2.4.- INDUSTRIAL ELECTRONICS

Industrial electronics is a branch of electronic engineering that focuses on industrial-grade electronic systems. One of the most important branches of industrial electronics is power electronics, which is responsible for the development of electronic applications that control and regulate high levels of voltages and currents.

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The evolution of industrial electronics, like all branches of engineering, is determined by scientific advances in this field. The most important developments in power electronics are those of the following semiconductor components: SCR rectifiers, GTO thyristors and, above all, IGBT transistors. These semiconductor components combined with a central control circuit are capable of performing such vital tasks in modern industry as the control of electric motors, the controlled supply of industrial equipment by regulating voltages and currents, or the development of electrical inverters and rectifiers.

Industrial electronics has a long career ahead of it due to the development of power electronics and the improvement of control systems, which have increasingly lower installation costs and are capable of handling higher powers with more precise controls, extending their use in the electrical system (fostering the proliferation of new smart grid and micro grid type schemes), in the transportation system (with high speed trains, electric and hybrid cars, electric motorcycles, etc.), in lighting control systems, etc. The incorporation of these latest advances in industrial electronics in all these sectors increases energy efficiency and helps to reduce pollution and the sustainability of the systems that incorporate it.

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INDUSTRIAL ELECTRONICS EQUIPMENT

Showing 25-36 of 45 item(s)
PID TEMPERATURE CONTROL AND REGULATION UNIT - RYC-TE
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-TE

PID Temperature Control and Regulation Unit

Accessory of RYC, RYC/T
The PID Temperature Control and Regulation Unit, "RYC-TE", designed by EDI­BON, allows studying temperature control in a tank using a heating element and temperature sensors. It allows analyzing thermal dynamics, response time, and process stability.
PID CONTROL AND REGULATION OF PRESSURE LEVEL UNIT - RYC-P
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-P

PID Control and Regulation of Pressure Level Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of Pressure Level Unit, "RYC-P", designed by EDIBON, allows the study of pressure control in a tank using compressed air. It includes a compressor, pressure sensors, and control valves. It allows analyzing the...
PID LEVEL CONTROL AND REGULATION UNIT - RYC-N
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-N

PID Level Control and Regulation Unit

Accessory of RYC, RYC/T
The PID Level Control and Regulation Unit, "RYC-N", designed by EDIBON, allows studying level control in a tank by regulating the inlet flow. It includes level sensors, a pump, and valves that allow modifying operating conditions. The unit allows...
PID FLOW CONTROL AND REGULATION UNIT - RYC-C
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-C

PID Flow Control and Regulation Unit

Accessory of RYC, RYC/T
The PID Flow Control and Regulation Unit, "RYC-C", designed by EDIBON, allows the study of flow control in a closed hydraulic circuit. It includes a pump, a flowmeter, and an electronic proportional valve that regulates the flow. The unit allows...
PID CONTROL AND REGULATION OF LIGHT INTENSITY UNIT - RYC-I
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-I

PID Control and Regulation of Light Intensity Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of Light Intensity Unit, "RYC-I", designed by EDIBON, allows analyzing light intensity control in a closed environment. It includes a variable light source and several optical sensors, such as photodiodes or...
PID CONTROL AND REGULATION OF PH LEVEL UNIT - RYC-pH
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-pH

PID Control and Regulation of pH Level Unit

Accessory of RYC, RYC/T
The PID Control and Regulation of pH Level Unit, "RYC-pH", designed by EDIBON, allows studying pH control in a tank by dosing acidic and basic solutions. It includes pH sensors, dosing pumps, and a mixing tank. It allows analyzing dynamic chemical...
PID POSITION CONTROL AND REGULATION OF A MOTOR UNIT - RYC-CP
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

RYC-CP

PID Position Control and Regulation of a Motor Unit

Accessory of RYC, RYC/T
The PID Position Control and Regulation of a Motor Unit, "RYC-CP", designed by EDIBON, allows studying linear position control using a DC motor that moves a carriage. It includes position sensors that allow measuring the displacement of the...
COMPUTER CONTROLLED POWER PLANTS REGULATION AND CONTROL UNIT - SCE
  • SCE
Available
6.1.1.1.- THEORETICAL-PRACTICAL FUNDAMENTALS

SCE

Computer Controlled Power Plants Regulation and Control Unit

The Computer Controlled Power Plants Regulation and Control Unit, "SCE", has been designed by EDIBON to simulate and analyze the behavior of a power plant through two operating modes.Real mode: allows the analysis and data acquisition of the...
SERVOMOTOR INDUSTRIAL APPLICATION - AE-SMI
  • AE-SMI
Available
2.4.2.- ELECTRICAL SERVOMOTORS

AE-SMI

Servomotor Industrial Application

The Servomotor Industrial Application, "AE-SMI", is designed to perform up to seven controls used in motion technology: position control,speed control, torque control, position and speed control, speed and torque control and the full-closed...
BRUSHLESS MOTOR INDUSTRIAL APPLICATION - AE-BMI
  • AE-BMI
Available
2.4.2.- ELECTRICAL SERVOMOTORS

AE-BMI

Brushless Motor Industrial Application

The Brushless Motor Industrial Application, "AE-BMI", is designed to perform the most common control used in the industry: the position control. The "AE-BMI" application allows the student to configure up to four positions with all the parameters...
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