Toimialayhteisöt

Komitea: CEN/TC 332 (Laboratory equipment)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document is a product specification, giving performance requirements for plumbed-in multiple nozzle emergency safety body showers which are permanently connected to a water supply and installed on industrial and logistic sites. Emergency safety body showers using fluid other than water are not considered in this document. This document also specifies requirements in respect of installation, adjustment and marking of the showers as well as operation and maintenance instructions to be given by the manufacturer. NOTE 1 Plumbed-in emergency safety body showers designed for laboratory facilities are dealt with in EN 15154-1. NOTE 2 Water overhead body showers for sites other than laboratories are dealt with in FprEN 15154-5. NOTE 3 Attention is drawn to national regulations which can apply in respect of the installation and use of emergency safety showers.
Komitea: CEN/TC 269 (Shell and water-tube boilers)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document specifies the requirements for safeguards against excessive pressure in shell boilers as defined in EN 12953-1:2025.
Komitea: ISO/TC 206 (Fine ceramics)
Alkuperä: ISO
Määräpäivä: 2026-11-05
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This document describes a test method for the determination of the fracture toughness of monolithic ceramic thin plates at room temperature by the single-edge precracked plate method or the single-edge V-notch plate method. This document is intended for use with monolithic ceramics and whisker- or particulate-reinforced ceramics which are regarded as macroscopically homogeneous. It does not include continuous-fibre-reinforced ceramics composites. This document is applicable to ceramic thin plates with a thickness of 0,2 mm to =1,0 mm. The single-edge V-notch plate method can be applied to monolithic ceramics with a grain size larger than about 1 µm. The use of this method is inappropriate for yttria tetragonal zirconia polycrystal material (Y-TZP), which consists of homogeneous fine submicron grains. The method might also be unsuitable for some other very tough or soft ceramics in which a sharp crack does not form at the root of the V-notch. This document is applicable for material development, material comparison, quality assurance, characterization, reliability and design data generation. The Scope clause is a mandatory element of the text. For rules on the drafting of the Scope, refer to the ISO/IEC Directives, Part 2:2018, Clause 14.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/CLC/JTC 21 (Artificial Intelligence)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document specifies the evaluation of natural language processing systems, in the sense of measuring the quality of a system’s results to assess its functional suitability. It provides a definition of evaluation methods for those systems, together with guidance on how to select, implement and interpret those evaluation methods. This document covers quantitative metrics as well as other evaluation methods. It includes requirements on the implementation of the described metrics, and further requirements on the technical resources involved in the evaluation process.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 463 (Microbiology of the food chain)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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ISO 22118:2010 specifies minimum requirements of performance characteristics for the detection of nucleic acid sequences (DNA or RNA) by molecular methods. ISO 22118:2010 applies to the detection of food-borne pathogens in foodstuffs and isolates obtained from them using molecular detection methods based on the polymerase chain reaction (PCR). ISO 22118:2010 is also applicable, for example, to the detection of food-borne pathogens in environmental samples and in animal feeding stuffs.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 191 (Fixed firefighting systems)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document specifies design, assembly, installation and commissioning requirements for pump sets for use in sprinkler systems conforming to EN 12845:2015+A1:2019. Where applicable, this document can also be used for pump sets for other water based fixed firefighting systems.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/CLC/JTC 13 (Cybersecurity and Data Protection)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document provides guidance for sectoral stakeholders and product manufacturers in generating ICT product-relevant information based on EN 18037. Sectoral stakeholders are supported in applying the risk and cybersecurity assessment methodology so that the information needs of product manufacturers are covered by the sectoral assessment report. Product manufacturers receive guidance in using methodology according to EN 18037 for own assumptions of their ICT product’s sector-specific risks and security requirements. This document uses a step-by-step approach for guiding sectoral stakeholders and product manufacturers through the assessment. For each step, the relevant information provided by EN 18037 is summarized or referenced and the enhancements or clarifications in support of the information needs of the ICT product manufacturers are pointed out. From the perspective of product manufacturers, the re-use of existing product-specific specifications and certification tools is of particular relevance. Therefore, this document provides guidance how the results of sectoral assessments according to EN 18037 can be connected with these specifications and tools.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 289 (Leather)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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ISO 17234-2:2011 is supplementary to ISO 17234-1 and describes a special procedure to detect the use of certain azo colorants in commodities, which can release 4-aminoazobenzene. The procedure also detects 4-aminoazobenzene (Solvent Yellow 1) which is already available as free amine in commodities without reducing pretreatment. Azo colorants that are able to form 4-aminoazobenzene generate, under the conditions of ISO 17234-1, the amines aniline and 1,4-phenylenediamine. The presence of these 4-aminoazobenzene colorants cannot be reliably ascertained without additional information (e.g. the chemical structure of the colorant used) or without a special procedure.
Komitea: ISO/TC 188 (Small craft)
Alkuperä: ISO
Määräpäivä: 2026-11-05
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This document applies to small craft and defines a practical degree of fire prevention and protection intended to provide enough time for occupants to escape a fire on board small craft. This document does not apply to: — the design and installation of permanently installed galley stoves and heating appliances (including components used to distribute the heat) using fuels that are liquid at atmospheric pressure on small craft, which are covered by ISO 14895; — personal watercraft; — carbon monoxide detecting systems, which are covered by ISO 12133:2021 [1]; — portable equipment containing lithium-ion batteries.
Komitea: CEN/TC 464 (Small Craft)
Alkuperä: CEN
Määräpäivä: 2026-11-05
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This document defines a practical degree of fire prevention and protection intended to provide enough time for occupants to escape a fire on board small craft. It applies to small craft having a length of the hull (LH) of up to 24 m except for personal watercraft. This document does not cover: —    the design and installation of permanently installed galley stoves and heating appliances (including components used to distribute the heat) using fuels that are liquid at atmospheric pressure on small craft, which are covered by ISO 14895:2016; —    carbon monoxide detecting systems, which are covered by ISO 12133.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/TC 37/SC 5 (Translation, interpreting and related technology)
Alkuperä: ISO
Määräpäivä: 2026-11-06
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This document provides requirements for the process of human post-editing of non-human translation output and post-editors' competences. This document is intended to be used by translation service providers, clients and post-editors. It is applicable only to content generated by non-human translation systems. The nature and functioning of non-human translation systems is outside the scope of this document. NOTE For translation services in general, see ISO 17100:2015 [1].
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 264 (Air quality)
Alkuperä: CEN
Määräpäivä: 2026-11-06
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This document specifies the performance requirements, test procedures, operator proficiency, and operational requirements for a technique known as optical gas imaging (OGI).This document applies to the use of OGI cameras as part of an LDAR programme. It specifies the scope of application, performance requirements for OGI equipment and QA/QC procedures.This document focuses on LDAR programmes, applied to VOCs (including methane), but a similar approach could be applied to other compounds that have IR spectral properties that enable visualization, by adapting the selection of OGI cameras having a detector with a different bandwidth.Different types of technologies for OGI camera exist on the market, such as detectors which are either cooled or uncooled, as well as active and passive OGI cameras. However, this document focuses on the utilization of the most commonly utilized technology, the passive OGI cameras. Despite this, a similar approach could be applied to the use of active OGI cameras.


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Komitea: ISO/TC 20/SC 16 (Uncrewed aircraft system)
Alkuperä: ISO
Määräpäivä: 2026-11-06
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This document includes compliance monitoring, safety, security, privacy and other organisational requirements for providers in the context of UAS traffic management services. Counter-UAS is not considered an UTM service.
Toimialayhteisö: Kemesta
Komitea: ISO/TC 276 (Biotechnology)
Alkuperä: ISO
Määräpäivä: 2026-11-09
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This document provides requirements on the workflow and quality assessment of single cell RNA sequencing (scRNA-seq) data processing for eukaryotic cells. This document provides guidelines for raw data quality control, alignment and mapping, and cell barcode correction for single cell RNA sequencing. This document specifies the requirements for visualization and cell type identification of scRNA-seq data.
Komitea: ISO/TC 44/SC 5 (Testing and inspection of welds)
Alkuperä: ISO
Määräpäivä: 2026-11-09
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This document specifies the application of phased array technology for the semi- or fully automated ultrasonic testing of fusion-welded joints in steel parts with thickness values between and including 3,2 mm and 8,0 mm. This meets the typical range of tube wall thickness values in boilers, which is an important application of this testing technology. The minimum and maximum value of the wall thickness range can be exceeded, when testing level “D” of this document is applied. This document applies to full penetration welded joints of simple geometry in plates, tubes, pipes, and vessels, where both the weld and parent material are low-alloy and/or fine grained steel. NOTE “Semi-automated testing” encompasses a controlled movement of one or more probes on the surface of a component along a fixture (guidance strip, ruler, etc.), whereby the probe position is unambiguously measured with a position sensor. The probe is moved manually. “Fully automated testing” includes mechanized propulsion in addition. Where material-dependent ultrasonic parameters are specified in this document, they are based on steels having a sound velocity of (5 920 ± 50) m/s for longitudinal waves, and (3 255 ± 30) m/s for transverse waves. It is necessary to take this fact into account when testing materials with a different velocity. This document provides guidance on the specific capabilities and limitations of phased array technology for the detection, location, sizing and characterization of discontinuities in fusion-welded joints. Ultrasonic phased array technology can be used as a stand-alone technique or in combination with other non-destructive testing (NDT) methods or techniques, during manufacturing and testing of new welds/repair welds (pre-service testing). This document specifies two testing levels: level “C” for standard situations; — level “D” for different situations/special applications. This document describes assessment of discontinuities for acceptance purposes based on: height and length; — amplitude (equivalent reflector size) and length; — go/no-go decision. This document does not include acceptance levels for discontinuities.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 17 (Cards and security devices for personal identification)
Alkuperä: ISO
Määräpäivä: 2026-11-09
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This document specifies the power, signal structures, and the structure for the answer to reset between an integrated circuit(s) card with synchronous transmission and an interface device such as a terminal. The specifications in iso:proj:38770ISO/IEC 7816-3 apply where appropriate, unless otherwise stated here. It also covers signal rates, operating conditions, and communication with the integrated circuit(s) card. This document specifies two types of synchronous cards: type 1 and type 2.
Komitea: ISO/TC 159 (Ergonomics)
Alkuperä: ISO
Määräpäivä: 2026-11-09
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This document provides general requirements and recommendations based on ergonomic principles to improve the quality of services in situations where service providers and users interact. The purpose of this document is to improve service quality for service users by applying ergonomic principles. Therefore, this document specifies considerations for all users in service provision. This document is not limited to specific service types and applies to a wide range of services; details of the services covered are given in Annex C. This document is intended for use by the following types of target groups: 1. Groups that provide services directly — Service providers who provide services directly to users 2. Groups that plan and manage the services — Those who are responsible for planning, managing and operationalising service provision. — Those who procure services — Those who plan and create services 3. Groups that evaluate services — Those who evaluate services by conducting research on and identifying user needs and behaviours NOTE 1 Service providers may be governments, enterprises or individuals and may be for-profit or not-for-profit. NOTE 2 This document does not specify the requirements and recommendations for the organizational management practices of service provision, nor does it address ergonomic aspects related to employees. For organizational ergonomic principles, see ISO 27500 series on human-centered organization.
Komitea: ISO/TC 44/SC 5 (Testing and inspection of welds)
Alkuperä: ISO
Määräpäivä: 2026-11-09
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This document specifies two ultrasonic acceptance levels known as acceptance level 2 (AL 2) and acceptance level 3 (AL 3) for full penetration welded joints in ferritic steels, in accordance with the quality levels of iso:proj:80209ISO 5817. These acceptance levels are applicable to testing carried out in accordance with ISO 17640. This document applies to the testing of fusion-welded joints in metallic materials with low sound attenuation (especially that due to scatter) with thicknesses from 8 mm to 100 mm. It is primarily intended for use on full penetration welded joints where both the welded and parent materials are ferritic. It can also be used for other types of welds, materials and thicknesses, provided the tests have been performed with necessary consideration of the geometry and acoustic properties of the component, and an adequate sensitivity can be employed to enable the acceptance levels of this document to be applied. The nominal frequency of probes used in this document is between 2 MHz and 5 MHz, unless attenuation or requirements for higher resolution call for other frequencies. It is important to consider the use of these acceptance levels in conjunction with frequencies outside this range carefully.