Microprocessor Systems Applied to Mechatronics

Industry-Specific
Digital Skills

Engineering, Construction, and Infrastructure

Duration

40 hours

PRESENTATION

In an environment where mechatronics has become the cornerstone of technological innovation, the course Microprocessor Systems Applied to Mechatronics offers you a comprehensive and specialized training. You'll learn how to distinguish between microcontrollers and microprocessors, and you'll discover how these components are essential for the design and control of complex systems. The Programming in assembly language and C will allow you to develop efficient and customized solutions, while the study of embedded systems and programmable logic controllers will enable you to optimize the interaction between hardware and software. This knowledge is in high demand in industrial sectors where the automation and smart control are key. The online format provides you with flexibility, allowing you to purchase crucial skills to address current and future technological challenges.

Objectives

  • Understanding the Differences between microprocessors and microcontrollers in mechatronic systems.

  • Programming in Assembly Language using architectural models and instruction sets.

  • Develop programs in the C language for mechatronic applications and to optimize flow control.

  • Implement input/output systems with peripheral devices and interface adapters.

  • Design and program programmable logic controllers for process automation.

  • Implement serial communication for embedded systems integration.

  • Analyze and use data structures such as software fixes and patches.

Syllabus

TEACHING UNIT 1. MICROPROCESSORS Control IS Microprocessor Systems Microcontrollers Applications in Mechatronics Programming TEACHING UNIT 2. ASSEMBLER LANGUAGE Languages Instruction Sets Assembly Language Programs Subroutines Lookup Tables Embedded Systems TEACHING UNIT 3. C LANGUAGE Mechatronics: Why Use the C Language? Program Structure Flow Control and Loops Arrays Pointers Program Development TEACHING UNIT 4. INPUT/OUTPUT SYSTEMS Introduction to Interfaces Input/Output Addressing Interface Requirements Interface Adapters for Peripheral Devices Serial Communications Interface Examples of Interface Coupling TEACHING UNIT 5. PROGRAMMABLE LOGIC CONTROLLERS Programmable Logic Controllers Basic Structure of a PLC Input/Output Processing Ladder Diagram Programming Instruction Set Interlocks and Internal Relays Sequencing Timers and Counters Shift Registers Master and Jump Controls Data Handling Analog Input/Output
Request for Information

Related MOOCs

Course
The Course on Workplace Risk Prevention, Ergonomics, and Mental Health addresses the growing need to ensure environments...
Course
In the age of remote work, hyperconnectivity has put companies under the scrutiny of the Labor Inspectorate....
Course
In a world of global digitization, hyperconnectivity has gone from being an advantage to becoming a challenge...

Are the Educa PHAROS courses eligible for credit?

Many courses can be credited toward the master's programs at Structuralia.

Facts about our area

+ 1.483

Hours

+88.999

Minutes

264

Courses

Educa PHAROS is a next-generation training model that places a company’s human capital at the forefront. Through a platform that adapts to each company’s corporate identity and offers a total of more than 900 courses, it provides tailored training for each organization. The unlimited flat-rate plan provides each company with the number of courses that best suits its needs, as well as the ability to determine which employees will have access.
Scroll to Top