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Course Outline
Module 1: Introduction to Embedded Systems
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Overview
Understand the purpose and scope of embedded systems across various industries. -
Characteristics of Embedded Systems
Explore the defining features of embedded systems, such as real-time constraints, dedicated functionality, and hardware-software integration. -
Types of Embedded Systems
Examine different categories, including standalone, real-time, networked, and mobile embedded systems. -
Embedded Architectures
Introduction to common architectural models, such as Harvard and Von Neumann architectures.
Module 2: Programming Languages and Development Environment
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C Language
Overview of the C programming language, its syntax, and its widespread adoption in embedded systems. -
C for Embedded Systems
Learn how C is utilized for direct hardware interaction, including memory manipulation and register access. -
Hardware Interface Programming
Understand how to write low-level code to control sensors, actuators, and other hardware components.
Module 3: Microcontroller Fundamentals
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Microcontroller Architecture
Introduction to the internal structure and operational mechanics of microcontrollers. -
Basic Configurations
Learn how to configure and initialize microcontrollers for various applications. -
Basic Peripherals
Explore common peripherals such as timers, ADCs (Analog-to-Digital Converters), UARTs, and GPIOs.
Module 4: Internet of Things (IoT)
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Overview of IoT
Understand the concept of IoT and the critical role of embedded systems within IoT solutions. -
IoT Architecture
Study the layers of an IoT system, including sensing, network, data processing, and application layers.
Requirements
- Familiarity with fundamental programming concepts.
- Basic understanding of computer system operations.
Audience
- Engineering professionals.
- Embedded software developers.
- Technical personnel exploring IoT and embedded system design.
21 Hours
Testimonials (1)
Being able to ask for advanced subjects even if there were not planned initially.