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Embedded Firmware Engineering: Design Reliable Microcontroller Applications Using Embedded C, RTOS, Hardware Interfaces, Testing, and Performance Optimization - Couverture souple

Hasting, Godfrey

 
9798187140336: Embedded Firmware Engineering: Design Reliable Microcontroller Applications Using Embedded C, RTOS, Hardware Interfaces, Testing, and Performance Optimization

Synopsis

Build Firmware That Works Beyond the Lab

A blinking LED is easy. Building firmware that powers reliable commercial products is a different challenge altogether.

Embedded Firmware Engineering is a practical, hands-on guide that takes you beyond basic microcontroller programming and teaches you how professional firmware is designed, tested, optimized, and prepared for production. Whether you're developing your first embedded application or building sophisticated real-time systems, this book provides the knowledge and engineering practices used to create dependable embedded products.

Instead of focusing only on programming syntax or hardware theory, this book combines both disciplines to show how firmware and hardware work together in real-world products. You'll learn how to write clean Embedded C code, design scalable firmware architectures, develop reliable device drivers, build real-time applications with an RTOS, optimize system performance, and confidently transition from prototype to production hardware.

Inside this book, you'll learn how to:

  • Master Embedded C programming for professional firmware development.
  • Understand microcontroller architecture, memory organization, interrupts, and peripherals.
  • Work with UART, SPI, I²C, CAN, timers, GPIO, and other hardware interfaces.
  • Design modular firmware architectures that are scalable and easy to maintain.
  • Develop multitasking applications using Real-Time Operating Systems (RTOS).
  • Create reusable device drivers for sensors, displays, motors, and communication modules.
  • Optimize memory usage, execution speed, and power consumption.
  • Apply professional debugging and testing techniques to identify and resolve firmware issues.
  • Build secure, reliable, and production-ready embedded systems.
  • Prepare firmware for connected devices, IoT applications, and OTA updates.
  • Transition successfully from development boards to commercial hardware.
  • Follow industry best practices used by professional embedded firmware engineers.

Who this book is for

  • Embedded firmware engineers.
  • Electrical and electronics engineers.
  • Computer engineering students.
  • Embedded systems developers.
  • IoT and robotics developers.
  • Makers and advanced electronics hobbyists.
  • Software developers transitioning into embedded systems.

Every chapter builds on practical engineering principles and includes real firmware examples where they add the greatest value. Rather than overwhelming you with unnecessary theory, the book emphasizes techniques and workflows that you can immediately apply to your own embedded projects.

By the time you finish this book, you'll understand how commercial firmware is designed, tested, optimized, maintained, and deployed throughout the entire product lifecycle. More importantly, you'll have the confidence to engineer embedded systems that are reliable, scalable, efficient, and ready for deployment in industrial, automotive, robotics, consumer electronics, and Internet of Things (IoT) applications.

If you're ready to move beyond simple microcontroller projects and build firmware like a professional engineer, Embedded Firmware Engineering is your complete guide.

Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.