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Colorimetry Training Course
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Colorimetry Training Course

Master the science and practice of colorimetry, from the physics of light and human vision to industrial colour quality control. This course gives you the quantitative tools to measure, specify, and communicate colour with precision. Whether you work in manufacturing, lighting, printing, or digital imaging, you will gain skills that translate directly into professional results.

Dedika for students

What your team will master:

You will build a complete understanding of how light, the human visual system, and CIE standards combine to define measurable colour. The course covers radiometry, spectrophotometry, tristimulus calculations, CIELAB and CIELUV colour spaces, and colour difference formulas including CIEDE2000. You will learn to evaluate light sources using colour rendering metrics such as CRI and IES TM-30, and to manage colour through digital workflows with ICC profiles. Applied chapters address instrumental quality control, colour formulation using Kubelka-Munk theory, and supply chain colour communication. Supplementary content extends your expertise into spectral imaging, display characterisation, psychophysics, and data analysis with scripting tools.

How your team learns practically Colorimetry Training Course

How your team practises Colorimetry Training Course

Professionals from these companies study at Dedika

ActemiumFR
Nunner LogisticsNL
GT Constructora GeotécnicaCR
Sydel StarBR
Metrô de São PauloBR
Aguas AndinasCL
DSMIN
MeridianbetRS
CDHCN

Course content

8 Chapters • 38 LessonsDuration between 4 and 360 hours (you decide)

Chapter 1See details

Foundations of Light and Colour Perception

  • Lesson 1 • The Nature of Visible Light

    Covers electromagnetic radiation, wavelength ranges, and spectral power distribution. Connects physical light properties to the colorimetric quantities measured throughout the course.

  • Lesson 2 • Human Visual System Anatomy

    Examines retinal structure, photoreceptor types, and neural pathways. Grounds later colorimetric models in the biological reality of human vision.

  • Lesson 3 • Trichromacy and Colour Matching

    Introduces the trichromatic theory and Grassmann's laws. Provides the theoretical basis for all standard observer models used in colorimetry.

  • Lesson 4 • Opponent-Colour and Chromatic Adaptation

    Explains opponent-channel processing and adaptation mechanisms. Prepares students to understand perceptual phenomena that affect colour measurement accuracy.

Chapter 2See details

Radiometry, Photometry, and Spectrophotometry

  • Lesson 1 • Measurement Geometry and Instrument Types

    Covers 0/45, 45/0, d/8, and integrating sphere geometries. Students learn to match instrument geometry to material type for accurate colour measurement.

  • Lesson 2 • Photometric Quantities and Luminous Efficiency

    Covers luminous flux, illuminance, luminance, and the V(lambda) function. Links radiometric measures to human brightness perception for practical lighting work.

  • Lesson 3 • Uncertainty and Measurement Quality

    Addresses sources of measurement error, repeatability, and traceability. Ensures students can evaluate and report measurement quality in professional contexts.

  • Lesson 4 • Radiometric Quantities and Units

    Defines radiant flux, irradiance, radiance, and related units. Establishes the measurement vocabulary required for all subsequent spectral calculations.

  • Lesson 5 • Spectrophotometry Principles

    Explains transmittance, reflectance, and absorbance measurement principles. Provides the spectral data foundation that feeds directly into tristimulus calculations.

Chapter 3See details

CIE Standard Observers and Illuminants

  • Lesson 1 • CIE 1964 Supplementary Observer

    Introduces the 10° observer for large-field viewing conditions. Students learn when to substitute the 10° observer to improve colorimetric accuracy.

  • Lesson 2 • Correlated Colour Temperature

    Explains blackbody radiation, Planckian locus, and CCT calculation. Connects illuminant characterisation to practical light source selection in industry.

  • Lesson 3 • CIE 1931 Standard Observer

    Presents the 2° colour-matching functions x̄, ȳ, z̄ and their derivation. These functions are the computational core of all XYZ-based colorimetry.

  • Lesson 4 • Metamerism and Observer Variability

    Analyses illuminant and observer metamerism with quantitative indices. Students learn to diagnose and minimise metamerism in colour-critical applications.

  • Lesson 5 • CIE Standard Illuminants

    Defines illuminants A, D50, D65, F-series, and LED-based illuminants. Correct illuminant selection is essential for reproducible colour communication.

Chapter 4See details

Tristimulus Values and Chromaticity

  • Lesson 1 • CIE 1976 UCS Diagram

    Introduces the u'v' uniform chromaticity scale and its perceptual advantages. Addresses the non-uniformity of the 1931 diagram for colour difference estimation.

  • Lesson 2 • CIE 1931 xy Chromaticity Diagram

    Converts XYZ to xy chromaticity and maps the spectral locus. Students interpret chromaticity plots to compare hue and saturation independent of luminance.

  • Lesson 3 • Computing XYZ Tristimulus Values

    Derives the XYZ integrals from spectral reflectance, illuminant SPD, and CMFs. This calculation is the entry point for every subsequent colour space transformation.

  • Lesson 4 • Gamut and Colour Boundaries

    Defines object-colour solid, optimal colours, and gamut boundaries. Students use these concepts to evaluate the limits of reproducible colour in any medium.

Chapter 5See details

Uniform Colour Spaces and Colour Appearance

  • Lesson 1 • CIELUV Colour Space

    Presents L*, u*, v* coordinates and the CIELUV chroma-hue system. Contrasts CIELUV with CIELAB to guide appropriate space selection by application.

  • Lesson 2 • Hue, Chroma, and Lightness Perception

    Analyses perceptual attributes of hue, chroma, brightness, and colourfulness. Connects psychophysical attributes to coordinate values in uniform colour spaces.

  • Lesson 3 • Colour Appearance Models Overview

    Surveys CIECAM02 and CAM16 model structure and input parameters. Prepares students to apply appearance models where simple colorimetry is insufficient.

  • Lesson 4 • CIELAB Colour Space

    Derives L*, a*, b* coordinates and their perceptual meaning. CIELAB is the industry-standard space for colour specification and difference calculation.

  • Lesson 5 • Chromatic Adaptation Transforms

    Covers von Kries, Bradford, and CAT16 adaptation transforms. Students apply these transforms to predict colour appearance under different illuminants.

Chapter 6See details

Colour Difference Metrics and Tolerancing

  • Lesson 1 • CIE76 and CMC Colour Difference Formulas

    Calculates Delta E*ab and CMC(l:c) with weighting functions. Identifies conditions where each formula outperforms simple Euclidean CIELAB distance.

  • Lesson 2 • CIE94 and CIEDE2000 Formulas

    Derives CIE94 and CIEDE2000 with their parametric and hue-rotation corrections. CIEDE2000 is the current recommended formula for most industrial applications.

  • Lesson 3 • Colour Tolerancing in Industry

    Applies pass/fail tolerancing, ellipsoidal tolerance volumes, and process capability. Students design tolerance specifications aligned with visual acceptability data.

  • Lesson 4 • Basic Colour Difference Concepts

    Defines just-noticeable differences, threshold ellipses, and delta E notation. Establishes the perceptual foundation for all quantitative colour difference formulas.

  • Lesson 5 • Whiteness, Yellowness, and Tint Indices

    Covers CIE whiteness, ASTM yellowness, and tint index calculations. Extends colour difference skills to specialised quality metrics used in paper and plastics.

Chapter 7See details

Colour Rendering and Light Source Evaluation

  • Lesson 1 • Flicker, Temporal Modulation, and Visual Comfort

    Covers flicker metrics, percent flicker, and flicker index for LED drivers. Connects temporal light modulation to visual comfort and health considerations.

  • Lesson 2 • Evaluating Sources for Colour-Critical Tasks

    Applies rendering metrics to retail, museum, medical, and print viewing booths. Students produce a structured light source specification for a given application.

  • Lesson 3 • Limitations of CRI and Alternative Metrics

    Identifies Ra failures with LED and narrow-band sources and introduces IES TM-30 Rf and Rg. Students compare metrics to select the most informative measure.

  • Lesson 4 • Spectral Power Distribution Design

    Analyses how SPD shape affects colour rendering, efficacy, and metamerism risk. Students optimise SPD trade-offs for specific lighting application requirements.

  • Lesson 5 • Colour Rendering Index Fundamentals

    Derives the CIE general colour rendering index Ra from test-colour samples. Explains the chromatic adaptation step and arithmetic averaging used in Ra.

Chapter 8See details

Applied Colorimetry in Industry

  • Lesson 1 • Colour Communication and Specification

    Covers physical standards, digital colour data formats, and spectral data exchange. Establishes protocols that ensure consistent colour intent across supply chains.

  • Lesson 2 • Digital Colour Workflows and ICC Profiles

    Explains ICC profile structure, profile connection space, and rendering intents. Students manage colour through capture, display, and print in a managed workflow.

  • Lesson 3 • Instrumental Colour Quality Control

    Designs measurement protocols, control charts, and corrective action triggers. Students build a QC system that detects colour drift before product reaches customers.

  • Lesson 4 • Colour Formulation and Recipe Prediction

    Introduces Kubelka-Munk theory and computer colour matching algorithms. Students understand how colorant recipes are predicted and optimised instrumentally.

  • Lesson 5 • Colour Program Management and Auditing

    Covers inter-instrument agreement, laboratory audits, and proficiency testing. Students design governance structures that sustain long-term colour measurement accuracy.

Certification

Your valid completion certificate

This course is for you:

  • Quality control technician: needs objective tools to replace subjective colour judgment.

  • Lighting designer: wants to evaluate and specify sources beyond basic lumen output.

  • Textile or apparel colourist: seeks to resolve supplier colour disputes with measurement data.

  • Print production specialist: aims to align proofing, press, and substrate colour systematically.

  • Product designer: needs to communicate colour intent precisely across manufacturing partners.

  • Career changer from a visual arts background: ready to add scientific rigour to creative instincts.

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