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A Practical Application of ARM Cortex-M3 Processor Core in Embedded System Engineering

机译:ARM Cortex-M3处理器内核在嵌入式系统工程中的实际应用

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Embedded Systems Engineering has grown in recent years to become an integral part of our daily living as it finds striking applications in various spheres of our lives. These range from Manufacturing, Electronic Health, Telecommunications, Construction and Robotics to numerous other fields. Primarily, Embedded Systems are usually a combination of selected electrical and electronic components functioning together under the direct control of a programmed controller. They serve fundamentally as additional units incorporated within already existing infrastructures with the sole aim of providing dedicated services to the larger infrastructure. Many of the controllers used operate on uniquely designed processor cores, instruction sets, and architecture profiles. This paper seeks to elucidate the application of the ARM Cortext-M3 processor based NXP LPC 1768 Microcontroller unit in the design and development of a Temperature Monitoring and Logging System. The write-up starts off with an overview of the principal ARM processor core families, architecture profiles, instruction sets and subsequently, demonstrates its utilization in the design of a Temperature Monitoring and Logging System. The paper shows how the NXP LPC 1768 Microcontroller Unit successfully serves as the brain of the temperature logger device through its standardized interfacing with a TMP102 temperature sensor using the Inter- Integrated Circuit (I2C) protocol. The Microcontroller is programmed using Embedded C while other unique functionalities of the ARM Cortex-M3 core such as Interrupt Handling and System Tick Timer efficiency are also explored.
机译:嵌入式系统工程近年来发展迅速,已成为我们日常生活不可或缺的一部分,因为它已在我们生活的各个领域中找到了惊人的应用。从制造业,电子健康,电信,建筑和机器人技术到众多其他领域。首先,嵌入式系统通常是所选电气和电子组件的组合,这些组件在编程控制器的直接控制下一起运行。从根本上说,它们充当合并在现有基础架构中的附加单元,其唯一目的是为大型基础架构提供专用服务。使用的许多控制器都在独特设计的处理器内核,指令集和体系结构配置文件上运行。本文力求阐明基于ARM Cortext-M3处理器的NXP LPC 1768微控制器在温度监控和记录系统的设计和开发中的应用。本文首先概述了主要的ARM处理器内核系列,体系结构配置文件,指令集,随后证明了其在温度监控和记录系统设计中的应用。本文展示了恩智浦LPC 1768微控制器单元如何通过使用Inter-Integrated Circuit(I2C)协议与TMP102温度传感器的标准接口,成功地充当温度记录器设备的大脑。该微控制器使用嵌入式C进行编程,同时还探索了ARM Cortex-M3内核的其他独特功能,例如中断处理和系统滴答定时器效率。

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