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peak phenomenon

peak phenomenon, Total:433 items.

In the international standard classification, peak phenomenon involves: Geology. Meteorology. Hydrology, Education, Test conditions and procedures in general, Machine tool systems, Water quality, Cutting tools, Quantities and units, Structure and structure elements, Physics. Chemistry, Products of the textile industry, Character sets and information coding, Aerospace engines and propulsion systems, Fibre optic communications, Nuclear energy engineering, Applications of information technology, Optics and optical measurements, Construction materials, Welding, brazing and soldering, Graphic technology, Electricity. Magnetism. Electrical and magnetic measurements, Electrical engineering in general, Vocabularies, Insulating materials, Electromagnetic compatibility (EMC), Surface treatment and coating, Character symbols, Software development and system documentation, Industrial automation systems, Protection against fire, Measurement of volume, mass, density, viscosity, Particle size analysis. Sieving, Electronic components in general, Valves, Bottles. Pots. Jars, Cork and cork products, Networking, Aerospace fluid systems and components, Computer graphics, Cinematography, Items of art and handicrafts, Acoustics and acoustic measurements, Solar energy engineering, Radiocommunications, Radiation measurements, Milk and milk products, Lubricants, industrial oils and related products, Road vehicle systems, Occupational safety. Industrial hygiene, Graphical symbols, Mining and quarrying, Environmental protection, Accident and disaster control, Semiconductor devices, Medical equipment, Packaging and distribution of goods in general, Open systems interconnection (OSI), Semiconducting materials, Installations in buildings, Petroleum products in general, Textile fibres.


中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会, peak phenomenon

  • GB/T 35224-2017 Specifications for surface meteorological observation—Weather phenomena
  • GB/T 29618.515-2017 Field device tool (FDT) interface specification—Part 515: Communication implementation for common object model—MODBUS fieldbus specification
  • GB/T 32671.1-2016 Colloidal systems—Methods for zeta potential determination—Part 1: Electroacoustic and electrokinetic phenomena
  • GB/T 2900.97-2016 Electrotechnical terminology—Nuclear instrumentation: physical phenomena, basic concepts, instruments, systems, equipment and detectors
  • GB/T 29618.42-2017 Field device tool (FDT) interface specification—Part42:Object model integration profile—Common language infrastructure
  • GB/T 29618.61-2017 Field device tool (FDT) interface specification—Part 61: Device type manager (DTM) styleguide for common object model

中国气象局, peak phenomenon

  • QX/T 604-2021 Public meteorological observation and standardization of weather phenomena
  • QX/T 544-2020 Meteorological data discovery metadata
  • QX/T 565-2020 Laser drop spectrum precipitation phenomenon meter

Professional Standard - Education, peak phenomenon

American Society of Mechanical Engineers (ASME), peak phenomenon

IX-SA, peak phenomenon

Professional Standard - Energy, peak phenomenon

ESDU - Engineering Sciences Data Unit, peak phenomenon

  • ESDU 04022-2012 An introduction to low-cycle fatigue phenomena
  • ESDU 04022-2005 An introduction to low-cycle fatigue phenomena
  • ESDU 71012-1971 Fluid forces on non-streamline bodies - background notes and description of the flow phenomena.
  • ESDU 78035 D-1995 Contact phenomena. I: stresses@ deflections and contact dimensions for normally-loaded unlubricated elastic components.
  • ESDU 84017-1984 CONTACT PHENOMENA II: STRESS FIELDS AND FAILURE CRITERIA IN CONCENTRATED ELASTIC CONTACTS UNDER COMBINED NORMAL AND TANGENTIAL LOADING
  • ESDU 84017 A-2007 Contact phenomena. II: stress fields and failure criteria in concentrated elastic contacts under combined normal and tangential loading.

National Aeronautics and Space Administration (NASA), peak phenomenon

German Institute for Standardization, peak phenomenon

  • DIN SPEC 40170:2013 Measurement and judgement of the cavitation noise
  • DIN 6169-5:1976 Colour rendering; method of specifying object-related colour reproduction in multicolor printing
  • DIN CEN ISO/TS 80004-12:2017-09*DIN SPEC 52400-12:2017-09 Nanotechnologies - Vocabulary - Part 12: Quantum phenomena in nanotechnology (ISO/TS 80004-12:2016); German version CEN ISO/TS 80004-12:2017
  • DIN 21920-3:1996-04 Mine plans - Petrography - Part 3: Metamorphic and other lithogenetic phenomena
  • DIN IEC/TR 61340-1:2014 Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements (IEC/TR 61340-1:2012 + Cor.:2013)
  • DIN EN 61340-5-1:2008 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements (IEC 61340-5-1:2007); German version EN 61340-5-1:2007
  • DIN VDE 0873 Bb.1:1986 Radio interference characteristics of overhead power lines and high-voltage equipment; part 1: description of phenomena; identical with publication CISPR 60018-1, edition 1982
  • DIN 33866-3:2000 Information technology - Office machines; machines for colour image reproduction - Part 3: Method of specifying image reproduction by digital input and analog output as Hardcopy with colour image reproduction devices "digital - analog" (printers); realisa
  • DIN 21920-3:1996 Mine plans - Petrography - Part 3: Metamorphic and other lithogenetic phenomena
  • DIN 50433-1:1976 Testing of semi-conducting inorganic materials; determining the orientation of single crystals by means of X-ray diffraction
  • DIN EN 61000-1-2:2017 Electromagnetic compatibility (EMC) - Part 1-2: General - Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena (IEC 61000-1-2:2016); German version EN 61000-

TR-TSE, peak phenomenon

  • TS 295-1965 OUANTIT?ES AND UNITS OF PERIODIC AND RELATED PHENAMENA

Korean Agency for Technology and Standards (KATS), peak phenomenon

  • KS B ISO 369:2019 Machine tools — Symbols for indications appearing on machine tools
  • KS A ISO 31-2-2001(2006) Quantities and units-Part 2:Periodic and related phenomena
  • KS A ISO 31-2:2009 Quantities and units-Part 2:Periodic and related phenomena
  • KS M ISO 3105:2003 Glass capillary kinematic viscometers-Specifications and operating instructions
  • KS B ISO 8421-1:2002 Fire protection-Vocabulary-Part 1:General terms and phenomena of fire
  • KS B ISO 8421-1-2002(2017) Fire protection-Vocabulary-Part 1:General terms and phenomena of fire
  • KS B ISO 8421-1-2002(2022) Fire protection-Vocabulary-Part 1:General terms and phenomena of fire
  • KS C IEC 60050-393-2004(2014) International Electrotechnical Vocabulary-Chapter 393:Nuclear instrumentation-Physical phenomena and basic concepts
  • KS A ISO 8001:2003 Cinematography-Underexposed motion-picture film requiring forced development-Designation method
  • KS L ISO 13099-1:2018 Colloidal systems — Methods for zeta-potential determination — Part 1: Electroacoustic and electrokinetic phenomena
  • KS C IEC 60050-393:2004 International Electrotechnical Vocabulary-Chapter 393:Nuclear instrumentation-Physical phenomena and basic concepts
  • KS C IEC 61340-5-1:2005 Electrostatics-Part 5-1:Protection of electronic devices from electrostatic phenomena-General requirements
  • KS C IEC 61340-5-2:2005 Electrostatics-Part 5-2:Protection of electronic devices from electrostatic phenomena-User guide
  • KS I ISO DIS 13308:2011 Water quality-Toxicity test based on reproduction inhibition of the green macroalga Ulva pertusa
  • KS C CISPR TR 18-1-2022 Radio interference characteristics of overhead power lines and high-voltage equipment —Part 1: Description of phenomena
  • KS C IEC 61000-1-2:2022 Electromagnetic compatibility (EMC) — Part 1-2: General — Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic p
  • KS C CISPR TR 18-1-2012(2017) Radio interference characteristics of overhead power lines and high-voltage equipment-Part 1:Description of phenomena
  • KS C CISPR TR 18-1-2012 Radio interference characteristics of overhead power lines and high-voltage equipment-Part 1:Description of phenomena
  • KS C IEC 60364-4-443:2002 Electrical installations of buildings-Part 4:Protection for safety-Chapter 44:Protection against overvoltages-Section 443:Protection against overvoltages of atmospheric origin or due to switching
  • KS C IEC 60364-4-443:2005 Electrical installations of buildings-Part 4:Protection for safety-Chapter 44:Protection against overvoltages-Section 443:Protection against overvoltages of atmospheric origin or due to switching
  • KS C IEC 61000-4-33:2012 Electromagnetic compatibility(EMC)-Part 4-33:Testing and measurement techniques-Measurement methods for high-power transient parameters

KR-KS, peak phenomenon

  • KS B ISO 369-2019 Machine tools — Symbols for indications appearing on machine tools
  • KS L ISO 13099-1-2018 Colloidal systems — Methods for zeta-potential determination — Part 1: Electroacoustic and electrokinetic phenomena
  • KS C IEC 61340-5-2-2023 Electrostatics — Part 5-2: Protection of electronic devices from electrostatic phenomena — User guide
  • KS C IEC 61340-5-1-2023 Electrostatics — Part 5-1: Protection of electronic devices from electrostatic phenomena — General requirements
  • KS C IEC TS 61340-5-4-2023 Electrostatics — Part 5-4: Protection of electronic devices from electrostatic phenomena — Compliance verification
  • KS C IEC 61000-1-2-2022 Electromagnetic compatibility (EMC) — Part 1-2: General — Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic p
  • KS C IEC 60364-4-443-2002 Electrical installations of buildings-Part 4:Protection for safety-Chapter 44:Protection against overvoltages-Section 443:Protection against overvoltages of atmospheric origin or due to switching
  • KS C IEC TR 61340-5-5-2023 Electrostatics — Part 5-5: Protection of electronic devices from electrostatic phenomena — Packaging systems used in electronic manufacturing

Professional Standard - Meteorology, peak phenomenon

  • QX/T 48-2007 Specincations for surface meteorological observation.Part4: Observation of weather phenomenon
  • QX/T 291-2015 Field-calibration method for data logger of automatic weather station
  • QX/T 154-2012 Adverse meteorological conditions and precautionary safety measures for operations on open-air construction sites

International Telecommunication Union (ITU), peak phenomenon

  • ITU-R P.678-1-1992 CHARACTERIZATION OF THE NATURAL VARIABILITY OF PROPAGATION PHENOMENA
  • ITU-R P.678-1 FRENCH-1992 CHARACTERIZATION OF THE NATURAL VARIABILITY OF PROPAGATION PHENOMENA
  • ITU-R P.678-1 SPANISH-1992 CHARACTERIZATION OF THE NATURAL VARIABILITY OF PROPAGATION PHENOMENA
  • ITU-R P.678-2015 Characterization of the variability of propagation phenomena and estimation of the risk associated with propagation margin
  • ITU-R P.678-3-2015 Characterization of the variability of propagation phenomena and estimation of the risk associated with propagation margin
  • ITU-T Y.3077-2021 Framework for interworking of heterogeneous application domain connected objects through information-centric networking in IMT-2020
  • ITU-T Q.2963.1 B-2000 Digital subscriber signalling system No. 2 – Connection modification: Peak cell rate modification by the connection owner: Protocol implementation conformance statement (PICS) proforma (Study Group 11)
  • ITU-T K.34-2003 Classification of electromagnetic environmental conditions for telecommunication equipment Basic EMC Recommendation SERIES K: PROTECTION AGAINST INTERFERENCE Study Group 5

Acoustical Society of America (ASA), peak phenomenon

Professional Standard - Machinery, peak phenomenon

British Standards Institution (BSI), peak phenomenon

  • PD IEC TR 61340-1:2012+A1:2020 Electrostatics. Electrostatic phenomena. Principles and measurements
  • BS ISO/IEC 30106-2:2016 Information technology. Object oriented BioAPI. Java implementation
  • BS ISO/IEC 30106-3:2016 Information technology. Object oriented BioAPI. C implementation
  • BS ISO/IEC 30106-2:2020 Information technology. Object oriented BioAPI. Java implementation
  • BS ISO/IEC 30106-4:2019 Information technology. Object oriented BioAPI - C++ implementation
  • BS ISO/IEC 30106-3:2020 Information technology. Object oriented BioAPI. C implementation
  • PD IEC 61956:2001 Methods of test for the evaluaion of water treeing in insulating materials
  • BS EN 13523-15:2015 Coil coated metals. Test methods. Metamerism
  • BS EN 13523-15:2002 Coil coated metals - Test methods - Metamerism
  • PD CEN ISO/TS 80004-12:2017 Nanotechnologies. Vocabulary. Quantum phenomena in nanotechnology
  • PD CLC/TR IEC 62453-41:2019 Tracked Changes. Field device tool (FDT) interface specification. Object model integration profile. Common object model
  • PD CLC/TR 62453-509:2009 Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 9
  • PD CLC/TR 62453-51-90:2019 Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 9
  • PD CLC/TR IEC 62453-51-10:2019 Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 1
  • PD CLC IEC/TR 62453-51-150:2019 Tracked Changes. Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 15
  • BS ISO 9727-8:2022 Cylindrical cork stoppers. Physical tests - Determination of capillarity
  • BS ISO 13099-1:2012 Colloidal systems. Methods for zeta-potential determination. Electroacoustic and electrokinetic phenomena
  • BS IEC 61340-5-1:1998 Electrostatics. Protection of electronic devices from electrostatic phenomena. General requirements
  • BS EN 61340-5-2:2001 Electrostatics - Protection of electronic devices from electrostatic phenomena - User guide
  • BS EN 61340-5-1:2007 Electrostatics — Part 5-1: Protection of electronic devices from electrostatic phenomena — General requirements
  • BS ISO 16419:2013 Cork. Visual anomalies of cork stoppers for still wines
  • PD CLC/TR 62453-51-60:2019 Tracked Changes. Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 6
  • PD CLC/TR 62453-51-20:2019 Tracked Changes. Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CPF 2
  • BS ISO 24678-6:2016 Fire safety engineering. Requirements governing algebraic formulae. Flashover related phenomena
  • PD CLC/TR 62453-503-1:2009 Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CP 3/1 and CP 3/2
  • PD CLC/TR 62453-51-31:2019 Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CP 3/1 and CP 3/2
  • PD IEC TS 61340-5-4:2021 Electrostatics. Protection of electronic devices from electrostatic phenomena. Compliance verification
  • PD IEC/TR 61340-5-2:2018 Electrostatics. Protection of electronic devices from electrostatic phenomena. User guide
  • 19/30392826 DC BS ISO/IEC 30106-3. Information technology. Object oriented BioAPI. Part 3. C# implementation
  • 19/30392823 DC BS ISO/IEC 30106-2. Information technology. Object oriented BioAPI. Part 2. Java implementation
  • PD IEC PAS 61340-5-6:2022 Electrostatics. Protection of electronic devices from electrostatic phenomena. Process assessment techniques
  • BS EN 61340-5-1:2001 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • BS EN 61340-5-1:2016 Tracked Changes. Electrostatics. Protection of electronic devices from electrostatic phenomena. General requirements
  • PD CLC/TR 62453-51-32:2019 Tracked Changes. Field device tool (FDT) interface specification. Communication implementation for common object model. IEC 61784 CP 3/4, CP 3/5 and CP 3/6
  • 21/30393072 DC BS ISO 9727-8. Cylindrical cork stoppers. Physical tests. Part 8. Determination of capillarity
  • PD CISPR/TR 18-1:2017 Tracked Changes. Radio interference characteristics of overhead power lines and high-voltage equipment. Description of phenomena
  • BS 7843-2.1:1996 Guide to the acquisition and management of meteorological precipitation data - Field practices and data management - Technical aspects in the field
  • PD IEC TR 61340-5-5:2018 Electrostatics. Protection of electronic devices from electrostatic phenomena. Packaging systems used in electronic manufacturing
  • PD CLC/TR IEC 62453-42:2019 Field device tool (FDT) interface specification. Object model integration profile. Common Language Infrastructure
  • BS ISO/IEC 3721:2023 Information technology. Computer graphics, image processing and environmental data representation. Information model for mixed and augmented reality content. Core objects and attributes
  • BS PD CLC/TR 62453-502:2009 Field device tool (FDT) interface specification — Part 502: Communication implementation for common object model — IEC 61784 CPF 2
  • PD CLC/TR 62453-61:2009 Field device tool interface (FDT) specification. Device type manager (DTM). Styleguide for common object model
  • BS PD CLC/TR 62453-506:2009 Field device tool (FDT) interface specification — Part 506: Communication implementation for common object model — IEC 61784 CPF 6
  • BS PD CLC/TR 62453-515:2009 Field device tool (FDT) interface specification — Part 515: Communication implementation for common object model - IEC 61784 CPF 15
  • BS PD CLC/TR 62453-501:2009 Field device tool (FDT) interface specification — Part 501: Communication implementation for common object model — IEC 61784 CPF 1
  • 22/30454219 DC BS EN IEC 61340-5-1. Electrostatics - Part 5-1. Protection of electronic devices from electrostatic phenomena. General requirements
  • BS EN 61340-5-3:2010 Electrostatics. Protection of electronic devices from electrostatic phenomena. Properties and requirements classifications for packaging intended for electrostatic discharge sensitive devices
  • BS PD CLC/TR 62453-61:2009 Field device tool interface (FDT) specification — Part 61: Device type manager (DTM) — Styleguide for common object model

RO-ASRO, peak phenomenon

  • STAS 2599-1975 QUANTITIES OF PERIODIC AND RELATED PHENOMENA Terminology
  • SR ISO 31-2:1995 Quantities and units - Part 2: Periodic and related phenomena
  • SR 8421-1/A1-2000 Fire protection-Vocabulary - Part 1: General terms and phenomena of fire
  • STAS 737/7-1983 International System of Units (SI) UNITS OF PERIODIC AND RELA- TED PHENOMENA

International Organization for Standardization (ISO), peak phenomenon

  • ISO 31-2:1978 Quantities and units of periodic and related phenomena
  • ISO 9137:1990 Abrasive grains; determination of capillarity
  • ISO 31-2:1978/Amd 1:1985 Quantities and units of periodic and related phenomena — Amendment 1
  • ISO 31-2:1992 Quantities and units; part 2: periodic and related phenomena
  • ISO/IEC 30106-2:2016 Information technology — Object oriented BioAPI — Part 2: Java implementation
  • ISO/IEC 30106-2:2020 Information technology -- Object oriented BioAPI-- Part 2:Java implementation
  • ISO/IEC 19506:2012 Information technology - Object Management Group Architecture-Driven Modernization (ADM) - Knowledge Discovery Meta-Model (KDM)
  • ISO/IEC 30106-3:2016 Information technology — Object oriented BioAPI — Part 3: C# implementation
  • ISO/IEC 30106-3:2020 Information technology -- Object oriented BioAPI-- Part 3:C# implementation
  • ISO/IEC 30106-4:2019 Information technology — Object oriented BioAPI — Part 4: C++ implementation
  • ISO 3105:1976 Glass capillary kinematic viscometers; Specification and operating instructions
  • ISO 31-2:1992/Amd 1:1998 Quantities and units - Part 2: Periodic and related phenomena; Amendment 1
  • ISO 16419:2013 Cork - Visual anomalies of cork stoppers for still wines
  • ISO/TS 80004-12:2016 Nanotechnologies — Vocabulary — Part 12: Quantum phenomena in nanotechnology
  • ISO/IEC DIS 3721-1 Information technology — Information model for mixed and augmented reality Content — Part 1: Core objects and attributes
  • ISO 13099-1:2012 Colloidal systems - Methods for zeta-potential determination - Part 1: Electroacoustic and electrokinetic phenomena
  • ISO 8421-1:1987 Fire protection; Vocabulary; Part 1 : General terms and phenomena of fire Bilingual edition
  • ISO 24678-6:2016 Fire safety engineering - Requirements governing algebraic formulae - Part 6: Flashover related phenomena
  • ISO/IEC 14496-20:2008/Cor 1:2010 Information technology — Coding of audio-visual objects — Part 20: Lightweight Application Scene Representation (LASeR) and Simple Aggregation Format (SAF) TECHNICAL CORRIGENDUM 1
  • ISO/TR 15922:2011 Metallic and other inorganic coatings - Evaluation of properties of dark-stain phenomenon of chromated coiled or sheet products
  • ISO/TR 15922:2012 Metallic and other inorganic coatings — Evaluation of properties of dark-stain phenomenon of chromated coiled or sheet products
  • ISO/IEC 11185-10:1994 Information technology - International standardized profiles FVT2nn - Virtual terminal basic class - Register of control object type definitions - Part 10: FVT231; forms FEPCO (Field Entry Pilot Control Object) no. 1
  • ISO/IEC 11185-11:1994 Information technology - International standardized profiles FVT2nn - Virtual terminal basic class - Register of control object type definitions - Part 11: FVT232; paged FEPCO (Field Entry Pilot Control Object) no. 1

Society of Automotive Engineers (SAE), peak phenomenon

Association Francaise de Normalisation, peak phenomenon

  • NF X02-202:1993 Quantities and units. Periodic and related phenomena.
  • NF Q60-501:1975 Méthode générale pour la réalisation en laboratoire d'une impression en vue d'évaluations ultérieures
  • NF ISO 16134:2020 Conception de canalisations en fonte ductile résistant aux tremblements de terre et aux phénomènes de subsidence
  • NF C01-393/A1:2001 Electrotechnical vocabulary - Chapter 393 : nuclear instrumentation : physical phenomena and basic concepts.
  • NF B57-130*NF ISO 16419:2013 Cork - Visual anomalies of cork stoppers for still wines
  • NF ISO 24678-6:2017 Ingénierie de la sécurité incendie - Exigences régissant les formules algébriques - Partie 6 : phénomènes liés à l'embrasement généralisé
  • XP CEN ISO/TS 80004-12:2017 Nanotechnologies - Vocabulaire - Partie 12 : phénomènes quantiques dans les nanotechnologies
  • NF B10-613*NF EN 1925:1999 Natural stone test methods. Determination of water absorption coefficient by capillarity.
  • NF ISO 9727-8:2022 Bouchons cylindriques en liège - Essais physiques - Partie 8 : détermination de la capillarité
  • NF EN 1925:1999 Méthodes d'essai pour pierres naturelles - Détermination du coefficient d'absorption d'eau par capillarité.
  • NF EN 1936:2007 Méthodes d'essai des pierres naturelles - Détermination des masses volumiques réelle et apparente et des porosités ouvertes et totale
  • NF C57-338:2011 Test procedure of islanding prevention measures for utility-interconnected photovoltaic inverters.
  • NF C01-393:2004 Electrotechnical Vocabulary - Part 393 : nuclear instrumentation - Physical phenomena and basic concepts.
  • NF C20-790-5-1:2008 Electrostatics - Part 5-1 : protection of electronic devices from electrostatic phenomena - General requirements.
  • NF G07-012-5*NF EN ISO 105-B05:1996 Textiles. Tests for colour fastness. Part B05 : detection and assessment of photochromism.
  • NF P92-552-6*NF ISO 24678-6:2017 Fire safety engineering - Requirements governing algebraic formulae - Part 6 : flashover related phenomena
  • NF EN 61340-5-1:2016 Électrostatique - Partie 5-1 : protection des dispositifs électroniques contre les phénomènes électrostatiques - Exigences générales
  • NF T60-191:1993 Petroleum products and lubricating greases. Oil separation on storage of grease. Static conditions under pressure.
  • NF C20-790-5-1*NF EN 61340-5-1:2016 Electrostatics - Part 5-1 : protection of electronic devices from electrostatic phenomena - General requirements
  • NF C91-001-2*NF EN 61000-1-2:2016 Electromagnetic compatibility (EMC) - Part 1-2 : general - Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena
  • NF C20-790-5-1:2001 Electrostatics - Part 5-1 : protection of electronic devices from electrostatic phenomena - General requirements.
  • NF EN 1015-18:2003 Méthodes d'essai des mortiers pour maçonnerie - Partie 18 : détermination du coefficient d'absorption d'eau par capillarité du mortier durci
  • NF S11-698:1998 Ophthalmic optics. Contact lenses. Ageing by exposure to UV and visible radiation (in vitro method).

Taiwan Provincial Standard of the People's Republic of China, peak phenomenon

  • CNS 7842-1981 Method of Test for Capillarity of Artificial Abrasives
  • CNS 11296-2-1985 Quantities and Units of Periodic and Relater Phenomena
  • CNS 11296.2-1985 Quantities and Units of Periodic and Relater Phenomena
  • CNS 14651-2008 Glossary of terms used for fire protection in building - General terms for phenomena of fire
  • CNS 14651-2002 Glossary of terms used for fire protection in building─general terms for phenomena of fire

RU-GOST R, peak phenomenon

  • GOST 29104.11-1991 Industrial fabrics. Metod for determination of capillarity
  • GOST R 53734.1-2014 Electrostatics. Part 1. Electrostatic phenomena. Principles and measurements
  • GOST IEC 60050-113-2015 International Electrotechnical Vocabulary. Part 113. Physics for electrotechnology
  • GOST R 53734.5.1-2009 Electrostatics. Protection of electronic devices from electrostatics phenomena. General requirements
  • GOST 33528-2015 Milk and milk products. Identification of protein composition by use of electrophoresis in polyacrylamide gel
  • GOST R 53734.5.6-2021 Electrostatics. Protection of electronic devices against electrostatic phenomena. Integrated circuits and semiconductor devices
  • GOST R 22.1.06-1999 Safety in emergencies. Monitoring and forecasting of hazardous geological phenomena and processes. General requirements
  • GOST R 22.1.07-1999 Safety in emergencies. Monitoring and forecasing dangerous weather phenomena and processes. General requirements
  • GOST R 22.1.08-1999 Safety in emergencies. Monitoring and forecasting of dangerous hydrological phenomena and processes. General requirements
  • GOST R 53734.5.3-2013 Electrostatics. Protection of electronic devices from electrostatic phenomena. Requirements for packaging for electrostatic discharge sensitive devices
  • GOST IEC/TS 61000-1-2-2015 Electromagnetic compatibility (EMC). Part 1-2. General. Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena

Anhui Provincial Standard of the People's Republic of China, peak phenomenon

  • DB34/T 1594-2012 Specifications for on-site investigation of agricultural meteorological disasters

CH-SNV, peak phenomenon

国家技术监督局, peak phenomenon

BE-NBN, peak phenomenon

  • NBN X 02-102-1988 Quantities and units of periodic and related phenomena
  • NBN-ISO 8421-1:1992 Fire protection. Vocabulary. Part 1: General terms and phenomena of fire
  • NBN-EN 24503-1993 Hardmetals. Determination of contents of metallic elements by X-ray fluorescence. Fusion method (ISO 4503:1978)
  • NBN-EN 24883-1993 Hardmetals. Determination of contents of metallic elements by X-ray fluorescence. Solution method (ISO 4883: 1978)

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, peak phenomenon

  • GB 3102.2-1993 Quantities and units of periodic and related phenomena
  • GB/T 2900.81-2008 Electrotechnical terminology.Nuclear instrumentation Physical phenomena and basic conecpts
  • GB/T 29618.41-2013 Field device tool (FDT) interface specification.Part 41:Object model integration profile.Common object model
  • GB/T 30544.12-2023 Nanotechnology Terminology Part 12: Quantum Phenomena in Nanotechnology
  • GB/Z 17624.2-2013 Electromagnetic compatibility.General.Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena
  • GB/Z 37627.1-2019 Radio interference characteristics of overhead power lines and high-voltage equipment—Part 1:Description of phenomena
  • GB/T 41903.3-2022 Information technology—Object oriented BioAPI—Part 3: C# implementation
  • GB/T 41903.2-2022 Information technology—Object oriented BioAPI—Part 2: Java implementation

Danish Standards Foundation, peak phenomenon

  • DS/ISO 31/2:1984 Quantities and units of periodic and related phenomena
  • DS/ISO/IEC 19506:2012 Information technology - Object Management Group Architecture-Driven Modernization (ADM) - Knowledge Discovery Meta-Model (KDM)
  • DS/ISO/IEC 30106-2:2020 Information technology – Object oriented BioAPI – Part 2: Java implementation
  • DS/ISO/IEC 30106-3:2020 Information technology – Object oriented BioAPI – Part 3: C# implementation
  • DS/CLC/TR 62453-41:2010 Field device tool (FDT) interface specification - Part 41: Object model integration profile - Common object model
  • DS/CLC/TR 62453-501:2010 Field device tool (FDT) interface specification - Part 501: Communication implementation for common object model - IEC 61784 CPF 1
  • DS/CLC/TR 62453-502:2010 Field device tool (FDT) interface specification - Part 502: Communication implementation for common object model - IEC 61784 CPF 2
  • DS/CLC/TR 62453-506:2010 Field device tool (FDT) interface specification - Part 506: Communication implementation for common object model - IEC 61784 CPF 6
  • DS/CLC/TR 62453-509:2010 Field device tool (FDT) interface specification - Part 509: Communication implementation for common object model - IEC 61784 CPF 9
  • DS/CLC/TR 62453-515:2010 Field device tool (FDT) interface specification - Part 515: Communication implementation for common object model - IEC 61784 CPF 15
  • DS/EN 15801:2010 Conservation of cultural property - Test methods - Determination of water absorption by capillarity
  • DS/CLC/TR 62453-503-1:2010 Field device tool (FDT) interface specification - Part 503-1: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2
  • DS/EN 61340-5-1:2008 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • DS/CLC/TR 61340-5-2:2008 Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide
  • DS/CLC/TR 62453-503-2:2010 Field device tool (FDT) interface specification - Part 503-2: Communication implementation for common object model - IEC 61784 CP 3/4, CP 3/5 and CP 3/6
  • DS/IEC CISPR/TR 18-1:2010 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • DS/IEC/TS 61000-1-2:2009 Electromagnetic compatibility (EMC) - Part 1-2: General - Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena
  • DS/CLC/TR 62453-61:2010 Field device tool interface (FDT) specification - Part 61: Device type manager (DTM) - Styleguide for common object model

Japanese Industrial Standards Committee (JISC), peak phenomenon

Professional Standard - Nuclear Industry, peak phenomenon

  • EJ/T 736-1992 On-site pollution meteorological data standard for nuclear facilities

(U.S.) Ford Automotive Standards, peak phenomenon

AGMA - American Gear Manufacturers Association, peak phenomenon

  • 97FTM9-1997 Relations Between Wear and Pitting Phenomena in Worm Gears

American Society for Testing and Materials (ASTM), peak phenomenon

  • ASTM C232-04 Standard Test Methods for Bleeding of Concrete
  • ASTM C232/C232M-09 Standard Test Methods for Bleeding of Concrete
  • ASTM C232/C232M-13a Standard Test Method for Bleeding of Concrete
  • ASTM C232/C232M-13b Standard Test Method for Bleeding of Concrete
  • ASTM C232/C232M-13c Standard Test Method for Bleeding of Concrete
  • ASTM C232/C232M-14 Standard Test Method for Bleeding of Concrete
  • ASTM F1192-00 Standard Guide for the Measurement of Single Event Phenomena (SEP) Induced by Heavy Ion Irradiation of Semiconductor Devices
  • ASTM F1192-00(2006) Standard Guide for the Measurement of Single Event Phenomena (SEP) Induced by Heavy Ion Irradiation of Semiconductor Devices
  • ASTM F1192-11 Standard Guide for the Measurement of Single Event Phenomena (SEP) Induced by Heavy Ion Irradiation of Semiconductor Devices
  • ASTM F1192-11(2018) Standard Guide for the Measurement of Single Event Phenomena (SEP) Induced by Heavy Ion Irradiation of Semiconductor Devices
  • ASTM D2421-02(2007) Standard Practice for Interconversion of Analysis of C5 and Lighter Hydrocarbons to Gas-Volume, Liquid-Volume, or Mass Basis
  • ASTM D2421-95 Standard Practice for Interconversion of Analysis of C5 and Lighter Hydrocarbons to Gas-Volume, Liquid-Volume, or Weight Basis
  • ASTM D2421-01 Standard Practice for Interconversion of Analysis of C5 and Lighter Hydrocarbons to Gas-Volume, Liquid-Volume, or Weight Basis
  • ASTM D2421-02 Standard Practice for Interconversion of Analysis of C5 and Lighter Hydrocarbons to Gas-Volume, Liquid-Volume, or Weight Basis
  • ASTM D2421-21 Standard Practice for Interconversion of Analysis of C
  • ASTM D2421-21e1 Standard Practice for Interconversion of Analysis of C
  • ASTM D2421-13 Standard Practice for Interconversion of Analysis of C5 and Lighter Hydrocarbons to Gas-Volume, Liquid-Volume, or Mass Basis

Association of German Mechanical Engineers, peak phenomenon

IETF - Internet Engineering Task Force, peak phenomenon

  • RFC 6779-2012 Definition of Managed Objects for the Neighborhood Discovery Protocol
  • RFC 7939-2016 Definition of Managed Objects for the Neighborhood Discovery Protocol

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., peak phenomenon

  • ASHRAE 3728-1993 Experimental Measurement of Heat Transfer Phenomena in a Solid Adsorbent

Shandong Provincial Standard of the People's Republic of China, peak phenomenon

  • DB37/T 3797-2019 Specifications for on-site investigation of facility agricultural meteorological disasters

Instrument Society of America (ISA), peak phenomenon

Xinjiang Provincial Standard of the People's Republic of China, peak phenomenon

  • DB65/T 4042-2017 Basis for Automatic Identification of Weather Phenomenon with Visual Range Obstruction

CZ-CSN, peak phenomenon

  • CSN 88 2109-1987 Originals for graphic arts reproduction. Technical requirements
  • CSN ISO 31-2:1994 Quantities and units-Part 2:Periodic and related phenomena
  • CSN CISPR 18-1-1995 Radio interference characteristic of overhead power lines and high-voltage equipment. Part 1: Description of phenomena

GOSTR, peak phenomenon

  • GOST R 58150-2018 Mining. Dynamic phenomena in coal mines. Terms and definitions
  • GOST R 57257-2016 Nanotechnologies. Part 12. Quantum phenomena. Terms and definitions
  • GOST R 59113-2020 Preservation of cultural heritage objects. Performance of works. Preparatory works and engineering preparation of the site territory. General provisions
  • GOST IEC 61340-5-1-2019 Electrostatics. Protection of electronic devices from electrostatic phenomena. General requirements
  • GOST R 53734.5.2-2009 Electroststics. Protection of electronic devices from electrostatics phenomena. User guides

Hubei Provincial Standard of the People's Republic of China, peak phenomenon

  • DB42/T 1722-2021 On-site Calibration Regulations for Provincial Meteorological Stations

International Electrotechnical Commission (IEC), peak phenomenon

  • IEC TR3 61000-2-3:1992 Electromagnetic compatibility (EMC); part 2: environment; section 3: description of the environment; radiated and non-network-frequency-related conducted phenomena
  • IEC TR 61340-1:2012 Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements
  • IEC TR 61340-1:2012/AMD1:2020 Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements
  • IEC TR 61340-1:2012/COR1:2013 Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements
  • IEC TR 61340-1:2020 Amendment 1 - Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements
  • IEC TR 61340-1:2012+AMD1:2020 CSV Electrostatics - Part 1: Electrostatic phenomena - Principles and measurements
  • IEC 60050-113:2011 International Electrotechnical Vocabulary - Part 113: Physics for electrotechnology
  • IEC TR 62453-509:2009 Field device tool (FDT) interface specification - Part 509: Communication implementation for common object model - IEC 61784 CPF 9
  • IEC TR 62453-515:2009 Field device tool (FDT) interface specification - Part 515: Communication implementation for common object model - IEC 61784 CPF 15
  • IEC TR 62453-501:2009 Field device tool (FDT) interface specification - Part 501: Communication implementation for common object model - IEC 61784 CPF 1
  • IEC TS 61340-5-2:1999 Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide
  • IEC TR2 61340-5-1/COR1:1999 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • IEC TR2 61340-5-1/COR2:2002 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • IEC TR 62453-503-1:2009 Field device tool (FDT) interface specification - Part 503-1: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2
  • IEC 61340-5-1:2016 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • IEC TR 61340-5-2:2007 Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide
  • IEC TR2 61340-5-1:1998 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • IEC TR 61340-5-2:2018 Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide
  • IEC 61340-5-1:2007 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • IEC TR 61340-5-2:2018 RLV Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide
  • IEC PAS 61340-5-6:2022 Electrostatics - Part 5-6 : Protection of electronic devices from electrostatic phenomena - Process assessment techniques
  • IEC 60050-393:2003 International Electrotechnical Vocabulary - Part 393: Nuclear instrumentation: Physical phenomena and basic concepts
  • IEC TS 61340-5-4:2021 Electrostatics - Part 5-4: Protection of electronic devices from electrostatic phenomena - Compliance verification
  • IEC TR 62453-503-2:2009 Field device tool (FDT) interface specification - Part 503-2: Communication implementation for common object model - IEC 61784 CP 3/4, CP 3/5 and CP 3/6
  • CISPR TR 18-1-2010 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • IEC 61340-5-1:2016/COR1:2017 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements; Corrigendum 1
  • CISPR TR 18-1:2010 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • CISPR TR 18-1:2017 RLV Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • CISPR TR 18-1-2017 RLV Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • CISPR TR 18-1:2017 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • IEC TR 61340-5-4:2019 Electrostatics - Part 5-4: Protection of electronic devices from electrostatic phenomena - Compliance verification
  • CISPR TR 18-1-2017 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • IEC TR 61340-5-2:2007/COR1:2009 Electrostatics - Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide; Corrigendum 1
  • IEC TR 62453-61:2009 Field device tool interface specification - Device Type Manager (DTM) Styleguide for common object model
  • CISPR 18-1/TR-2010 Radio interference characteristics of overhead power lines and high-voltage equipment – Part 1: Description of phenomena TR
  • CISPR/TR 18-1-2010 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena
  • IEC 60050-395:2014 International electrotechnical vocabulary - Part 395: Nuclear instrumentation: Physical phenomena, basic concepts, instruments, systems, equipment and detectors
  • IEC TR 62453-42:2016 Field device tool (FDT) interface specification - Part 42: Object model integration profile - Common Language Infrastructure
  • IEC TR 61000-2-3:1992 Electromagnetic compatibility (EMC) - Part 2: Environment - Section 3: Description of the environment - Radiated and non-network-frequency-related conducted phenomena

NZ-SNZ, peak phenomenon

  • AS/NZS 14478.1:2000 Information Technology - Computer Graphics and Image Processing - Presentation Environment for Multimedia Objects Part 1: Fundamentals of Presentation Environment for Multimedia Objects

PT-IPQ, peak phenomenon

American Gear Manufacturers Association, peak phenomenon

IEC - International Electrotechnical Commission, peak phenomenon

  • IEC TR 61340-1:2012/COR2:2017 ELECTROSTATICS – Part 1: Electrostatic phenomena – Principles and measurements (Edition 1.0)
  • IEC TR 62453-41:2009 Field device tool (FDT) interface specification – Part 41: Object model integration profile – Common object model (Edition 1.0)
  • IEC TR 62453-41:2016 Field device tool (FDT) interface specification – Part 41: Object model integration profile – Common object model (Edition 2.0)
  • IEC TR 62453-506:2009 Field device tool (FDT) interface specification – Part 506: Communication implementation for common object model – IEC 61784 CPF 6 (Edition 1.0)
  • IEC TR 62453-502:2009 Field device tool (FDT) interface specification – Part 502: Communication implementation for common object model – IEC 61784 CPF 2 (Edition 1.0)
  • IEC TR 62453-51-90:2017 Field device tool (FDT) interface specification – Part 51-90: Communication implementation for common object model – IEC 61784 CPF 9 (Edition 1.0)
  • TS 61000-1-2-2008 Electromagnetic compatibility (EMC) – Part 1-2: General – Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena (Edition 2.0)
  • CISPR/TR 18-1 (REDLINE + STANDARD)-2017 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena (Edition 3.0)
  • CISPR/TR 18-1-2017 Radio interference characteristics of overhead power lines and high-voltage equipment - Part 1: Description of phenomena (Edition 3.0)

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector, peak phenomenon

  • ITU-R P.678-1990 Characterization of the Natural Variability of Propagation Phenomena - Section 5C - Effects of the Atmosphere (Radiometeorology)
  • ITU-R P.678-2-2013 Characterization of the variability of propagation phenomena and estimation of the risk associated with propagation margin

NL-NEN, peak phenomenon

  • NEN 1211-1971 Quantities, SI units and their symbols Atomic and molecular phenomena
  • NEN 1226-1981 Quantities, SI units and their symbols Atomic and molecular phenomena

GB-REG, peak phenomenon

Audio Engineering Society, peak phenomenon

  • AES 6-1982 AES Standard Method for Measurement of Weighted Peak Flutter of Sound Recording and Reproducing Equipment 3/5/1999 Printing R(2003)

VDI - Verein Deutscher Ingenieure, peak phenomenon

  • VDI 2712 Blatt 1-1971 Geraeusche in Betrieben der Steine und Erden-Industrie und Massnahmen zu ihrer Minderung; Allgemeines

未注明发布机构, peak phenomenon

European Committee for Electrotechnical Standardization(CENELEC), peak phenomenon

  • CLC/TR 62453-41-2009 Field device tool (FDT) interface specification - Part 41: Object model integration profile - Common object model
  • CLC/TR 62453-509:2009 Field device tool (FDT) interface specification - Part 509: Communication implementation for common object model - IEC 61784 CPF 9
  • CLC/TR 62453-501:2009 Field device tool (FDT) interface specification - Part 501: Communication implementation for common object model - IEC 61784 CPF 1
  • CLC/TR 62453-502:2009 Field device tool (FDT) interface specification - Part 502: Communication implementation for common object model - IEC 61784 CPF 2
  • CLC/TR 62453-506:2009 Field device tool (FDT) interface specification - Part 506: Communication implementation for common object model - IEC 61784 CPF 6
  • CLC/TR 62453-515:2009 Field device tool (FDT) interface specification - Part 515: Communication implementation for common object model - IEC 61784 CPF 15
  • CLC/TR 62453-51-60:2019 Field device tool (FDT) interface specification - Part 51-60: Communication implementation for common object model - IEC 61784 CPF 6
  • CLC/TR 62453-51-20:2019 Field device tool (FDT) interface specification - Part 51-20: Communication implementation for common object model - IEC 61784 CPF 2
  • CLC/TR 62453-51-90:2019 Field device tool (FDT) interface specification - Part 51-90: Communication implementation for common object model - IEC 61784 CPF 9
  • CLC/TR 62453-51-31:2019 Field device tool (FDT) interface specification - Part 51-31: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2
  • CLC/TR 62453-503-1:2009 Field device tool (FDT) interface specification - Part 503-1: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2
  • EN 61340-5-1:2016 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • EN 61340-5-1:2016/AC:2017-05 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • CLC/TR 62453-51-32:2019 Field device tool (FDT) interface specification - Part 51-32: Communication implementation for common object model - IEC 61784 CP 3/4, CP 3/5 and CP 3/6
  • CLC/TR 62453-503-2:2009 Field device tool (FDT) interface specification - Part 503-2: Communication implementation for common object model - IEC 61784 CP 3/4, CP 3/5 and CP 3/6
  • EN 61000-1-2:2016 Electromagnetic compatibility (EMC) - Part 1-2: General - Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena
  • EN 61340-5-1:2007 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements
  • CLC/TR 62453-501-2009 Field device tool (FDT) interface specification - Part 501: Communication implementation for common object model - IEC 61784 CPF 1
  • CLC/TR 62453-502-2009 Field device tool (FDT) interface specification - Part 502: Communication implementation for common object model - IEC 61784 CPF 2
  • CLC/TR 62453-506-2009 Field device tool (FDT) interface specification - Part 506: Communication implementation for common object model - IEC 61784 CPF 6
  • CLC/TR 62453-509-2009 Field device tool (FDT) interface specification - Part 509: Communication implementation for common object model - IEC 61784 CPF 9
  • CLC/TR 62453-515-2009 Field device tool (FDT) interface specification - Part 515: Communication implementation for common object model - IEC 61784 CPF 15
  • CLC/TR 62453-61:2009 Field device tool interface (FDT) specification - Part 61: Device type manager (DTM) - Styleguide for common object model
  • CLC/TR 62453-503-1-2009 Field device tool (FDT) interface specification - Part 503-1: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2

ES-AENOR, peak phenomenon

American Water Works Association (AWWA), peak phenomenon

  • AWWA M49-2001 Butterfly Valves: Torque, Head Loss, and Cavitation Analysis First Edition

Professional Standard - Ocean, peak phenomenon

  • HY/T 0338-2022 On-site comparative measurement method of marine hydrometeorological automatic observation system

CENELEC - European Committee for Electrotechnical Standardization, peak phenomenon

  • CLC/TR IEC 62453-41:2019 Field device tool (FDT) interface specification - Part 41: Object model integration profile - Common object model
  • CLC/TR IEC 62453-51-10:2019 Field device tool (FDT) interface specification - Part 51-10: Communication implementation for common object model – IEC 61784 CPF 1
  • CLC/TR 62453-51-20-2019 Field device tool (FDT) interface specification - Part 51-20: Communication implementation for common object model - IEC 61784 CPF 2
  • CLC IEC/TR 62453-51-150:2019 Field device tool (FDT) interface specification - Part 51-150: Communication implementation for common object model - IEC 61784 CPF 15
  • CLC/TR 62453-51-90-2019 Field device tool (FDT) interface specification - Part 51-90: Communication implementation for common object model - IEC 61784 CPF 9
  • CLC/TR 62453-51-60-2019 Field device tool (FDT) interface specification - Part 51-60: Communication implementation for common object model - IEC 61784 CPF 6
  • CLC/TR 62453-51-31-2019 Field device tool (FDT) interface specification - Part 51-31: Communication implementation for common object model - IEC 61784 CP 3/1 and CP 3/2
  • EN 61340-5-1:2001 Electrostatics - Part 5-1: Protection of Electronic Devices from Electrostatic Phenomena - General Requirements
  • CLC/TR 62453-51-32-2019 Field device tool (FDT) interface specification - Part 51-32: Communication implementation for common object model - IEC 61784 CP 3/4@ CP 3/5 and CP 3/6
  • EN 61340-5-2:2001 Electrostatics - Part 5-2: Protection of Electronic Devices from Electrostatic Phenomena - User Guide

国家市场监督管理总局、中国国家标准化管理委员会, peak phenomenon

  • GB/T 29618.5110-2021 Field device tool (FDT) interface specification—Part 5110: Communication implementation for common object model—IEC 61784 CPF 1
  • GB/T 29618.5120-2021 Field device tool (FDT) interface specification—Part 5120: Communication implementation for common object model—IEC 61784 CPF 2

YU-JUS, peak phenomenon

  • JUS A.A1.024-1980 Quantities, units and symbols. Quantities and units of periodic and related phanomena

European Committee for Standardization (CEN), peak phenomenon

  • prCEN ISO/TS 80004-12 rev Nanotechnologies - Vocabulary - Part 12: Quantum phenomena in nanotechnology
  • CENELEC EN 61340-5-1-2007 Electrostatics — Part 5-1: Protection of electronic devices from electrostatic phenomena — General requirements
  • CLC/TR 61340-5-2-2008 Electrostatics — Part 5-2: Protection of electronic devices from electrostatic phenomena – User guide

CEN - European Committee for Standardization, peak phenomenon

  • CEN ISO/TS 80004-12:2017 Nanotechnologies - Vocabulary - Part 12: Quantum phenomena in nanotechnology
  • PREN 54-15-2006 Fire detection and fire alarm systems - Point detectors using a combination of detected fire phenomena
  • CLC/TR IEC 62453-42:2019 Field device tool (FDT) interface specification - Part 42: Object model integration profile - Common Language Infrastructure

AENOR, peak phenomenon

  • UNE-EN 1925:1999 NATURAL STONE TEST METHODS. DETERMINATION OF WATER ABSORPTION COEFFICIENT BY CAPILLARITY
  • UNE-IEC 60050-393:2008 International Electrotechnical Vocabulary - Part 393: Nuclear instrumentation - Physical phenomena and basic concepts
  • UNE-EN 15801:2010 Conservation of cultural property - Test methods - Determination of water absorption by capillarity
  • UNE 20509-1:1985 RADIO INTERFERENCE CHARACTERISTICS OF OVERHEAD POWER LINES AND HIGH-VOLTAGE EQUIPMENT. DESCRIPTION OF PHENOMENA
  • UNE 21000-1-2:2002 IN Electromagnetic compatibility (EMC) - Part 1-2: General - Methodology for the achievement of the functional safety of electrical and electronic equipment with regard to electromagnetic phenomena .
  • UNE-EN 61340-5-2:2002 Electrostatics -- Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide.
  • UNE 23035-2:2003 Equipment for fire protection. Longtime afterglowing signs. Part 2: Measurement of longtime afterglowing products on the spot.
  • UNE 21000-2-3:2003 IN Electromagnetic compatibility (EMC) - Part 2: Environment - Section 3: Description of the environment - Radiated and non-network-frequency-related conducted phenomena.

Lithuanian Standards Office , peak phenomenon

  • LST EN 15801-2010 Conservation of cultural property - Test methods - Determination of water absorption by capillarity
  • LST EN 61340-5-2+AC-2002 Electrostatics -- Part 5-2: Protection of electronic devices from electrostatic phenomena - User guide (IEC 61340-5-2:1999)
  • LST EN 61340-5-1-2008 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements (IEC 61340-5-1:2007)

IAEA - International Atomic Energy Agency, peak phenomenon

  • SSG-18-2011 Meteorological and Hydrological Hazards in Site Evaluation for Nuclear Installations Specific Safety Guide

ZA-SANS, peak phenomenon

  • SANS 105-B05:1993 Textiles - Tests for colour fastness Part B05: Detection and assessment of photochromism
  • SANS 218-1:2005 Radio interference characteristics of overhead power lines and high-voltage equipment Part 1: Description of phenomena

ES-UNE, peak phenomenon

  • UNE-EN 61000-1-2:2016 Electromagnetic compatibility (EMC) - Part 1-2: General - Methodology for the achievement of functional safety of electrical and electronic systems including equipment with regard to electromagnetic phenomena (Endorsed by AENOR in November of 2016.)
  • UNE-EN 61340-5-1:2016 Electrostatics - Part 5-1: Protection of electronic devices from electrostatic phenomena - General requirements (Endorsed by Asociación Española de Normalización in January of 2017.)

VN-TCVN, peak phenomenon

  • TCVN 7379-1-2004 Radio interference characteristics of overhead power lines and high-voltage equipment.Part 1:Description of phenomena

TH-TISI, peak phenomenon

  • TIS 1519-1998 Radio interference characteristics of overhead power lines and high-voltage equipment.part 1: description of phenomena
  • TIS 15.15-1976 Standard for portland cement.part 15: method of testing for false set of portland cement by paste method

IX-UIC, peak phenomenon

  • UIC R 776-2-2009 Design requirements for rail-bridges based on interaction phenomena between train,track and bridge

Group Standards of the People's Republic of China, peak phenomenon

  • T/CSAE 288-2022 Test methods and requirements for transient phenomenon of power supply port of 60 V~1000 V components of electric vehicles

SAE - SAE International, peak phenomenon

  • SAE ARP5571A-2008 Gas Turbine Engine Performance Presentation and Nomenclature For Object-Oriented Computer Programs
  • SAE ARP5571C-2018 Gas Turbine Engine Performance Presentation and Nomenclature For Object-Oriented Computer Programs

BELST, peak phenomenon

  • STB 1405-2003 Safety in emergencies. Monitoring and forecasting of hazardous geological phenomen and processes. General requirements
  • STB 1407-2003 Safety in emergencies. Monitoring and forecasting of dangerous hydrological phenomena and processes. General requirements
  • STB 1406-2003 Safety in emergencies. Monitoring and forecasting of dangerous weather phenomen and processes. General requirements

IX-CISPR, peak phenomenon

  • CISPR 18-1-1982 Radio interference characteristics of overhead power lines and high-voltage equipment. Part 1: description of phenomena

European Telecommunications Standards Institute (ETSI), peak phenomenon

  • ETSI EN 301 003-4-1999 Broadband Integrated Services Digital Network (B-ISDN); Digital Subscriber Signalling System No. Two (DSS2) Protocol; Connection Characteristics; Peak Cell Rate Modification by the Connection Owner; Part 4: Abstract Test Suite (ATS) and Partial Protocol
  • ETSI EN 301 003-4-2000 Broadband Integrated Services Digital Network (B-ISDN); Digital Subscriber Signalling System No. Two (DSS2) Protocol; Connection Characteristics; Peak Cell Rate Modification by the Connection Owner; Part 4: Abstract Test Suite (ATS) and Partial Protocol I
  • ETSI EN 301 003-6-1999 Broadband Integrated Services Digital Network (B-ISDN); Digital Subscriber Signalling System No. Two (DSS2) Protocol; Connection Characteristics; Peak Cell Rate Modification by the Connection Owner; Part 6: Abstract Test Suite (ATS) and Partial Protocol
  • ETSI EN 301 003-6-2000 Broadband Integrated Services Digital Network (B-ISDN); Digital Subscriber Signalling System No. Two (DSS2) Protocol; Connection Characteristics; Peak Cell Rate Modification by the Connection Owner; Part 6: Abstract Test Suite (ATS) and Partial Protocol I

Standard Association of Australia (SAA), peak phenomenon

  • AS/NZS 61000.2.3:1999 Electromagnetic compatibility (EMC) - Environment - Description of the environment - Radiated and non-network-frequency-related conducted phenomena

NEMA - National Electrical Manufacturers Association, peak phenomenon

  • NEMA PS 3.3-2004 Digital Imaging and Communications in Medicine (DICOM) Part 3: Information Object Definitions (Now Copyrighted by DICOM)
  • NEMA PS 3.18-2004 Digital Imaging and Communications in Medicine (DICOM) Part 18: Web Access to DICOM Persistent Objects (WADO) (Now Copyrighted by DICOM)
  • NEMA NTCIP 1210-2013 National Transportation Communications for ITS Protocol Field Management Stations (FMS)—Part 1: Object Definitions for Signal System Masters (SSM) (Version v01)

Canadian Standards Association (CSA), peak phenomenon

  • CSA ISO/IEC 30106-2:2021 Information technology - Object oriented BioAPI - Part 2: Java implementation (Adopted ISO/IEC 30106-2:2020, second edition, 2020-11)

Indonesia Standards, peak phenomenon

IT-UNI, peak phenomenon

  • UNI 6542-1969 Glass fibre materials for thermal and acoustical insulation. Resin bonded felts and slabs and pipe coverings. Determination of the inibition due to the capillarity.

ANSI - American National Standards Institute, peak phenomenon

  • INCITS/ISO/IEC 14478-1:1998 Information technology - Computer graphics and image processing - Presentation Environment for Multimedia Objects (PREMO) - Part 1: Fundamentals of PREMO (Adopted by INCITS)

IN-BIS, peak phenomenon

ETSI - European Telecommunications Standards Institute, peak phenomenon

  • TS 124 312-2010 Universal Mobile Telecommunications System (UMTS); LTE; Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V9.0.0; 3GPP TS 24.312 version 9.0.0 Release 9)
  • TS 124 312-2017 Universal Mobile Telecommunications System (UMTS); LTE; Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V14.0.0; 3GPP TS 24.312 version 14.0.0 Release 14)
  • TS 124 312-2012 Universal Mobile Telecommunications System (UMTS); LTE; Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V10.5.0; 3GPP TS 24.312 version 10.5.0 Release 10)
  • TS 124 312-2015 Universal Mobile Telecommunications System (UMTS); LTE; Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V12.8.0; 3GPP TS 24.312 version 12.8.0 Release 12)
  • TS 124 312-2018 Universal Mobile Telecommunications System (UMTS); LTE; Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V15.0.0; 3GPP TS 24.312 version 15.0.0 Release 15)
  • TS 124 312-2014 Universal Mobile Telecommunications System (UMTS); Access Network Discovery and Selection Function (ANDSF) Management Object (MO) (V12.6.1; 3GPP TS 24.312 version 12.6.1 Release 12)

ITU-T - International Telecommunication Union/ITU Telcommunication Sector, peak phenomenon

  • ITU-T K.34-1996 Classification of Electromagnetic Environmental Conditions for Telecommunication Equipment - Fast Transient and Radio-Frequency Phenomena - Series K: Protection Against Interference (Study Group 5; 16 pp)




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