Sign In |Help & Support
ALL SECTORS
  • ALL SECTORS
  • GB(National Standard)
  • CB(Shipping)
  • CECS(Engineering Construction)
  • CJ(Urban Construction)
  • CY(News and Publication)
  • DB(Provincial Standard)
  • DL(Electricity & Power)
  • DZ(Geology & Mineralogy)
  • FZ(Spinning & Textile)
  • GA(Public Security)
  • HB(Aviation)
  • HG(Chemical Industry)
  • HJ(Environmental Protection)
  • JB(Machinery)
  • JC(Building Materials)
  • JG(Building & Construction)
  • JJ(Metering)
  • JT(Highway & Transportation)
  • LY(Forestry)
  • MT(Coal)
  • NB(Energy)
  • NY(Agriculture)
  • QB(Light Industry)
  • QC(Automobile & Vehicle)
  • QJ(Aerospace)
  • SH(Petrochemical)
  • SJ(Electronics)
  • SL(Water Resources)
  • SN(Commodity Inspection)
  • SY(Oil & Gas)
  • TB(Railway & Train)
  • YB(Ferrous Metallurgy)
  • YC(Tobacco)
  • YD(Telecommunication)
  • YY(Medical Device)
Database: 365,228(8 Aug 2026)

Photoelectric Spectroscopy Sample Preparation Technology

Photoelectric Spectroscopy Sample Preparation Technology, Total:254 items.

The international standard classification for "Photoelectric Spectroscopy Sample Preparation Technology" includes: Measurement of electrical and magnetic quantities , Chemical laboratories. Laboratory equipment , Other methods of testing of metals , Optical measuring instruments , Physicochemical methods of analysis , Solar energy engineering , Optoelectronics. Laser equipment , Optics and optical measurements , Pipeline components and pipelines in general , Copper and copper alloys , Mining and quarrying .

The Chinese standard classification for "Photoelectric Spectroscopy Sample Preparation Technology" includes: Integrated test system , Electrochemical, thermochemistry and optical profile type analyzer , Casting , Optical testing instrument , Basic standards and general methods for photosensitive material , Synthetic materials in general , Solar energy , Other electron tube , Basic Subject in general , Electric power testing technique , Heavy metals and their alloys analysis method , Basic standard and general method , Electric lighting in general , Electron optics and other physical optics instrument .


Professional Standard - Electron

  • SJ 2029-1982 Generic specification for visible light photoresistors
  • SJ/Z 3206.8-1989 Geneeral rules for preparation of standard sample for spectrum analysis
  • SJ/Z 3206.7-1989 Geneeral rules for preparation and sampling sample for emission spectrum analysis
  • SJ/T 10458-1993 Standard guide for specimen handling in auger electron spectroscopy and X-ray photoelectron spectroscopy

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 5678-1985 The method for sampling cast alloys for spectrochemical analysis
  • GB/T 37225-2018(英文版) Nanotechnology: Characterization of Multi-walled Carbon Nanotubes in Aqueous Solutions by Extinction Spectroscopy
  • GB/T 37225-2018 Nanotechnology—Characterization of multiwall carbon nanotube in aqueous solution—Extinction spectroscopy
  • GB/T 5295-1985 The spectral response characteristic series of photocathodes
  • GB/T 33249-2016 Nanotechnology--Quantification of gold nanorods in living cells--Extinction spectroscopy
  • GB/T 36081-2018e Nanotechnology—Characterization of CdSe quantum dot nanocrystal—Fluorescence spectroscopy
  • GB/T 31472-2015 Standard guide to charge control and charge referencing techniques in X-ray photoelectron spectroscopy
  • GB 5295-1985 The spectral response characteristic series of photocathodes
  • GB/T 40289-2021 Technical requirement of power control system for photovoltaic power station
  • GB/T 33252-2016(英文版) Nanotechnology Laser Confocal Microscope Raman Spectrometer Performance Test
  • GB/T 32199-2015 Standard practice for general techniques for obtaining infrared spectra for qualitative analysis
  • GB/T 36081-2018 Nanotechnology—Characterization of CdSe quantum dot nanocrystal—Fluorescence spectroscopy
  • GB/T 36081-2018(英文版) Nanotechnology: Characterization of Cadmium Selenide Quantum Dot Nanocrystals by Fluorescence Emission Spectroscopy
  • GB/T 32198-2015 Standard practice for general techniques of infrared quantitative analysis
  • GB/T 5678-2013 Sampling methods of spectrochemical analysis for cast alloys
  • GB/T 33252-2016 Nanotechnology-Performance testing for laser confocal microscope Raman spectrometers

Professional Standard - Energy and Power Planning

  • DL/T 1623-2016 Technical Specification of Prefabricated Optical Cables in Intelligent Transformer Station
  • DL/T 991-2006 Spectral analysis guideline of metal for electrical power equipment

Professional Standard - Non-ferrous Metal

  • YSBS 31202-2022 Standard sample for spectral analysis of alloy structural steel 20CrNiMo
  • YSBS 31212-2022 Standard sample for spectral analysis of alloy structural steel 38CrMoAl
  • YSBS 15130-2020 Silicon Steel (50W800) Certified Reference Materials for Spectral Analysis
  • YSBS 13242-2022 Pipeline steel (X80) spectrum standard sample
  • YSBS 15134-2022 Silicon steel DQ01 spectrum standard sample
  • YSBS 13127-2022 Standard sample for spectral analysis of carbon steel Q250HDb for nuclear power
  • YSBS 13128-2022 Carbon Steel (AYHS) Spectrum Standard Sample
  • YSBS 15355-2022 Iron-nickel-based alloy N08825 standard sample for spectral analysis
  • YSBS 41353-2022 Stainless steel 310S standard sample for spectral analysis
  • YSBS 13313-2022 Grain-oriented silicon steel (30Q140) spectrum standard sample
  • YSBS 45384-2020 Niobium Low Alloy Steel Reference Material
  • YSBS 281052-2020 Pipeline Steel Certified Reference Material for Spectral Analysis
  • YSBS 15138-2022 Low alloy steel Q235 spectrum standard sample
  • YSBS 281038-2020 Stainlessl Steel Certified Reference Material for Spectral Analysis
  • YSBS 281050-2022 Low alloy steel Q690 spectrum standard sample
  • YSBS 13243-2022 Pipeline steel (X70) spectrum standard sample
  • YSBS 281048-2022 Low alloy steel Q460 spectrum standard sample
  • YSBS 31302-2022 Standard sample for spectral analysis of chromium stainless steel 3Cr13
  • YSBS 31207-2022 Standard sample for spectral analysis of spring steel 60Si2Mn
  • YSBS 31111-2022 Standard sample for spectral analysis of 35 carbon steel
  • YSBS 31206-2022 Standard sample for spectral analysis of alloy structural steel 42CrNiMo
  • YSBS 35127-2022 Standard sample for spectral analysis of high carbon steel 82B
  • YSBS 31203-2022 Standard sample for spectral analysis of alloy structural steel 42CrMo
  • YSBS 13201-2022 Standard sample for spectral analysis of low alloy steel Q345HD2 for nuclear power
  • YSBS 13244-2022 Low alloy steel (AH36) spectrum standard sample
  • YSBS 31301-2022 Standard sample for spectral analysis of chromium stainless steel 5Cr8Si2
  • YSBS 15357-2022 Standard sample for spectral analysis of stainless steel SUS444 (019Cr19Mo2NbTi)
  • YSBS 21369-2022 Standard sample for spectral analysis of high nitrogen stainless steel 1Cr18Mn18N
  • YSBS 281039-2020 Stainlessl Steel Certified Reference Material for Spectral Analysis
  • YSBS 13245-2022 Low alloy steel (U75V) spectrum standard sample
  • YSBS 41502-2022 GH3625 standard sample for spectral analysis of high temperature alloys
  • YSBS 13129-2022 Carbon steel (LX80B) spectrum standard sample
  • YSBS 41313-2022 Stainless steel 321 standard sample for spectral analysis
  • YSBS 31404-2022 Standard sample for spectral analysis of alloy tool steel 5CrNiMo
  • YSBS 41503-2022 GH4169 Standard sample for spectral analysis of high temperature alloys
  • YSBS 281049-2022 Low alloy steel Q550 spectrum standard sample
  • YSBS 31210-2022 Standard sample for spectral analysis of alloy structural steel Q345
  • YSBS 13240-2022 Low alloy steel (27SiMn) spectrum standard sample
  • YSBS 31402-2022 Standard sample for spectral analysis of carbon tool steel T10A
  • YSBS 41504-2022 Standard sample for spectral analysis of NS 1101 corrosion-resistant alloy
  • YSBS 15135-2022 Silicon steel 50W310 standard sample for spectral analysis
  • YSBS 281037-2020 Stainlessl Steel Certified Reference Material for Spectral Analysis
  • YSBS 41325-2022 Stainless steel 347 standard sample for spectral analysis
  • YSBS 14217-14223-2022 Low alloy steel spectral calibration sample (7 points)
  • YS/T 631-2007 Methods for analysis of zinc-the optical emission spectrometry
  • YSBS 31106-2022 30# carbon steel standard sample for spectral analysis
  • YSBS 13202-2022 Standard sample for spectral analysis of low alloy steel Q420HDc for nuclear power
  • YSBS 31211-2022 Standard sample for spectral analysis of alloy structural steel 12Cr1MoV
  • YSBS 15356-2022 Stainless steel SUS436L (019Cr18MoTi) standard sample for spectral analysis
  • YSBS 31105-2022 50# carbon steel standard sample for spectral analysis
  • YSBS 35383-2022 Standard sample for spectral analysis of alloy steel S18
  • YSBS 13241-2022 Oil pipe steel (N80) spectrum standard sample

Group Standards of the People's Republic of China

  • T/CAPE 11005-2023 Technical Specifications for Cleaning Photovoltaic Modules in Photovoltaic Power Stations
  • T/CFA 0203114-2021 Technical requirements for pattern of casting by stereo lithography apparatus
  • T/CSA 083-2024 Technical evaluation specifications for rhythmic spectrum of indoor dimming lighting products
  • T/SZFAA 02-2021 Light Spectrum Specifications for Plant Cultivation Technology
  • T/CIET 650-2024 Safety technical requirements for thyristor-controlled hydrogen power supply for photovoltaic and wind power hydrogen production
  • T/CWEC 13-2019 Technical guidelines for spectral on-line water quality monitoring system
  • T/SHDSGY 031-2023 Technical specification for high-resolution spectrometer
  • T/CISA S0006-2023 Pig Iron Spectral Analysis Standard Sample (YGTS-L04)
  • T/NMC 002-2024 Technical requirments of spectral method for online monitoring and early warning of water quality
  • T/CVIA 135-2024 Technical specifications for optical lenses for laser TVs
  • T/CEC 826-2023 Technical Specification for Multispectral Scanning of Overhead Power Lines by UAVs
  • T/FSZSCQ 1-2024 Full spectrum technology requirements for LED luminaires
  • T/SDIOT 029-2022 Technical specification for hyperspectral intelligent monitoring water quality system
  • T/HEEPA 5-2023 Technical specifications for on-site monitoring of chlorophyll-a fluorescence spectroscopy in water
  • T/HEEPA 6-2023 Technical specification for in-situ monitoring of soil petroleum hydrocarbon pollutants by fluorescence spectroscopy
  • T/CAIA SH004-2015 Rice-Determination of cadmium-Solid sampling electrothermal vaporization atomic fluorescence spectrometry
  • T/NAIA 069-2021 Determination of mercury in dry plant by water bath hot extraction and atomic fluorescence spectrometry
  • T/SLDA 16-2024 Technical specification for full spectrum floor lamps
  • T/CIET 956-2024 Solar photocatalytic hydrogen production/hydrogen production system for water photolysis technical specifications
  • T/CEC 420-2020 Technical requirements for voltage control of household photovoltaic power generation system

Professional Standard - Geology

  • DZ/T 0275.3-2015 Specification identification of rock and mineral—Part 3:Ore polished section preparation

Professional Standard - Light Industry

  • QB/T 3576-1999 Rules For Modifying the Drawings and Technical Documents of Electric Lamps

Professional Standard - Petroleum

  • SY 6880-2012 Technical specifications for spectral detection of steel materials in high hydrogen sulfide gas fields

Professional Standard - Machinery

  • JB/T 9478.8-1999 Measuring methods of photocell-Spectral sensitivity
  • JB/T 9478.9-1999 Measuring methods of photocell-Spectral response characteristic
  • JB/T 5478-1991 Manual Scanning Photoelectric Direct-reading Spectrometer
  • JB/T 12962.1-2016 Energy dispersive X-ray fluorescence spectrometer. Part 1: General specification

Shandong Provincial Standard of the People's Republic of China

  • DB37/T 2188-2012 Technical Regulations for Determination of Apple Blossom Reflection Spectroscopy

未注明发布机构

  • AMPP Paper 18193-2022 Measuring Pipeline Chemical Composition Using Laser Induced Breakdown Spectroscopy (LIBS) Technology

Taiwan Provincial Standard of the People's Republic of China

  • CNS 13805-1997 Method of Measurement for Photoluminescence of Optoelectronic Semiconductor Wafers
  • CNS 10005-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Metallic Materials
  • CNS 13921-1997 Method of atomic emission spectrophotoelectric analysis for die casting zinc alloy
  • CNS 10006-1984 Method for Photoelectric Emission Spectrochemical Analysis of Iron And Steel
  • CNS 9706-1984 General Rules for Photoelectric Emission Spectrochemical Analysis of Iron and Steel

Xinjiang Provincial Standard of the People's Republic of China

  • DB65/T 4621-2022 Technical requirements for automatic voltage control system of photovoltaic power station

Professional Standard - Aviation

  • HB/Z 206-1991 Specification for sampling of specimens for spectroscopic analysis of steel and superalloys

Hunan Provincial Standard of the People's Republic of China

  • DB43/T 3182-2025 Determination of cadmium in flavored cooked small fish - Solid injection-electrothermal evaporation atomic absorption spectrometry

Heilongjiang Provincial Standard of the People's Republic of China

  • DB23/T 1529-2013 Basic Requirements for Continuous Spectrum Confocal Microscopy

Jiangsu Provincial Standard of the People's Republic of China

American Society for Testing and Materials (ASTM)

  • ASTM STP 1066-1990 Laser Techniques in Luminescence Spectroscopy
  • ASTM E311-67(1975) Standard Recommended Practices for Sampling and Sample Preparation Techniques in Spectrochemical Analysis
  • ASTM E995-04 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-ray Photoelectron Spectroscopy
  • ASTM E995-16 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
  • ASTM E995-25 Standard Guide for Background Subtraction Techniques in Auger Electron Spectroscopy and X-Ray Photoelectron Spectroscopy
  • ASTM E995-97 Standard Guide for Background Subtraction Techniques in Auger Electron and X-ray Photoelectron Spectroscopy
  • ASTM RR-B02-1000 2014 B0982-Specification for Sampling and Sample Preparation of Lead and Lead Alloys for Optical Emission Spectrometric or ICP Analysis
  • ASTM B982-20 Standard Specification for Sampling and Sample Preparation of Lead and Lead Alloys for Optical Emission Spectrometric or ICP Analysis
  • ASTM E1523-03 Standard Guide to Charge Control and Charge Referencing Techniques in X-Ray Photoelectron Spectroscopy
  • ASTM E1523-97 Standard Guide to Charge Control and Charge Referencing Techniques in X-Ray Photoelectron Spectroscopy
  • ASTM B982-12 Standard Specification for Sampling and Sample Preparation of Lead and Lead Alloys for Optical Emission Spectrometric OR ICP Analysis
  • ASTM E1523-15 Standard Guide to Charge Control and Charge Referencing Techniques in X-Ray Photoelectron Spectroscopy
  • ASTM E1523-09 Standard Guide to Charge Control and Charge Referencing Techniques in X-Ray Photoelectron Spectroscopy
  • ASTM E1217-11 Standard Practice for Determination of the Specimen Area Contributing to the Detected Signal in Auger Electron Spectrometers and Some X-Ray Photoelectron Spectrometers
  • ASTM B982-14 Standard Specification for Sampling and Sample Preparation of Lead and Lead Alloys for Optical Emission Spectrometric or ICP Analysis
  • ASTM E1523-24 Standard Guide to Charge Control and Charge Referencing Techniques in X-Ray Photoelectron Spectroscopy
  • ASTM B982-14e1 Standard Specification for Sampling and Sample Preparation of Lead and Lead Alloys for Optical Emission Spectrometric or ICP Analysis
  • ASTM E1217-05 Standard Practice for Determination of the Specimen Area Contributing to the Detected Signal in Auger Electron Spectrometers and Some X-Ray Photoelectron Spectrometers
  • ASTM E1217-00 Standard Practice for Determination of the Specimen Area Contributing to the Detected Signal in Auger Electron Spectrometers and Some X-Ray Photoelectron Spectrometers
  • ASTM E168-92 Standard Practice for General Techniques of Infrared Quantitative Analysis
  • ASTM E1010-09 Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E1010-84(2000) Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E484-73(1978) Optical Emission Spectroscopy Analysis of Steel Using Solution Cup Technology
  • ASTM E1010-84(2004) Standard Practice for Preparation of Disk Specimens of Steel and Iron for Spectrochemical Analysis by Remelting
  • ASTM E378-97 Silver powder technical spectrum analysis test method
  • ASTM E1015-90 Methods for reporting spectra in X-ray photoelectron spectroscopy
  • ASTM E1452-92(1996) Practice of Preparation of Calibration Solutions for Spectroscopic and Atomic Spectroscopic Analysis
  • ASTM E1728-99 Standard Practice for Field Collection of Settled Dust Samples Using Wipe Sampling Methods for Lead Determination by Atomic Spectrometry Techniques
  • ASTM E716-94(2002) Standard Practices for Sampling Aluminum and Aluminum Alloys for Spectrochemical Analysis
  • ASTM E129-74(1993)e1 Test Method: Spark Spectrometry Analysis of Thermoelectric Nickel Alloy Powder Technology
  • ASTM D6966-13 Standard Practice for Collection of Settled Dust Samples Using Wipe Sampling Methods for Subsequent Determination of Metals
  • ASTM E716-16(2021)e2 Standard Practices for Sampling and Sample Preparation of Aluminum and Aluminum Alloys for Determination of Chemical Composition by Spark Atomic Emission Spectrometry
  • ASTM E101-91 Point-plane technology for spectral analysis of aluminum and its alloys
  • ASTM E634-96 Standard Practice for Sampling of Zinc and Zinc Alloys for Optical Emission Spectrometric Analysis

Gosstandart of Russia

  • GOST 9717.2-2018 Copper. Method of spectral analysis by metal standard specimens with photographic registration of spectrum
  • GOST 9717.2-1982 Copper. Method of spectral analysis of metal standart specimens with photographic registration of spectrum
  • GOST 9716.2-1979 Copper-zinc alloys. Method spectral analysis of metal standard spesimens with photoelectric registration of spectrum
  • GOST 21195-1984 Spectral high-intensity gas-discharge sources of optical radiation. General specifications
  • GOST 9717.1-1982 Copper. Method of spectral analysis of metal standart specimens with photoelectrical registration of spectrum / Note: To be replaced by GOST 31382 (2009).
  • GOST 9716.3-1979 Copper-zinc alloys. Method of spectral analysis of oxide spesimens with photographic registration of spectrum
  • GOST 9716.1-1979 Copper-zinc alloys. Method of spectral analysis of metal standard spesimens with photographic registration of spectrum
  • GOST 13.2.001-1990 Reprography. Copyrography. Electrophotographic document copying machines. General technical requirements
  • GOST 13.2.001-2001 Reprography. Copyrography. Electrophotographic document copying machines. General technical requirements
  • GOST 27176-1986 Spectroscopic optical instruments. Terms and definitions
  • GOST 20068.2-1979 Tinless bronze. Method of spectral analysis of metal standard specimens with spectrum photo-electric record
  • GOST 17333-1980 Photoelectronic devices. Methods for measurement of spectral sensitivity of photocathodes
  • GOST 20068.1-1979 Tinless bronze. Method of spectral analysis of metal standard specimens with spectrum photographic record
  • GOST 9717.3-1982 Copper. Method of spectral analysis of oxide standart specimens
  • GOST 9717.3-2018 Copper. Method of spectral analysis by oxide standard specimens
  • GOST 20068.3-1979 Tinless bronze. Method of spectral analysis of oxide standard specimens with spectrum photographic record
  • GOST 18895-1981 Steel. Method of photoelectric spectral analysis

Standard Association of Australia (SAA)

  • AS 2611:1983 Lead and lead alloys - Sampling and preparation of solid samples for optical emission spectrometry
  • AS 2612:1983 Aluminium and aluminium alloys - Sampling and preparation of solid samples for optical emission spectrometry
  • AS 2446:1981 Zinc metal and alloys - Sampling and the preparation of solid samples for optical emission spectrometry

RO-ASRO

  • STAS 2015/2-1985 CAST IRONS AND STEELS Sampling and samples prcparation for spectral analysis
  • STAS 5177-1981 EMISSION SPECTROGRAPHICAL ANALYSIS Terminology

Korean Agency for Technology and Standards (KATS)

  • KS D ISO 3816-2011 Zinc ingots-Selection and preparation of samples for spectrographic analysis
  • KS D ISO 3816:2011 Zinc ingots-Selection and preparation of samples for spectrographic analysis
  • KS D ISO 3816-2002(2006) Zinc ingots-Selection and preparation of samples for spectrographic analysis
  • KS X ISO 13655:2006 Graphic technology-Spectral measurement and colorimetric computation for graphic arts images
  • KS D ISO 3817-2003(2008) Zinc alloy ingots-Selection and preparation of samples for spectrographic analysis
  • KS D ISO 3817:2011 Zinc alloy ingots-Selection and preparation of samples for spectrographic analysis
  • KS A ISO 5-3-2011(2021) Photography and graphic technology-Density measurements-Part 3:Spectral conditions
  • KS A ISO 5-3-2011(2016) Photography and graphic technology-Density measurements-Part 3:Spectral conditions
  • KS D ISO 3815-1:2006 Zinc and zinc alloys-Part 1:Analysis of solid samples by optical emission spectrometry
  • KS D ISO 3815-1-2006(2016) Zinc and zinc alloys-Part 1:Analysis of solid samples by optical emission spectrometry
  • KS L 3316-2014(2019) Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-2014(2024) Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-1988 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-1998 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS D ISO 3815-1:2021 Zinc and zinc alloys — Part 1: Analysis of solid samples by optical emission spectrometry
  • KS L 3316-2014 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-2019 Method for X-ray fluorescence spectrometric analysis of refractory products
  • KS L 3316-2024 Method for X-ray fluorescence spectrometric analysis of refractory products

International Organization for Standardization (ISO)

  • ISO 3816:1976 Zinc ingots; Selection and preparation of samples for spectrographic analysis
  • ISO 6774:1981 Cinematography; Spectral response of photographic sound reproducers for 8 mm Type S motion-picture films; Specifications
  • ISO 5737:1983 Prints; Preparation of standard prints for optical tests
  • ISO 3817:1976 Zinc alloy ingots; Selection and preparation of samples for spectrographic analysis
  • ISO 2239:1972 Photography — Light sources for use in sensitometric exposure — Simulation of the spectral distribution of daylight
  • ISO 3028:1974 Photography — Expendable photoflash lamps — Determination of relative spectral energy distribution for calculation of spectral distribution index
  • ISO 2242:1972 Photography — Light sources for use in sensitometric exposure — Simulation of the spectral distribution of photoflood illumination
  • ISO/FDIS 24421 Biotechnology — Minimum requirements for optical signal measurements in photometric methods for biological samples
  • ISO 2241:1972 Photography — Light sources for use in sensitometric exposure — Simulation of the spectral distribution of tungsten illumination
  • ISO/TS 10867:2019 Nanotechnologies — Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy

Spanish Association for Standardization (UNE)

  • UNE 84025:2002 Cosmetic raw materials. Preparation of infrared spectra. Solution technique.
  • UNE 84026:2002 Cosmetic raw materials. Preparation of infrared spectra. Pressed pellet technique.
  • UNE 84024:2002 Cosmetic raw materials. Preparation of infrared spectra (Capillary film technique and cast film technique).
  • UNE 37254:1986 LEAD. DETERMINATION OF ZINC CONTENT. SPECTROMETRIC METHOD ABSORPTION TECHNIQUE.
  • UNE 37254:1987 ERRATUM LEAD. DETERMINATION OF ZINC CONTENT. SPECTROMETRIC METHOD ABSORPTION TECHNIQUE.

Association Francaise de Normalisation

  • NF A01-811:1975 Zinc ingots. Selection and preparation of samples for spectrographic analysis.
  • NF A07-830:1973 Zinc for galvanizing purposes. Technical specification for emission spectral analysis.
  • NF A01-810:1975 Zinc alloy ingots. Selection and preparation of samples for spectrographic analysis.
  • 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 - Characterization of single-walled carbon nanotubes using near-infrared photoluminescence spectroscopy
  • NF C57-328:1999 Photovoltaic devices. Part 8 : measurement of spectral response of ů photovoltaic (PV) device.
  • NF C57-328*NF EN 60904-8:2014 Photovoltaic devices - Part 8 : measurement of spectral response of a photovoltaic (PV) device

German Institute for Standardization

International Telecommunication Union (ITU)

GOST

  • GOST R 71350-2024 Optics and photonics. Optical aluminized mirrors. Typical technological processes for applying protective coatings

CZ-CSN

Japanese Industrial Standards Committee (JISC)

  • JIS K 0214:2013 Technical terms for analytical chemistry (Chromatography part)
  • JIS K 0214:2006 Technical terms for analytical chemistry (Chromatography part)
  • JIS R 2216:2005 Methods for X-ray fluorescence spectrometric analysis of refractory products

British Standards Institution (BSI)

  • PD ISO/TS 10867:2019 Nanotechnologies. Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • BS 6043-2.4:2000 Methods of sampling and test for carbonaceous materials used in aluminium manufacture. Electrode coke. Analysis by X-ray fluorescence spectroscopy
  • BS PD ISO/TS 10867:2019 Nanotechnologies. Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • 08/30192852 DC BS ISO 5-3. Photography and graphic technology. Spectral density measurements. Part 3. Spectral conditions
  • BS EN ISO 3815-1:2005 Zinc and zinc alloys - Analysis of solid samples by optical emission spectrometry
  • BS EN 60904-8:1998 Photovoltaic devices - Measurement of spectral response of a photovoltaic (PV) device
  • BS EN 60904-8:2014 Photovoltaic devices. Measurement of spectral responsivity of a photovoltaic (PV) device
  • BS DD ISO/TS 10867:2010 Nanotechnologies. Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • BS ISO 5-3:2009 Photography and graphic technology - Density measurements - Spectral conditions
  • BS ISO 5-3:2010 Photography and graphic technology. Density measurements Spectral conditions

Danish Standards Foundation

  • DANSK DS/ISO/TS 10867:2019 Nanotechnologies – Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • DS/ISO/TS 10867:2011 Nanotechnologies - Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy
  • DANSK DS/ISO 24421:2023 Biotechnology – Minimum requirements for optical signal measurements in photometric methods for biological samples

Bureau of Indian Standards

  • IS 15338-2003 Spectrometric Analysis of Cast Iron by Direct Reading Optical Emission Vacuum Spectrometer - Point to Plane Technique
  • IS 16413-2023 Nanotechnologies - Characterization of Single-Wall Carbon Nanotubes Using Near Infrared Photoluminescence Spectroscopy
  • IS 18607-2024 Biotechnology-Minimum Requirements for Optical Signal Measurements in Photometric Methods for Biological Samples

Kingdom of Bahrain Testing and Metrology Directorate

  • BH GSO ISO/TS 10867:2016 Nanotechnologies -- Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy

International Commission on Illumination (CIE)

  • CIE 076-1988 Intercomparison on measurement of (total) spectral radiance factor of luminescent specimens

Consultative Committee for Space Data Systems (CCSDS)

IN-BIS

  • IS 8816-1978 Selection and preparation methods of samples for spectroscopic analysis of zinc and zinc alloy ingots

Magyar Szabványügyi Testület

  • MSZ 17060-1976 Measurement of optical technical characteristics of electric light sources

AT-ON

Indonesia Standards

Defense Logistics Agency

Military Standards (MIL-STD)

International Electrotechnical Commission (IEC)

  • IEC TR 63100:2017 Transmitting equipment for radiocommunication - Radio-over-fibre technologies for spectrum measurement - 100-GHz spectrum measurement equipment

Ente Nazionale Italiano di Unificazione

  • UNI 8316:1981 Spectral analysis of ferroalloys. Determination of niobium in ferroniobium. Method by rx fluorescence spectrometry with preparation of a pearl.