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Infrared spectrum use environment

Infrared spectrum use environment, Total:158 items.

In the international standard classification, Infrared spectrum use environment involves: Air quality, Vibration and shock with respect to human beings, Analytical chemistry, Paints and varnishes, Physics. Chemistry, Edible oils and fats. Oilseeds, Coals, Fuels, Optical equipment, Space systems and operations, Plastics, Cereals, pulses and derived products, Protection against fire, Lubricants, industrial oils and related products, Rubber and plastics products, Soil quality. Pedology, Radiation protection, Radiation measurements, Fibre optic communications, Water quality.


International Organization for Standardization (ISO), Infrared spectrum use environment

  • ISO 4224:2000 Ambient air - Determination of carbon monoxide - Non-dispersive infrared spectrometry method
  • ISO/TS 10867:2010 Nanotechnologies - Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • ISO/TS 10867:2019 Nanotechnologies — Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • ISO 20368:2017 Plastics - Epoxy resins - Determination of degree of crosslinking of crosslinked epoxy resins by Fourier Transform Infrared (FTIR) Spectroscopy
  • ISO 11382:2022 Optics and photonics — Optical materials and components — Characterization of optical materials used in the infrared spectral range from 0,78 μm to 25 μm
  • ISO/TS 19021:2018 Test method for determination of gas concentrations in ISO 5659-2 using Fourier transform infrared spectroscopy
  • ISO 10109-11:2001 Optics and optical instruments - Environmental requirements - Part 11: Optical instruments for outdoor conditions of use
  • ISO/CD 8237-1 Optical materials and components — Specification of chalcogenide glass used in the infrared spectrum — Part 1: Definitions and general
  • ISO/TS 18507:2015 Surface chemical analysis - Use of Total Reflection X-ray Fluorescence spectroscopy in biological and environmental analysis
  • ISO/FDIS 22036:2023 Environmental solid matrices — Determination of elements using inductively coupled plasma optical emission spectrometry (ICP-OES)
  • ISO/DIS 19702:2023 Sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO 19702:2015 Guidance for sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO/CD 19702 Sampling and analysis of toxic gases and vapours in fire effluents using Fourier Transform Infrared (FTIR) spectroscopy
  • ISO 18589-4:2019 Measurement of radioactivity in the environment — Soil — Part 4: Plutonium 238 and plutonium 239 + 240 — Test method using alpha spectrometry
  • ISO 18589-4:2009 Measurement of radioactivity in the environment - Soil - Part 4: Measurement of plutonium isotopes (plutonium 238 and plutonium 239 + 240) by alpha spectrometry

Korean Agency for Technology and Standards (KATS), Infrared spectrum use environment

  • KS I ISO 4224:2006 Ambient air-Determination of carbon monoxide-Non-dispersive infrared spectrometry method
  • KS I ISO 4224-2006(2016) Ambient air-Determination of carbon monoxide-Non-dispersive infrared spectrometry method
  • KS I ISO 4224:2021 Ambient air — Determination of carbon monoxide —Non-dispersive infrared spectrometric method
  • KS B ISO 10109-11-2006(2016) Optics and optical instruments — Environmental requirements —Part 11: Optical instruments for outdoor conditions of use
  • KS B ISO 10109-11-2006(2021) Optics and optical instruments — Environmental requirements —Part 11: Optical instruments for outdoor conditions of use
  • KS B ISO 10109-11:2006 Optics and optical instruments-Environmental requirements-Part 11:Optical instruments for outdoor conditions of use
  • KS C IEC 61275:2005 Radiation protection instrumentation-Measurement of discrete radionuclides in the environment-In situ photon spectrometry system using a germanium detector
  • KS C IEC 61275:2016 Radiation protection instrumentation-Measurement of discrete radionuclides in the environment-In situ photon spectrometry system using a germanium detector
  • KS C IEC 61275-2016(2021) Radiation protection instrumentation-Measurement of discrete radionuclides in the environment-In situ photon spectrometry system using a germanium detector
  • KS I ISO 14382:2020 Workplace atmospheres — Determination of toluene diisocyanate vapours using 1-(2-pyridyl)piperazine-coated glass fibre filters and analysis by high performance liquid chromatography with ultraviolet a

Lithuanian Standards Office , Infrared spectrum use environment

  • LST ISO 4224:2001 Ambient air. Determination of carbon monoxide. Non-dispersive infrared spectrometry method
  • LST EN 14626-2012 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • LST EN 15483-2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • LST EN 15948-2012 Cereals - Determination of moisture and protein - Method using Near-Infrared-Spectroscopy in whole kernels
  • LST EN 15948-2021 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels
  • LST EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry (ISO 18589-4:2019)

AENOR, Infrared spectrum use environment

  • UNE 77252:2003 Ambient air. Determination of carbon monoxide. Non-dispersive infrared spectrometry method.
  • UNE-EN 14626:2013 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • UNE-EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • UNE-EN 16253:2014 Air quality - Atmospheric measurements near ground with active Differential Optical Absorption Spectroscopy (DOAS) - Ambient air and diffuse emission measurements

European Committee for Standardization (CEN), Infrared spectrum use environment

  • EN 14626:2005 Ambient air quality - Standard method for the measurement of the concentration of carbon monoxide by nondispersive infrared spectroscopy
  • EN 15483:2008 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • EN 14626:2012 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry (ISO 18589-4:2019)

VN-TCVN, Infrared spectrum use environment

  • TCVN 7725-2007 Ambient air.Determination of carbon monoxide.Non-dispersive infrared spectrometric method

KR-KS, Infrared spectrum use environment

  • KS I ISO 4224-2021 Ambient air — Determination of carbon monoxide —Non-dispersive infrared spectrometric method
  • KS B ISO 10109-11-2023 Optics and optical instruments — Environmental requirements — Part 11: Optical instruments for outdoor conditions of use
  • KS C IEC 61275-2016 Radiation protection instrumentation-Measurement of discrete radionuclides in the environment-In situ photon spectrometry system using a germanium detector
  • KS I ISO 14382-2020 Workplace atmospheres — Determination of toluene diisocyanate vapours using 1-(2-pyridyl)piperazine-coated glass fibre filters and analysis by high performance liquid chromatography with ultraviolet a

Group Standards of the People's Republic of China, Infrared spectrum use environment

  • T/CSTM 00563-2022 Determination of microplastics in scenic environment use water —Fourier transform infrared microspectroscopy

American Society for Testing and Materials (ASTM), Infrared spectrum use environment

  • ASTM E2937-18 Standard Guide for Using Infrared Spectroscopy in Forensic Paint Examinations
  • ASTM E2310-04(2015) Standard Guide for Use of Spectral Searching by Curve Matching Algorithms with Data Recorded Using Mid-Infrared Spectroscopy
  • ASTM E2937-13 Standard Guide for Using Infrared Spectroscopy in Forensic Paint Examinations
  • ASTM E2310-04 Standard Guide for Use of Spectral Searching by Curve Matching Algorithms with Data Recorded Using Mid-infrared Spectroscopy
  • ASTM E2310-04(2009) Standard Guide for Use of Spectral Searching by Curve Matching Algorithms with Data Recorded Using Mid-Infrared Spectroscopy
  • ASTM D7417-17 Standard Test Method for Analysis of In-Service Lubricants Using Particular Four-Part Integrated Tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity, and Laser Particle Counter)
  • ASTM D6277-01 Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D6277-99 Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D6277-01(2006) Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D6277-07(2017) Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D8290-22 Standard Test Method for Determination of Fatty Acid Methyl Esters (FAME) in Aviation Turbine Fuel using Mid-Infrared Laser Spectroscopy
  • ASTM D7417-10 Standard Test Method for Analysis of In-Service Lubricants Using Particular Four-Part Integrated Tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity, and Laser Particle Counter)
  • ASTM D7418-12 Standard Practice for Set-Up and Operation of Fourier Transform Infrared (FT-IR) Spectrometers for In-Service Oil Condition Monitoring
  • ASTM D6277-07 Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D6277-07(2012) Standard Test Method for Determination of Benzene in Spark-Ignition Engine Fuels Using Mid Infrared Spectroscopy
  • ASTM D5477-11 Standard Practice for Identification of Polymer Layers or Inclusions by Fourier Transform Infrared Microspectroscopy (FT-IR)
  • ASTM E2412-23 Standard Practice for Condition Monitoring of In-Service Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM E2412-10(2018) Standard Practice for Condition Monitoring of Used Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7844-22 Standard Test Method for Condition Monitoring of Soot in In-Service Lubricants by Trend Analysis using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7844-22a Standard Test Method for Condition Monitoring of Soot in In-Service Lubricants by Trend Analysis using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7806-12 Standard Test Method for Determination of the Fatty Acid Methyl Ester (FAME) Content of a Blend of Biodiesel and Petroleum-Based Diesel Fuel Oil Using Mid-Infrared Spectroscopy
  • ASTM E2412-04 Standard Practice for Condition Monitoring of Used Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM E2412-10 Standard Practice for Condition Monitoring of Used Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7844-12 Standard Test Method for Condition Monitoring of Soot in In-Service Lubricants by Trend Analysis using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7861-14e1 Standard Test Method for Determination of Fatty Acid Methyl Esters (FAME) in Diesel Fuel by Linear Variable Filter (LVF) Array Based Mid-Infrared Spectroscopy
  • ASTM D7844-20 Standard Test Method for Condition Monitoring of Soot in In-Service Lubricants by Trend Analysis using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7844-18 Standard Test Method for Condition Monitoring of Soot in In-Service Lubricants by Trend Analysis using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7797-16 Standard Test Method for Determination of the Fatty Acid Methyl Esters Content of Aviation Turbine Fuel Using Flow Analysis by Fourier Transform Infrared Spectroscopy&x2014;Rapid Screening Method
  • ASTM D7412-09 Standard Test Method for Condition Monitoring of Phosphate Antiwear Additives in In-Service Petroleum and Hydrocarbon Based Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7414-09 Standard Test Method for Condition Monitoring of Oxidation in In-Service Petroleum and Hydrocarbon Based Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7415-09 Standard Test Method for Condition Monitoring of Sulfate By-Products in In-Service Petroleum and Hydrocarbon Based Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry
  • ASTM D7624-10 Standard Test Method for Condition Monitoring of Nitration in In-Service Petroleum and Hydrocarbon-Based Lubricants by Trend Analysis Using Fourier Transform Infrared (FT-IR) Spectrometry

Danish Standards Foundation, Infrared spectrum use environment

  • DS/EN 14626:2012 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • DS/ISO/TS 10867:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • DS/EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • DS/ISO/TS 10868:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using ultraviolet-visible-near infrared (UV-Vis-NIR) absorption spectroscopy
  • DS/EN 15948:2012 Cereals - Determination of moisture and protein - Method using Near-Infrared-Spectroscopy in whole kernels
  • DS/ISO 18589-4:2021 Measurement of radioactivity in the environment – Soil – Part 4: Plutonium 238 and plutonium 239 + 240 – Test method using alpha spectrometry
  • DS/EN 16253:2013 Air quality - Atmospheric measurements near ground with active Differential Optical Absorption Spectroscopy (DOAS) - Ambient air and diffuse emission measurements
  • DS/EN 50411-3-6:2013 Fibre organisers and closures to be used in optical fibre communication systems - Product specifications - Part 3-6: Multimode mechanical fibre splice for use in an outdoor protected environment (Cat U)
  • DS/EN ISO 18589-4:2021 Measurement of radioactivity in the environment – Soil – Part 4: Plutonium 238 and plutonium 239 + 240 – Test method using alpha spectrometry (ISO 18589-4:2019)

Association Francaise de Normalisation, Infrared spectrum use environment

  • NF X43-350*NF EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • XP T16-200*XP ISO/TS 10867:2020 Nanotechnologies - Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • XP ISO/TS 10867:2020 Nanotechnologies - Caractérisation de nanotubes de carbone monofeuillet en utilisant la spectroscopie de photoluminescence dans le proche infra-rouge
  • NF EN 14626:2012 Air ambiant - Méthode normalisée de mesurage de la concentration en monoxyde de carbone par spectroscopie à rayonnement infrarouge non dispersif
  • NF X43-065*NF EN 14626:2012 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • XP P92-021*XP ISO/TS 19021:2019 Test method for determination of gas concentrations in ISO 5659-2 using Fourier transform infrared spectroscopy
  • XP X43-243:2002 Workplace air - Fourier transform infrared spectrometric determination of crystalline silica - Sampling using a rotating cup device or a filter membrane
  • NF C93-921-3-6*NF EN 50411-3-6:2013 Fibre organisers and closures to be used in optical fibre communication systems - Product specifications - Part 3-6 : multimode mechanical fibre splice for use in an outdoor protected environment (Cat U)
  • NF X70-102*NF ISO 19702:2016 Guidance for sampling and analysis of toxic gases and vapours in fire effluents using Fourier transform infrared (FTIR) spectroscopy
  • NF EN 50411-4-1:2019 Organiseurs et boîtiers de fibres à utiliser dans les systèmes de communication par fibres optiques - Spécifications de produits - Partie 4-1 : armoire située dans un environnement urbain pour fibres optiques passives, pour la catégorie A
  • NF M07-203:2008 Petroleum products - Determination of the total hydrocarbon index in aqueous effluents by Infra-Red spectrometry - Petroleum refineries. Industries, warehouses and transportation of petroleum products.

German Institute for Standardization, Infrared spectrum use environment

  • DIN EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy; English version of DIN EN 15483:2009-02
  • DIN EN 14626:2022-11 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy; German and English version prEN 14626:2022 / Note: Date of issue 2022-09-30*Intended as replacement for DIN EN 14626 (201...
  • DIN EN 14626:2012-12 Ambient air - Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy; German version EN 14626:2012 / Note: To be replaced by DIN EN 14626 (2022-11).
  • DIN EN 14626:2012 Ambient air.Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy; German version EN 14626:2012
  • DIN EN 15483:2009-02 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy; German version EN 15483:2008
  • DIN EN 15948:2020-12 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels; German version EN 15948:2020
  • DIN 51453:2004 Testing of lubricants - Determination of oxidation and nitration of used motor oils - Infrared spectrometric method
  • DIN ISO 10109-11:2002 Optics and optical instruments - Environmental requirements - Part 11: Optical instruments for outdoor conditions of use (ISO 10109-11:2001)
  • DIN EN 16602-70-05:2015 Space product assurance - Detection of organic contamination surfaces by infrared spectroscopy; English version EN 16602-70-05:2014
  • DIN EN 15948:2020 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels; German version EN 15948:2020
  • DIN 51639-4:2020 Testing of lubricants - Test methods - Part 4: Determination of vegetable oil content in used diesel motor oils using infrared spectrometry
  • DIN IEC 61275:2014 Radiation protection instrumentation - Measurement of discrete radionuclides in the environment - In situ photon spectrometry system using a germanium detector (IEC 61275:2013)
  • DIN EN 16253:2013-09 Air quality - Atmospheric measurements near ground with active Differential Optical Absorption Spectroscopy (DOAS) - Ambient air and diffuse emission measurements; German version EN 16253:2013

British Standards Institution (BSI), Infrared spectrum use environment

  • BS EN 15483:2008 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • BS EN 14626:2012 Ambient air. Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • PD ISO/TS 10867:2019 Nanotechnologies. Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • BS EN 14626:2005 Ambient air quality - Standard method for the measurement of the concentration of carbon monoxide by nondispersive infrared spectroscopy
  • 22/30450999 DC BS EN 14626. Ambient air. Standard method for the measurement of the concentration of carbon monoxide by non-dispersive infrared spectroscopy
  • BS ISO 22576:2020 Optics and photonics. Optical materials and components. Specification of calcium fluoride used in the infrared spectrum
  • BS EN 16602-70-05:2014 Space product assurance. Detection of organic contamination surfaces by infrared spectroscopy
  • 19/30362632 DC BS ISO 22576. Optics and photonics. Optical materials and components. Specification of calcium fluoride used in the infrared spectrum
  • BS ISO 10109-11:2001 Optics and optical instruments - Environmental requirements - Optical instruments for outdoor conditions of use
  • BS EN 15948:2020 Cereals. Determination of moisture and protein. Method using Near-Infrared Spectroscopy in whole kernels
  • BS ISO 11382:2011 Optics and photonics. Optical materials and components. Characterization of optical materials used in the infrared spectral range from 0,78 $Gmm to 25 $Gmm
  • BS DD ISO/TS 10868:2011 Nanotechnologies. Characterization of singlewall carbon nanotubes using ultraviolet-visible-near infrared (UV-Vis-NIR) absorption spectroscopy
  • PD ISO/TS 10868:2017 Tracked Changes. Nanotechnologies. Characterization of single-wall carbon nanotubes using ultraviolet-visible-near infrared (UV-Vis-NIR) absorption spectroscopy
  • 18/30374728 DC BS EN 15948. Cereals. Determination of moisture and protein. Method using Near-Infrared-Spectroscopy in whole kernels
  • 22/30444633 DC BS ISO 11382. Optics and photonics. Optical materials and components. Characterization of optical materials used in the infrared spectral range from 0,78 µm to 25 µm
  • BS ISO 11382:2022 Optics and photonics. Optical materials and components. Characterization of optical materials used in the infrared spectral range from 0,78 µm to 25 µm
  • 16/30287218 DC BS ISO 19021. Test method for determination of gas concentrations in ISO 5659-2 using Fourier transform infrared spectroscopy
  • BS PD ISO/TS 18507:2015 Surface chemical analysis. Use of Total Reflection X-ray Fluorescence spectroscopy in biological and environmental analysis
  • BS EN ISO 18589-4:2021 Measurement of radioactivity in the environment. Soil - Plutonium 238 and plutonium 239 + 240. Test method using alpha spectrometry
  • BS IEC 61275:2013 Radiation protection instrumentation. Measurement of discrete radionuclides in the environment. In situ photon spectrometry system using a germanium detector
  • BS ISO 18589-4:2009 Measurement of radioactivity in the environment - Soil - Measurement of plutonium isotopes (plutonium 238 and Plutonium 239 + 240) by alpha spectrometry
  • BS EN 50411-3-6:2013 Fibre organisers and closures to be used in optical fibre communication systems. Product specifications. Multimode mechanical fibre splice for use in an outdoor protected environment (Cat U)
  • BS EN 927-6:2006 Paints and varnishes - Coating materials and coating systems for exterior wood - Part 6:Exposure of wood coatings to artificial weathering using fluorescent UV lamps and water
  • BS EN 927-6:2008 Paints and varnishes - Coating materials and coating systems for exterior wood - Exposure of wood coatings to artificial weathering using fluorescent UV lamps and water

RU-GOST R, Infrared spectrum use environment

  • GOST 33441-2015 Vegetable oils. Determination of quality and safety by near infrared spectrometry
  • GOST 32465-2013 Solid mineral fuel. Determination of sulfur by IR spectrometry
  • GOST 33077-2014 Biodiesel fuel blends. Determination of fatty acid methyl esters (FAME) content using mid infrared spectroscopy (FTIR-ATR-PLS method)

ES-UNE, Infrared spectrum use environment

  • UNE-EN 15948:2021 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels
  • UNE-EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry (ISO 18589-4:2019) (Endorsed by Asociación Española de Normalización in September of 2021.)
  • UNE-EN ISO 18589-3:2018 Measurement of radioactivity in the environment - Soil - Part 3: Test method of gamma-emitting radionuclides using gamma-ray spectrometry (ISO 18589-3:2015, Corrected version 2015-12-01)

ECIA - Electronic Components Industry Association, Infrared spectrum use environment

  • EIA-448-21A-2000 Test Standard for Electromechanical Components - Environmental Effects of Machine Soldering Using an Infrared System
  • EIA-448-21-1989 Method 21 Test Standard for Electromechanical Switches: Environmental Effects of Machine Soldering Using an Infrared System
  • SP4674-2000 Test Standard for Electromechanical Components: Environmental Effects of Machine Soldering Using an Infrared System (Comment Period Expires: July 31@ 2000)

Electronic Components, Assemblies and Materials Association, Infrared spectrum use environment

  • ECA EIA-448-21-1989 Method 21 Test Standard for Electromechanical Switches: Environmental Effects of Machine Soldering Using an Infrared System

Professional Standard - Energy, Infrared spectrum use environment

  • NB/SH/T 0940-2016 Test method for the analysis of in-use lubricants using a specific 4-in-1 tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity and Laser Particle Counter)

国家能源局, Infrared spectrum use environment

  • SH/T 0940-2016 Test methods for analyzing in-service lubricants using specific four-in-one testers (atomic emission spectrometry, infrared spectroscopy, viscosity and laser particle counter)

AT-ON, Infrared spectrum use environment

  • OENORM EN 15948-2020 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels
  • OENORM EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry (ISO 18589-4:2019)

CH-SNV, Infrared spectrum use environment

  • SN EN 15948-2021 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels
  • SN EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry (ISO 18589-4:2019)

IT-UNI, Infrared spectrum use environment

  • UNI EN 15948-2021 Cereals - Determination of moisture and protein - Method using Near-Infrared Spectroscopy in whole kernels
  • UNI EN ISO 18589-4:2021 Measurement of radioactivity in the environment - Soil - Part 4: Plutonium 238 and plutonium 239 + 240 - Test method using alpha spectrometry

CEN - European Committee for Standardization, Infrared spectrum use environment

  • PREN 15948-2018 Cereals - Determination of moisture and protein - Method using Near-Infrared-Spectroscopy in whole kernels

American National Standards Institute (ANSI), Infrared spectrum use environment

  • ANSI/ASTM D8290:2020 Standard Test Method for Determination of Fatty Acid Methyl Esters (FAME) in Aviation Turbine Fuel using Mid-Infrared Laser Spectroscopy

Standard Association of Australia (SAA), Infrared spectrum use environment

International Electrotechnical Commission (IEC), Infrared spectrum use environment

  • IEC 61275:1997 Radiation protection instrumentation - Measurement of discrete radionuclides in the environment - In situ photon spectrometry system using a germanium detector
  • IEC 61275:2013 Radiation protection instrumentation.Measurement of discrete radionuclides in the environment.In situ photon spectrometry system using a germanium detector

European Committee for Electrotechnical Standardization(CENELEC), Infrared spectrum use environment

  • EN 50411-3-6:2013 Fibre organisers and closures to be used in optical fibre communication systems - Product specifications - Part 3-6: Multimode mechanical fibre splice for use in an outdoor protected environment (Cat U)




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