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Lecture
Analog Circuits and Systems: Q&A Session
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Related lectures (32)
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Feedback Amplifiers: Stability Analysis
Covers stability analysis of feedback amplifiers and Butterworth and Chebyshev filter design.
High-order Filters: LC Ladder Filters
Explores the design and simulation of high-order LC ladder filters using active-RC circuits and impedance normalization techniques.
Feedback and Stability
Explores negative feedback in analog circuits, focusing on desensitizing gain, reducing distortion, controlling noise, and extending bandwidth.
Basic Principles of Oscillators
Covers the fundamental principles of oscillators, including signal generators, OPAMP RC oscillator circuits, and multivibrators.
Filters Fundamentals: Chebyshev Approximation
Explores the fundamentals of Chebyshev approximation in filters, covering polynomials, pole locations, order determination, and design procedures.
Filters Fundamentals: Chebyshev Polynomials and Filter Design
Covers Chebyshev polynomials, all-pole filter design, RLC filters, and active-RC and OTA-C filter implementations.
Analog Circuits and Systems: The Laplace Transform
Covers the basics and applications of the Laplace transform in analyzing linear analog circuits.
Feedback and Stability: Active Filters
Explores feedback, stability, and active filters, covering various amplifier structures, filter fundamentals, and stability analysis.
Analysis of Circuits with Dependent Sources
Explores the analysis of circuits with dependent sources, node-voltage analysis, Thévenin equivalent circuits, and OPAMP fundamentals.
The Frequency Response of RLC Circuits
Explores the frequency response of RLC circuits, operational amplifiers, and linear dependent sources, highlighting the historical significance of operational amplifiers.