32792222 | Operational Amplifier

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analog and digital electronics guide
  ANALOG AND DIGITAL ELECTRONICS  (Common to CSE & ISE) Subject Code: 15CS32 I.A. Marks : 20 Hours/Week : 04 Exam Hours: 03 Total Hours : 50 Exam Marks: 80 MODULE  –   1 10 Hours Field Effect Transistors : Junction Field Effect Transistors, MOSFETs, Differences between JFETs and MOSFETs, Biasing MOSFETs, FET Applications, CMOS Devices. Wave-Shaping Circuits: Integrated Circuit(IC) Multivibrators. Introduction to Operational Amplifier : Ideal v/s practical Opamp, Performance Parameters, Operational Amplifier Application   Circuits :Peak Detector Circuit, Comparator, Active Filters, Non-Linear Amplifier, Relaxation Oscillator, Current-To-Voltage Converter, Voltage-To- Current Converter MODULE  –   2 10 Hours The Basic Gates : Review of Basic Logic gates, Positive and Negative Logic, Introduction to HDL. Combinational Logic Circuits: Sum-of-Products Method, Truth Table to Karnaugh Map, Pairs Quads, and Octets, Karnaugh Simplifications, Don’t -care Conditions, Product-of-sums Method, Product-of-sums simplifications, Simplification by Quine-McClusky Method, Hazards and Hazard covers, HDL Implementation Models MODULE  –   3 10 Hours Data-Processing Circuits: Multiplexers, Demultiplexers, 1-of-16 Decoder, BCD to Decimal Decoders, Seven Segment Decoders, Encoders, Exclusive-OR Gates, Parity Generators and Checkers, Magnitude Comparator, Programmable Array Logic, Programmable Logic Arrays, HDL Implementation of Data Processing Circuits. Arithmetic Building Blocks, Arithmetic Logic Unit Flip-Flops: RS Flip-Flops, Gated Flip-Flops, Edge-triggered RS FLIP-FLOP, Edge triggered D FLIP-FLOPs, Edge triggered JK FLIP-FLOPs MODULE  –   4 10 Hours Flip- Flops: FLIP-FLOP Timing, JK Master-slave FLIP-FLOP, Switch Contact Bounce Circuits, Various Representation of FLIP-FLOPs, HDL Implementation of FLIP-FLOP. Registers: Types of Registers, Serial In - Serial Out, Serial In - Parallel out, Parallel In - Serial Out, Parallel In - Parallel Out, Universal Shift Register, Applications of Shift Registers, Register implementation in HDL. Counters: Asynchronous Counters, Decoding Gates, Synchronous Counters, Changing the Counter Modulus. MODULE  –   5 10 Hours Counters: Decade Counters, Pre settable Counters, Counter Design as a Synthesis problem, A Digital Clock, Counter Design using HDL. D/A   Conversion and A/D Conversion: Variable, Resistor Networks, Binary Ladders, D/A Converters, D/A Accuracy and Resolution, A/D Converter- Simultaneous Conversion, A/D Converter-Counter Method, Continuous A/D Conversion, A/D Techniques, Dual-slope A/D Conversion, A/D Accuracy and Resolution. Text Book: 1. Anil K Maini, Varsha Agarwal: Electronic Devices and Circuits, Wiley, 2012. 2. Donald P Leach, Albert Paul Malvino & Goutam Saha: Digital Principles and Applications, 8 th   Edition, Tata McGraw Hill, 2015  TABLE OF CONTENTS MODULE 1: OPERATIONAL AMPLIFIER OPERATIONAL AMPLIFIER APPLICATION CIRCUITS MODULE 2: THE BASIC GATES   COMBINATIONAL LOGIC CIRCUITS   MODULE 3:   DATA PROCESSING CIRCUITS   FLIP FLOPS MODULE 4: FLIP FLOPS (CONT.)   REGISTERS   COUNTERS MODULE 5:   COUNTERS (CONT.)   D/A CONVERSION AND A/D CONVERSION     ANALOG AND DIGITAL ELECTRONICS 1-1 MODULE 1 (CONT.): OPERATIONAL AMPLIFIER    OPERATIONAL AMPLIFIER (OP-AMP)   ã An op-amp is a DC-coupled high-gain electronic voltage amplifier with →  differential input and →  single-ended output (Figure 16.1). ã An op-amp produces an output-voltage that is typically hundreds of thousands times larger than the voltage difference between its input terminals. ã Opamps are important building blocks for a wide range of electronic circuits. Figure 16.1: Circuit symbol for an op-amp
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