6.1.- MECHATRONICS

Mechatronics is the area of engineering that includes mechanical engineering, electronic engineering and computer engineering. The main objective of mechatronics is the automation of machines. To achieve this objective the Automation Industry has developed electromechanical and computerized systems to have an optimal control of their industrial processes. Mathematical models to develop systems with desired behaviors are obtained with the control electronics.

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Nowadays, mechatronics seeks to improve the mechanisms to obtain a controlled and autonomous operation, designing PID (Proportional-Integral-Derivative Controller) control algorithms to perform feedback control and applying optimal control, predictive control and non-linear control techniques. All these control techniques are applied to the control of variables of temperature, flow, pressure, etc. using industrial instrumentation.

The continuous innovation and improvement of technology is leading mechatronics to the design of more complex and sophisticated mechanisms, with better features and a great control capacity. They can perform automated processes through pneumatic and electropneumatic actuation, obtaining quick and repetitive movements, or hydraulic or electrohydraulic actuation, obtaining large torques, precise and fast motion control through servomotor technology, and low cost industrial instrumentation, with great features and applicable in a new Industry 4.0.

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MECHATRONICS UNITS
Showing 13-24 of 64 item(s)
FLOW RATE CONTROL MODULE - RYC-C
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS
RYC-C
Flow Rate Control Module
Accessory of RYC, RYC/T
The "RYC-C" Flow Rate Control module has been designed to study a practical control system, through the flow rate of a close water circuit.The "RYC-C" module consists of two main components: the "RYC-C" apparatus and the "RYC-C" interface box. The...
LUMINOSITY CONTROL MODULE - RYC-I
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS
RYC-I
Luminosity Control Module
Accessory of RYC, RYC/T
The "RYC-I" Luminosity Control module has been designed to study a practical control system and study different light sensors, through the luminosity control with three different light sensors.The "RYC-I" module consists of two main components:...
PH CONTROL MODULE - RYC-pH
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS
RYC-pH
pH Control Module
Accessory of RYC, RYC/T
The "RYC-pH" pH Control module has been designed to study a practical control system, through the pH dissolution control in a stirred tank.The "RYC-pH" module consists of two main components: "RYC-pH" apparatus and "RYC-pH" interface box. The...
POSITION CONTROL MODULE - RYC-CP
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS
RYC-CP
Position Control Module
Accessory of RYC, RYC/T
The "RYC-CP" Position Control module has been designed to study a practical control system, through the control of a linear position system.The "RYC-CP" module consists of two main components: the "RYC-CP" apparatus and the "RYC-CP" interface box....
INDUSTRIAL CONTROLLERS UNIT - CECI
  • CECI
Available
6.1.1.2.- INDUSTRIAL CONTROLLERS
CECI
Industrial Controllers Unit
The Industrial Controllers Unit, "CECI", is based on a modular design structure whose functionality is divided into different modules toallow the student a better understanding of the unit. The modules included in the unit are: industrial...
INDUSTRIAL CONTROLLERS NETWORKING - CRCI
  • CRCI
Available
6.1.1.2.- INDUSTRIAL CONTROLLERS
CRCI
Industrial Controllers Networking
The Industrial Controllers Networking, "CRCI", unit is based on a modular design structure whose functionality is divided into different modules to allow the student a better understanding of the unit. The modules provided with the unit are: two...
COMPUTER CONTROLLED CONTROLLER TUNING UNIT - CEAC
  • CEAC
Available
6.1.1.2.- INDUSTRIAL CONTROLLERS
CEAC
Computer Controlled Controller Tuning Unit
The Computer Controlled Controller Tuning Unit, "CEAC", provides the tools to simulate different industrial processes in a HIL system and control them with a commercial industrial controller. The CEAC unit works in conjunction with a computer, in...
FIELD BUS APPLICATIONS UNIT - CEAB
  • CEAB
Available
6.1.1.2.- INDUSTRIAL CONTROLLERS
CEAB
Field Bus Applications Unit
The Trainer for Field Bus Applications, "CEAB", provides the components to conform a real Profibus DP Network where the PC is the master device and different components included with the unit are the slave devices. The "CEAB" unit also allows to...
COMPUTER CONTROLLED COUPLED TANKS SYSTEM - CTAC
  • CTAC
Available
6.1.1.3.- INDUSTRIAL SYSTEM APPLICATIONS
CTAC
Computer Controlled Coupled Tanks System
The Computer Controlled Coupled Tanks System, "CTAC", consists of four transparent tanks, each with a pressure sensor to measure the water level.The coupling configuration between tanks can be modified by the use of computer controlled solenoid...
COMPUTER CONTROLLED PROCESS CONTROL (ELECTRONIC VALVE) - UCP
  • UCP
Available
6.1.1.3.- INDUSTRIAL SYSTEM APPLICATIONS
UCP
Computer Controlled Process Control (Electronic Valve)
The Computer Controlled Process Control (Electronic Valve), "UCP", designed by EDIBON, allows the study of several types of automatic control and can be used to control different variables (flow, level, temperature, pressure, pH, conductivity and...
COMPUTER CONTROLLED PROCESS CONTROL (PNEUMATIC VALVE) - UCPCN
  • UCPCN
Available
6.1.1.3.- INDUSTRIAL SYSTEM APPLICATIONS
UCPCN
Computer Controlled Process Control (Pneumatic Valve)
The Computer Controlled Process Control (Pneumatic Valve), "UCPCN", designed by EDIBON, allows the study of several types of automatic control and can be used to control different variables (flow, level, temperature, pressure, pH, conductivity and...
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