Digital Electronics Systems detail syllabus for Aerospace Engineering (As), 2017 scheme is taken from VTU official website and presented for VTU students. The course code (17AS652), and for exam duration, Teaching Hr/week, Practical Hr/week, Total Marks, internal marks, theory marks, duration and credits do visit complete sem subjects post given below.
For all other as 6th sem syllabus for be 2017 scheme vtu you can visit AS 6th Sem syllabus for BE 2017 Scheme VTU Subjects. For all other Professional Elective-2 subjects do refer to Professional Elective-2. The detail syllabus for digital electronics systems is as follows.
Course Objectives:
This course will enable students to
- Understand the concepts of digital electronics systems
- Acquire the knowledge on digital electronics systems
- Understand the functions of different components of digital electronics systems.
Module 1
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Module 2
Analysis and design of combinational logic – I: General approach, Decoders-BCD decoders, Encoders. Analysis and design of combinational logic – II: Digital multiplexers Using multiplexers as Boolean function generators. Adders and subtractors – Cascading full adders, Look ahead carry, Binary comparators. Design methods of building blocks of combinational logics.
Module 3
Sequential Circuits – 1: Basic Bistable Element, Latches, SR Latch, Application of SR Latch, A Switch Debouncer, The S R Latch, The gated SR Latch, The gated D Latch, The Master-Slave Flip-Flops (Pulse-Triggered Flip-Flops): The Master-Slave SR Flip-Flops, The Master-Slave JK FlipFlop, Edge Triggered Flip-Flop: The Positive Edge-Triggered D Flip-Flop, Negative-Edge Triggered D Flip-Flop.
Module 4
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Module 5
Sequential Design – I: Introduction, Mealy and Moore Models, State Machine Notation, Synchronous Sequential Circuit Analysis and Design. Sequential Design – II: Construction of state Diagrams, Counter
Design.
Course Outcomes:
- Apply the concepts of digital electronics systems
- Evaluate digital electronics systems
- Differentiate the functions of different components of digital electronics systems
Graduate Attributes (as per NBA):
- Engineering Knowledge.
- Problem Analysis.
- Design / development of solutions
- Interpretation of data
Question paper pattern:
- The question paper will have ten questions.
- Each full question consists of 16 marks.
- There will be 2 full questions (with a maximum of four sub questions) from each module.
- Each full question will have sub questions covering all the topics under a module.
- The students will have to answer 5 full questions, selecting one full question from each module.
Text Books:
- John M Yarbrough ,Digital Logic Applications and Design, Nelson Engineering,1st edition,2006,ISBN-13: 978-8131500583
- Donald D Givone ,Digital Principles and Design , Tata McGraw Hill,1st edition,2002,ISBN-13:978-0070529069
Reference Books:
- Charles H Roth, Jr Fundamentals of logic design,; Thomson Learning, 2004.
- Mano and Kime Logic and computer design Fundamentals, , Pearson, 4th edition, 2013,ISBN-13: 978-9332518728
- Sudhakar Samuel, Logic Design, Pearson/Saguine, 2007
For detail syllabus of all other subjects of BE As, 2017 regulation do visit As 6th Sem syllabus for 2017 Regulation.
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