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Introduction to the Program
Be able to create sensors applicable to industrial Electronic Systems and become a leading specialist in the sector"

This Postgraduate Diploma in Instrumentation and Sensors in Electronic Systems at TECH offers specialized knowledge to IT professionals so that they can develop professionally in a field that requires a high qualification. Thus, the program is aimed at both recent graduates and computer scientists with extensive experience, but who wish to update their knowledge with the latest information.
Specifically, the program analyzes the different types of sensors and actuators found in industrial processes and specifies the types of control systems in order to understand the intervention of an actuating device depending on a physical or chemical variable to be measured. In addition, the course develops specialized knowledge on current applications of power electronics, specifically devices that allow variation of the waveform of the electrical signal, known as converters. These devices are present in sectors as varied as domestic, industrial, military and aerospace.
It also shows the communication networks that are necessary for the transfer of data between all the elements of an industrial production system. In this way, controllers can communicate with sensors and other instrumentation elements, as well as with management systems, databases and even with services deployed in the cloud. Fundamental elements for this type of tools.
In short, this is a 100% online Postgraduate Diploma that will allow students to distribute their study time, not being restricted by fixed schedules or having to move to another physical location, being able to access all the contents at any time of the day, balancing their work and personal life with their academic life.
A first class program, aimed at improving your professional skillsâÂ
This Postgraduate diploma in Instrumentation and Sensors in Electronic Systems is the most complete and up-to-date academic program on the market. The most outstanding characteristics of this program are:
- Practical cases presented by experts in information technology
- The graphic, schematic, and practical contents with which they are created, provide scientific and practical information on the disciplines that are essential for professional development
- Practical exercises where self-assessment can be used to improve learning
- Special focus on innovative methodologies in Instrumentation and Sensors in Electronic Systems
- Theoretical lessons, questions to the expert, debate forums on controversial topics, and individual reflection assignments
- Content that is accessible from any fixed or portable device with an Internet connection
Studying this Postgraduate diploma will provide you with the keys to specialize in instrumentation and sensors in electronic systems and become a successful professionalâÂ
Its teaching staff includes professionals from the field of IT, who bring to this program the experience of their work, as well as renowned specialists from leading societies and prestigious universities.
The multimedia content, developed with the latest educational technology, will provide the professional with situated and contextual learning, i.e., a simulated environment that will provide an immersive training experience designed to train for real-life situations.
This program is designed around Problem-Based Learning, whereby the student must try to solve the different professional practice situations that arise throughout the program. For this purpose, the student will be assisted by an innovative interactive video system created by renowned and experienced experts.
TECH provides you with a multitude of practical cases that will be fundamental to your learning"

The online format of this program will give you the opportunity to self-manage your study time"
Syllabus
This Postgraduate diploma in Instrumentation and Sensors in Electronic Systems at TECH has the most complete content on the current academic scene, which will give computer scientists the opportunity to generate specialized knowledge that will allow them to successfully navigate in this field. This is undoubtedly a very well-structured program that will help students to carry out a self-guided study of the most innovative concepts in the sector, which will be fundamental for their personal and professional growth.Â
A unique program to learn the main sensors that can be used in electronic systemsâ
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Module 1. Instrumentation and Sensors
1.1. MeasurementÂ
1.1.1. Measurement and Control CharacteristicsÂ
1.1.1.1. AccuracyÂ
1.1.1.2. ReliabilityÂ
1.1.1.3. Repeatability Â
1.1.1.4. ReproducabilityÂ
1.1.1.5. DerivativesÂ
1.1.1.6. LinearityÂ
1.1.1.7. HysteresisÂ
1.1.1.8. ResolutionÂ
1.1.1.9. ScopeÂ
1.1.1.10. ErrorsÂ
1.1.2. Instrumentation ClassificationÂ
1.1.2.1. According to its FunctionalityÂ
1.1.2.2. According to the Control VariableÂ
1.2. RegulationÂ
1.2.1. Regulated SystemsÂ
1.2.1.1. Open Loop OperationÂ
1.2.1.2. Closed Loop OperationÂ
1.2.2. Types of Industrial ProcessesÂ
1.2.2.1. Continuous ProcessesÂ
1.2.2.2. Discrete ProcessesÂ
1.3. Flow SensorsÂ
1.3.1. Flow RateÂ
1.3.2. Units Used for Flow MeasurementÂ
1.3.3. Types of Flow SensorsÂ
1.3.3.1. Flow Measurement by VolumeÂ
1.3.3.2. Flow Measurement by MassÂ
1.4. Pressure SensorsÂ
1.4.1. PressureÂ
1.4.2. Units Used for Pressure MeasurementÂ
1.4.3. Types of Pressure SensorsÂ
1.4.3.1. Pressure Measurement Through Mechanical ElementsÂ
1.4.3.2. Pressure Measurement Through Electro-Mechanical ElementsÂ
1.4.3.3. Pressure Measurement Through Electronic ElementsÂ
1.5. Temperature SensorsÂ
1.5.1. TemperatureÂ
1.5.2. Units Used for Temperature MeasurementÂ
1.5.3. Types of Temperature SensorsÂ
1.5.3.1. Bimetallic ThermometerÂ
1.5.3.2. Glass ThermometerÂ
1.5.3.3. Resistance ThermometerÂ
1.5.3.4. ThermistorsÂ
1.5.3.5. ThermocouplesÂ
1.5.3.6. Radiation PyrometersÂ
1.6. Level SensorsÂ
1.6.1. Level of Liquids and SolidsÂ
1.6.2. Units Used for Temperature MeasurementÂ
1.6.3. Types of Level SensorsÂ
1.6.3.1. Liquid Level GaugesÂ
1.6.3.2. Solids Level GaugesÂ
1.7. Sensors for Other Physical and Chemical VariablesÂ
1.7.1. Sensors for Other Physical VariablesÂ
1.7.1.1. Weight SensorsÂ
1.7.1.2. Velocity SensorsÂ
1.7.1.3. Density SensorsÂ
1.7.1.4. Humidity SensorsÂ
1.7.1.5. Flame SensorsÂ
1.7.1.6. Solar Radiation SensorsÂ
1.7.2. Sensors for Other Chemical VariablesÂ
1.7.2.1. Conductivity SensorsÂ
1.7.2.2. pH SensorsÂ
1.7.2.3. Gas Concentration SensorsÂ
1.8. ActuatorsÂ
1.8.1. ActuatorsÂ
1.8.2. MotorsÂ
1.8.3. Servo ValvesÂ
1.9. Automatic ControlÂ
1.9.1. Automatic RegulationÂ
1.9.2. Types of RegulatorsÂ
1.9.2.1. Two Step ControllerÂ
1.9.2.2. Proportional ControllerÂ
1.9.2.3. Differential ControllerÂ
1.9.2.4. Proportional-Differential ControllerÂ
1.9.2.5. Integral ControllerÂ
1.9.2.6. Proportional-Integral ControllerÂ
1.9.2.7. Proportional-Integral-Differential ControllerÂ
1.9.2.8. Digital Electronic ControllerÂ
1.10. Applications of Control in the IndustryÂ
1.10.1. Selection Criteris for Control SystemsÂ
1.10.2. Examples of Industrial Control TypesÂ
1.10.2.1. OvensÂ
1.10.2.2. DryersÂ
1.10.2.3. Combustion ControlÂ
1.10.2.4. Level ControlÂ
1.10.2.5. Heat ExchangersÂ
1.10.2.6. Central Nuclear ReactorÂ
Module 2. Power Converters
2.1. Power ElectronicsÂ
2.1.1. Power ElectronicsÂ
2.1.2. Applications of Power ElectronicsÂ
2.1.3. Power Conversion SystemsÂ
2.2. ConverterÂ
2.2.1. ConvertersÂ
2.2.2. Types of ConvertersÂ
2.2.3. Characteristic ParametersÂ
2.2.4. Fourier SeriesÂ
2.3. AC/DC Conversion. Single-Phase Uncontrolled RectifiersÂ
2.3.1. AC/DC ConversionÂ
2.3.2. DiodeÂ
2.3.3. Uncontrolled Half Wave RectifierÂ
2.3.4. Uncontrolled Full Wave RectifierÂ
2.4. AC/DC Conversion. Single-Phase Controlled RectifiersÂ
2.4.1. ThyristorÂ
2.4.2. Controlled Half Wave RectifierÂ
2.4.3. Controlled Full Wave RectifierÂ
2.5. Three-Phase RectifiersÂ
2.5.1. Three-Phase RectifiersÂ
2.5.2. Controlled Three-Phase RectifiersÂ
2.5.3. Uncontrolled Three-Phase RectifiersÂ
2.6. DC/AC Conversion. Single-Phase InvertersÂ
2.6.1. DC/AC ConversionÂ
2.6.2. Single-Phase Square Wave Controlled InvertersÂ
2.6.3. Single-Phase Inverters Using Sinusoidal PWM ModulationÂ
2.7. DC/AC Conversion. Three-Phase InvertersÂ
2.7.1. Three-Phase InvertersÂ
2.7.2. Three-Phase Square Wave Controlled InvertersÂ
2.7.3. Three-Phase Inverters Using Sinusoidal PWM ModulationÂ
2.8. DC/DC ConversionÂ
2.8.1. DC/DC ConversionÂ
2.8.2. Classification of DC/ DC ConvertersÂ
2.8.3. Control of DC/ DC ConvertersÂ
2.8.4. Reducing ConverterÂ
2.9. DC/DC Conversion. Lifting ConverterÂ
2.9.1. Lifting ConverterÂ
2.9.2. Reducing-Lifting ConverterÂ
2.9.3. CĂșk ConverterÂ
2.10. AC/AC ConversionÂ
2.10.1. AC/AC ConversionÂ
2.10.2. Classification of AC/ AC ConvertersÂ
2.10.3. Voltage RegulatorsÂ
2.10.4. CycloconvertersÂ
Module 3. Industrial Communications
3.1. Real Time SystemsÂ
3.1.1. ClassificationÂ
3.1.2. ProgrammingÂ
3.1.3. PlanningÂ
3.2. Communication NetworksÂ
3.2.1. Transmission of mediumÂ
3.2.2. Basic ConfigurationsÂ
3.2.3. CIM PyramidÂ
3.2.4. ClassificationÂ
3.2.5. OSI ModelÂ
3.2.6. TCP/IP ModelÂ
3.3. FieldbusesÂ
3.3.1. ClassificationÂ
3.3.2. Distributed, Centralized SystemsÂ
3.3.3. Distributed Control SystemsÂ
3.4. BUS. ThusÂ
3.4.1. Physical LevelÂ
3.4.2. Link levelÂ
3.4.3. Error ControlÂ
3.4.4. ComponentsÂ
3.5. CAN or CANopenÂ
3.5.1. Physical LevelÂ
3.5.2. Link LevelÂ
3.5.3. Error ControlÂ
3.5.4. DevicenetÂ
3.5.5. ControlnetÂ
3.6. ProfibusÂ
3.6.1. Physical LevelÂ
3.6.2. Link levelÂ
3.6.3. Application LevelÂ
3.6.4. Communication ModelsÂ
3.6.5. System OperationÂ
3.6.6. ProfinetÂ
3.7. ModbusÂ
3.7.1. Physical EnvironmentÂ
3.7.2. Access to the EnvironmentÂ
3.7.3. Transmission Series ModesÂ
3.7.4. ProtocolÂ
3.7.5. Modbus TCPÂ
3.8. Industrial EthernetÂ
3.8.1. ProfinetÂ
3.8.2. Modbus TCPÂ
3.8.3. Ethernet/IPÂ
3.8.4. EtherCATÂ
3.9. Wireless CommunicationÂ
3.9.1. Networks 802.11 (Wifi)Â
3.9.3. Networks 802.15.1 (BlueTooth)Â
3.9.3. Networks 802.15.4 (ZigBee)Â
3.9.4. WirelessHARTÂ
3.9.5. WiMAXÂ
3.9.6. Networks Based on Cell PhonesÂ
3.9.7. Satellite CommunicationsÂ
3.10. IoT in Industrial EnvironmentsÂ
3.10.1. The Internet of ThingsÂ
3.10.2. IoT Device CharacteristicsÂ
3.10.3. Application of IoT in Industrial EnvironmentsÂ
3.10.4. Security RequirementsÂ
3.10.5. Communication Protocols: MQTT and CoAPÂ

An academic program that will be fundamental for your learning and professional development"Â
Postgraduate Diploma in Instrumentation and Sensors in Electronic Systems
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Dive into the exciting world of instrumentation and sensors in electronic systems through our Postgraduate Diploma program at TECH Global University. Discover how to master the most advanced technologies and expand your skills in this constantly evolving field, all from the comfort of your online classes. At TECH Global University, we understand the importance of instrumentation and sensors in the field of electronic systems. Our program will provide you with the knowledge you need to understand and apply the latest trends in sensor, data acquisition, instrumentation and control technology. Online classes offer a number of benefits that will allow you to get the most out of your educational experience. You will be able to access the content at any time and from anywhere, adapting your studies to your schedule and pace of life. In addition, you will have the support of our highly qualified teaching staff, who will be available to answer your questions and provide you with personalized guidance.
Power your computer knowledge with TECH
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TECH Global University stands out for its practical and application-oriented approach to knowledge. During this Postgraduate Diploma program, you will learn to design, implement and calibrate electronic instrumentation and sensor systems, preparing you to meet real-world challenges. The demand for professionals with knowledge in instrumentation and sensors in electronic systems is constantly growing in various industries, such as automotive, manufacturing and technology. Become an expert in this growing field and expand your career opportunities. Don't miss the opportunity to enhance your knowledge in instrumentation and sensors in electronic systems. Enroll in our Postgraduate Diploma program and acquire the skills you need to excel in the field of computer science and technology. Get ready to boost your career in electronic systems and become a highly skilled professional in instrumentation and sensors! Join TECH Global University and make a difference in the world of computing.