Question

The phase margin and damping ratio have no relation.

a.

True

b.

False

c.

May be True or False

d.

can't say

Answer: (b).False

Interact with the Community - Share Your Thoughts

Uncertain About the Answer? Seek Clarification Here.

Understand the Explanation? Include it Here.

Q. The phase margin and damping ratio have no relation.

Similar Questions

Explore Relevant Multiple Choice Questions (MCQs)

Q. For the transport lag G(jω) = e^(-jωT), the magnitude is always equal to

Q. The log magnitude curve for a constant gain K is a

Q. If a system is to follow arbitrary inputs accurately the bandwidth should be

Q. Assertion (A): Potentiometers can not be used as error detectors in position control systems.

Reason (R): The resolution of a potentiometer places an upper limit on its accuracy

Q. Bellows converts

Q. Assertion (A): The steady state response, of a stable, linear, time invariant system, to sinusoidal input depends on initial conditions.

Reason (R): Frequency response, in steady state, is obtained by replacing s in the transfer function by jω

Q. Bode magnitude plot is drawn between

Q. First column elements of Routh's tabulation are 3, 5, -3/4, 1/2, 2. It means that there

Q. When a unit step voltage drives a lag network the output

Q. A system has its two poles on the negative real axis and one pair of poles lies on jω axis. The system is

Q. In a minimum phase system

Q. A stepper motor is

Q. In a two phase ac servomotor rotor resistance is R and rotor reactance is X. The speed curve will be linear if

Q. From the noise point of view, bandwidth should

Q. The primary function of lag compensator is to provide sufficient

Q. The polar plot of a transfer function passes through (-1, 0) point. The gain margin is

Q. For a quadratic factor in transfer function the phase angle is not a function of damping factor.

Q. The current rating of dc tachogenerator is usually

Q. In a second order system, the time constant t of exponential envelopes depends

Q. If feedback factor is β the overall gain of a closed loop system is approximately equal to

Recommended Subjects

Are you eager to expand your knowledge beyond Electronics and Communication Engineering? We've handpicked a range of related categories that you might find intriguing.

Click on the categories below to discover a wealth of MCQs and enrich your understanding of various subjects. Happy exploring!