Exercice 1 Consider the filter diagram below de R G R G. 1. Given the expression for the impedances across the resistor and the capacitor. 2.J Usung Millman's theorem and the Voltage divider, determine the transfer function the transfer function H(w). Kthat is this filter. the nature. of + 3.J Calculate the module and. the cut off frequency. Given data: Wo z 1 argument, then determine. x 2. w B.C
Exercice 1 Consider the filter diagram below de R G R G. 1. Given the expression for the impedances across the resistor and the capacitor. 2.J Usung Millman's theorem and the Voltage divider, determine the transfer function the transfer function H(w). Kthat is this filter. the nature. of + 3.J Calculate the module and. the cut off frequency. Given data: Wo z 1 argument, then determine. x 2. w B.C
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
Transcribed Image Text:Exercice 1
Consider the filter diagram below
de
R
G
R
G.
1. Given the expression for the impedances across
the resistor and the capacitor.
2.J Usung
Millman's theorem and the Voltage divider,
determine the transfer function
the transfer function H(w). Kthat is
this filter.
the nature.
of +
3.J Calculate the module and.
the cut off frequency.
Given data:
Wo z 1
argument, then determine.
x 2. w
B.C
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