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Spectrometer usage steps

Spectrometer usage steps, Total:179 items.

The international standard classification for "Spectrometer usage steps" includes: Other standards related to optics and optical measurements , Optics and optical measurements , Chemical laboratories. Laboratory equipment , Analytical chemistry in general , Analytical chemistry , Geology. Meteorology. Hydrology , Exploratory and extraction equipment , Laboratory medicine .

The Chinese standard classification for "Spectrometer usage steps" includes: Electron optics and other physical optics instrument , Optical Measurement , Electrochemical, thermochemistry and optical profile type analyzer , Basic standards and general methods , Meteorology , Petroleum exploration logging equipment and instrument , Oceanographic instrumentation , Medical laboratory equipment .


Professional Standard - Machinery

National Metrological Verification Regulations of the People's Republic of China

Jilin Provincial Standard of the People's Republic of China

Taiwan Provincial Standard of the People's Republic of China

国家市场监督管理总局、中国国家标准化管理委员会

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

Professional Standard - Electron

  • SJ/Z 3206.3-1989 Instrument and its performance requirements for determination of emision spectrum
  • SJ/Z 3206.4-1989 General rule for use of sensitized plate using spectrum

Group Standards of the People's Republic of China

  • T/QGCML 1522-2023 FLA Micro Fiber Spectrometer
  • T/CAIA YQ003-2016 Testing Methods for Optical/Electrical Characteristics of Linear Charge Coupled Imaging Device for Spectrometer
  • T/ZZB 0673-2018 Emission spectrometer
  • T/CEC 425-2020 Guidelines for acceptance and use and maintenance of gas chromatographs for electric power
  • T/CAIA YQ004-2018 Performance testing method for liquid chromatograph coupled with atomic fluorescence spectrometer

未注明发布机构

  • ASTM RR-D03-2000 2023 D7941/D7941M-Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • DIN EN 15483 E:2006-04 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • DIN IEC 61452:2019 Nuclear instrumentation - Measurement of activity or emission rate of gamma-ray emitting radionuclides - Calibration and use of germanium-based spectrometers
  • ASTM RR-D02-1702 2010 D7417-Test Method for Analysis of In-Service Lubricants Using Particular Four-Part Integrated Tester (Atomic Emission Spectroscopy, Infrared Spectroscopy, Viscosity, and Laser Particle Counter)

Professional Standard - Agriculture

  • GB/T 43968-2024 General rules for high performance liquid chromatography-atomic fluorescence spectrometry analysis method
  • GB/T 44147-2024 The method of performance testing for liquid chromatography coupled atomic fluorescence spectrometer

中国气象局

  • QX/T 532-2019 Specifications for Brewer spectrophotometer calibration
  • QX/T 565-2020 Laser raindrop spectral precipitation phenomenon instrument

Professional Standard - Energy

  • NB/SH/T 0940-2016 Standard test method for analysis of in-sevice lubicants using particular four-part integrated tester(Atomic emission spectroscopy,infrared spectroscopy,viscosity,and laser particle counter)

国家能源局

  • 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)

National Metrological Technical Specifications of the People's Republic of China

  • JJF 1544-2015 Calibration Specification for Raman Spectrometers
  • JJF 1329-2011 Calibration Specification for Instantaneous Spectral Instruments

Professional Standard - Petroleum

  • SY/T 5931-2000 The codes for survey instruments using and maintenance

Military Standard of the People's Republic of China-General Armament Department

Professional Standard - Ocean

  • HY/T 175-2014 Optical suspended sediment particle size analyzer

国家药监局

  • YY/T 1740.1-2021 Clinical mass spectrometer—Part 1:Liquid chromatography-mass spectrometer
  • YY/T 1740.2-2021 Clinical mass spectrometer—Part 2:Matrix-assisted laser desorption ionization-time of flight mass spectrometer

Professional Standard - Meteorology

  • QX/T 159-2012 Specification for Atmospheric Spectrum Measurement by Ground-based High Spectral Resolution Fourier Transform Spectroscopy

工业和信息化部/国家能源局

  • JB/T 12962.1-2016 Energy dispersive X-ray fluorescence spectrometer. Part 1: General specification

The American Road & Transportation Builders Association

US-FCR

GSO

  • GSO ISO 10260:2013 Water quality -- Measurement of parameters -- Spectrometric determination of the chlorophyll-a concentration
  • GSO IEC 61976:2014 Nuclear instrumentation - Spectrometry - Characterization of the spectrum background in HPGe gamma-ray spectrometry
  • OS GSO ISO 6286:2015 Molecular absorption spectrometry -- Vocabulary -- General -- Apparatus
  • BH GSO ISO 6286:2017 Molecular absorption spectrometry -- Vocabulary -- General -- Apparatus
  • OS GSO IEC 61976:2014 Nuclear instrumentation - Spectrometry - Characterization of the spectrum background in HPGe gamma-ray spectrometry
  • GSO ISO 8577:2015 Optics and optical instruments -- Microscopes -- Spectral filters
  • BH GSO ISO 8577:2016 Optics and optical instruments -- Microscopes -- Spectral filters
  • BH GSO IEC 61976:2016 Nuclear instrumentation - Spectrometry - Characterization of the spectrum background in HPGe gamma-ray spectrometry
  • OS GSO ISO 8577:2015 Optics and optical instruments -- Microscopes -- Spectral filters
  • BH GSO ISO 19618:2022 Fine ceramics (advanced ceramics, advanced technical ceramics) — Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • GSO ISO 19618:2021 Fine ceramics (advanced ceramics, advanced technical ceramics) — Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer
  • BH GSO IEC 61290-10-1:2016 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • OS GSO IEC 61290-10-1:2014 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • GSO IEC 61290-10-1:2014 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • GSO IEC 61290-10-4:2014 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • BH GSO IEC 61290-10-4:2016 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • OS GSO IEC 61290-10-2:2014 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
  • OS GSO IEC 61290-10-4:2014 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer

U.S. Air Force

SCC

  • BS EN 61290-1-1:1998 Optical spectrum analyzer
  • CEI 76:1998 Guide for the use of laser equipment
  • DANSK DS/EN 15483:2008 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • NS-EN 15483:2008 Ambient air quality — Atmospheric measurements near ground with FTIR spectroscopy
  • BS PD IEC PAS 62129:2004 Calibration of optical spectrum analyzers
  • CEI EN 62129:2006 Calibration of optical spectrum analyzers
  • DANSK DS/EN 62129:2006 Calibration of optical spectrum analyzers
  • DIN IEC 61452 E:2019 Draft Document - Nuclear instrumentation - Measurement of gamma-ray emission rates of radionuclides - Calibration and use of germanium spectrometers (IEC 45/859/CD:2018); Text in German and English
  • DANSK DS/EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • DIN 44030 Supplement 1:1991 Control technology; light barriers and light scanners; used symbols
  • CEI EN 61290-10-1:2010 Optical amplifiers- Test methods Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • AS 1503:1976 Glossary of terms used in emission sectroscopy
  • DIN IEC 61976:2001 Nuclear instrumentation - Spectrometry - Characterization of the spectrum background in HPGe gamma-ray spectrometry (IEC 61976:2000)
  • BS EN 61290-1-3:1998 Optical fibre amplifiers. Basic spectrum analyzers-Optical power meter
  • DANSK DS/EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
  • CEI EN 61290-10-4:2008 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • AS 1502:1976 Glossary of terms used in X-ray spectroscopy
  • DANSK DS/EN 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • BS PD IEC TR 61292-2:2003 Optical amplifier technical reports-Theoretical background for noise figure evaluation using the electrical spectrum analyzer
  • CEI EN 62129-1:2016 Calibration of wavelength/optical frequency measurement insturments Part 1: Optical spectrum analyzers

Lithuanian Standards Office

  • LST EN 15483-2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy

AENOR

  • UNE-EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy

Danish Standards Foundation

  • DS/EN 15483:2009 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy
  • DS/EN 62129:2006 Calibration of optical spectrum analyzers
  • DS/EN 62129/Corr. 1:2007 Calibration of optical spectrum analyzers
  • DS/EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • DS/EN 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • DS/EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer

International Organization for Standardization (ISO)

  • ISO/TS 10867:2010 Nanotechnologies - Characterization of single-wall carbon nanotubes using near infrared photoluminescence spectroscopy

German Institute for Standardization

  • DIN EN 15483:2009-02 Ambient air quality - Atmospheric measurements near ground with FTIR spectroscopy; German version EN 15483:2008
  • DIN EN 61290-10-1:2010-01 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer (IEC 61290-10-1:2009); German version EN 61290-10-1:2009 / Note: DIN EN 61290-10-1 (2004-02) remains valid along...
  • DIN EN 61290-10-2:2008-07 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer (IEC 61290-10-2:2007); German version EN 61290-10-2:2008 / Note: DIN EN 61290-10-2 (2004-02) remains valid alongside this stan...
  • DIN 51820:2013-12 Testing of lubricants - Analysis of greases by infrared spectrometer - Recording and interpretation of an infrared spectrum / Note: Applies in conjunction with DIN 51451 (2004-09).
  • DIN EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer (IEC 61290-10-2:2007); German version EN 61290-10-2:2008
  • DIN EN 61290-10-4:2008-02 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer (IEC 61290-10-4:2007); German version EN 61290-10-4:2007 / Note: Applies in conjunction with DIN EN 61291...
  • DIN EN 62129:2007 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006

Korean Agency for Technology and Standards (KATS)

  • KS C IEC 61452-2017(2022) Nuclear instrumentation — Measurement of gamma-ray emission rates of radionuclides — Calibration and use of germanium spectrometers
  • KS C 6918-2020 Test methods of fiber-optic spectrum analyzer
  • KS M ISO 6286-2020 Molecular absorption spectrometry-Vocabulary-General-Apparatus
  • KS C 6918-1995 Test methods of fiber-optic spectrum analyzer
  • KS C IEC 61290-10-1-2020 Optical amplifiers-Test methods-Part 10-1:Multichannel parameters-Pulse method using an optical switch and optical spectrum analyzer
  • KS C IEC 61290-10-2-2020 Optical amplifiers-Test methods-Part 10-2:Multichannel parameters-Pulse method using a gated optical spectrum analyzer
  • KS B ISO 10109-11-2006(2016) Optics and optical instruments — Environmental requirements —Part 11: Optical instruments for outdoor conditions of use
  • KS C IEC 61290-10-1:2005 Optical amplifiers-Test methods-Part 10-1:Multichannel parameters-Pulse method using an optical switch and optical spectrum analyzer
  • KS D ISO 8792:2013 Wire rope slings-Safety criteria and inspection procedures for use

European Committee for Standardization (CEN)

US-CFR-file

  • CFR 15-732.1-2013 Commerce and foreign trade. Part732:Steps for using the ear. Section732.1:Steps overview.
  • CFR 15-732.4-2013 Commerce and foreign trade. Part732:Steps for using the ear. Section732.4:Steps regarding License Exceptions.

Association Francaise de Normalisation

  • NF C93-845:2006 Calibration of optical spectrum analyzers.
  • NF EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: multiple channel parameters - Pulse method using optical switch and optical spectrum analyzer
  • NF EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: multiple channel parameters - Pulse method using a stroboscopic optical spectrum analyzer
  • NF EN 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4: multiple channel parameters - Interpolated source subtraction method using an optical spectrum analyzer

KR-KS

  • KS C IEC 61452-2017 Nuclear instrumentation — Measurement of gamma-ray emission rates of radionuclides — Calibration and use of germanium spectrometers
  • KS B ISO 10109-11-2023 Optics and optical instruments — Environmental requirements — Part 11: Optical instruments for outdoor conditions of use

British Standards Institution (BSI)

  • BS EN 61290-10-4:2007 Optical amplifiers - Test methods - Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • BS EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments. Optical spectrum analyzers
  • 18/30382086 DC BS EN 61452. Nuclear instrumentation. Measurement of gamma-ray emission rates of radionuclides. Calibration and use of germanium spectrometers
  • BIP 3003-2004 Step through guide to disability access CD-ROM
  • BS EN 61290-10-1:2003 Optical amplifiers - Test methods - Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • BS EN 62129:2006 Calibration of optical spectrum analyzers
  • 20/30412413 DC BS EN IEC 61452. Nuclear instrumentation. Measurement of gamma-ray emission rates of radionuclides. Calibration and use of germanium spectrometers
  • BS ISO 10109-11:2001 Optics and optical instruments - Environmental requirements - Optical instruments for outdoor conditions of use
  • BS EN ISO 17852:2006 Water quality - Determination of mercury - Method using a combined preservation and digestion step followed by atomic fluorescence spectrometry
  • BS ISO 17852:2006 Water quality - Determination of mercury - Method using a combined preservation and digestion step followed by atomic fluorescence spectrometry
  • BS IEC 61452:2021 Nuclear instrumentation. Measurement of activity or emission rate of gamma-ray emitting radionuclides. Calibration and use of germanium-based spectrometers
  • PD IEC TR 61292-2:2003 Optical amplifier technical reports. Theoretical background for noise figure evaluation using the electrical spectrum analyzer
  • BS EN ISO 17852:2008 Water quality. Determination of mercury. Method using a combined preservation and digestion step followed by atomic fluorescence spectrometry
  • 24/30469712 DC BS ISO 19618 Fine ceramics (advanced ceramics, advanced technical ceramics). Measurement method for normal spectral emissivity using blackbody reference with an FTIR spectrometer

American Society for Testing and Materials (ASTM)

  • 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 E2310-04(2015) Standard Guide for Use of Spectral Searching by Curve Matching Algorithms with Data Recorded Using Mid-Infrared 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 E2056-04(2010) Standard Practice for Qualifying Spectrometers and Spectrophotometers for Use in Multivariate Analyses, Calibrated Using Surrogate Mixtures
  • ASTM E2056-04(2016) Standard Practice for Qualifying Spectrometers and Spectrophotometers for Use in Multivariate Analyses, Calibrated Using Surrogate Mixtures
  • ASTM D7417-24 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 E388-04(2023) Standard Test Method for Wavelength Accuracy and Spectral Bandwidth of Fluorescence Spectrometers
  • ASTM F1708-96 Standard Practice for Evaluation of Granular Polysilicon by Meter-Zoner Spectroscopies
  • ASTM E1507-98 Standard Guide for Describing and Specifying the Spectrometer of an Optical Emission Direct-Reading Instrument
  • ASTM E3029-15 Standard Practice for Determining Relative Spectral Correction Factors for Emission Signal of Fluorescence Spectrometers
  • 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 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 D7941/D7941M-23 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM E388-04(2015) Standard Test Method for Wavelength Accuracy and Spectral Bandwidth of Fluorescence Spectrometers

International Electrotechnical Commission (IEC)

  • IEC PAS 62129:2004 Calibration of optical spectrum analyzers
  • IEC 62129:2006 Calibration of optical spectrum analyzers
  • IEC 61290-10-1:2003 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters; Pulse method using an optical switch and optical spectrum analyzer
  • IEC 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • IEC 61976:2000 Nuclear instrumentation - Spectrometry - Characterization of the spectrum background in HPGe nuclear gamma-ray spectrometry

RU-GOST R

Japanese Industrial Standards Committee (JISC)

IN-BIS

IEEE - The Institute of Electrical and Electronics Engineers@ Inc.

  • IEEE N42.14-1991 Calibration and Use of Germanium Spectrometers for the Measurement of Gamma-Ray Emission Rates of Radionuclides

RO-ASRO

  • STAS 12814-1990 ALUMINIUM AND ALUMINIUM ALLOYS Analysis by optical emission spectro- metry

European Committee for Electrotechnical Standardization(CENELEC)

  • EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer

CENELEC - European Committee for Electrotechnical Standardization

  • EN 61290-10-1:2003 Optical amplifiers Test methods Part 10-1: Multichannel parameters Pulse method using an optical switch and optical spectrum analyzer
  • EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
  • EN 61290-10-2:2003 Optical amplifiers - Test methods Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer

ES-UNE

  • UNE-EN 61290-10-1:2009 Optical amplifiers - Test methods -- Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer (Endorsed by AENOR in July of 2009.)
  • UNE-EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer (Endorsed by AENOR in May of 2008.)

GM Daewoo

ZA-SANS

TIA - Telecommunications Industry Association

  • EIA/TIA-455-48B-1990 FOTP-48 Measurement of Optical Fiber Cladding Diameter Using Laser-Based Instruments

Institute of Electrical and Electronics Engineers (IEEE)

  • IEEE/ANSI N42.14-1999 Calibration and use of germanium spectrometers for the measurement of gammma-ray emission rates of radionuclides