
Lighting Training
Master every dimension of professional lighting design, from the physics of light and lamp technologies to advanced controls and sustainable specifications. This comprehensive training covers interior, exterior, theatrical, and human-centric lighting, giving you the technical depth and practical tools to deliver compliant, high-performance designs. Whether you are entering the field or expanding your expertise, this course builds the skills clients and employers demand.
What you'll learn:
You will build a complete foundation in lighting science, covering photometric quantities, lamp technologies, luminaire optics, and distribution principles. You will learn to perform manual and software-based illuminance calculations and produce professional-grade photometric documentation. The course covers interior and exterior design strategies, energy code compliance, and integrated control systems including DALI, daylight harvesting, and scene programming. You will also explore circadian and human-centric lighting, daylighting integration, and emerging technologies such as IoT-connected luminaires and AI-driven controls. By the end, you will be equipped to manage full lighting projects from initial brief through construction administration and post-occupancy evaluation.
How you study in practice Lighting Training
How you practise Lighting Training
For businesses looking to train their team
With Dedika for businesses, 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 detailsFundamentals of Light and Vision
Fundamentals of Light and Vision
Lesson 1 • Core Photometric Quantities
Defines lumens, candela, lux, and footcandles with real-world context. Provides the measurement vocabulary used throughout the course.
Lesson 2 • How the Human Eye Perceives Light
Explains rod and cone function, adaptation, and contrast sensitivity. Links visual physiology to practical lighting design decisions.
Lesson 3 • Color Temperature and Color Rendering
Introduces correlated colour temperature (CCT) and colour rendering index (CRI). Connects these metrics to visual comfort and task performance.
Lesson 4 • The Nature of Light
Covers electromagnetic radiation, visible spectrum, and wavelength-to-colour relationships. Establishes the physical foundation for all subsequent lighting concepts.
Lesson 5 • Light Behaviour on Surfaces
Examines specular, diffuse, and mixed reflection plus transmission and refraction. Grounds material-selection decisions in optical principles.
Chapter 2HideHide detailsSee detailsLight Sources and Lamp Technologies
Light Sources and Lamp Technologies
Lesson 1 • Comparing Sources by Application
Applies efficacy, CRI, lifespan, and cost data to source-selection decisions. Reinforces photometric vocabulary from Chapter 1 in a practical context.
Lesson 2 • Incandescent and Halogen Sources
Reviews tungsten filament operation, halogen regenerative cycle, and dimming behaviour. Establishes a baseline for comparing modern alternatives.
Lesson 3 • LED Technology Fundamentals
Covers semiconductor junction operation, driver circuits, and thermal management. Positions LED as the dominant modern source for all sectors.
Lesson 4 • Emerging and Specialty Sources
Surveys OLED panels, laser phosphor, and plasma sources for niche applications. Prepares students to evaluate new technologies as they emerge.
Lesson 5 • Fluorescent and HID Technologies
Explains gas-discharge principles, ballast types, and warm-up characteristics. Contextualises legacy commercial and industrial lighting systems.
Chapter 3HideHide detailsSee detailsLuminaires, Optics, and Distribution
Luminaires, Optics, and Distribution
Lesson 1 • Luminaire Efficacy and BUG Ratings
Defines luminaire efficacy ratio (LER) and the BUG (backlight, uplight, glare) rating system. Supports energy-compliant and dark-sky-friendly designs.
Lesson 2 • Optical Control Elements
Examines lenses, louvers, baffles, and reflector profiles for beam shaping. Links optical choices to glare control and uniformity goals.
Lesson 3 • Luminaire Components and Construction
Identifies housings, reflectors, refractors, diffusers, and drivers. Connects component choices to photometric and thermal performance outcomes.
Lesson 4 • Photometric Distribution Curves
Teaches reading of polar and Cartesian intensity distribution curves (IDC). Enables accurate fixture selection from manufacturer photometric data.
Lesson 5 • Mounting, Aiming, and Spacing
Covers mounting height, spacing-to-mounting-height ratios, and aiming angles. Translates photometric data into physical installation parameters.
Chapter 4HideHide detailsSee detailsLighting Calculations and Software
Lighting Calculations and Software
Lesson 1 • Iterative Design Optimisation
Uses calculation feedback to adjust fixture count, type, and layout for compliance. Develops systematic problem-solving habits for design refinement.
Lesson 2 • Photometric Data Files and IES Format
Explains IES and EULUMDAT file structures and how software reads them. Ensures accurate fixture representation in any calculation engine.
Lesson 3 • Lighting Simulation Software Workflow
Guides room modelling, fixture placement, and calculation grid setup in simulation tools. Produces illuminance and luminance output reports.
Lesson 4 • Evaluating Uniformity and Glare Metrics
Interprets uniformity ratio, unified glare rating (UGR), and daylight glare probability. Connects calculated metrics to occupant comfort standards.
Lesson 5 • Manual Calculation Methods
Applies the lumen method and point-by-point calculation to simple spaces. Builds numerical intuition before introducing software tools.
Chapter 5HideHide detailsSee detailsInterior Lighting Design Principles
Interior Lighting Design Principles
Lesson 1 • Commercial Office and Retail Lighting
Covers open-plan office, private office, and retail display lighting requirements. Balances visual comfort, energy targets, and brand aesthetics.
Lesson 2 • Healthcare and Educational Environments
Addresses high-CRI clinical lighting, circadian-supportive schemes, and classroom standards. Connects lighting quality to health outcomes and learning performance.
Lesson 3 • Hospitality and Specialty Interiors
Applies dramatic layering, dimming scenes, and colour tuning to hotels and restaurants. Demonstrates how lighting reinforces brand identity and guest experience.
Lesson 4 • Lighting Layers and Design Intent
Defines ambient, task, accent, and decorative layers and their combined effect. Frames every interior project around a clear hierarchy of lighting goals.
Lesson 5 • Residential Lighting Applications
Addresses kitchen, bathroom, bedroom, and living space requirements. Applies layer strategy and CCT selection to domestic environments.
Chapter 6HideHide detailsSee detailsExterior and Outdoor Lighting Design
Exterior and Outdoor Lighting Design
Lesson 1 • Facade and Architectural Floodlighting
Covers grazing, washing, and silhouetting techniques for building exteriors. Connects aiming geometry and beam angles to architectural feature enhancement.
Lesson 2 • Sports and High-Mast Lighting
Applies horizontal and vertical illuminance criteria for sports fields and high-mast installations. Addresses spill light, glare, and broadcast camera requirements.
Lesson 3 • Landscape and Hardscape Lighting
Addresses path lights, in-ground uplights, and water feature illumination. Integrates safety, aesthetics, and low-voltage system design.
Lesson 4 • Light Pollution and Dark-Sky Compliance
Defines sky glow, light trespass, and obtrusive light and their mitigation strategies. Prepares students to meet dark-sky and environmental lighting ordinances.
Lesson 5 • Roadway and Parking Lighting Standards
Applies illuminance and luminance criteria for roadway classifications and parking areas. Grounds design in internationally recognised visibility and safety benchmarks.
Chapter 7HideHide detailsSee detailsLighting Controls and Energy Management
Lighting Controls and Energy Management
Lesson 1 • Daylight Harvesting Strategies
Applies closed-loop and open-loop dimming to maximise daylight contribution. Quantifies energy savings through daylight integration calculations.
Lesson 2 • Control System Fundamentals
Introduces switching, dimming, and sensor-based control topologies. Establishes the vocabulary and logic for all subsequent control design work.
Lesson 3 • Scene Control and Tunable White
Programmes multi-scene presets and CCT tuning for circadian and task-adaptive lighting. Demonstrates how scene control enhances occupant well-being and flexibility.
Lesson 4 • Occupancy and Daylight Sensors
Covers PIR, ultrasonic, and dual-technology sensors plus photosensor placement. Links sensor selection and calibration to reliable energy savings.
Lesson 5 • Energy Code Compliance and LPD
Applies lighting power density (LPD) limits and mandatory control requirements from energy standards. Produces compliant designs using trade-off and area-by-area methods.
Chapter 8HideHide detailsSee detailsAdvanced Design, Specification, and Project Delivery
Advanced Design, Specification, and Project Delivery
Lesson 1 • Sustainable and Wellness-Centred Design
Applies green building and wellness rating criteria to lighting design decisions. Aligns energy, circadian, and visual comfort goals within a single strategy.
Lesson 2 • Specification Writing for Lighting
Writes performance-based and prescriptive specifications for luminaires and controls. Ensures procurement accuracy and contractor compliance on site.
Lesson 3 • Lighting Design Documentation
Produces fixture schedules, photometric plans, and control diagrams as coordinated drawing sets. Establishes professional documentation standards for construction use.
Lesson 4 • Post-Occupancy Evaluation and Maintenance
Conducts illuminance measurements, occupant surveys, and maintenance planning after occupancy. Closes the design loop with evidence-based performance feedback.
Lesson 5 • Construction Administration and Commissioning
Guides submittal review, site observation, and control system commissioning. Ensures installed lighting matches design intent and performs as calculated.
Your valid completion certificate
This course is for you:
Architect: needs to take confident ownership of lighting decisions on every project.
Interior designer: wants to move beyond decorative fixtures into technical lighting strategy.
Electrical engineer: seeks a design-focused perspective to complement technical system knowledge.
Facilities manager: responsible for lighting upgrades and needs a solid specification foundation.
Career changer: transitioning into the built environment field with no prior lighting background.
Photographer or videographer: ready to deepen understanding of light beyond the camera.
What our students say
Your lessons are perfect. I purchased the one-year package and finally have the opportunity to follow various topics of interest without needing to change platforms... I'm grateful 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 change chapters and skip content I don't need.

I like the content and the way videos are presented and transcribed, which speeds up the process!

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

Top upskilling courses
FAQ
Who is Dedika?
Is the certificate valid in Australia?
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




















