7th Sem, EL

EC45: Embedded System Design Syllabus for EL 7th Sem 2017 DBATU

Embedded System Design detailed syllabus scheme for B.Tech Electronics Engineering (EL), 2017 onwards has been taken from the DBATU official website and presented for the Bachelor of Technology students. For Subject Code, Course Title, Lecutres, Tutorials, Practice, Credits, and other information, do visit full semester subjects post given below.

For all other DBATU Syllabus for Electronics Engineering 7th Sem 2017, do visit EL 7th Sem 2017 Onwards Scheme. The detailed syllabus scheme for embedded system design is as follows.

Embedded System Design Syllabus for Electronics Engineering (EL) 4th Year 7th Sem 2017 DBATU

Embedded System Design

Course Objectives:

For the complete syllabus, results, class timetable, and many other features kindly download the iStudy App
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Course Outcomes:

  1. Get insight of design metrics of embedded systems to design real time applications to match recent trends in technology.
  2. Understand Real time systems concepts.
  3. Understand Linux operating system and device drivers.
  4. Get to know the hardware – software co design issues and testing methodology for embedded system.

Unit 1

Introduction to Embedded Computing
Introduction, Overview, Characteristics of Embedding Computing Applications, Concept of Real time Systems, Challenges in Embedded System Design, Design Process: Requirements, Specifications, Architecture Design, Designing of Components, System Integration.

Unit 2

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 pdf platform to make students’s lives easier.
Get it on Google Play.

Unit 3

Designing Embedded Computing Platform

Gpib, Firewire, Usb, Irda
Data Compressor, Alarm Clock.

Unit 4

Programming Embedded Systems

C for Programming embedded systems, Object Oriented Programming for Embedded Systems in C++, Use of Java for Embedded Systems Programming and Run-time Environment: Compiling, Assembling, Linking and Debugging, Basic Compilation Techniques, Analysis and Optimization of Execution Time, Analysis and Optimization of Energy and Power, Analysis and Optimization of Program Size, Program Validation and Testing

Unit 5

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 pdf platform to make students’s lives easier.
Get it on Google Play.

Unit 6

Embedded System Development
Design Methodologies: UML as Design tool, UML notation, Requirement Analysis and Use case Modeling, Static Modeling, Object and Class Structuring, Dynamic Modeling Architectural Design: Hardware-Software Partitioning, Hardware-Software Integration Design Examples: Telephone PBX, Inkjet Printer, PDA, Set-top Box, Elevator Control System, ATM System Fault-tolerance Techniques, Reliability Evaluation Techniques Embedded control applications: Introduction, Open-loop and Closed Loop Control Systems, Examples: Speed Control, PID Controllers: Software Coding of a PID Controller, PID tuning Fuzzy Logic Controller, Application Examples: Washing Machine, Automotive Systems, Auto-focusing digital camera, Air-conditioner.

Reference/Text Book:

  1. Wayne Wolf “Computers as components: Principles of Embedded Computing System Design”, Morgan Kaufman publication 2000.
  2. Andrew N. Sloss, Dominic Symes, Chris Wright,” ARM System Developer’s Guide, Designing and Optimizing System Software”, Elseveir-2002.
  3. John B. Peatman , “Design with PIC Microcontroller”, Pearson Education Asia,2002.
  4. Tim Wimshurt, “The design of small scale Embedded systems”, Palgrave 2003.

For detail syllabus of all other subjects of Electronics Engineering (EL) 7th Sem 2017 regulation, visit EL 7th Sem Subjects syllabus for 2017 regulation.

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