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= Lecture 01: Introduction, Poles and Zeros, Driving-Point Signal-Flow Graphs =

== Lecture notes ==

 * [[http://people.ee.ethz.ch/~hps/asf/01/asf_01_02_sfg_gmc.pdf|Lecture Notes for Lectures 01 and 02]]
 * [[http://people.ee.ethz.ch/~hps/asf/01/asf_01_appendix_sensitivity.pdf|Appendix I: Table with sensitivity relations]]
 * The paper for Lecture 07: [[http://people.ee.ethz.ch/~hps/asf/01/wide_tuning_gmc__lo07.pdf|A Wide Tuning Range Gm-C Continuous-Time Analog Filter]]
## page was renamed from Lecture 01
= Introduction, Poles and Zeros, Driving-Point Signal-Flow Graphs =
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== MIT's pole-zero applet ==
 * http://web.mit.edu/6.302/www/pz/
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 * [[http://people.ee.ethz.ch/~hps/asf/01/ASF_ex01_sfg.pdf|Exercise 1: Signal-Flow Graphs]]
 * [[http://people.ee.ethz.ch/~hps/asf/01/ASF_ex01_sfg_solution.pdf|Exercise 1: Reference solution (will follow)]]
 * [[http://people.ee.ethz.ch/~hps/asf/01/asf_ex01_sfg.pdf|Exercise 1: Signal-Flow Graphs]]
 * [[http://people.ee.ethz.ch/~hps/asf/01/asf_ex01_sfg_solution.pdf|Exercise 1: Reference solution]]

Introduction, Poles and Zeros, Driving-Point Signal-Flow Graphs

Animated plots of a second-order bandpass transfer function in the s plane

Additional notes on Mason's rule

Exercises

Introduction (last edited 2023-08-15 05:02:28 by haschmid)