EU ecodesign and energy-labelling rules apply to light sources, while definitions and responsibilities for products and luminaires require case-specific review. This article references European Commission and EUR-Lex pages. This guide translates the topic into practical site inputs, product checks, implementation steps and acceptance records for industrial lighting projects.
Define the project problem first
Industrial lighting should not be specified by wattage alone. The project brief should define mounting height, work-plane illuminance, uniformity, glare limits, environmental protection, controls, maintenance access and budget boundaries.
The same requirements should be used for supplier comparison, pilot testing and final acceptance so that product claims can be checked against measurable site results.
Distinguish light sources and containing products
The European Commission light-source page explains that ecodesign and energy-labelling requirements apply to relevant light sources, while luminaire-labelling obligations have changed. Classification depends on the actual product and regulatory definitions.
Avoid assuming that every complete luminaire carries the same label or that luminaires are outside all obligations. Review construction, sales form and responsible parties model by model.
Regulation (EU) 2019/2020 and 2019/2015
EUR-Lex provides the official texts for ecodesign Regulation (EU) 2019/2020 and energy-labelling Delegated Regulation (EU) 2019/2015. Check consolidated amendments, application dates and specific clauses.
Product specifications, tests, model naming, packaging, web information and database records should remain consistent when drivers, sources or controls change.
Preparing industrial-lighting export files
Build a product-structure description, model-difference table, electrical and photometric tests, energy data, label artwork, instructions and compliance declarations, with clear economic-operator responsibilities.
Requirements can differ across high bays, floodlights, road, hazardous-area and cleanroom luminaires. This page supports procurement discussion and is not legal advice.
Major Chinese standards for project review
Standard status reviewed against official Chinese platforms on 2026-08-09. Confirm the current edition, implementation date, local requirements and contract scope before design, procurement or acceptance.
GB/T 7000.1-2023Luminaires - Part 1: General Requirements and Tests
Current general luminaire safety and test basis, effective from 1 January 2026.
Official recordGB/T 31897.201-2025Luminaire Performance - Part 2-1: Particular Requirements for LED Luminaires
Current particular performance requirements for LED luminaires, effective from 1 May 2026.
Official recordGB/T 5700-2023Methods of Measuring Lighting
Methods for lighting measurements; projects should also define points, instruments, environment and control state.
Official recordGB/T 20145-2006Photobiological Safety of Lamps and Lamp Systems
Photobiological risk evaluation based on product spectrum, test conditions and intended application.
Official recordGB/T 17743-2021Limits and Methods of Measurement of Radio Disturbance from Electrical Lighting
Limits and measurement methods for radio disturbance emissions from lighting equipment.
Official recordSite survey and input checklist
Prepare drawings, dimensions, clear height, fixture positions, structural obstructions, work-plane height, electrical circuits, operating hours and the quantity and wattage of existing luminaires. Add temperature, moisture, dust, corrosion, cleanroom or hazardous-area information where relevant.
- light source, containing product or other classification
- applicable regulation version, tests and energy class
- database, label and product-information responsibilities
- model family, sample, report and delivered-product consistency
Illuminance, efficacy and optical distribution
Efficacy indicates how efficiently electrical power is converted into light, but optical distribution determines where that light reaches the working plane. Beam angle, spacing, aiming direction, reflection and maintenance factor should be reviewed together.
For high bays, rack aisles, roads, yards and long-throw applications, use photometric files, lighting calculations or a pilot installation instead of comparing wattage or nominal lumens only.
Construction, protection and controls
Check thermal design, driver, input voltage, power factor, surge protection, sealing, cable entry, mounting and service access. Special environments require project-specific confirmation of material, coating, low-temperature, corrosion or explosion-protection limits.
Sensor dimming and zoning can reduce idle energy, but commissioning should also verify trigger range, delay, minimum output, manual override and failure fallback.
Implementation and acceptance workflow
- Record the existing illuminance, power, layout and operating baseline.
- Select product construction, output, optics and controls from the site conditions.
- Test a representative pilot area and adjust spacing, aiming or control settings.
- Complete phased installation with documented safety and shutdown arrangements.
- Repeat measurements and archive product, commissioning and maintenance records.
Confirm the product definition and responsible economic operator before reviewing tests, product information, labels, replaceability and technical files.
Relevant product directions
Typical product searches for this topic include High Bay Light, Explosion Proof Light, Smart Lighting Control, Industrial Park LED Road Light. Product names define a comparison range; final wattage, optics, protection rating and quantity must be confirmed against the actual site.
Search questions
What is the relationship between DALI-2, D4i and Zhaga-D4i?
They address digital control, intelligent luminaire data and standardized module interfaces at different layers.
What does CIE S 025 cover?
It provides test methods for LED lamps, LED luminaires and LED modules.
Are IECEx and ATEX interchangeable?
No. Their schemes and regional project requirements differ and must be checked for the target market.
Primary international sources
Source pages may be updated by their publishers; verify the current version and project applicability before procurement.
Contact Suzhou Yaoqian Intelligent Technology Co., LTD
Since 2006, Suzhou Yaoqian Intelligent Technology Co., LTD has worked on LED sources, thermal design, optics, industrial luminaires and smart controls. The team supports product selection, parameter review and project coordination.
Contact: Mr. Xie · +86 13915532167 · xieming113@163.com