The course Industrial Automation Applied to Mechatronics is a a unique opportunity to delve into a a rapidly expanding sector. The automation is crucial in the modern industry, enabling more efficient processes y cutting costs. This course will equip you to understand the principles of automation, the how automatic systems work and the use of sequential controllers. You’ll learn about the Boolean algebra, essential for the combinational circuit design, and you’ll get to know the programmable logic controllers, key tools in the industrial systems management. The course is online, enabling you to acquire these skills from anywhere. The demand for automation experts is constantly growing, making this course a safe investment for your career prospects. If you’re looking for expand your skills in mechatronics y stand out in the labour market, this course is perfect for you.
Industrial Automation Applied to Mechatronics
Introduction
Objectives
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Understanding the fundamentals of automatic systems and its significance in mechatronics.
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Identify the types of industrial processes and its application in automation.
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Apply basic operations in Boolean algebra in digital systems.
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Designing basic combinational circuits using decoders and multiplexers.
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Programming PLCs using basic instructions in STEP 7 and KOP.
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Create wiring diagrams using KOP programming for basic automation systems.
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Using timers and counters in the programming of automated systems.
Table of Contents
TEACHING UNIT 1. PRINCIPLES OF AUTOMATION
The Concept of Automation
Types of automation
Main areas of application
Types of industrial processes
Sequential controllers
TEACHING UNIT 2. BOOLEAN ALGEBRA
An Introduction to Boolean Algebra
Digital Operation of a System
Basic logical operations
Operations in Boolean Algebra
Important theorems in Boolean algebra
Functions in Boolean Algebra
Truth table for a logical function
Performing Logical Functions
TEACHING UNIT 3. COMBINATIONAL CIRCUITS
An Introduction to Combinational Circuits
Decoders
Encoders
Multiplexers
Demultiplexers
Binary comparators
Semi-adder circuit
TEACHING UNIT 4. PROGRAMMABLE LOGIC CONTROLLERS
Definition of a Programmable Logic Controller
Programmed systems. Basic programming
Representation of Inputs and Outputs
Programming of opening and closing contacts
Basic STEP 7 and KOP instructions
Programming in FUP format
TEACHING UNIT 5. PROGRAMMING CIRCUIT DIAGRAMS
Implementation of KOP programmes based on the wiring diagram
Programming with timers
Programming with Counters