Linear Integrated Circuits detailed syllabus for Biomedical Engineering (BM) for 2015 revision curriculum has been taken from the SITTTRs official website and presented for the BM students. For course code, course name, number of credits for a course and other scheme related information, do visit full semester subjects post given below.
For Biomedical Engineering 4th Sem scheme and its subjects, do visit BM 4th Sem 2015 revision scheme. The detailed syllabus of linear integrated circuits is as follows.
Course General Outcome:
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General Outcome
On the completion of the study the student will be able: MODULE I STUDY OF OPERATIONAL AMPLIFIERS
- To understand the working of operational amplifier
- To explain the block diagram of general purpose operational amplifier
- To explain the working of differential amplifier basic circuit
- To discuss different package types and pin configuration of operational amplifier
- To identify different manufacturer’s designations for linear ICs
- To explain the concept of virtual ground
- To define different electrical parameters of operational amplifier
- To list the characteristics of an ideal operational amplifier
- To explain the working of inverting amplifier
- To derive the expression for voltage gain of the inverting amplifier
- To explain the working of non-inverting amplifier
- To derive the expression for voltage gain of the non inverting amplifier
- To explain the working of voltage follower
MODULE II APPLICATION OF OPERATIONAL AMPLIFIER
- To understand the applications of operational amplifier
- To explain the working of summing amplifier, difference amplifier and addersubtractor circuit
- To explain the working of instrumentation amplifier
- To explain V to I and I to V converters
- To explain the working of comparators, zero crossing detector and schmitt trigger circuits
- To explain the working of precision diode, half wave and full wave precision rectifiers
- To explain the working of peak detector
- To explain the working of Integrator and differentiator
- To explain the working of RC phase shift oscillator and Wein bridge oscillator circuits
- To explain the working of Astable multivibrator, Monostable multivibrator and Schmitt trigger
- To explain the working of Triangular wave generator circuit
- To explain first order active low pass and high pass Butterworth filters
MODULE III PLL AND TIMERS
- To comprehend the working of PLL
- To explain the general block diagram of PLL
- To define capture range lock-in range, and pull-in time of PLL
- To explain the block diagram of NE/ SE 566 Voltage Controlled Oscillator
- To list the important electrical characteristics of the 565 PLL
- To explain the functional block diagram of PLL NE/ SE 565
- To describe the applications of PLL as frequency multiplier and FM demodulator
- To understand the working of 555 timer
- To list the features of 555 timer
- To explain the functional block diagram of 555 timer
- To explain the working of astable and monostable circuits using 555 timer
- To write the expression for time period of astable and monostable circuits using 555
- To describe LM 380 audio power amplifier
MODULE IV IC REGULATORS AND SMPS
- To understand the working of various IC voltage regulators
- To list the features of IC regulators
- To describe the operation of 3 terminal fixed voltage regulator IC’s
- To explain typical circuits of LM 78XX and LM 79XX
- To explain the operation of adjustable voltage regulator LM 317
- To explain dual power supply using LM 320 and LM 340
- To list the important features of LM 723 voltage regulator
- To explain the functional block diagram of LM 723
- To explain the basic low voltage and high voltage regulator circuits using LM 723
- To understand the working of SMPS
- To explain the block diagram of SMPS
- To list the advantages and disadvantages of SMPS
- To explain the working principle of opto-couplers
- To describe the opto-coupler IC 4N35
MODULE I STUDY OF OPERATIONAL AMPLIFIERS
For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
MODULE II APPLICATION OF OPERATIONAL AMPLIFIER
Summing amplifier – difference amplifier – adder – subtractor – instrumentation amplifier – V to I and I to V converters – comparators – zero crossing detector – schmitt trigger – precision diode – half wave precision rectifier – full wave precision rectifier – peak detector – integrator – differentiator – RC phase shift oscillator – Wein bridge oscillator – astable multivibrator – monostable multivibrator – schmitt trigger – triangular wave generator – first order active low pass and high pass Butterworth filters
MODULE III PLL AND TIMERS
For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
MODULE IV IC REGULATORS AND SMPS
Features of IC regulators – three terminal fixed voltage regulator IC’s – typical circuits of LM 78XX and LM 79XX – adjustable voltage regulator LM 317 – dual power supply using LM 320 and LM 340 – features of LM 723 voltage regulator – functional block diagram of LM 723 – basic low voltage and high voltage regulator circuits using LM723 – block diagram of SMPS – advantages and disadvantages – opto-couplers – principle of operation – IC 4N35
Text Books:
For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
It is a lightweight, easy to use, no images, and no pdfs platform to make students’s lives easier..
Reference Books:
- B Visvesvara Rao – Linear Integrated Circuits – Pearson.
- K R Botkar – Integrated Circuits – Khanna Publishers.
For detailed syllabus of all other subjects of Biomedical Engineering, 2015 revision curriculum do visit BM 4th Sem subject syllabuses for 2015 revision.
To see the syllabus of all other branches of diploma 2015 revision curriculum do visit all branches of SITTTR diploma 2015 revision.