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Lecture
Filter Theory: Introduction and Methods
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Related lectures (32)
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Signals & Systems I: Pole-Zero Analysis and Filter Synthesis
Explores resonance, pole-zero effects, filter synthesis, and Butterworth filter properties.
RIF Filters: Characteristics and Synthesis
Explores the characteristics and synthesis of RIF filters, including windowing operations and linear phase filters.
Analog Filters: General
Explores analog filters, linear phase filters, rational transfer functions, and filter design compromises.
Analog Filters: General Synthesis and Transfer Functions
Explores analog filters, rational transfer functions, and stability analysis of causal systems.
Band-Pass Filters: Design and Application
Explores band-pass filter design, impedance characteristics, and practical circuit realization for heart activity measurement.
MEMS Resonators: Types and Applications
Explores MEMS resonators, their types, applications, and performance metrics in communication systems and timekeeping devices.
Stochastic Processes: Wiener Filter
Explores stochastic processes and the Wiener filter for signal processing.
Linear Phase Filters: Theory and Design
Explores the theory and design of linear phase filters, emphasizing the importance of achieving optimal filter performance.
Frequency Response Analysis: Linear Systems and Filters
Covers the frequency response of linear systems and filter design principles.
Signals & Systems II: Filter Implementations
Explores IIR filter implementations, canonical vs. non-canonical forms, stability, DTFT properties, and eigenvectors in LID systems.