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Lecture along the lines of [[https://doi.org/10.1007/s10470-018-1131-7|Schmid, H. & Huber, A. Analog Integr Circ Sig Process (2018) 96: 495.]] = Lecture Content 2018 = == Lectures == * [[http://people.ee.ethz.ch/~hps/asf/08/asf_08_sc_new_lecture_1.pdf|Summary of Lecture 1]] * [[http://people.ee.ethz.ch/~hps/asf/08/lecture_181121.pdf|Blackboard photos and PDF of Python 3.7 notebook]] * [[http://people.ee.ethz.ch/~hps/asf/08/lecture_181121.ipynb|Python 3.7 notebook]] * [[http://people.ee.ethz.ch/~hps/asf/08/asf_08_sc_new_lecture_2.pdf|Summary of Lecture 2]] == Exercises == * [[http://people.ee.ethz.ch/~hps/asf/08/asf_ex08_newSC_A.pdf|Exercise A (for Lecture 1)]] * [[http://people.ee.ethz.ch/~hps/asf/08/asf_ex08_newSC_B.pdf|Exercise B (for Lecture 2)]] (not yet uploaded) = Lecture Content 2017 = This did not work so well, and I will do it differently in 2018. |
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* [[http://people.ee.ethz.ch/~hps/asf/08/171122_notes.pdf]|171122_notes.pdf] | * [[http://people.ee.ethz.ch/~hps/asf/08/171122_notes.pdf|171122_notes.pdf]] * [[http://people.ee.ethz.ch/~hps/asf/08/171129_notes.pdf|171129_notes.pdf]] * [[http://people.ee.ethz.ch/~hps/asf/08/171129_calculations.pdf|Mathematica evaluation of the equations in 171129_notes.pdf]] |
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== Exercise == | == Exercises == === SC Filters 1 === * [[http://people.ee.ethz.ch/~hps/asf/08/ex_8_new.pdf|Exercise 08 - New Topic]] * [[http://people.ee.ethz.ch/~hps/asf/08/ex_8_new_solution_graph.pdf|Exercise 08 New: Reference Solution, Signal-Flow Graph]] * [[http://people.ee.ethz.ch/~hps/asf/08/ex_8_new_calculations.pdf|Exercise 08 New: Reference Solution, Mason applied to graph]] === SC Filters 2 === |
Switched-capacitor filters, kT/C noise, chopping, and correlated double sampling.
Lecture along the lines of Schmid, H. & Huber, A. Analog Integr Circ Sig Process (2018) 96: 495.
Lecture Content 2018
Lectures
Exercises
Exercise B (for Lecture 2) (not yet uploaded)
Lecture Content 2017
This did not work so well, and I will do it differently in 2018.
Blackboard Photos
Exercises
SC Filters 1
SC Filters 2
Additional material
The derivation of the kT/C Formula is on p.~254 of the following paper:
Suppressing flicker noise, which is not part of 2016's curriculum, is described here: