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Course Details

IoT
Embedded Sense for IoT Systems
Teacher

Self Paced

Last Update:

February 14, 2023

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Embedded sense for IoT

About Course

This is the second course in a 3 course series at IOT node level. Sense is one of the key functionalities any embedded system possesses for fetching the data from the real world. The course will start with an introduction to Software engineering for Embedded Systems, covers concepts of concurrency, GPIO’s, analog interfacing, timers, programming techniques for power-efficient computing, dynamic memory access (DMA) and most importantly serial communication (UART, SPI, I2C…) used for interfacing the controller with the sensors

What is the objective of this course?

This is the second course in a 3 course series at IOT node level. Sense is one of the key functionalities any embedded system possesses for fetching the data from the real world. The course will start with an introduction to Software engineering for Embedded Systems, covers concepts of concurrency, GPIO’s, analog interfacing, timers, programming techniques for power-efficient computing, dynamic memory access (DMA) and most importantly serial communication (UART, SPI, I2C…) used for interfacing the controller with the sensors. The other 2 courses in this series will cover “Compute” i.e. compute/ processing functionality of IOT nodes and “Connect” i.e., connectivity capability of IoT nodes.

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What Will You Learn?

  • Explain various software engineering methodologies that are useful while developing a software or a system
  • Explain concurrency and various scheduling concepts
  • Discuss concepts of GPIO's and its low-level drivers
  • Explain the concepts of analog to digital and digital to analog conversion; working of an ADC
  • Describe the timer module and explain interrupt timer and PWM
  • Discuss serial communication and common protocols like UART, SPI & I2C
  • Discuss high-level and low-level techniques involved in programming for power-efficient computing
  • To design and develop IoT node level based devices
  • To employ software engineering processes while building embedded systems
  • To understand concepts of concurrency
  • To work with GPIO's, timer module, and serial communication
  • To employ programming techniques for power-efficient computing
  • Hands-on lab experience by executing the exercises on the hardware

Course Content

Software Engineering for Embedded Systems

  • Introduction to Embedded Systems

Concurrency

General Purpose Input Output (GPIO)

Analog Interfacing

Timers

Serial Communication

DMA: Dynamic Memory Access

Programming Techniques for Power efficient computing

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7,000.00 14,998.00
  • Instructor
    Self Paced
  • Language
    English

Payment :

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Material Includes

  • E-Learning Modules
  • E-Labs
  • Quiz & Assessments after every modules
  • Final Assessments

Requirements

  • Basic understanding of C Language
  • Basic knowledge in electronics is helpful but not mandatory
  • No prior knowledge about the Internet of Things is required

Audience

  • New employees going through onboard training in Embedded Systems
  • Second and third year engineering students studying electronics/ computer science engineering or related fields
  • Software engineers/ working professionals who are keen to work on microcontrollers for IoT node level development
  • Hobbists who would want to build IoT node level applications
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