Toimialayhteisöt
Toimialayhteisö:
Palvelualojen työnantajat PALTA
Komitea: CEN/TC 215
(Respiratory and anaesthetic equipment)
Alkuperä: CEN
Määräpäivä: 2026-10-22
Toimialayhteisö:
Palvelualojen työnantajat PALTA
Komitea: CEN/TC 215
(Respiratory and anaesthetic equipment)
Alkuperä: CEN
Määräpäivä: 2026-10-22
Toimialayhteisö:
Palvelualojen työnantajat PALTA
Komitea: ISO/TC 121/SC 2
(Airway devices and related equipment)
Alkuperä: ISO
Määräpäivä: 2026-10-22
This document specifies the common requirements for heat and moisture exchangers (HME), breathing system filters (BSF) and combined devices (HMEF) intended for anaesthetic and respiratory use. It addresses materials, design, performance, requirements for devices supplied sterile, marking, and information to be provided by the manufacturer.
NOTE 1 Wherever the term “device” is used in this document, it refers to an HME or, HMEF or BSF.
This document also applies to HMEs or HMEFs that do not have a machine port for connecting to a ventilator.
Requirements for active HMEs are located in ISO 80601-2-74 [1].
This document is not applicable to other types of filters:
those designed to protect vacuum sources or gas sample lines;
to filter compressed gases;
to protect test equipment for physiological respiratory measurements;
on inlet of resuscitation bags;
port of nebulisers.
NOTE 2 A method for assessing moisture loss from an HME/HMEF is given in ISO 9360-2: 202X.
NOTE 3 A method for assessing filtration performance of BSF/HMEF is given in ISO 9360-3:202X.
Filters used for filtering anaesthetic gases from the respiratory gas are not within scope of this document.
NOTE 4 Requirements for Active HMEs are included in ISO 80601-2-74 [1].
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 459/SC 1
(Test methods for steel (other than chemical analysis))
Alkuperä: CEN
Määräpäivä: 2026-10-22
ISO 20482:2013 specifies a standard test method for determining the ability of metallic sheets and strips having a thickness from 0,1 mm up to 2 mm and a width of 90 mm or greater to undergo plastic deformation in stretch forming.
For materials that are thicker and when only narrower strips are available, tools of specified dimensions are provided, in which case subscripts are used, as shown in Table 1.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 305
(Potentially explosive atmospheres - Explosion prevention and protection)
Alkuperä: CEN
Määräpäivä: 2026-10-22
This document is published as a dual log standard and provides guidance on classification of gases and vapours. It describes a test method intended for the measurement of the maximum experimental safe gaps (MESG) for gas-air mixtures or vapour-air mixtures under normal conditions of temperature and pressure (20 °C, 101,3 kPa) so as to permit the selection of an appropriate group of equipment. This document also describes a test method intended for use in the determination of the auto-ignition temperature (AIT) of a vapour-air mixture or gas-air mixture at atmospheric pressure, so as to permit the selection of an appropriate temperature class of equipment. Values of chemical properties of materials are provided to assist in the selection of equipment to be used in hazardous areas. Further data may be added as the results of validated tests become available. The materials and the characteristics included in a table (see Annex B) have been selected with particular reference to the use of equipment in hazardous areas. The data in this document have been taken from a number of references which are given in the bibliography. These methods for determining the MESG or the AIT may also be used for gas-air-inert mixtures or vapour-air-inert mixtures. However, data on air-inert mixtures are not tabulated. Keywords: classification of gases and vapours, measurement of the maximum experimental safe gaps (MESG)
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 164
(Water supply)
Alkuperä: CEN
Määräpäivä: 2026-10-22
This document specifies definitions, principles of construction, requirements and methods for testing the performance of UV devices (240 nm to 290 nm nominal) for potable water installations according to EN 806-2 which are permanently connected to the building’s supply.
Devices described by this document can be installed at the point of entry (POE), within the water distribution system inside the building or at the point of use (POU).
Additionally, the devices described in this document can be used in mobile or temporary potable water installations, where the system is not permanently connected to a water supply.
UV devices in the sense of this document are UV bactericidal treatment devices or UV disinfection devices for one of three specified water qualities, determined by the observed UV transmittance.
Devices can be standalone, integrated into a larger appliance or part of multi-staged treatment process. The document relates solely to the performance of the UV reactor.
Toimialayhteisö:
Muoviteollisuus
Komitea: CEN/TC 107
(District heating and cooling systems)
Alkuperä: CEN
Määräpäivä: 2026-10-22
This document specifies requirements and test methods for joint casing systems for single and twin pipes between adjacent factory-made pipe, and/or fitting and/or valve assemblies for buried heating and cooling water networks with rigid pipe systems with metal service pipes in accordance with EN 13941-1 [4] and EN 13941-2 [5] as well as rigid pipe systems with plastic service pipes according to series EN 17415 and flexible pipe systems with metal service pipes according to EN 15632-4 .
NOTE There are no differences in requirements for single and twin pipe joint casing systems.
For bedding materials other than those defined in 5.2.3 additional precautions are defined inEN 13941-2 [5].
This document specifies the methods commonly available for separating adhesively bonded joints enabling repair and improving recycling.
This document applies to adherends made of metallic and non-metallic inorganic material, plastics including both filler-containing and fibre-reinforced types, wood and wood-based materials, coated materials, adherends of natural and polymeric fibres as well as paper and cardboard.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/TC 12
(Quantities and units)
Alkuperä: ISO
Määräpäivä: 2026-10-23
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/TC 12
(Quantities and units)
Alkuperä: ISO
Määräpäivä: 2026-10-23
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: ISO/TC 188
(Small craft)
Alkuperä: ISO
Määräpäivä: 2026-10-23
This document specifies methods for evaluating the stability and buoyancy of intact (i.e. undamaged) craft. The flotation characteristics of craft susceptible to swamping are also encompassed.
The evaluation of stability and buoyancy properties using this document will enable the craft to be assigned to a design category (A, B, C or D) appropriate to its stability and buoyancy characteristics.
This document is principally applicable to small craft propelled primarily by sail (even if fitted with an auxiliary engine) of 2,5 m up to and including 24 m hull length.
In relation to habitable multihulls, this document includes assessment of susceptibility to inversion, definition of viable means of escape and requirements for inverted flotation.
This document excludes:
— inflatable and rigid-inflatable craft covered by the ISO 6185 series;
— aquatic toys;
— gondolas and pedalos;
— surfboards including sailing surfboards; and
— hydrofoils and foil stabilized craft when not operating in the displacement mode.
NOTE Displacement mode means that the craft is only supported by hydrostatic forces.
This document does not include or evaluate the effects on stability of towing, fishing, or lifting operations or dynamic stability of high speed craft, which can be separately considered if appropriate. It only considers normal operation of the craft, but unattended craft issues are out of scope
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 156
(Ventilation for buildings)
Alkuperä: CEN
Määräpäivä: 2026-10-23
ISO 13350:2015 deals with the determination of those technical characteristics needed to describe all aspects of the performance of jet fans as defined in ISO 13349. It does not cover those fans designed for ducted applications, nor those designed solely for air circulation, e.g. ceiling fans and table fans.
The test procedures described in this International Standard relate to laboratory conditions. The measurement of performance under on-site conditions is not included.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 464
(Small Craft)
Alkuperä: CEN
Määräpäivä: 2026-10-23
This document specifies methods for evaluating the stability and buoyancy of intact (i.e. undamaged) boats. The flotation characteristics of boats susceptible to swamping are also encompassed.
The evaluation of stability and buoyancy properties using this document will enable the boat to be assigned to a design category (A, B, C or D) appropriate to its design and maximum load.
This document is principally applicable to boats propelled primarily by sail (even if fitted with an auxiliary engine) of 6 m up to and including 24 m hull length. However, it can also be applied to boats less than 6 m if they are habitable multihulls or can be applied if they do not attain the desired design category specified in ISO 12217-3 and they are decked and have quick-draining recesses which comply with ISO 11812.
In relation to habitable multihulls, this document includes assessment of susceptibility to inversion, definition of viable means of escape and requirements for inverted flotation.
This document excludes:
— inflatable and rigid-inflatable boats covered by the ISO 6185 series, except for references made in the ISO 6185 series to specific clauses of the ISO 12217 series;
— gondolas and pedalos;
— surfboards including sailing surfboards; and
— hydrofoils and foil stabilized boats when not operating in the displacement mode.
NOTE Displacement mode means that the boat is only supported by hydrostatic forces.
It does not include or evaluate the effects on stability of towing, fishing, dredging or lifting operations, which need to be separately considered if appropriate.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: ISO/TC 8/SC 2
(Marine environment protection)
Alkuperä: ISO
Määräpäivä: 2026-10-26
This document specifies the design, minimum safety requirements, and inspection and testing procedures for liquefied hydrogen (LH2) marine transfer arms intended for use at onshore LH2 terminals handling LH2 carriers. It also covers the minimum requirements for safe LH2 transfer between ship and shore.
Although the requirements for power/control systems are covered, this document does not include all of the details for the design and fabrication of standard parts and fittings associated with transfer arms. This document is mainly focused on hard pipe type transfer systems; hose type transfer systems are not described in detail in the general description of this document. However, hose type transfer systems can also be considered as reasonable vacuum insulated technology for the design of transfer arms for liquefied hydrogen.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/TC 38
(Textiles)
Alkuperä: ISO
Määräpäivä: 2026-10-26
This document provides examples of specifications, defines evaluation methodologies and requirements for labelling methods for recycled man-made fibres in the supply chain,including relevant supporting information.
Recycling technologies covered will include physical, mechanical, and chemical recycling methods applied within the supply chain, together with associated supporting information.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/TC 67/SC 2
(Pipeline transportation systems)
Alkuperä: ISO
Määräpäivä: 2026-10-27
This International Standard specifies the functional requirements and principles for design, operation and requalification of pipelines in the petroleum and natural gas industries using reliability-based limit state methods as permitted by ISO 13623. Reliability-based limit state methods provide a systematic way to predict pipeline safety in design and operation.
This International Standard supplements ISO 13623 and can be used in cases where ISO 13623 does not provide specific guidance and where limit states methods can be applied, such as, but not limited to,
— qualification of new concepts, e.g. when new technology is applied or for design scenarios where industry experience is limited,
— re-qualification of the pipeline due to a changed design basis, such as service-life extension or change of the transported fluid, which can include reduced or increased uncertainties due to improved integrity monitoring and operational experience or limited information on pipeline properties relevant to the new service
— collapse under external pressure in deep water,
— extreme loads, such as seismic loads (e.g. at a fault crossing), ice loads (e.g. by impact from ice keels),
— situations where strain-based criteria can be appropriate.
This document applies to rigid metallic pipelines on-land and offshore used in oil and gas industries including lower carbon energy.
Toimialayhteisö:
Palvelualojen työnantajat PALTA
Komitea: ISO/TC 22/SC 34
(Propulsion, powertrain and powertrain fluids)
Alkuperä: ISO
Määräpäivä: 2026-10-27
This document establishes a vocabulary for high-pressure pipes and end-connections in fuel injection systems for diesel (compression-ignition) engines.
The terms defined in this document are required precisely for high-pressure pipes and end-connections in fuel injection systems.
Terms and definitions relating to other fuel injection equipment are found in the other parts of the ISO 7876 series.
NOTE When the word “fuel” is used in the terms listed it can be omitted providing there can be no misunderstanding.
This document specifies process and quality requirements for the biobanking of mammalian (including human) cell lines. It describes requirements for the fundamental procedures of the biobank handling cell lines, such as establishment, reception, identification, propagation, preservation, storage, quality control, and distribution of cell lines.
This document can be used by organizations performing biobanking activities with mammalian cell lines used for research and development, biobank users, organizations and schemes using peer-assessment and accreditation bodies.
This document does not apply to biological material intended for therapeutic use.
NOTE International, national or regional regulations or requirements can also apply to specific topics covered in this document.
This document specifies requirements for the biobanking of human and mouse pluripotent stem cells (PSCs), including the collection of biological source material and associated data, establishment, expansion, characterization, quality control (QC), maintenance, preservation, storage, thawing, disposal, distribution and transport.
This document is applicable to all organizations performing biobanking with human and mouse PSCs used for research and development.
This document does not apply to cell lines used for in vivo application in humans, clinical applications or therapeutic use.
NOTE International, national or regional regulations or requirements, or multiple of them, can also apply to specific topics covered in this document.
Toimialayhteisö:
Kemesta
Komitea: ISO/TC 35/SC 12
(Preparation of steel substrates before application of paints and related products)
Alkuperä: ISO
Määräpäivä: 2026-10-28
This document describes a field method for measuring the surface profile produced by any of the abrasive blast-cleaning procedures given in ISO 8504-2:2019 [1] . The method uses replica tape and a suitable gauge for measuring the roughness of a surface before the application of paint or another protective coating.
The method is applicable within the range of profile heights cited for a given grade (or thickness) of replica tape. The commercial grades currently available permit measurement of average peak-to-valley profiles of 12 µm to 150 µm. The method is valid for surfaces that have been cleaned with abrasives.