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Course Outline

Module 1: Introduction to Embedded Systems

  • Overview
    Examine the purpose and scope of embedded systems across diverse industries.
  • Characteristics of Embedded Systems
    Identify defining features such as real-time constraints, dedicated functionality, and integrated hardware/software design.
  • Types of Embedded Systems
    Review classifications including standalone, real-time, networked, and mobile embedded systems.
  • Embedded Architectures
    Survey common architectural models, such as Harvard and Von Neumann designs.

Module 2: Programming Languages and Development Environment

  • C Language
    Review the C programming language, its syntax, and its prevalence in embedded applications.
  • C for Embedded Systems
    Explore C’s role in direct hardware interaction, including memory manipulation and register control.
  • Hardware Interface Programming
    Master low-level code creation for controlling sensors, actuators, and other components.

Module 3: Microcontroller Fundamentals

  • Microcontroller Architecture
    Investigate the internal structure and operational logic of microcontrollers.
  • Basic Configurations
    Learn techniques for configuring and initializing microcontrollers for specific use cases.
  • Basic Peripherals
    Analyze standard peripherals, including timers, ADCs, UARTs, and GPIOs.

Module 4: Internet of Things (IoT)

  • Overview of IoT
    Define the IoT concept and the critical role of embedded systems within it.
  • IoT Architecture
    Deconstruct IoT system layers, covering sensing, networking, data processing, and application tiers.

Requirements

  • Proficiency in fundamental programming concepts
  • Foundational knowledge of computer systems

Target Audience

  • Engineering professionals
  • Embedded software developers
  • Technical staff investigating IoT and embedded system design
 21 Hours

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