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LIC QP April May 2010

This document outlines an exam for a course on linear integrated circuits. It contains 15 multiple choice questions across two sections worth a total of 100 marks. The questions cover topics like operational amplifiers, filters, data converters, voltage regulators, and oscillators.
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0% found this document useful (0 votes)
29 views2 pages

LIC QP April May 2010

This document outlines an exam for a course on linear integrated circuits. It contains 15 multiple choice questions across two sections worth a total of 100 marks. The questions cover topics like operational amplifiers, filters, data converters, voltage regulators, and oscillators.
Copyright
© © All Rights Reserved
We take content rights seriously. If you suspect this is your content, claim it here.
Available Formats
Download as PDF, TXT or read online on Scribd
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EC2254 - LINEAR INTEGRATED CIRCUITS

Time: Three hours Maximum: 100 Marks


Answer ALL Questions

PART A - (10 x 2 = 20 Marks)


1. What is an integrated circuit?
2. What is current mirror?
3. Give the schematic of op-arnp based current to voltage converter.

4. Draw the circuit diagram of differentiator and give its output equation.
5. What is a VCO?

6. Draw the relation between the capture ranges and lock range in a PLL.

7. Define resolution of a data converter.

8. Give the advantages of integrating type ADC.


9. Draw the internal circuit for audio power amplifier.

10. What are the three different wave forms generated by ICL8038?

PART B - (5 x 16 = 80 Marks)
11. (a) (i) Define CMRR. Draw the circuit of an Op-arnp differential amplifier and give the expression
for CMRR. (8)
(ii) Define Slew Rate. Explain the cause of slew rate and derive an expression for Slew
rate for an op-arnp voltage follower. (8)

Or
(b) Briefly explain the various processes involved in fabricating monolithic
IC which integrates bipolar transistor, diode, capacitor and resistor. (16)
12. (a) (i) Design a first order Low-pass filter for cut-off frequency of 2 KHz
and pass-band gain of 2. (8)
(ii) Explain a positive clipper circuit using an Op-amp and a diode with
neat diagrams. (8)

Or
(b) (i) Design a circuit to implement Va =O.545V3 +O.273V4 -1.25V -2V2. j

(8)
(ii) Draw and explain a simple Op-amp differentiator. Mention its
limitations. Explain with a neat diagram how it can be overcome in
a practical differentiator. Design an Op-arnp differentiator that will
differentiate an input signal with maximum frequency
fmax =100Hz . (8)

13. (a) (i) With a neat diagram explain the variable transconductance
technique in analog multiplier and give its output equation. (8)
(ii) Briefly explain the working of voltage controlled oscillator. (8)

Or
(b) What are important building block of phase locked loop ( PLL) explain its
Working? (16)

14. (a) (i) Explain the working of R-2R ladder DAC. (8)
(ii) Explain the working of success approximation ADC. (8)

Or
(b) (i) A dual slope ABC uses a 16-bit counter and a 4 MHz clock rate. The
maximum input voltage is +10V. The maximum integrator output
voltage should be -8V when the counter has recycled through
2n counts. The capacitor used in the integrator is O.l,uF . Find the
value ofresistor R of the integrator. (8)
(ii) vVhat is a sample and hold circuit? Briefly explain its construction
and application. (8)

15. (a) (i) How is voltage regulators classified? Explain a series voltage
regulator. (8)
(ii) What is an optocoupler? Briefly explain its characteristics. (8)

Or
(b) With a neat circuit diagram and internal functional diagram explain the
working of 555 timers in astable mode. (16)

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