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Topic Review (Newest First)
3rd May 2021 11:34 AM
Arvind Kumar
Sathyabama Institute of Science and Technology B.E. - Electronics and Telecommunication Engineering SECA1502 Analog Integrated Circuits Syllabus

Sathyabama Institute of Science and Technology B.E. - Electronics and Telecommunication Engineering SECA1502 Analog Integrated Circuits Syllabus


SATHYABAMA INSTITUTE OF SCIENCE AND TECHNOLOGY SCHOOL OF ELECTRICAL AND ELECTRONICS ENGINEERING

SECA1502 ANALOG INTEGRATED CIRCUITS
L T P Credits Total Marks
3 0 0 3 100

UNIT 1 INTRODUCTION TO OP- AMP AND ITS APPLICATIONS 9 Hrs
OP-AMP- DC and AC Characteristics- Input offset voltage- Input bias current-Input offset current- Total output offset
voltage- Thermal drift- Slew rate- CMRR -Inverting amplifier- Non-inverting amplifier- Voltage follower- Summing and
differential amplifier- Integrator- Differentiator- Logarithmic and Anti logarithmic amplifiers-Comparator and Schmitt trigger.

UNIT 2 FILTERS AND SIGNAL GENERATORS 9 Hrs.
First order and Second order Butterworth filters- low pass, high pass, band pass and band reject filters -RC phase shift,
Wein’s bridge oscillator- Astable and Monostable multivibrator-Precision half wave and full wave rectifiers.

UNIT 3 A/D AND D/A CONVERTERS 9 Hrs.
Sample and Hold circuit - Digital to analog converters: R-2R ladder network and Binary weighted - Characteristics of D/A
converters - Analog to digital converters: Flash converter - Successive approximation converter - Dual slope ADC-Weighted-
Capacitor DACs- Oversampling Converters.

UNIT 4 PLL AND TIMER CIRCUITS 9 Hrs.
Phase Locked Loop IC 565- Block schematic - Applications of PLL: FM demodulator and Frequency synthesizers
Demodulator- VCO IC LM 566 - Timer IC LM 555 and its applications: Astable and Monostable multivibrator.

UNIT 5 SPECIAL FUNCTION ICS 9 Hrs.
Integrated circuit Tuned amplifier, Instrumentation Amplifier, Monolithic voltage regulators 78XX,79XX Series , Opto coupler,
CMOS Operational Amplifier- Dc analysis- small signal analysis- specifications of IC MC 14573.
Max. 45 Hrs.

COURSE OUTCOMES
On completion of the course, student will be able to
CO1 - Define significance of Op Amps and their importance.
CO2 - Build circuits using Analog IC’s.
CO3 - In-depth knowledge of applying the concepts in real time applications.
CO4 - Ability to use OP Amp as Summer, Subtractor, Multiplier and Divider.
CO5 - Use OP Amp to generate sine waveform, Square wave form, Triangular wave forms.
CO6 - Use OP Amp to as analog to digital and digital to analog converter.

TEXT / REFERENCE BOOKS
1. Ramakant A.Gayakwad, “OP-AMP and Linear ICs”, 4th Edition, Prentice Hall / Pearson Education, 2015.
2. D.Roy Choudary, Shail Jain, “Linear Integrated Circuits”, New Age International Pvt. Ltd., 2000.
3. Grey and Meyer, “Analysis and Design of Analog Integrated Circuits", 4th Edition, Wiley International, 2001.
4. Michael Jacob, “Applications and Design with Analog Integrated Circuits", 2nd Edition, Prentice Hall of India, 1993.
5. S. Salivahanan, V.S. Kanchana Bhaaskaran, “Linear integrated circuits”, 3rd Edition, McGraw Hill, 2011.
6. William D.Stanely, “Operational Amplifiers with Linear Integrated Circuits”, 4th Edition, Pearson Education, 2004.
7. Sergio Franco “Design with Operational Amplifiers and Analog Integrated Circuits”, 4th Edition, McGraw Hill Education,
2015.

END SEMESTER EXAMINATION QUESTION PAPER PATTERN
Max. Marks: 100 Exam Duration: 3 Hrs.
PART A: 10 Questions of 2 marks each - No choice 20 Marks
PART B: 2 Questions from each unit of internal choice, each carrying 16 marks 80 Marks

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