Embedded Systems: Real-Time Operating Systems for Arm Cortex M Microcontrollers, Paperback (2nd Ed.)/Jonathan Valvano
Descriere
Contributor(s):Author: Jonathan Valvano This book is self-published and is printed on demand. The original ISBN was generated in 2012, but if you purchase the book new from Create Space or Amazon you will get the new version, which was uploaded January 3, 2017. This book, now in its fourth edition (January 2017), is the third in a series of three books that teach the fundamentals of embedded systems as applied to ARM Cortex-M microcontrollers. This book specifically covers the TM4C and MSP432 microcontrollers; however, it could be used with any Cortex-M microcontroller. This third volume is primarily written for senior undergraduate or first-year graduate electrical and computer engineering students. It could also be used for professionals wishing to design or deploy a real-time operating system onto an ARM platform. The first book Embedded Systems: Introduction to the ARM Cortex-M Microcontroller is an introduction to computers and interfacing focusing on assembly language and C programming. The second book Embedded Systems: Real-Time Interfacing to ARM Cortex-M Microcontroller focuses on interfacing and the design of embedded systems. This third book is an advanced book focusing on operating systems, high-speed interfacing, control systems, robotics, Bluetooth, and the Internet of Things (Io T). Rather than buying and deploying an existing OS, the focus is on fundamental principles, so readers can write their-own OS. Embedded systems are a ubiquitous component of our everyday lives. We interact with hundreds of tiny computers every day that are embedded into our houses, our cars, our toys, and our work. As our world has become more complex, so have the capabilities of the microcontrollers embedded into our devices. An embedded system is a system that performs a specific task and has a computer embedded inside. A system is comprised of components and interfaces connected together for a common purpose. Specific topics include microcontrollers, design, verification, har