Ask Electrical & Electronics Expert

Q. Draw the differentiator circuit. Explain its principle of operation with necessary waveforms ?

A circuit in which the output voltage is directly proportional to the derivative of the input signal is called differentiator circuit i.e. v0=d/dt(input). A differentiating circuit can be arranged by a simple RC series circuit. Here the values of R and C are selected in such a way that the time constant (RC) of the circuit should be very small than the time period of the input wave and reactance of the capacitor is very large as compared to the value of the resistor. Thus the current flowing in the differentiator circuit is to a large extent decided by the capacitive reactance; the current will be leading the input voltage by 90 degrees approximately. Due to this current, the voltage developed across the resistor also leads the input voltage by 90 degrees.

If the input is a sinusoidal signal and given by

            vi = V sin(ωt)

Then the output will be leading this voltage by 90 degrees.

           vo = Vsin (ωt+90)= V cos(ωt).

Thus we find that the output is a differentiated form of the input signal. This can be proved mathematically.

       The output voltage VO = i*R

But since XC>>R, the current (i)is dependent upon capacitor alone. Therefore, the rate of change of charge across the capacitor gives the current

             i = dQ/dt

but the charge Q across the capacitor C is given as

             Q = C*VC

Where VC is the voltage across the capacitor

           i = dQ/dt = d/dt(C*VC) =C* d(vt)/dt

            vo = i* R = CR*d/dt(vt)

When a dc voltage is applied to the differentiating circuit, its output will be zero since the derivative of a constant is zero. For a square wave input, the differentiator output will be sharp narrow pulses. When the input to the differentiator circuit is a triangular wave, the output will be a square or rectangular wave. For a sine wave input, the output of the differentiator will be a cosine wave.

Electrical & Electronics, Engineering

  • Category:- Electrical & Electronics
  • Reference No.:- M9561586

Have any Question?


Related Questions in Electrical & Electronics

Question 1for the ce amplifier in figure 1 given the

Question 1 For the CE amplifier in Figure (1), given the following component parameters: Parameter Value β DC , β AC 150 V BE 0 . 7 V V CC 12 V R C 820 ? R E 1 100 ? R E 2 220 ? R 1 20 k? R 2 5 . 2 k? R L 100 k? C 1 , C ...

Question -i a star-connected three-phase synchronous

Question - (i) A star-connected, three-phase synchronous induction motor takes a current of 10 amps from a 415 volt supply at unity power factor when supplying a steady load. If the synchronous reactance is 5 ohms/phase ...

1 a name the three major groups of contamination and

1. (a) Name the three major groups of contamination and briefly describe their physical characteristics. (b) Where do the above contamination types come from? Give one example of each. 2. Name two processes metrics which ...

Question 1 in the voltage regulator circuit in figure p221

Question 1: In the voltage regulator circuit in Figure P2.21, V 1 = 20 V, V Z = 10 V, R i = 222Ω and P z (max) = 400 mW. (a) Determine I L, I z , and I L , if R L = 380Ω. (b) Determine the value of R L , that will establ ...

Summative assessmentin 2017 sej101 assessment will consist

Summative Assessment In 2017 SEJ101 assessment will consist of nine tasks that will develop a portfolio of your assessed work. Throughout the trimester you will have the opportunity for feedback on all nine tasks before ...

1 a name the three major groups of contamination and

1. (a) Name the three major groups of contamination and briefly describe their physical characteristics. (b) Where do the above contamination types come from? Give one example of each. 2. Name two processes metrics which ...

1 a name the three major groups of contamination and

1. (a) Name the three major groups of contamination and briefly describe their physical characteristics. (b) Where do the above contamination types come from? Give one example of each. 2. Name two processes metrics which ...

Case studythis assignment consists of a written report of

CASE STUDY This assignment consists of a written report of approximately 1000 words and any diagrams in which you are asked to critically compare different process methods used to achieve the same result and show an awar ...

Problem 1 a two-phase servomotor has rated voltage applied

Problem 1: A two-phase servomotor has rated voltage applied to its excitation winding. The torque speed characteristic of the motor with Vc = 220 V, 60 Hz applied to its control phase winding is shown in Fig.1. The momen ...

Electrical engineering questions -q1 two ideal voltage

Electrical Engineering Questions - Q1. Two ideal voltage sources designated as machines 1 and 2 are connected, as shown in the figure below. Given E 1 = 65∠0 o V, E 2 = 65∠30 o V, Z = 3Ω. Determine if Machine 1 is genera ...

  • 4,153,160 Questions Asked
  • 13,132 Experts
  • 2,558,936 Questions Answered

Ask Experts for help!!

Looking for Assignment Help?

Start excelling in your Courses, Get help with Assignment

Write us your full requirement for evaluation and you will receive response within 20 minutes turnaround time.

Ask Now Help with Problems, Get a Best Answer

Why might a bank avoid the use of interest rate swaps even

Why might a bank avoid the use of interest rate swaps, even when the institution is exposed to significant interest rate

Describe the difference between zero coupon bonds and

Describe the difference between zero coupon bonds and coupon bonds. Under what conditions will a coupon bond sell at a p

Compute the present value of an annuity of 880 per year

Compute the present value of an annuity of $ 880 per year for 16 years, given a discount rate of 6 percent per annum. As

Compute the present value of an 1150 payment made in ten

Compute the present value of an $1,150 payment made in ten years when the discount rate is 12 percent. (Do not round int

Compute the present value of an annuity of 699 per year

Compute the present value of an annuity of $ 699 per year for 19 years, given a discount rate of 6 percent per annum. As