
Electrical Instrumentation Course
Master the full spectrum of industrial instrumentation, from reading sensor signals to commissioning complete control loops. This course gives you the technical depth to work confidently with transmitters, control valves, calibration equipment, and digital fieldbus systems. Whether you're entering the field or advancing your career, you'll build skills that plants actually need.
What you will learn:
You'll start with electrical fundamentals and measurement theory, then move into sensors, transmitters, and signal conditioning for every major process variable. You'll learn how to calibrate pressure, temperature, flow, and level instruments using industry-standard procedures and documentation practices. Control valve selection, sizing, and maintenance are covered in full, along with PID tuning methods and advanced control strategies. The course also covers industrial communication protocols including HART, Foundation Fieldbus, PROFIBUS, and Industrial Ethernet. Supplementary material addresses safety instrumented systems, hazardous area classification, PLC integration, and emerging IIoT technologies.
How you study in practice Electrical Instrumentation Course
How you practice Electrical Instrumentation Course
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 40 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Electrical Instrumentation
Foundations of Electrical Instrumentation
Lesson 1 • Measurement Concepts and Terminology
Defines accuracy, precision, resolution, repeatability, and uncertainty. These terms govern how instrument performance is specified and evaluated throughout the course.
Lesson 2 • Safety Practices in Instrumentation Work
Covers electrical hazard recognition, lockout/tagout procedures, and personal protective equipment. Safe work habits established here apply to every hands-on activity in the course.
Lesson 3 • Basic Electrical Quantities and Units
Covers voltage, current, resistance, and power with SI units. Anchors all later measurement and calibration work in precise quantitative language.
Lesson 4 • DC and AC Circuit Fundamentals
Introduces series, parallel, and combination circuits for both DC and AC systems. Provides the circuit analysis skills needed to interpret instrument wiring diagrams.
Lesson 5 • Instrument Signals and Signal Types
Surveys analog, digital, and discrete signal types used in industrial instrumentation. Connects signal classification to proper instrument selection and wiring practices.
Chapter 2HideHide detailsSee detailsSensors and Transducers
Sensors and Transducers
Lesson 1 • Temperature Sensing Devices
Covers thermocouples, RTDs, thermistors, and infrared sensors with their operating principles. Prepares students to match temperature sensor type to process requirements.
Lesson 2 • Level and Analytical Sensors
Covers hydrostatic, ultrasonic, radar, and guided-wave level technologies plus common analytical sensors. Rounds out the sensor portfolio needed for full process instrumentation.
Lesson 3 • Flow Measurement Sensors
Surveys differential-pressure, velocity, and volumetric flow sensing technologies. Students learn to identify the best flow measurement approach for a given fluid and pipe condition.
Lesson 4 • Principles of Sensing and Transduction
Explains the transduction principle and the sensor-to-signal chain. Establishes the conceptual model used to evaluate every sensor type covered in this chapter.
Lesson 5 • Pressure and Differential Pressure Sensors
Introduces gauge, absolute, and differential pressure measurement technologies. Links pressure sensing to flow and level measurement covered in later sections.
Chapter 3HideHide detailsSee detailsInstrument Transmitters and Signal Conditioning
Instrument Transmitters and Signal Conditioning
Lesson 1 • Loop Wiring and Power Supply Considerations
Addresses 4–20 mA loop wiring, intrinsic safety barriers, and power supply sizing. Correct wiring practices prevent signal errors and protect equipment in hazardous areas.
Lesson 2 • Analog-to-Digital and Digital-to-Analog Conversion
Explains ADC and DAC principles including resolution, sampling rate, and quantization error. Connects conversion theory to smart transmitter and controller interface design.
Lesson 3 • Transmitter Architecture and Operation
Describes the internal blocks of a smart transmitter including sensing, conditioning, and output stages. Provides the structural knowledge needed to configure and troubleshoot transmitters.
Lesson 4 • HART and Digital Communication Protocols
Introduces HART protocol superimposed on 4–20 mA loops and its use for remote configuration. Bridges analog transmitter knowledge to the digital communication topics in later chapters.
Lesson 5 • Signal Amplification and Filtering
Covers operational amplifier circuits, instrumentation amplifiers, and low-pass filter design. These techniques ensure weak sensor signals reach usable levels with minimal noise.
Chapter 4HideHide detailsSee detailsControl Valves and Final Control Elements
Control Valves and Final Control Elements
Lesson 1 • Valve Sizing and Flow Characteristics
Applies Cv coefficient calculations and inherent flow characteristic curves to valve sizing. Correct sizing prevents cavitation, flashing, and poor control loop performance.
Lesson 2 • Valve Maintenance and Troubleshooting
Addresses packing replacement, seat lapping, actuator bench-set verification, and common failure modes. Maintenance skills here directly support the calibration and loop tuning chapters ahead.
Lesson 3 • Other Final Control Elements
Introduces variable-speed drives, solenoid valves, and on/off dampers as final control elements. Broadens the student's toolkit beyond modulating control valves.
Lesson 4 • Actuators and Positioners
Covers pneumatic, electric, and hydraulic actuators paired with valve positioners. Students learn to match actuator thrust to valve requirements and configure positioner feedback.
Lesson 5 • Control Valve Types and Construction
Surveys globe, ball, butterfly, and rotary valve bodies with their trim and seat designs. Establishes the mechanical vocabulary needed for valve sizing and selection decisions.
Chapter 5HideHide detailsSee detailsCalibration Principles and Procedures
Calibration Principles and Procedures
Lesson 1 • Calibrating Flow and Level Instruments
Extends calibration methods to differential-pressure flow elements and level transmitters with wet-leg corrections. Addresses the unique challenges of multivariable and density-compensated instruments.
Lesson 2 • Calibration Records and Quality Assurance
Covers calibration certificate content, out-of-tolerance reporting, and corrective action workflows. Proper documentation ensures regulatory compliance and instrument reliability over time.
Lesson 3 • Calibration Equipment and Reference Standards
Surveys deadweight testers, decade boxes, multifunction calibrators, and reference thermometers. Proper equipment selection ensures calibration uncertainty is smaller than the instrument's tolerance.
Lesson 4 • Calibration Theory and Traceability
Defines calibration, verification, and adjustment with reference to measurement traceability chains. Establishes the quality framework that governs all calibration work in the course.
Lesson 5 • Transmitter Zero and Span Calibration
Applies five-point up-and-down calibration procedures to pressure and temperature transmitters. Students calculate error, hysteresis, and linearity from recorded data.
Chapter 6HideHide detailsSee detailsProcess Control Fundamentals
Process Control Fundamentals
Lesson 1 • Process Dynamics and Response
Covers first-order, second-order, and dead-time process models identified from step-test data. Understanding process dynamics is prerequisite to systematic PID tuning methods.
Lesson 2 • PID Tuning Methods
Applies Ziegler-Nichols, Cohen-Coon, and IMC-based tuning rules to calculated process models. Students evaluate trade-offs between setpoint tracking and disturbance rejection performance.
Lesson 3 • PID Controller Algorithm
Explains proportional, integral, and derivative modes mathematically and graphically. Students connect each mode's effect on offset, response speed, and stability to tuning decisions.
Lesson 4 • Feedback Control Loop Concepts
Defines the closed-loop control structure with process variable, setpoint, error, and controller output. Provides the conceptual model underlying all PID tuning and loop analysis work.
Lesson 5 • Advanced Control Strategies
Introduces cascade, feedforward, ratio, and override control configurations. These strategies extend basic PID capability to handle complex, interacting, or time-delayed processes.
Chapter 7HideHide detailsSee detailsIndustrial Communication and Fieldbus Systems
Industrial Communication and Fieldbus Systems
Lesson 1 • Industrial Network Fundamentals
Introduces OSI model layers relevant to industrial networks, network topologies, and media types. Provides the networking vocabulary needed to understand fieldbus and Ethernet protocols.
Lesson 2 • Wireless Instrumentation Protocols
Introduces WirelessHART and ISA100.11a mesh network architectures for field instruments. Students evaluate wireless suitability and configure network managers and gateway devices.
Lesson 3 • Industrial Ethernet Protocols
Covers EtherNet/IP, PROFINET, and Modbus TCP architectures and their use in control systems. Addresses switch configuration, VLAN segmentation, and real-time performance considerations.
Lesson 4 • Foundation Fieldbus and PROFIBUS
Explains Foundation Fieldbus H1 segment design and PROFIBUS DP/PA network configuration. Students learn segment loading, termination, and device commissioning for both protocols.
Lesson 5 • Network Diagnostics and Troubleshooting
Applies protocol analyzers, oscilloscopes, and diagnostic software to isolate fieldbus faults. Systematic diagnostic methods reduce network downtime and prevent misdiagnosis.
Chapter 8HideHide detailsSee detailsInstrumentation System Integration and Commissioning
Instrumentation System Integration and Commissioning
Lesson 1 • Instrumentation Design Documents
Covers P&IDs, instrument index, loop diagrams, and instrument data sheets as engineering deliverables. Proficiency with these documents is essential for commissioning and maintenance work.
Lesson 2 • Pre-Commissioning Checks and Loop Testing
Defines the sequence of continuity, insulation, and functional checks before energizing instrument loops. Systematic pre-commissioning prevents equipment damage and reduces commissioning rework.
Lesson 3 • Control System Configuration and Integration
Covers DCS and PLC I/O configuration, tag database setup, and controller block linking. Students connect field instrument signals to control system displays and historian functions.
Lesson 4 • Instrument Installation Best Practices
Addresses mounting, impulse line routing, conduit sealing, and grounding for field instruments. Correct installation prevents measurement errors and protects instruments from process and environmental damage.
Lesson 5 • System Handover and Acceptance Testing
Defines factory acceptance test, site acceptance test, and operational readiness review criteria. Proper handover documentation ensures the operating team receives a fully verified system.
Your valid completion certificate
This course is for you:
Maintenance technician: ready to move from mechanical into instrumentation work.
Electrical apprentice: wanting structured knowledge of industrial measurement systems.
Process operator: seeking to understand the instruments controlling their daily workflow.
Engineering graduate: bridging university theory with hands-on plant instrumentation practice.
Career changer: transitioning from general electrical work into process control roles.
Instrumentation trainee: needing a comprehensive foundation before their first plant assignment.
What our students say
Your classes are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of my interest without needing to switch platforms... I thank you for everything you do, I've already recommended you to other people...

I like how the lessons are straight to the point and how I can switch chapters and skip content I don't need.

I like the content and the presentation style and video transcription, which speeds up the process!

The platform is fast, simple to use. The diversity of content and complementary videos really help with learning.

Top trainings
FAQ
Who is Dedika?
Is the certificate valid in the United States?
Are the courses free?
What is the course workload?
What are the courses like?
How do the courses work?
What is the duration of the courses?
What is the cost or price of the courses?
What is an EAD or online course and how does it work?
PDF Course




















