Electronic Devices Circuits Integrators Differentiators Online Exam Quiz
Electronic Devices Circuits Integrators Differentiators GK Quiz. Question and Answers related to Electronic Devices Circuits Integrators Differentiators. MCQ (Multiple Choice Questions with answers about Electronic Devices Circuits Integrators Differentiators
Determine the expression for the transfer function for the circuit shown below.
Options
A : (Rf/R)/(1+j?CRfC)
B : (Rf/R)/(1-j?CRfC)
C : – (Rf/R)/(1+j?CRfC)
D : – (Rf/R)/(1-j?CRfC)
The phase in the integrator and differentiator circuit respectively are
Options
A : +90 degrees and +90 degrees
B : -90 degrees and -90 degrees
C : -90 degrees and +90 degrees
D : +90 degrees and -90 degrees
Consider a symmetrical square wave of 20-V peak-to-peak, 0 average, and 2-ms period applied to a Miller integrator. Find the value of the time constant CR such that the triangular waveform at the output has a 20-V peak-to-peak amplitude.
Options
A : 0.25ms
B : 0.50ms
C : 2.5ms
D : 5.0ms
The expression for the differentiator time constant is
Options
A : CR
B : 1/CR
C : R/C
D : C/R
The expression for the integration frequency is
Options
A : CR
B : 1/CR
C : R/C
D : C/R
The frequency transfer function of a differentiator is given by
Options
A : j?CR
B : 1/j?CR
C : – j?CR
D : – 1/j?CR
The integrating transfer function has the value of
Options
A : j?CR
B : –j?CR
C : 1 / j?CR
D : -1 / j?CR
The slope of the frequency response of an integrator is
Options
A : Linear with negative slope
B : Linear with positive slope
C : Exponential increase
D : Exponential decrease
The slope of the frequency response of a differentiator is
Options
A : Linear with negative slope
B : Linear with positive slope
C : Exponential increase
D : Exponential decrease
The other name for Miller Circuit is
Options
A : Non-Inverting Integrator
B : Inverting Integrator
C : Non-Inverting Differentiator
D : Inverting Differentiator
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