
Metrology and Instrumentation Course
Master the science and practice of measurement with a course that covers everything from SI units and sensor selection to calibration procedures and quality systems. You will build the technical skills that engineers and metrologists rely on every day in industrial and laboratory environments. This course is built for professionals who need accurate, defensible measurements — and the knowledge to back them up.
What you will learn:
You will learn the foundational principles of metrology, including measurement standards, traceability, and SI units, then advance into error analysis, uncertainty evaluation, and correct result reporting. The course covers instrumentation architecture, sensor technologies, and signal conditioning circuits used across industrial applications. You will study calibration principles, interval management, and documentation practices aligned with international quality system requirements. Dimensional measurement tools, GD&T interpretation, and coordinate measuring machines are covered in depth. You will also explore data acquisition systems, statistical process control, and measurement management frameworks that connect metrology to broader quality operations.
How you study in practice Metrology and Instrumentation Course
How you practise Metrology and Instrumentation Course
For companies looking to train their teams
With Dedika for Businesses, the course includes exercises and examples tailored to your own business and the specific needs of your company.
Course content
8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Metrology
Foundations of Metrology
Lesson 1 • Key Metrological Terms and Definitions
Introduces precision, accuracy, resolution, sensitivity, and repeatability. Builds shared vocabulary essential for all subsequent measurement work.
Lesson 2 • History and Scope of Metrology
Traces measurement science from ancient standards to modern SI. Provides context for why rigorous metrology underpins engineering and commerce.
Lesson 3 • Measurement Standards and Traceability
Defines primary, secondary, and working standards and the traceability chain. Explains how traceability ensures measurement validity across facilities.
Lesson 4 • SI Units and Physical Quantities
Covers the seven SI base units, derived units, and prefixes. Connects unit selection to accurate physical quantity expression.
Chapter 2HideHide detailsSee detailsMeasurement Error and Uncertainty
Measurement Error and Uncertainty
Lesson 1 • Types of Measurement Errors
Distinguishes systematic, random, and gross errors with real examples. Lays the groundwork for selecting appropriate correction strategies.
Lesson 2 • Statistical Analysis of Measurement Data
Applies mean, standard deviation, and distribution analysis to measurement sets. Connects statistical tools to quantifying random error magnitude.
Lesson 3 • Reporting and Interpreting Results
Teaches correct expression of measurement results with uncertainty statements. Ensures students communicate findings in compliance with international reporting norms.
Lesson 4 • Uncertainty Evaluation Methods
Covers Type A and Type B uncertainty evaluation per international guidelines. Students construct uncertainty budgets for practical measurement scenarios.
Chapter 3HideHide detailsSee detailsInstrumentation Fundamentals
Instrumentation Fundamentals
Lesson 1 • Instrument Selection and Specification
Guides systematic selection based on measurand, environment, and accuracy needs. Students practice matching instrument specs to defined measurement requirements.
Lesson 2 • Loading Effects and Interference
Examines how instrument impedance and coupling introduce loading and noise errors. Teaches mitigation techniques to preserve signal integrity.
Lesson 3 • Dynamic Performance Characteristics
Addresses response time, rise time, bandwidth, and damping ratio for dynamic signals. Links dynamic specs to instrument selection for time-varying measurements.
Lesson 4 • Instrument Architecture and Signal Flow
Explains sensing, conditioning, processing, and display stages of a generic instrument. Provides a structural model used throughout the course.
Lesson 5 • Static Performance Characteristics
Covers range, span, linearity, hysteresis, and dead band as static specs. Students evaluate datasheets to assess instrument suitability.
Chapter 4HideHide detailsSee detailsSensors and Transducers
Sensors and Transducers
Lesson 1 • Temperature Measurement Sensors
Covers thermocouples, RTDs, thermistors, and infrared sensors with operating principles. Students match sensor type to temperature range and accuracy requirement.
Lesson 2 • Sensor Calibration and Conditioning
Addresses zero and span adjustment, bridge circuits, and amplification for sensor outputs. Prepares students to condition raw sensor signals for accurate data acquisition.
Lesson 3 • Pressure and Force Transducers
Explains strain gauge, piezoelectric, and capacitive pressure sensing principles. Connects transducer physics to industrial pressure measurement practice.
Lesson 4 • Displacement and Position Sensors
Reviews LVDT, encoders, potentiometers, and proximity sensors for position measurement. Students evaluate resolution and range trade-offs for each technology.
Lesson 5 • Flow and Level Measurement Devices
Introduces differential pressure, ultrasonic, electromagnetic, and Coriolis flow meters. Covers level sensing methods including ultrasonic and float-based devices.
Chapter 5HideHide detailsSee detailsSignal Conditioning and Data Acquisition
Signal Conditioning and Data Acquisition
Lesson 1 • Analog-to-Digital Conversion
Explains sampling, quantisation, and ADC architectures including SAR and sigma-delta. Links ADC resolution and sampling rate to measurement accuracy.
Lesson 2 • Data Acquisition System Architecture
Describes multiplexing, sample-and-hold, and DAQ board configuration. Students configure a multichannel DAQ system for a defined measurement task.
Lesson 3 • Noise Reduction and Signal Integrity
Identifies noise sources and applies grounding, shielding, and averaging techniques. Ensures students can achieve target signal-to-noise ratios in real environments.
Lesson 4 • Analog Signal Conditioning Circuits
Covers amplification, filtering, and impedance matching for sensor signals. Students design op-amp circuits to prepare signals for digitisation.
Lesson 5 • Software-Based Data Processing
Introduces digital filtering, scaling, and real-time display using DAQ software. Connects software tools to automated measurement workflows.
Chapter 6HideHide detailsSee detailsCalibration Principles and Practice
Calibration Principles and Practice
Lesson 1 • Calibration of Common Instruments
Applies procedures to pressure gauges, thermometers, and electrical meters. Reinforces procedural skills with hands-on calibration exercises.
Lesson 2 • Calibration Procedure Development
Guides writing step-by-step calibration procedures with acceptance criteria. Students draft a procedure for a common instrument type.
Lesson 3 • Calibration Interval Management
Explains methods for setting and adjusting calibration intervals based on drift data. Students apply interval optimization to reduce cost while maintaining accuracy.
Lesson 4 • Calibration Concepts and Terminology
Defines calibration, verification, and adjustment and their distinctions. Establishes the conceptual basis for all practical calibration activities.
Lesson 5 • Calibration Records and Certificates
Covers required content of calibration certificates and record retention. Ensures compliance with quality management and accreditation requirements.
Chapter 7HideHide detailsSee detailsDimensional and Geometric Measurement
Dimensional and Geometric Measurement
Lesson 1 • Angular and Form Measurement
Introduces protractors, sine bars, roundness testers, and straightness measurement. Connects angular and form measurement to component functional requirements.
Lesson 2 • Coordinate Measuring Machines
Describes CMM types, probe systems, and measurement strategies for complex parts. Students plan a CMM inspection routine for a prismatic component.
Lesson 3 • Geometric Dimensioning and Tolerancing
Applies GD&T symbols, datum references, and tolerance zones to inspection planning. Links drawing interpretation to correct gauge and CMM strategy selection.
Lesson 4 • Linear Measurement Instruments
Covers vernier calipers, micrometers, height gauges, and gauge blocks. Students perform measurements and assess instrument uncertainty contributions.
Lesson 5 • Surface Texture Measurement
Explains Ra, Rz, and other surface roughness parameters measured by contact profilometers. Students interpret surface texture reports and relate them to functional performance.
Chapter 8HideHide detailsSee detailsQuality Systems and Measurement Management
Quality Systems and Measurement Management
Lesson 1 • Gauge Repeatability and Reproducibility
Applies gauge R&R studies to quantify measurement system variation. Students conduct and analyze a gauge R&R study using crossed and nested designs.
Lesson 2 • Nonconformance and Corrective Action
Addresses handling out-of-tolerance findings, root cause analysis, and corrective actions. Closes the quality loop by linking measurement failures to process improvement.
Lesson 3 • Laboratory Accreditation Requirements
Covers competence, impartiality, and technical requirements for testing and calibration labs. Students identify gaps between current practice and accreditation criteria.
Lesson 4 • Measurement Management Systems
Introduces the structure and requirements of a measurement management system. Students map metrological activities to quality system processes.
Lesson 5 • Measurement Audit and Proficiency Testing
Explains interlaboratory comparisons and proficiency testing schemes for lab performance. Students interpret z-scores and En numbers from proficiency test results.
Your valid completion certificate
This course is for you:
Quality technician requires formal grounding in calibration and measurement standards.
Mechanical or electrical engineer expands into instrumentation and sensor-based systems.
Lab analyst seeks structured knowledge to support accreditation and audit readiness.
Manufacturing supervisor is responsible for measurement equipment and inspection sign-offs.
Career changer moves from a trade background into a technical instrumentation role.
Engineering student builds practical measurement skills alongside academic coursework.
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