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Standards Finder for UV Measurement

Anyone designing, testing or commissioning a UV system soon runs into the question of which set of rules actually applies. The answer depends on two things: the application – drinking water, penetrant inspection, curing, weathering – and the task: whether it is about limits, a test procedure, the measurement, or requirements for the device. The finder combines the two and names the relevant documents, each with a short summary of what it contains.

Every entry is given with its full designation, including the edition wherever that has been verified. Where none is given, none is documented.

The selection is deliberately not exhaustive. It covers the rules regularly needed in UV measurement – not every document mentioned somewhere once. Opsytec Dr. Gröbel contributes to the DIN standards committee FNL 7 “Optical Radiation” and to the DVGW project group on UV disinfection; the classification comes out of that work.

The finder is not a normative reference. It names the relevant rules and saves you the search – what counts is always the currently valid edition in the original text. Editions change, standards are withdrawn and replaced; the issuing bodies (DIN, ISO, IEC, DVGW, ASTM) and the Beuth publishing house are authoritative. For statements of conformity, process releases and risk assessments the original text must be consulted.

All rules at a glance

The finder above filters; here is the same body in full – 40 rules, ordered by issuing body. What counts is always the currently valid edition in the original text.

DesignationTitleWhat it covers
DIN 19294-1:2020-08
Standard
UV devices for disinfection in water supply — Part 1: Requirements for construction, function and operation
UV disinfection of water · Requirements for devices · Germany
The basic requirements for UV systems in drinking water: construction, operation and the required radiant exposure. The starting point of the whole series; the other parts build on it.
DIN 19294-2:2026-04
Standard
UV devices for disinfection in water supply — Part 2: Medium-pressure systems
UV disinfection of water · Requirements for devices · Germany
The counterpart to Part 1 for medium-pressure lamps, whose broadband spectrum places different demands on design and monitoring.
DIN 19294-3:2020-08
Standard
UV devices for disinfection in water supply — Part 3: Measuring windows and sensors, requirements and testing (low pressure)
UV disinfection of water · Measurement and calibration, Requirements for devices · Germany
Governs how UV irradiance is monitored in low-pressure systems: requirements for measuring windows, sensors and their testing. The standard behind the DVGW reference radiometer.
DIN 19294-4:2026-04
Standard
UV devices for disinfection in water supply — Part 4: Measuring windows and sensors for medium-pressure systems
UV disinfection of water · Measurement and calibration, Requirements for devices · Germany
Like Part 3, but for medium-pressure systems. There the spectral weighting of the sensor is the real difficulty, because the source emits across the whole UV range.
DIN 5031-7:1984 (withdrawn)
Standard
Radiation physics in the optical range and lighting engineering — Part 7: Designation of wavelength ranges
Lighting and colorimetry · Terms and quantities · Germany
Defined the boundaries of UV-C, UV-B, UV-A, visible radiation and infrared and is the source of the widespread claim that the visible range begins at 380 nm. The standard has been withdrawn; what counts today is CIE S 017 (ILV), which also gives 315 to 400 nm for UV-A but deliberately no sharp lower limit for the visible range — a span of 360 to 400 nm instead. The 5031-7 is still widely cited; anyone quoting it should say that it is withdrawn.
DIN EN 14255-1:2005-06
Standard
Measurement and assessment of personal exposure to incoherent optical radiation — Part 1: UV radiation from artificial sources in the workplace
UV curing, Fluorescent and penetrant inspection, Air and surfaces · Limits and occupational safety, Measurement and calibration · Europe, Germany
States how UV exposure at the workplace is to be measured and assessed: spectrally weighted with the actinic action spectrum and referred to the person, not to the source. A broadband reading without weighting is not sufficient here.

DesignationTitleWhat it covers
DIN EN ISO 15858:2017-01 (ISO 15858:2016)
Standard
UV-C devices — Safety information — Permissible human exposure
Air and surfaces · Limits and occupational safety, Requirements for devices · International, Europe
Safety information for UVC devices used to disinfect air and surfaces, in particular the permissible exposure of people during operation.
DIN EN ISO 3059 (ISO 3059:2012)
Standard
Non-destructive testing — Penetrant testing and magnetic particle testing — Viewing conditions
Fluorescent and penetrant inspection · Test procedures, Measurement and calibration · International, Europe, Germany
Defines the viewing conditions for fluorescent inspection: UV-A irradiance at the point of inspection, permissible ambient light and the inspector's adaptation time. The standard every inspection booth is measured against. The valid edition is ISO 3059:2012, third edition, confirmed in 2018. A fourth edition is under development as ISO/AWI 3059 but is not yet in force.
DIN EN ISO 4892, Teile 1 bis 4 (2013 bis 2024)
Standard
Plastics — Methods of exposure to laboratory light sources
Weathering and ageing · Test procedures · International
Governs artificial weathering: light sources, filters, irradiances and cycles, separated by xenon arc, fluorescent lamps and open-flame carbon arc. The basis of accelerated ageing tests. Editions of the parts: part 1:2024 (corrected version 2026-02), part 2:2013 with amendment 1:2021, part 3:2024, part 4:2024. A fourth edition of part 2 is under development.
DIN EN ISO/IEC 17025:2018-03
Standard
General requirements for the competence of testing and calibration laboratories
UV disinfection of water, UV curing, Fluorescent and penetrant inspection, Lighting and colorimetry, Medicine and phototherapy · Measurement and calibration · International, Europe, Germany
The basis of every accreditation. Anyone presenting a calibration certificate relies on this standard — it governs traceability, measurement uncertainty and proof of competence.
ISO 20473:2007-04
Standard
Optics and photonics — Spectral bands
Lighting and colorimetry · Terms and quantities · International, Germany
The international classification of spectral bands. It differs from other conventions at the edges — which is exactly why it pays to check which standard a statement is based on.
ISO/CIE 17166:2019
Standard
Erythema reference action spectrum and standard erythema dose
Medicine and phototherapy, Air and surfaces · Terms and quantities, Limits and occupational safety · International
Specifies the erythema reference action spectrum s_er(λ) and the standard erythema dose. The reason for both: erythemal effectiveness varies by four orders of magnitude between 250 and 400 nm, so a dose in J/cm² without weighting says nothing about the effect on skin. Replaces ISO 17166:1999 / CIE S 007-1998.
ISO/CIE 19476:2014
Standard
Characterization of the performance of illuminance meters and luminance meters
Lighting and colorimetry · Measurement and calibration · International
The photometric counterpart to CIE 220: quality indices for illuminance and luminance meters, the corresponding measurement procedures and the calibration conditions. This is where figures such as “class B” or f1' come from.

DesignationTitleWhat it covers
DIN EN 62471:2009-03 (IEC 62471:2006)
Standard
Photobiological safety of lamps and lamp systems
Air and surfaces, UV curing, Medicine and phototherapy, Lighting and colorimetry · Limits and occupational safety, Measurement and calibration · International, Europe
Classifies lamps and lamp systems into risk groups from weighted radiances and irradiances — from the exempt group up to risk group 3. It is the basis for labelling and the first reference whenever a UV source is built into a product.

DesignationTitleWhat it covers
CIE 220:2016
Standard
Characterization and Calibration Methods of UV Radiometers
Air and surfaces, UV curing, Fluorescent and penetrant inspection, UV disinfection of water · Measurement and calibration · International
Defines quality indices for UV radiometers and describes both source-based and detector-based calibration methods. Unlike photometers, UV radiometry has not one reference-spectrum source but three — because UV radiometers are built for quite different action spectra. Applying the methods measurably reduces measurement uncertainty.
CIE 250:2022
Standard
Spectroradiometric Measurement of Optical Radiation Sources
Lighting and colorimetry, Weathering and ageing, Air and surfaces · Measurement and calibration, Test procedures · International
The foundation of spectroradiometry from 200 to 2500 nm: measurement principles, practical guidance and a detailed overview of the physical effects that enter the measurement uncertainty. Replaces CIE 063-1984.
CIE S 017/E:2020 (ILV, 2. Ausgabe)
Standard
ILV — International Lighting Vocabulary
Lighting and colorimetry · Terms and quantities · International
The vocabulary of lighting engineering: it defines radiometric and photometric quantities, their symbols and units. Decisive whenever two sources name the same quantity differently.

DesignationTitleWhat it covers
ASTM E1417/E1417M-21e1
Standard
Standard Practice for Liquid Penetrant Testing
Fluorescent and penetrant inspection · Test procedures · USA
The US practice for liquid penetrant testing: process sequence, penetrant classes and requirements for the excitation. In aerospace it is the governing reference alongside the SAE AMS documents. The valid version is ASTM E1417/E1417M-21e1, editorial revision of 25 November 2021; ASTM lists it as active.
ASTM E824-26
Standard
Standard Test Method for Transfer of Calibration From Reference to Field Radiometers
Weathering and ageing, UV curing, Fluorescent and penetrant inspection · Measurement and calibration, Test procedures · USA, International
Describes how a calibration is transferred from a reference radiometer to a field instrument. It recommends keeping two or three reference instruments in every calibration so that drift of the standard is noticed at all. Harmonized with ISO 9847. The valid version is ASTM E824-26 from 2026; it supersedes E824-10(2018)e1.
ASTM G130-12(2020)
Standard
Standard Test Method for Calibration of Narrow- and Broad-Band Ultraviolet Radiometers Using a Spectroradiometer
Weathering and ageing, UV curing, Fluorescent and penetrant inspection, Air and surfaces · Measurement and calibration, Test procedures · USA, International
The preferred method for calibrating UV radiometers against a spectroradiometer. It also defines the bandwidths: narrow-band up to 20 nm, broad-band 20 to 70 nm, wide-band above — a classification that helps when selecting a sensor.
ASTM G138-12(2020)e1
Standard
Standard Test Method for Calibration of a Spectroradiometer Using a Standard Source of Irradiance
Weathering and ageing, Lighting and colorimetry · Measurement and calibration, Test procedures · USA, International
The level above: how the spectroradiometer itself is calibrated — against a spectral irradiance standard whose values are traceable to a national metrology institute. Deuterium and 1000 W tungsten-halogen lamps serve as standards.
ASTM G173-23
Standard
Standard Tables for Reference Solar Spectral Irradiances
Weathering and ageing · Terms and quantities, Test procedures · USA, International
The reference spectra of sunlight (AM0 as well as AM1.5 global and direct). The reference whenever an artificial source is meant to reproduce the solar spectrum. The current edition is G173-23; the widely used NREL data set and the figures 900.1 W/m² (direct) and 1000.4 W/m² (global) come from G173-03(2020) — G173-23 gives 896.99 and 1001.92 W/m².

DesignationTitleWhat it covers
NSF/ANSI 55-2026
Standard
Ultraviolet Microbiological Water Treatment Systems
UV disinfection of water · Requirements for devices, Test procedures · USA
Tests UV systems for point-of-use and point-of-entry applications in two classes: class A at 40 mJ/cm² for microbiologically unsafe water, class B at 16 mJ/cm² for supplementary treatment of water that is already potable. The class on a device is therefore not a marketing claim but a verified dose — and at the same time the point where products from the US market are regularly confused with European requirements. The valid version is NSF/ANSI 55-2026, published in August 2026; it supersedes NSF/ANSI 55-2024.

DesignationTitleWhat it covers
DVGW-Arbeitsblatt W 294-1:2023-12
Code of practice
UV devices for disinfection in water supply (Parts 1 to 3)
UV disinfection of water · Requirements for devices, Test procedures, Measurement and calibration · Germany
The DVGW code of practice for UV disinfection in drinking water, including the biodosimetric test. Without a certificate to this code no system goes into service in German drinking water supply. Part 1 applies in the 2023-12 edition. The former parts 2 and 3 were fully superseded when DIN 19294-2 and -4 appeared in April 2026: low-pressure systems follow DIN 19294-1 and -3, medium-pressure systems DIN 19294-2 and -4. Anyone still citing W 294-2 or W 294-3 is working to a superseded state of the art.

DesignationTitleWhat it covers
ÖNORM M 5873-1:2020-01
Standard
Plants for the disinfection of water using ultraviolet radiation — Low-pressure mercury lamps
UV disinfection of water · Requirements for devices, Test procedures · Europe
The Austrian code for low-pressure systems. It is frequently cited as an international reference, well beyond Austria.
ÖNORM M 5873-2:2003-08
Standard
Plants for the disinfection of water using ultraviolet radiation — Medium-pressure mercury lamps
UV disinfection of water · Requirements for devices, Test procedures · Europe
The counterpart for medium-pressure systems. With edition 2003 the oldest entry in this list — and therefore the first candidate for a review.

DesignationTitleWhat it covers
ICNIRP Guidelines on Limits of Exposure to Incoherent Visible and Infrared Radiation (2013)
Guideline
Guidelines on Limits of Exposure to Incoherent Visible and Infrared Radiation
Lighting and colorimetry, Medicine and phototherapy, Air and surfaces · Limits and occupational safety · International
The counterpart to the UV guideline for wavelengths above 400 nm: limits for retinal and corneal hazard, for the blue-light hazard and for thermal effects. It supplies the numbers that appear as risk groups in IEC 62471 — anyone wanting to follow how a lamp was classified finds the derivation here. 2013 version.
ICNIRP Guidelines on Limits of Exposure to Ultraviolet Radiation 180–400 nm (2004)
Guideline
Guidelines on limits of exposure to ultraviolet radiation
UV curing, Fluorescent and penetrant inspection, Air and surfaces, Medicine and phototherapy · Limits and occupational safety, Terms and quantities · International
The scientific basis of the exposure limits that standards and ordinances refer to. It contains the actinic action spectrum S(λ) and the limit of 30 J/m² effective per eight hours. The 2004 version applies, published in Health Physics 87(2); ICNIRP still lists it as the valid guideline for 180 to 400 nm.

DesignationTitleWhat it covers
ACGIH TLV für ultraviolette Strahlung, Fassung 2022
Guideline
Threshold Limit Values for Ultraviolet Radiation
Air and surfaces, Medicine and phototherapy · Limits and occupational safety · USA
The American exposure limits, largely identical to ICNIRP and therefore to the German OStrV. They diverge for far-UVC: in 2022 ACGIH raised the values between roughly 200 and 235 nm considerably, because radiation at these wavelengths barely reaches the living basal cell layer. The EU has not adopted this — here the raised values are not a legal basis but an argument in the technical debate.

DesignationTitleWhat it covers
ICH Q1B (Step 4, 6. November 1996)
Guideline
Stability Testing: Photostability Testing of New Drug Substances and Products
Medicine and phototherapy, Weathering and ageing · Test procedures, Measurement and calibration · International
The globally applied guideline for photostability testing of drug substances and products. It requires two separate demonstrations: at least 1.2 million lx·h in the visible range plus at least 200 W·h/m² in the near UV between 320 and 400 nm. Both quantities have to be measured separately — one photometric and one radiometric measurement, and the two cannot be converted into each other. Option 1 allows a daylight-like source (D65/ID65), option 2 the combination of a white-light and a UVA lamp. The Step 4 version of 6 November 1996 remains valid. A consolidated ICH Q1 guideline merging Q1A to Q1E and Q5C is under revision but had not reached Step 4 as of September 2026.

DesignationTitleWhat it covers
US EPA Ultraviolet Disinfection Guidance Manual (UVDGM), 2006
Guideline
Ultraviolet Disinfection Guidance Manual for the Final Long Term 2 Enhanced Surface Water Treatment Rule
UV disinfection of water · Test procedures, Measurement and calibration · USA
The American counterpart to DVGW worksheet W 294 — and the reason reactor validations are not comparable across the Atlantic. The biodosimetry is the same in principle, but safety margins, validation factors and the requirements on the sensors differ. A “validated dose” declared under the UVDGM is therefore not an irradiation verified to W 294.

DesignationTitleWhat it covers
Richtlinie (EU) 2020/2184
Directive
Quality of water intended for human consumption (Drinking Water Directive, recast)
UV disinfection of water · Requirements for devices, Test procedures · Europe
The European framework for drinking water. New compared with its predecessor are Union-wide harmonised requirements for materials and products in contact with drinking water — UV disinfection systems are directly affected. Germany implements it through the TrinkwV; testing of the systems themselves stays with DVGW worksheet W 294.
Richtlinie (EU) 2024/3019
Directive
Urban wastewater treatment (recast)
UV disinfection of water · Test procedures · Europe
Tightens treatment levels and introduces a fourth stage for micropollutants; to be transposed by 31 July 2027. It matters indirectly for UV technology: wherever wastewater is disinfected before discharge or reuse, UV is the process without disinfection by-products — which makes dose monitoring part of the evidence.
Richtlinie 2006/25/EG
Directive
Minimum health and safety requirements regarding the exposure of workers to risks arising from physical agents (artificial optical radiation)
UV curing, Fluorescent and penetrant inspection, Medicine and phototherapy, Air and surfaces · Limits and occupational safety · Europe
The European basis of UV occupational safety, the 19th individual directive under framework directive 89/391/EEC. It sets exposure limit values for incoherent radiation and for laser radiation; the values come from the ICNIRP recommendations. Germany implements it through the OStrV — anyone working to the OStrV complies with it. Other member states apply their own transposition, but the limit values are the same everywhere.
Richtlinie 2006/42/EG
Directive
Machinery Directive — Directive on machinery
UV curing, Fluorescent and penetrant inspection, Air and surfaces · Requirements for devices, Limits and occupational safety · Europe
The framework governing CE marking of UV systems, irradiation chambers and curing lines until 19 January 2027. Annex I explicitly lists optical radiation among the hazards to be controlled. After that date Regulation (EU) 2023/1230 applies; machinery placed on the market earlier is not affected.
Richtlinie 2011/65/EU (RoHS)
Directive
Restriction of the use of certain hazardous substances in electrical and electronic equipment
UV curing, UV disinfection of water, Air and surfaces · Requirements for devices · Europe
More depends on this directive in UV technology than the title suggests: mercury lamps — low and medium pressure alike — rely on exemptions in Annexes III and IV. When an exemption expires, the equipment concerned has to move to UV LED or excimer. A look at the exemption list therefore belongs in every long-term technology decision.
Verordnung (EU) 2017/745 (MDR)
Regulation
Medical Device Regulation — Regulation on medical devices
Medicine and phototherapy · Requirements for devices · Europe
As soon as a UV device has a medical purpose — phototherapy, therapeutic irradiation — the MDR is the regulatory framework. Dose accuracy is then no longer a quality feature but part of the clinical evaluation, and traceable calibration of the measuring equipment belongs in the technical documentation.
Verordnung (EU) 2023/1230
Regulation
Machinery Regulation — Regulation on machinery
UV curing, Fluorescent and penetrant inspection, Air and surfaces · Requirements for devices, Limits and occupational safety · Europe
Replaces the Machinery Directive 2006/42/EC on 20 January 2027 and then applies directly, without national transposition. For UV equipment the core does not change: radiation remains a hazard to be addressed in the risk assessment. What is new is the permitted digital instruction manual (paper only on request) and separate requirements for machinery with learning behaviour.

DesignationTitleWhat it covers
OStrV vom 19. Juli 2010, zuletzt geändert am 18. Oktober 2017
Regulation
German ordinance on the protection of workers from artificial optical radiation
UV curing, Fluorescent and penetrant inspection, Air and surfaces, Medicine and phototherapy · Limits and occupational safety · Germany
The German occupational safety ordinance for artificial optical radiation. It requires a risk assessment, compliance with the exposure limits and instruction of staff — it is law, not a recommendation. Issued 19 July 2010 (Federal Law Gazette I p. 960), last amended by Article 5(6) of the Ordinance of 18 October 2017 (Federal Law Gazette I p. 3584).
TROS IOS, Ausgabe November 2013
Code of practice
Technical rules on the ordinance for artificial optical radiation — Incoherent optical radiation
UV curing, Fluorescent and penetrant inspection, Air and surfaces, Medicine and phototherapy · Limits and occupational safety, Measurement and calibration · Germany
Puts the OStrV into practice: how to carry out the risk assessment, which measurement procedures are admissible and how to derive protective measures. Following it establishes a presumption of conformity. The general part and parts 1, 2 and 3 date from November 2013; parts 2 and 3 have a 2014 correction. The BAuA still lists these versions as current.

Frequently asked questions

In Germany the DIN 19294 series together with the DVGW code W 294, in Austria ÖNORM M 5873. They differ in the testing: the biodosimetric test demonstrates the effect on living organisms, while the sensor standards govern how irradiance is monitored in operation.

IEC 62471 classifies lamps and lamp systems into risk groups. At the workplace the German OStrV applies, put into practice by the TROS IOS; the measurement itself is described by DIN EN 14255-1. The limits go back to the ICNIRP guidelines.

Because a year that nobody has verified is worse than none. An edition appears only once it has been checked; the date of that check is then shown alongside. A quarterly run reports what needs looking at.

No. It says which rule is relevant and what it is about — what counts is the original text in the currently valid edition. Editions change, standards are withdrawn and replaced; the issuing bodies are authoritative.

Author: Dr. Mark Paravia

Dr.-Ing. Mark Paravia is the managing director of Opsytec Dr. Gröbel GmbH in Ettlingen and heads the accredited calibration laboratory. He is vice-chair of the DIN Standards Committee FNL 7 “Optical Radiation” and a member of the DVGW Project Group on UV Disinfection.