Toimialayhteisöt

Komitea: ISO/TC 22/SC 31 (Data communication)
Alkuperä: ISO
Määräpäivä: 2026-09-11
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This document specifies the CAN-based data communication between the display unit and other devices connected to an SAE J1939-based in-vehicle network. The provided requirements and recommendations cover physical, data link, network, and application layers according to the OSI reference model. Additionally, it specifies the parameter groups, which are supported.
Komitea: ISO/TC 22/SC 31 (Data communication)
Alkuperä: ISO
Määräpäivä: 2026-09-11
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This document specifies the CAN-based and K-Line-based communication protocols between recording equipment and service tools for software download and calibration purposes. The requirements and recommendations provided herein address the physical, data link, network, session, and application layers in accordance with the OSI reference model as well as the unified diagnostics services.
Komitea: ISO/TC 22/SC 31 (Data communication)
Alkuperä: ISO
Määräpäivä: 2026-09-11
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This document specifies the parameters used on the service interface of the recording equipment. Some of them are specified in detail in this document, while others are given in the ISO 14299 series.
Toimialayhteisö: Suomen ympäristökeskus
Komitea: ISO/TC 190 (Soil quality)
Alkuperä: ISO
Määräpäivä: 2026-09-11
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This document provides guidance on the description of soil in the field and its environmental context. It is applicable to natural, near-natural, urban and industrial sites. The soil observations and measurements can be made on a project site level, on a plot level, on layer or horizon level and on specific soil constituents. It also provides guidance on how to describe layers of anthropogenic (artificial) material or layers that were not modified by pedogenic processes in the strict sense and how to describe coarse material of natural or artificial origin. This document can be used in combination with other publications that provide guidance or requirements regarding specific aspects of soil observations and measurements. NOTE 1 It might not be possible or necessary to record data under all the headings listed in Clause 4 to Clause 11. NOTE 2 Overall guidance for presentation of information from soil surveys is given in ISO 15903 [2]. NOTE 3 The guidance provided assumes that sampling is done in accordance with ISO 18400.
Komitea: ISO/TC 118/SC 3 (Pneumatic tools and machines)
Alkuperä: ISO
Määräpäivä: 2026-09-12
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This document provides the basis for the drafting of vibration test codes for hand-held and hand-guided machinery. It specifies the determination of hand-transmitted continuous vibration and repeated shock vibration emission values during type testing. For machinery where vibration test codes do not exist, it may also be used for determination of vibration emission values and contains sufficient guidance for designing an appropriate test. This document does not apply — to fixed machinery in which the vibration is transmitted to the hand-arm system through the workpiece, and, — to mobile machinery where the operator's position is on the machine, see EN 1032.
Komitea: ISO/TC 2/SC 7 (Reference standards)
Alkuperä: ISO
Määräpäivä: 2026-09-12
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This document specifies width across flats dimensions for fasteners with external hexagon drive, for use in appropriate product standards and other relevant documents, e.g. for parts per drawing. This document is applicable to hexagon head bolts, screws and nuts with ISO metric thread, with or without flange. It may also be applicable to other types of fasteners (e.g. square head bolts, tapping screws with hexagon head, cylindrical nuts with flats, etc.).
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/TC 211 (Geographic information/Geomatics)
Alkuperä: ISO
Määräpäivä: 2026-09-14
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This document provides a description of the numbering system replacing the DOMES numbering (see Annex A). The document provides a proper and unique identification of the permanently instrumented stations, (e.g., those used in the production of the International Terrestrial Reference Frame (ITRF) and other similar stations) to the geodetic data producers and users, with special emphasis on the backward compatibility with existing DOMES numbers. It is expected to have a positive impact on interoperability issues when merging data from different communities. This document will: support interoperability among GNSS providers including Global Positioning System (GPS), GLObalnaya NAvigatsionnaya Sputnikovaya Sistema (GLONASS), BeiDou Navigation Satellite System (BDS), Galileo, NavIC (Navigation with Indian Constellation), and Quasi-Zenith Satellite System (QZSS); clarify the potential confusion between communities which have already adopted their own numbering systems; support the United Nations Committee of Experts on Global Geospatial Information Management (UN-GGIM) Global Geodetic Reference Frame (GGRF) resolution on global geodetic infrastructure.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 29 (Coding of audio, picture, multimedia and hypermedia information)
Alkuperä: ISO
Määräpäivä: 2026-09-15
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This document extends the framework described in ISO/IEC 21617-1 (JPEG Trust Part 1 - Core Foundation) with watermarking capabilities for purposes such as content authenticity, provenance, integrity, intellectual property rights, and labelling. These extensions include aspects of an algorithm-agnostic embedding and extraction process, the signalling of the presence of a watermark, the structure of the watermark, evaluation criteria, and pointers to repositories containing additional information.
Komitea: ISO/TC 172/SC 7 (Ophthalmic optics and instruments)
Alkuperä: ISO
Määräpäivä: 2026-09-15
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This document specifies the minimum requirements for complete single-vision ready-to-wear near-vision spectacles. These spectacles are not intended for regular use without the approval of an eye-care professional.
Toimialayhteisö: SFS Suomen Standardit
Komitea: ISO/IEC JTC 1/SC 29 (Coding of audio, picture, multimedia and hypermedia information)
Alkuperä: ISO
Määräpäivä: 2026-09-15
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MPEG-4 audio reference software provides a normative decoder implementation for the iso:proj:76383ISO/IEC 14496-3:2019 standard. It is normative in the sense that the decoder will produce conforming output for any conforming bitstream. Conforming iso:proj:76383ISO/IEC 14496-3:2019 implementations are not expected to follow the algorithms or the programming techniques used by the reference software but may be used as a starting point for the implementation or for verification of conforming implementations. Although the decoding software is considered normative, it cannot add anything to the textual technical description included in part 3 of ISO/IEC 14496.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 251 (Health informatics)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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This standard establishes a normative definition of communication between personal telehealth insulin pump devices (agents) and managers (e.g., cell phones, personal computers, personal health appliances, set top boxes) in a manner that enables plug-and-play interoperability. It leverages work done in other ISO/IEEE 11073 standards including existing terminology, information profiles, application profile standards, and transport standards. It specifies the use of specific term codes, formats, and behaviors in telehealth environments, restricting optionality in base frameworks in favor of interoperability. This standard defines a common core functionality of personal telehealth insulin pump devices.
 
In the context of personal health devices (PHDs), an insulin pump is a medical device used for the administration of insulin in the treatment of diabetes mellitus, also known as continuous subcutaneous insulin infusion (CSII) therapy.
 
This standard provides the data modeling according to ISO/IEEE 11073-20601 and does not specify the measurement method.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 251 (Health informatics)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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Abstract: Within the context of the ISO/IEEE 11073 family of standards for device communication, this standard establishes a normative definition of the communication between personal strength fitness devices and managers (e.g., cell phones, personal computers, personal health appliances, and set top boxes) in a manner that enables plug-and-play interoperability. It leverages appropriate portions of existing standards including ISO/IEEE 11073 terminology and information models. It specifies the use of specific term codes, formats, and behaviors in telehealth environments restricting optionality in base frameworks in favor of interoperability. This standard defines a common core of communication functionality for personal telehealth strength fitness devices. In this context, strength fitness devices are being used broadly to cover strength fitness devices that measure musculo-skeletal strength-conditioning activities.
 
Keywords: medical device communication, personal health devices, strength fitness equipment
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 251 (Health informatics)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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Within the context of the ISO/IEEE 11073 family of standards for device communication, ISO/IEEE 11073-10417:2017 establishes a normative definition of communication between personal telehealth glucose meter devices and compute engines (e.g., cell phones, personal computers, personal health appliances, and set top boxes) in a manner that enables plug-and-play interoperability. It leverages appropriate portions of existing standards, including ISO/IEEE 11073 terminology, information models, application profile standards, and transport standards. It specifies the use of specific term codes, formats, and behaviors in telehealth environments restricting optionality in base frameworks in favor of interoperability. This standard defines a common core of communication functionality for personal telehealth glucose meters.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 251 (Health informatics)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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Within the context of the ISO/IEEE 11073 family of standards for device communication, a normative definition of the communication between personal basic electrocardiograph (ECG) devices and managers (e.g. cell phones, personal computers, personal health appliances, and set top boxes) in a manner that enables plug-and-play interoperability is established in ISO/IEEE11073-10406:2012. Appropriate portions of existing standards including ISO/IEEE 11073 terminology and IEEE 11073-20601 information models are leveraged. The use of specific term codes, formats and behaviours in telehealth environments restricting optionality in base frameworks in favour of interoperability is specified. A common core of communication functionality for personal telehealth basic ECG (1- to 3-lead ECG) devices is defined. Monitoring ECG devices are distinguished from diagnostic ECG equipment with respect to support for wearable ECG devices, limiting the number of leads supported by the equipment to three, and not requiring the capability of annotating or analysing the detected electrical activity to determine known cardiac phenomena. ISO/IEEE 11073-10406:2012 is consistent with the base framework and allows multifunction implementations by following multiple device specializations (e.g. ECG and respiration rate).
Komitea: ISO/TC 204 (Intelligent transport systems)
Alkuperä: ISO
Määräpäivä: 2026-09-17
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This document specifies the in-vehicle information (IVI) data structures that are required by different intelligent transport system (ITS) services for exchanging information between ITS stations (ITS-S). A general, extensible data structure is specified, which is split into structures called containers to accommodate current-day information. Transmitted information includes IVI such as contextual speed, road works warnings, vehicle restrictions, lane restrictions, road hazard warnings, location-based services and re-routing. The information in the containers is organized in sub-structures called data frames and data elements, which are described in terms of their content and syntax. The data structures are specified as communications-agnostic. This document does not provide the communication protocols. This document provides scenarios for usage of the data structure, e.g. in case of real time, short-range communications.
Komitea: CEN/TC 278 (Intelligent transport systems)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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This document specifies the in-vehicle information (IVI) data structures that are required by different intelligent transport system (ITS) services for exchanging information between ITS stations (ITS-S). A general, extensible data structure is specified, which is split into structures called containers to accommodate current-day information. Transmitted information includes IVI such as contextual speed, road works warnings, vehicle restrictions, lane restrictions, road hazard warnings, location-based services and re-routing. The information in the containers is organized in sub-structures called data frames and data elements, which are described in terms of their content and syntax. The data structures are specified as communications-agnostic. This document does not provide the communication protocols. This document provides scenarios for usage of the data structure, e.g. in case of real time, short-range communications.
Toimialayhteisö: SFS Suomen Standardit
Komitea: CEN/TC 287 (Geographic Information)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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This standard will provide a description of the numbering system replacing the DOMES numbering. The description of the DOMES numbering can be found in MERIT/COTES joint working groups, MERIT campaign: connection of reference frames, implementation plan, 1983. The standard will provide to the geodetic data producers and users a proper identification of the permanently instrumented stations, (e.g. those used in the production of the International Terrestrial Reference Frame and other similar stations), with special emphasis on the backward compatibility with existing DOMES numbers, which will have a positive impact on interoperability issues when merging several data from different communities. This standard will: • support interoperability among GNSS providers (GPS, GLONASS, GALILEO, BEIDOU, …) • clarify the potential confusion between communities which have already adopted their own numbering systems • support the UNGGIM GGRF resolution on global geodetic infrastructure.
Komitea: CEN/TC 150 (Industrial Trucks - Safety)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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This document specifies the safety requirements of self-propelled rough-terrain variable-reach trucks (hereafter referred to as trucks), intended to handle loads, equipped with a telescopic lifting means (pivoted boom), on which a load handling device (e.g. carriage and fork arms) is fitted. For the purpose of this document, rough-terrain variable-reach trucks are designed to transport, lift and place loads and can be driven on unimproved terrain. Fork arms are considered to be part of the truck. Trucks can also be equipped with a variety of attachments (e.g. bale spikes, mowers, sweepers). This document deals with all the significant hazards, hazardous situations and events relevant to the trucks when they are used as intended and under conditions of misuse which are reasonably foreseeable by the manufacturer (see Annex A). This document does not apply to: — slewing rough-terrain variable-reach trucks covered by EN 1459 2:2015+A1:2018; — rough-terrain variable-reach tractors covered by prEN 17968:2025; — industrial variable reach trucks covered by EN ISO 3691 2:2023; — lorry-mounted variable-reach trucks covered by ISO 20297 1:2017; — variable-reach trucks fitted with tilting or elevating operator position; — mobile cranes covered by EN 13000:2010+A1:2014; — machines designed primarily for earth moving, even if their buckets and blades are replaced with forks (see EN 474 series); — trucks designed primarily with variable length load suspension elements (e.g. chain, ropes) from which the load may swing freely in all directions; — trucks designed primarily for container handling; — trucks on tracks; — trucks with articulated chassis; — attachments. This document does not cover sales literature. This document does not address hazards linked to: — operation of the truck from a position other than the normal operating position; — operation of the truck by a remote control; — gas power systems; — gasoline engine systems; — autonomous functions; — self-evolving behaviour; — hybrid or battery power systems having a voltage greater than 32 V DC or 21 V AC r.m.s. NOTE EN 1459-7:2026 deals with hybrid and battery power systems having a voltage greater than 32 V DC or 21 V AC r.m.s. This document does not address hazards which may occur: a) when handling suspended loads which may swing freely (additional requirements are given in EN 1459 4:2020+A1:2025); b) when using trucks on public roads; c) when operating in potentially explosive atmospheres (additional requirements are given in EN 1755:2024); d) when operating underground; e) when fitted with a personnel work platform (additional requirements are given in EN 1459 3:2015 and EN 1459 9:2021); f) when using system capable of controlling the speed of the truck as set by the operator (cruise-control). This document is not applicable to trucks manufactured before the date of its publication.
Toimialayhteisö: Kemesta
Komitea: CEN/TC 392 (Cosmetics)
Alkuperä: CEN
Määräpäivä: 2026-09-17
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ISO 17516:2014 is applicable for all cosmetics and assists interested parties in the assessment of the microbiological quality of the products. Microbiological testing does not need to be performed on those products considered to be microbiologically low risk.