Toimialayhteisöt
Toimialayhteisö:
SFS Suomen Standardit
Komitea: CEN/TC 353
(Technologies supporting education and learning processes)
Alkuperä: CEN
Määräpäivä: 2026-07-23
The primary purpose of ISO/IEC 19788 is to specify metadata elements and their attributes for the description of learning resources. This includes the rules governing the identification of data elements and the specification of their attributes. ISO/IEC 19788 provides data elements for the description of learning resources and resources directly related to learning resources.
ISO/IEC 19788-3:2011 is designed to help implementers with a starting point for adopting ISO/IEC 19788, defining an application profile that specifies, through adding constraints to the use of some data elements, how the ISO/IEC 19788-2 element set can be used.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: CEN/TC 224
(Personal identification and related personal devices with secure element, systems, operations and privacy in a multi sectorial environment)
Alkuperä: CEN
Määräpäivä: 2026-07-23
This document specifies cybersecurity requirements and associated assessment requirements for identity management systems that qualify as products within the meaning of Regulation (EU) 2024/2847. Such products are classified as important products (class 1) according to the implementing regulation Commission Implementing Regulation (EU) 2025/2392.
This document covers:
- general description of the product belonging to that category and the product and/or components such product with digital elements;
- description of their use case;
- security analysis;
- definition of applicable risk profiles to be considered for these product with digital elements;
- applicable cybersecurity requirements for each risk profile;
- applicable cybersecurity assessment and test requirements for each risk profile.
- general description of the product belonging to that category and the product and/or components such product with digital elements;
- description of their use case;
- security analysis;
- definition of applicable risk profiles to be considered for these product with digital elements;
- applicable cybersecurity requirements for each risk profile;
- applicable cybersecurity assessment and test requirements for each risk profile.
Product not in the scope of this document:
- chip, Embedded OS, Applets;
- PKI products;
- cyber security products needed for securing IT infrastructures (VPN, SIEM….);
- all products that are classified as default such as the anti-fire detectors products.
- chip, Embedded OS, Applets;
- PKI products;
- cyber security products needed for securing IT infrastructures (VPN, SIEM….);
- all products that are classified as default such as the anti-fire detectors products.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: CEN/TC 224
(Personal identification and related personal devices with secure element, systems, operations and privacy in a multi sectorial environment)
Alkuperä: CEN
Määräpäivä: 2026-07-23
This document defines cyber security requirements for products with digital elements belonging to product category “Hardware Device with Security Boxes” (hereinafter called “Product” or “HWSB product”).
The technical description of “Hardware Devices with Security Boxes” can be found in Annex II of [CRA].
The Hardware Devices with Security Boxes in scope are designed for deployment in a range of environments and where the threat landscape includes attackers with various attack potential.
HWSB are hardware-based systems intended to provide secure storage, processing and use of sensitive data, including cryptographic assets, within a protected hardware boundary (envelope).
This document applies to the HWSB part of the product. The applicability of this document to specific products is determined based on their intended purpose, use case and risk assessment.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: CEN/TC 251
(Health informatics)
Alkuperä: CEN
Määräpäivä: 2026-07-23
ISO 25237:2017 contains principles and requirements for privacy protection using pseudonymization services for the protection of personal health information. This document is applicable to organizations who wish to undertake pseudonymization processes for themselves or to organizations who make a claim of trustworthiness for operations engaged in pseudonymization services. ISO 25237:2017
- defines one basic concept for pseudonymization (see Clause 5),
- defines one basic methodology for pseudonymization services including organizational, as well as technical aspects (see Clause 6),
- specifies a policy framework and minimal requirements for controlled re-identification (see Clause 7),
- gives an overview of different use cases for pseudonymization that can be both reversible and irreversible (see Annex A),
- gives a guide to risk assessment for re-identification (see Annex B),
- provides an example of a system that uses de-identification (see Annex C),
- provides informative requirements to an interoperability to pseudonymization services (see Annex D), and
- specifies a policy framework and minimal requirements for trustworthy practices for the operations of a pseudonymization service (see Annex E).
Toimialayhteisö:
SFS Suomen Standardit
Komitea: CEN/TC 238
(Test gases, test pressures, appliance categories and gas appliance types)
Alkuperä: CEN
Määräpäivä: 2026-07-23
Toimialayhteisö:
Suomen ympäristökeskus
Komitea: CEN/TC 230
(Water analysis)
Alkuperä: CEN
Määräpäivä: 2026-07-23
ISO 13164-2:2013 specifies a test method for the determination of radon-222 activity concentration in a sample of water following the measurement of its short-lived decay products by direct gamma-spectrometry of the water sample.
The radon-222 activity concentrations, which can be measured by this test method utilizing currently available gamma-ray instruments, range from a few becquerels per litre to several hundred thousand becquerels per litre for a 1 l test sample.
This test method can be used successfully with drinking water samples. The laboratory is responsible for ensuring the validity of this test method for water samples of untested matrices.
An annex gives indications on the necessary counting conditions to meet the required sensitivity for drinking water monitoring.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 27
(Information security, cybersecurity and privacy protection)
Alkuperä: ISO
Määräpäivä: 2026-07-23
This document provides guidelines on how to manage the risks and navigate the threats that can arise during the big data life cycle from the various big data characteristics that are unique to big data: volume, velocity, variety, variability, volatility, veracity, validity and value, including when using big data for the design and implementation of artificial intelligence (AI) systems.
This document can help organizations build or enhance their big data security and privacy capabilities, including when using big data in the development and use of AI systems. This document is applicable to all organizations that develop or use big data systems, regardless of their type, size or purpose.
Toimialayhteisö:
Palvelualojen työnantajat PALTA
Komitea: ISO/TC 106/SC 1
(Filling and restorative materials)
Alkuperä: ISO
Määräpäivä: 2026-07-24
This document specifies the requirements and their test methods applicable to all elastomeric auxiliaries used for orthodontics both inside and outside the mouth, in conjunction with fixed and removable appliances.
The work item aims to differentiate between biodegradable and non-biodegradable plastic materials. Non-biodegradable plastics are defined as those plastics which do not biodegrade, even in conditions which are conducive to the process. In contrast, the biodegradation of biodegradable plastics occurs when they come into contact with active microorganisms, under conditions that are conducive to biodegradation. This process is analogous to the biodegradation of natural polymers. The plastic materials that are categorised as being intrinsically biodegradable can be utilised in the design of products with a high risk of dispersion. The test scheme is not intended to be applicable to any specific application. Instead, the objective is to develop a framework methodology that can be utilised across diverse industrial sectors for the identification of biodegradable plastics, with the subsequent application of these plastics in the manufacture of various products and for different purposes. The work item does not intend to characterise and evaluate the environmental impact of products containing plastics identified as biodegradable. The test scheme should address the definition of intrinsic biodegradability of plastic materials, without determining the hazard potential of the products, which necessitates a distinct assessment that extends beyond the scope of this particular work item. The rate of biodegradation of a plastic object is not the focus of this particular work item, as it is contingent on environmental conditions. The test scheme to be developed will not be sufficient to carry out an analysis of the ecological risk associated with the dispersal of products, as this requires an assessment of the intrinsic hazard, of the environmental fate, in addition to the assessment of biodegradability.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 150
(Industrial Trucks - Safety)
Alkuperä: CEN
Määräpäivä: 2026-07-25
This document is applicable to self-propelled and pedestrian propelled manual and semi-manual industrial trucks as defined in ISO 5053 1:2020 including their load handling devices and attachments (hereafter referred to as trucks) intended for use in potentially explosive atmospheres.NOTE 1 Attachments mounted on the load carrier or on fork arms which are removable by the user are not considered to be a part of the truck.This document specifies supplementary technical requirements for the prevention of the ignition of an explosive atmosphere of flammable gases, vapours, mists or dusts by industrial trucks of equipment group II and equipment category 2G, 3G, 2D or 3D.NOTE 2 The relationship between an equipment category (hereafter referred to as category) and the corresponding zone (area classification) is shown in informative Annex B.This document does not apply to:— trucks of equipment group I;— trucks of equipment group II, equipment category 1;— trucks intended for use in potentially explosive atmospheres with hybrid mixtures;— protective systems.This document does not apply to trucks intended for use in potentially explosive atmospheres of carbon disulfide (CS2), carbon monoxide (CO) and/or ethylene oxide (C2H4O) due to the special properties of these gases.Technical requirements relating to lithium-ion batteries and fuel cells as energy sources are not given in this document due to their specific hazards.
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Toimialayhteisö:
Suomen ympäristökeskus
Komitea: ISO/TC 190/SC 3
(Chemical and physical characterization)
Alkuperä: ISO
Määräpäivä: 2026-07-26
This document provides a method for the simultaneous analysis of multi-class pesticide residues in soil using gas chromatography-tandem mass spectrometry (GC-MS/MS) and liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis following extraction with acetonitrile and buffering salts mixture, and cleanup via dispersive solid-phase extraction (d-SPE). This document is applicable to the 30 target analytes listed in Table 1. This document can be applicable to other pesticide residues if their validity is confirmed.
Toimialayhteisö:
SFS Suomen Standardit
Komitea: ISO/TC 133
(Clothing sizing systems - size designation, size measurement methods and digital fittings)
Alkuperä: ISO
Määräpäivä: 2026-07-29
This document provides a description of anthropometric measurements that can be used as a basis for the creation of physical and digital anthropometric databases. The list of measurements specified in this part ISO 8559-6 is intended to serve as a guide for practitioners in the field of clothing who are required to apply their knowledge to select population market segments and to create size and shape profiles for the development of all contour fitting garment types which extend from the torso and shoulder to the breast and their equivalent fitness. The list provides a guide for how to take anthropometric measurements, as well as give information to clothing product development teams and innerwear manufacturers on the principles of measurement and their underlying anatomical and anthropometrical bases.
It is intended to use this part ISO 8559-6 in conjunction with national, regional or international regulations or agreements to ensure harmony in defining population groups and to allow comparison of anthropometric data sets.
Toimialayhteisö:
Kemesta
Komitea: ISO/TC 61/SC 9
(Thermoplastic materials)
Alkuperä: ISO
Määräpäivä: 2026-07-29
This document is a standard template for developing and revising integrated All-in-One material designation standards for virgin and recycled thermoplastic materials, and a mixture thereof. It establishes a designation system to ensure uniformity in structure, style, and terminology, preventing misinterpretation caused by using different wording for identical provisions in standard documents.
The code number for a designatory property range in Data block 4 for a thermoplastic material is assigned solely to provide a designation.
Data block 4 is not intended to provide a detailed specification for a particular application. Instead, the detailed specification agreed upon between the parties involved is linked to the document using Data block 5.
For cases where the corresponding recycled thermoplastic material is not present, (Template) 6 and 7 are not used.
When a material designation standard is revised using this template and introduces significant format changes or technical amendments, the revised standard is published under a new number. This is intended to prevent any potential issues arising from existing references in legal documents or contracts.
Toimialayhteisö:
Kemesta
Komitea: ISO/TC 6/SC 2
(Test methods and quality specifications for paper and board)
Alkuperä: ISO
Määräpäivä: 2026-07-29
This part of ISO 1924 specifies a method for measuring the tensile strength, strain at break and tensile energy absorption of paper and board, using a testing machine operating at a constant rate of elongation (20 mm/min). This part of ISO 1924 also specifies equations for calculating the tensile index, the tensile energy absorption index and the modulus of elasticity.
Testing in conformance with this part of ISO 1924 always includes the measurement of tensile strength. Measurement or calculation of other properties is subject to agreement between the parties concerned.
This part of ISO 1924 is applicable to all papers and boards, including papers with a high strain at break if the results are within the capacity of the testing machine. It also applies to the components of corrugated board but not, however, to corrugated board itself.
This part of ISO 1924 is not applicable to tissue paper and tissue products for which ISO 12625-4[2] is applicable. For the determination of tensile properties of laboratory sheets, ISO 5270[3] is recommended.
Toimialayhteisö:
Kemesta
Komitea: CEN/TC 172
(Pulp, paper and board)
Alkuperä: CEN
Määräpäivä: 2026-07-30
ISO 1924-2:2008 specifies a method for measuring the tensile strength, strain at break and tensile energy absorption of paper and board, using a testing machine operating at a constant rate of elongation (20 mm/min). ISO 1924-2:2008 also specifies equations for calculating the tensile index, the tensile energy absorption index and the modulus of elasticity.
Testing in conformance with ISO 1924-2:2008 always includes the measurement of tensile strength. Measurement or calculation of other properties is subject to agreement between the parties concerned.
ISO 1924-2:2008 is applicable to all papers and boards, including papers with a high strain at break if the results are within the capacity of the testing machine. It also applies to the components of corrugated board but not, however, to corrugated board itself.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 147
(Cranes - Safety)
Alkuperä: CEN
Määräpäivä: 2026-07-30
This document is applicable to the design, information for use, maintenance and testing of power-driven winches for which the prime mover is an electric motor, hydraulic motor, or pneumatic motor. Winches are designed for the movement or manipulation of loads supported on level or inclined planes in situations where risks resulting from a failure of the winding mechanism or pulling medium are mitigated by external measures.
This document is not applicable to devices which handle suspended loads.
Generally, a winch is used without any additional transport movement, except in cases where a winch is used on a stranded vehicle for self-recovery of the vehicle.
Applications of winches covered are for example, but not limited to:
a) rope winches;
b) belt winches, except steel belts used as pulling media;
c) traction winches, including double capstan and traction sheave winches.
These types of winches a) to c) also include the following specific applications:
— vehicle recovery winches;
— winches for boat trailers;
— winches for stationary offshore applications.
NOTE Examples are shown in Annex H.
This document does not apply to:
— power-driven hoists in accordance with EN 14492-2;
— forestry winches in accordance with EN ISO 19472-1;
— winches for seagoing vessels and mobile offshore units;
— winches for the lifting of persons;
— NGL building hoists in accordance with EN 14492-2;
— winches for the handling of hot molten masses.
This document deals with the significant hazards, hazardous situations or hazardous events relevant to power driven winches when used as intended and under conditions of misuse which are reasonably foreseeable, identified in Annex A.
This document does not specify additional requirements for hazards related to the use of power driven winches in explosive atmospheres in underground mines.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 438
(Additive Manufacturing)
Alkuperä: CEN
Määräpäivä: 2026-07-30
This document identifies common failure modes, which can occur within operations across additive manufacturing (AM) process categories defined in ISO/ASTM 52900. It lists state-of-the-art failure modes, which can lead to risks within AM parts and equipment, as well as providing informative examples of corresponding failure effects and mitigation actions.
This document can be used to aid manufacturers in their risk management. While doing so it supports the implementation of AM as a production method within critical applications and regulated industries. This document helps to address the requirements for risk management set by regulated industries for part and production method compliance.
Technology specific failure modes will be addressed in separate standards, including but not limited to PBF-LB/M, PBF-LB/P, MEX, MJT, BJT, and DED.
This document aims to close the existing gap between general risk management standards, such as ISO 31000 or ISO 14971 (medical), and the know-how gap of existing failure modes of the AM process category and their integrated workflow.
The standard maps risks according to AM processes defined within ISO/ASTM 52920.
This document does not cover environment, health and safety risks and will not measure, assess, or evaluate the risk impact on the AM part to be produced. It does not list the part specific input and output parameters, during the respective process steps. This task is dedicated to the risk management evaluation teams, which usually comprise quality managers and product domain specific experts.
The document enables all part owners and manufacturers to use it for the risk mapping activities, to support subsequent risk assessments, continuous improvement, validation planning, estimation of manufacturing efforts, and conformity audits.
For risk examples that are relevant only to specific AM machinery brands, manufacturers might consider use of the informative annex.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 121
(Welding and allied processes)
Alkuperä: CEN
Määräpäivä: 2026-07-30
This document defines the rules to be applied for symbolic representation of welded joints on technical drawings. This can include information about the geometry, manufacture, quality and testing of the welds. The principles of this document can also be applied to soldered and brazed joints.
It is recognized that there are two different approaches in the global market to designate the arrow side and other side on drawings. In this document:
— clauses, tables and figures which carry the suffix letter "A" are applicable only to the symbolic representation system based on a dual reference line;
— clauses, tables and figures which carry the suffix letter "B" are applicable only to the symbolic representation system based on a single reference line;
— clauses, tables and figures which do not have the suffix letter "A" or "B" are applicable to both systems.
The symbols shown in this document can be combined with other symbols used on technical drawings, for example to show surface finish requirements.
An alternative designation method is presented which can be used to represent welded joints on drawings by specifying essential design information such as weld dimensions, quality level, etc. The joint preparation and welding process(es) are then determined by the production unit in order to meet the specified requirements.
NOTE Examples given in this document, including dimensions, are illustrative only and are intended to demonstrate the proper application of principles.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 184
(Advanced technical ceramics)
Alkuperä: CEN
Määräpäivä: 2026-07-30
This document specifies two test methods for the determination of the resistance of the edges of brittle ceramic materials to be damaged by chipping.
This document is applicable to homogeneous monolithic ceramics with flat surfaces and straight sharp or chamfered edges.
Toimialayhteisö:
Metalliteollisuuden Standardisointiyhdistys
Komitea: CEN/TC 438
(Additive Manufacturing)
Alkuperä: CEN
Määräpäivä: 2026-07-30
This document specifies guidelines and recommendations to be followed prior to carrying out
dimensional measurements on three-dimensional (3D) volumetric X-ray Computed Tomographic (XCT)
images of additive manufacturing (AM) series production parts. It is applicable to cone beam XCT
systems. However, these guidelines and recommendations can easily be transposed to fan beam XCT
systems.
The process to be followed prior to performing dimensional measurement on 3D volumetric XCT
images of AM series production parts, in this standard, is divided into two steps:
Step 1: Quantification of an XCT system performance, in terms of image quality and basic
dimensional measurement accuracy, with a reference object and eventually a Representative Quality
Indicators (RQI), with the specific part (part chosen from the AM series production parts) XCT setting
under certain environmental conditions. This step leads to the determination of the image quality, the
voxel size and the basic dimensional measurement accuracy of an XCT system;
Step 2: Validation of the XCT system compliance, in terms of dimensional measurement accuracy,
with the specific part, with the chosen XCT setting under the specific environmental conditions. This
step leads to a simplified determination of the dimensional measurement uncertainty of each
measurand of the specific part.
If step 1 does not comply with the set requirements, the XCT system cannot be used for step 2.
This document does not claim to provide a definitive method to determine XCT dimensional
measurement accuracy, which, given the complexity of an XCT process, is not yet established. For the
same reason, it is addressed to qualified XCT operators with the support of metrology experts.
This document is dedicated to AM series production parts and its aim is to provide a methodology for
controlling the geometric specificities associated with AM (internal shapes, lattice structures). It is
applicable on parts that are fabricated by any type of AM categories of processes and material
provided the X-ray penetration lengths are sufficient to scan the test part.
These prior quantification and validation processes, which allow dimensional measurements to be carry
out on 3D volumetric XCT images of AM series production parts, are valid for a specific part geometry
in a given material associated with a chosen XCT setting (magnification & XCT acquisition and
reconstruction parameters of the specific part) under specific environmental conditions for the
measurands specified. The quantification and validation processes are reconsidered when different
geometry of the part or material or XCT setting or environmental conditions or measurands are taken
into account.