4th Sem, ICE

IC3402: Embedded Systems and IoT syllabus for ICE 2021 regulation

Embedded Systems and IoT detailed syllabus for Instrumentation & Control Engineering (ICE) for 2021 regulation curriculum has been taken from the Anna University official website and presented for the ICE 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 Instrumentation & Control Engineering 4th Sem scheme and its subjects, do visit ICE 4th Sem 2021 regulation scheme. The detailed syllabus of embedded systems and iot is as follows.

Embedded Systems and IoT

Course Objectives:

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Unit I

EMBEDDED HARDWARE ARCHITECTURE 9 CISC Architecture:- Introduction to MCS51 Family – 8051 Microcontroller – Architecture – Timers -Interrupts – Serial Data Communication – RISC Architecture:- overview of PIC 16F87x family -PIC16F877A – Architecture – Timers – Interrupts – Serial ports – Introduction to ARM – (LPC4088) Architecture.

Unit II

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Unit III

EMBEDDED PROGRAMMING AND PERIPHERAL INTERFACING 9 Embedded C Programming for Embedded Applications – Input and output devices Interface, ADC Interface – DAC Interface – PWM Generation – sensor Interface.

Unit IV

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Unit V

IoT IMPLEMENTATION TOOLS AND IIoT 9 IoT gateways – IoT analytics platforms – IoTapplication development using Raspberry Pi – Introduction to IIoT – IIoT Middleware Platforms – Industrial Internet Security.

  1. Implementation of specific tasks using Embedded C/Python programming
  2. Interfacing input devices with 8051/PIC16F877A/LPC4088.
  3. Interfacing ADC & DAC with 8051 microcontroller.
  4. PWM generation using PIC16F877A/LPC4088.
  5. Interfacing input and output devices with Raspberry Pi using Python.
  6. IoT enabled field sensing using Raspberry Pi.

Skill Development Activities

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Course Outcomes:

The students will be able to

  1. Understand the concept of embedded system and its architectural features
  2. Develop embedded software using Embedded C and Python.
  3. Integrate/Interface real world field devices with microcontrollers.
  4. Utilize the power of RTOS for embedded applications.
  5. Acquire real world signals and perform remote process monitoring utilizing the concept of IoT.
  6. Design and implement IoT enabled embedded control strategy for a given application.

Text Books:

  1. Rajkamal, Embedded system-Architecture, Programming, Design, TataMcgraw Hill, 2011.
  2. Peckol, Embedded System Design, John Wiley,2010.
  3. Industrial IoT Challenges, Design Principles, Applications, and Security by Ismail Butun(editor)
  4. “The Internet of Things: Enabling Technologies, Platforms, and Use Cases”, by Pethuru Raj and Anupama C. Raman (CRC Press)

Reference Books:

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List of Open Source Software/ Learning Website:

  1. https://nptel.ac. in/courses/108105057
  2. https://nptel.ac.in/courses/128108016
  3. https://nptel.ac.in/courses/106105193
  4. https://nptel.ac.in/courses/106105172
  5. https://www.iare.ac.in/sites/default/files/lecture_notes/ESD%20NOTES-A70440.pdf
  6. https://www.udemy.com/course/embedded-device-interfacing.
  7. https://nptel.ac.in/courses/108108123

For detailed syllabus of all other subjects of Instrumentation & Control Engineering, 2021 regulation curriculum do visit ICE 4th Sem subject syllabuses for 2021 regulation.

For all Instrumentation & Control Engineering results, visit Anna University ICE all semester results direct link.

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