Synthesis and Transfer Functions
Explores analog filters, rational transfer functions, and stability analysis of causal systems.
Filter Theory: Analog Realization and Digital Sizing
Covers the analog realization of filters and digital sizing methods.
Signals & Systems I: Pole-Zero Analysis and Filter Synthesis
Explores resonance, pole-zero effects, filter synthesis, and Butterworth filter properties.
Quadrangular Finite Elements
Covers the basic functions of quadratic and biquadratic rectangular elements and the serendipal family of regular rectangular finite elements.
Networked Control Systems: Laplacian Operators and Microgrids
Explores Laplacian operators on graphs and the model of DC microgrids.
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