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Lecture
Filters and Power in AC Circuits
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Related lectures (32)
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Digital Filters: Phase Response and Stability
Explores phase response constraints, minimum phase systems, and digital filter design.
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.
Filters Fundamentals: Chebyshev Approximation
Explores the fundamentals of Chebyshev approximation in filters, covering polynomials, pole locations, order determination, and design procedures.
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.
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.
AC Circuits Analysis: Maxwell's Equations to Impedance
Explores AC circuits analysis, from Maxwell's equations to impedance and experimental phase shifts verification.
Ideal filters derived from the ideal lowpass filter
Covers the derivation of ideal high pass and band pass filters.
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AmpliOp Response and Filter Design
Covers the design of active filters based on operational amplifiers and impedance analysis.
Operational Amplifier: Frequency-Dependent Gain Amplifier
Covers the frequency-dependent gain amplifier and 1st order low-pass active filter.