Analog Circuits detailed syllabus for Electronics Instrumentation & Control (EIC) for 2021-22 regulation curriculum has been taken from the Rajasthan Technical University official website and presented for the electronics instrumentation & control 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 Electronics Instrumentation & Control 4th Sem scheme and its subjects, do visit EIC 4th Sem 2021-22 regulation scheme. The detailed syllabus of analog circuits is as follows.
Unit 1
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Unit 2
Diode Circuits, Amplifier models: Voltage amplifier, current amplifier, transconductance amplifier and trans-resistance amplifier. Biasing schemes for BJT and FET amplifiers, bias stability, various configurations (such as CE/CS, CB/CG, CC/CD) and their features, small signal analysis, low frequency transistor models, estimation of voltage gain, input resistance, output resistance etc., design procedure for particular specifications, low frequency analysis of multistage amplifiers.
Unit 3
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Unit 4
Oscillators: Review of the basic concept, Barkhausen criterion, RC oscillators (phase shift, Wien bridge etc.), LC oscillators (Hartley, Colpitt, Clapp etc.), non-sinusoidal oscillators. Current mirror: Basic topology and its variants, V-I characteristics, output resistance and minimum sustainable voltage (VON), maximum usable load. Differential amplifier: Basic structure and principle of operation, calculation of differential gain, common mode gain, CMRR and ICMR. OP-AMP design: design of differential amplifier for a given specification, design of gain stages and output stages, compensation.
Unit 5
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Unit 6
Digital-to-analog converters (DAC): Weighted resistor, R-2R ladder, resistor string etc. Analog to digital converters (ADC): Single slope, dual slope, successive approximation, flash etc. Switched capacitor circuits: Basic concept, practical configurations, application in amplifier, integrator, ADC etc.
Course Outcomes:
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Lecture Plan:
- Lecture 1 Zero Lecture
- Lecture 2 Diode Circuits and Amplifier models
- Lecture 3 Voltage amplifier, current amplifier, trans-conductance amplifier and transresistance amplifier
- Lecture 4 Biasing schemes for BJT and FET amplifiers
- Lecture 5 Bias stability in various configurations such as CE/CS, CB/CG, CC/CD
- Lecture 6 Small signal analysis of BJT and FET
- Lecture 7 low frequency transistor models
- Lecture 8 Estimation of voltage gain, input resistance, output resistance etc.
- Lecture 9 Design procedure for particular specifications, low frequency analysis of multistage amplifiers.
- Lecture 10 High frequency transistor models
- Lecture 11 frequency response of single stage and multistage amplifiers
- Lecture 12 Cascode Amplifier
- Lecture 13 Various classes of operation (Class A, B, AB, C etc.), their power efficiency and linearity issues
- Lecture 14 Feedback topologies: Voltage series, current series, voltage shunt, current shunt
- Lecture 15 Effect of feedback on gain, bandwidth etc.,
- Lecture 16 Calculation with practical circuits
- Lecture 17 Concept of stability, gain margin and phase margin.
- Lecture 18 Basics of oscillator
- Lecture 19 Barkhausen criterion, RC oscillators (phase shift, Wien bridge etc.)
- Lecture 20 LC oscillators (Hartley, Colpitt, Clapp etc.)
- Lecture 21 Non-sinusoidal oscillators. Current mirror: Basic topology and its variants,
- Lecture 22 V-I characteristics, output resistance and minimum sustainable voltage (VON), maximum usable load.
- Lecture 23 Differential amplifier: Basic structure and principle of operation, calculation of differential gain, common mode gain, CMRR and ICMR.
- Lecture 24 OP-AMP design: design of differential amplifier for a given specification
- Lecture 25 Design of gain stages and output stages, compensation
- Lecture 26 OP-AMP applications: review of inverting and non-inverting amplifiers
- Lecture 27 Integrator and differentiator, summing amplifier
- Lecture 28 Precision rectifier, Schmitt trigger and its applications
- Lecture 29 Active filters: Low pass, high pass
- Lecture 30 Band pass and band stop Filters
- Lecture 31 Filter Design guidelines
- Lecture 32 Digital-to-analog converters (DAC): Weighted resistor, R-2R ladder, resistor string etc
- Lecture 33 Analog to digital converters (ADC): Single slope, dual slope
- Lecture 34 successive approximation, flash TYPE ADC
- Lecture 35 Switched capacitor circuits: Basic concept
- Lecture 36 Switched capacitor circuits: practical configurations
- Lecture 37 Switched capacitor circuits: applications
- Lecture 38 Spill over classes
- Lecture 39 Spill over classes
- Lecture 40 Spill over classes
Content Delivery Method:
- Chalk and Duster
- PPT
- Hand-outs
Assignment 1
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Assignment 2
- Q1. Discuss the applications of operational amplifier.
- Q2. Discuss different types of filters.
- Q3. Discuss Dual counter type DAC and its applications
For detailed syllabus of all other subjects of Electronics Instrumentation & Control, 2021-22 regulation curriculum do visit EIC 4th Sem subject syllabuses for 2021-22 regulation.
For all Electronics Instrumentation & Control results, visit Rajasthan Technical University electronics instrumentation & control all semester results direct link.