a) Have a look at the parallel RLC circuit. Derive the equations. What is the quality factor and damping factor of the RLC circuit? 1000 1µH :1µF b) Find the transient + steady state VR if the input current source signal is 50mA starting at Initial voltage on the cap. Is 10mV. c) Find the steady state V, if the input current source signal is 1Mrad/s. Initial voltage on the cap. is 10mV. t = Os. 50mA + 50MA.sin(w,t) where w1

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Second order circuit . Solve in time domain....

Vo
a) Have a look at the parallel RLC circuit. Derive the
equations. What is the quality factor and damping
IR
factor of the RLC circuit?
VR
1000
1µH
:1µF
b) Find the transient + steady state VR if the input
current source signal is 50MA starting at t = Os.
Initial voltage on the cap. Is 10mV.
c) Find the steady state VR if the input current source
signal is
1Mrad/s. Initial voltage on the cap. is 10mV.
50mA + 50mA.sin(w,t) where w1
All initial conditions are zero; i.e. derivatives of and initial voltage & current on the cap. and ind.
OTHERWISE stated. Please make the comments on why you would not be seeing certain inputs'
forcing at the outputs; Vs and Vc and V.
Transcribed Image Text:Vo a) Have a look at the parallel RLC circuit. Derive the equations. What is the quality factor and damping IR factor of the RLC circuit? VR 1000 1µH :1µF b) Find the transient + steady state VR if the input current source signal is 50MA starting at t = Os. Initial voltage on the cap. Is 10mV. c) Find the steady state VR if the input current source signal is 1Mrad/s. Initial voltage on the cap. is 10mV. 50mA + 50mA.sin(w,t) where w1 All initial conditions are zero; i.e. derivatives of and initial voltage & current on the cap. and ind. OTHERWISE stated. Please make the comments on why you would not be seeing certain inputs' forcing at the outputs; Vs and Vc and V.
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