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Basic Parts of a Spectrum Analyzer

Basic Parts of a Spectrum Analyzer, Total:497 items.

In the international standard classification, Basic Parts of a Spectrum Analyzer involves: Optics and optical measurements, Fibre optic communications, Special measuring equipment for use in telecommunications, Optoelectronics. Laser equipment, Analytical chemistry, Non-ferrous metals, Electrical and electronic testing, Vocabularies, Laboratory medicine, Manufacturing processes in the rubber and plastics industries, Environmental testing, Linear and angular measurements, Fuels, Medical equipment, Testing of metals, Products of the chemical industry, Refractories, Spices and condiments. Food additives, Water quality, Lubricants, industrial oils and related products, Standardization. General rules, Audio, video and audiovisual engineering, Edible oils and fats. Oilseeds, Company organization and management, Optical equipment, Electromagnetic compatibility (EMC), Metalliferous minerals, Electricity. Magnetism. Electrical and magnetic measurements, Surface treatment and coating, Milk and milk products, Acoustics and acoustic measurements, Road engineering, METALLURGY, Paint ingredients, Petroleum products in general.


CENELEC - European Committee for Electrotechnical Standardization, Basic Parts of a Spectrum Analyzer

  • EN 61290-2-1:1998 Optical Fibre Amplifiers - Basic Specification Part 2-1: Test Methods for Optical Power Parameters Optical Spectrum Analyzer
  • EN 61290-1-1:1998 Optical Fibre Amplifiers - Basic Specification Part 1-1: Test Methods for Gain Parameters Optical Spectrum Analyzer
  • EN 61290-2-2:1998 Optical Fibre Amplifiers - Basic Specification Part 2-2: Test Methods for Optical Power Parameters Electrical SPectrum Analyzer
  • EN 61290-5-1:2000 Optical Fibre Amplifiers - Basic Specification - Part 5-1: Test Methods for Reflectance Parameters - Optical Spectrum Analyser
  • EN 61290-3-2:2003 Optical amplifiers Part 3-2: Test methods for noise figure parameters Electrical spectrum analyzer method
  • EN 61290-10-2:2003 Optical amplifiers - Test methods Part 10-2: Multichannel parameters - Pulse method using a gated 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 61290-10-1:2003 Optical amplifiers Test methods Part 10-1: Multichannel parameters Pulse method using an optical switch and optical spectrum analyzer
  • EN 61290-1-2:1998 Optical Fibre Amplifiers - Basic Specification Part 1-2: Test Methods for Gain Parameters Electrical Spectrum Analyzer

British Standards Institution (BSI), Basic Parts of a Spectrum Analyzer

  • BS EN 62129:2006 Calibration of optical spectrum analyzers
  • BS EN 61280-1-1:1998 Optical fibre amplifiers.Basic spectrum analyzers - Transmitter output optical power measurement for single-mode optical fibre cable
  • BS EN 61290-5-2:2004 Optical fibre amplifiers - Basic specification - Test methods for reflectance parameters - Electrical spectrum analyser method
  • BS EN 61290-5-3:2002 Optical fibre amplifiers - Basic specification - Test methods for reflectance parameters - Reflectance tolerance using an electrical spectrum analyser
  • BS EN 61290-3-1:2003 Optical amplifiers - Test methods - Part 3-1:Noise figure parameters - Optical spectrum analyzer method
  • BS EN 61290-3-1:2004 Optical fibre amplifiers. Basic specification. Test methods for noise figure parameters. Optical spectrum analyzer method
  • BS ISO 24417:2022 Surface chemical analysis. Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry
  • BS EN 61290-3-2:2003 Optical fibre amplifiers - Basic specification - Test methods for noise figure parameters - Electrical spectrum analyzer method
  • BS ISO 17973:2003 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • 21/30405786 DC BS ISO 24417. Surface chemical analysis. Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry
  • BS ISO 21270:2004 Surface chemical analysis. X-ray photoelectron and Auger electron spectrometers. Linearity of intensity scale
  • BS EN 61290-1-1:2006 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • BS EN 61290-1-1:2015 Optical amplifiers. Test methods. Power and gain parameters. Optical spectrum analyzer method
  • BS EN 61290-1-1:2007 Optical amplifiers. Test methods. Power and gain parameters. Optical spectrum analyzer method
  • BS ISO 15470:2005 Surface chemical analysis - X-ray photoelectron spectroscopy - Description of selected instrumental performance parameters
  • BS ISO 15470:2017 Surface chemical analysis. X-ray photoelectron spectroscopy. Description of selected instrumental performance parameters
  • BS 1902-9.2:1987 Methods of testing refractory materials - Chemical analysis by instrumental methods - Analysis of silica refractories by X-ray fluorescence
  • BS ISO 15632:2012 Microbeam analysis. Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers for use in electron probe microanalysis
  • BS ISO 15632:2021 Microbeam analysis. Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers (EDS) for use with a scanning electron microscope (SEM) or an electron probe microanalyser (EPMA)
  • 19/30398879 DC BS EN 61290-1-1. Optical amplifiers. Test methods. Part 1-1. Power and gain parameters. Optical spectrum analyzer method
  • BS EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1:Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • BS DD ENV 13800:2000 Lead and lead alloys - Analysis by flame atomic absorption spectromerty (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES), without separation of the lead matrix
  • BS ISO 17974:2002 Surface chemical analysis - High-resolution Auger electron spectrometers - Calibration of energy scales for elemental and chemical-state analysis
  • BS ISO 21270:2005 Surface chemical analysis - X-ray photoelectron and Auger electron spectrometers - Linearity of intensity scale
  • BS EN 61290-10-4:2007 Optical amplifiers - Test methods - Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • 18/30387381 DC BS EN 61290-1-1 Ed.4.0. Optical amplifiers. Test methods. Part 1-1. Power and gain parameters. Optical spectrum analyzer method
  • BS ISO 15471:2005 Surface chemical analysis - Auger electron spectroscopy - Description of selected instrumental performance parameters
  • BS EN 61290-1-2:2005 Optical amplifiers - Test methods - Part 1-2: Power and gain parameters - Electrical spectrum analyzer method
  • BS EN 61290-1-2:2007 Optical amplifiers. Test methods. Power and gain parameters. Electrical spectrum analyzer method
  • BS EN 61290-10-1:2003 Optical amplifiers - Test methods - Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • BS 3727-20:1966 Methods for the analysis of nickel for use in electronic tubes and valves - Spectrographic method
  • 19/30394914 DC BS ISO 15632. Microbeam analysis. Selected instrumental performance parameters for the specification and checking of energydispersive X-ray spectrometers for use in electron probe microscope or an electron probe microanalyser (EPMA)
  • PD IEC TR 61292-2:2003 Optical amplifier technical reports. Theoretical background for noise figure evaluation using the electrical spectrum analyzer
  • BS 770-6:1984 Methods for chemical analysis of cheese - Determination of total phosphorus content - Molecular absorption spectrometric method
  • PD ISO/TR 19319:2013 Surface chemical analysis. Fundamental approaches to determination of lateral resolution and sharpness in beam-based methods

International Electrotechnical Commission (IEC), Basic Parts of a Spectrum Analyzer

  • IEC PAS 62129:2004 Calibration of optical spectrum analyzers
  • IEC 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers
  • IEC 61290-2-1:1998 Optical fibre amplifiers - Basic specification - Part 2-1: Test methods for optical power parameters - Optical spectrum analyzer
  • IEC 61290-1-1:1998 Optical fibre amplifiers - Basic specification - Part 1-1: Test methods for gain parameters - Optical spectrum analyzer
  • IEC 61290-5-1:2000 Optical fibre amplifiers - Basic specification - Part 5-1: Test methods for reflectance parameters - Optical spectrum analyser
  • IEC 61290-2-2:1998 Optical fibre amplifiers - Basic specification - Part 2-2: Test methods for optical power parameters - Electrical spectrum analyzer
  • IEC 61290-5-3:2002 Optical fibre amplifiers - Basic specifications - Part 5-3: Test methods for reflectance parameters; Reflectance tolerance test method using electrical spectrum analyzer
  • IEC 61290-1-2:1998 Optical fibre amplifiers - Basic specification - Part 1-2: Test methods for gain parameters - Electrical spectrum analyzer
  • IEC 61290-3-1:2003 Optical amplifiers - Test methods - Part 3-1: Noise figure parameters; Optical spectrum analyzer method
  • IEC 61290-1-1:2020 RLV Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • IEC 61290-1-1:2020 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • IEC 61290-1-1:2015 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • IEC 61290-1-1:2006 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • 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 61290-5-2:2003 Optical amplifiers - Test methods - Part 5-2: Reflectance parameters; Electrical spectrum analyser method
  • IEC 61290-10-2:2003 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters; Pulse method using a gated optical spectrum analyzer
  • IEC 61290-3-2:2003 Optical amplifiers - Part 3-2: Test methods for noise figure parameters; Electrical spectrum analyzer method
  • 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 61290-10-2:2007 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated optical spectrum analyzer
  • IEC 61290-1-2:2005 Optical amplifiers - Test methods - Part 1-2: Power and gain parameters - Electrical spectrum analyzer method
  • IEC 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyser
  • IEC TR 61292-2:2003 Optical amplifier technical reports - Part 2: Theoretical background for noise figure evaluation using the electrical spectrum analyzer
  • IEC 60306-1:1969 Measurement of photosensitive devices. Part 1 : Basic recommendations

Danish Standards Foundation, Basic Parts of a Spectrum Analyzer

  • DS/EN 62129/Corr. 1:2007 Calibration of optical spectrum analyzers
  • DS/EN 62129:2006 Calibration of optical spectrum analyzers
  • DS/EN 61290-5-3:2002 Optical fibre amplifiers - Basic specification - Part 5-3: Test methods for reflectance parameters - Reflectance tolerance using an electrical spectrum analyser
  • DS/EN 61290-5-1:2006 Optical amplifiers - Test methods - Part 5-1: Reflectance parameters - Optical spectrum analyzer method
  • DS/EN 61290-3-1:2004 Optical amplifiers - Test methods - Part 3-1: Noise figure parameters - Optical spectrum analyzer method
  • DS/EN 61290-1-1:2007 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • DS/EN IEC 61290-1-1:2020 Optical amplifiers – Test methods – Part 1-1: Power and gain parameters – Optical spectrum analyzer method
  • 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 61290-5-2:2004 Optical amplifiers - Test methods - Part 5-2: Reflectance parameters - Electrical spectrum analyzer method
  • DS/EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2: Multichannel parameters - Pulse method using a gated 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 61290-3-2:2008 Optical amplifiers - Test methods - Part 3-2: Noise figure parameters - Electrical spectrum analyzer method
  • DS/EN 61290-1-2:2006 Optical amplifiers - Test methods -- Part 1-2: Power and gain parameters - Electrical spectrum analyzer method
  • DS/EN ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection
  • DS/ISO 18314-4:2021 Analytical colorimetry – Part 4: Metamerism index for pairs of samples for change of illuminant

Japanese Industrial Standards Committee (JISC), Basic Parts of a Spectrum Analyzer

  • JIS C 6192:2008 Calibration of optical spectrum analyzers
  • JIS C 6183-1:2019 Optical spectrum analyzers -- Part 1: Test methods
  • JIS C 6183:1992 Test methods of fiber-optic spectrum analyzer
  • JIS K 0214:2006 Technical terms for analytical chemistry (Chromatography part)
  • JIS K 0214:2013 Technical terms for analytical chemistry (Chromatography part)
  • JIS K 0165:2011 Surface chemical analysis -- Medium-resolution Auger electron spectrometers -- Calibration of energy scales for elemental analysis
  • JIS C 6122-10-1:2007 Optical amplifiers -- Test methods -- Part 10-1: Multichannel parameters -- Pulse method using an optical switch and optical spectrum analyzer
  • JIS C 6122-1-1:2011 Optical amplifiers -- Test methods -- Part 1-1: Power and gain parameters -- Optical spectrum analyzer method
  • JIS C 6122-3-1:2011 Optical amplifiers -- Test methods -- Part 3-1: Noise figure parameters -- Optical spectrum analyzer method
  • JIS K 0162:2010 Surface chemical analysis -- X-ray photoelectron spectroscopy -- Description of selected instrumental performance parameters
  • JIS C 6122-10-2:2010 Optical amplifiers -- Test methods -- Part 10-2: Multichannel parameters -- Pulse method using a gated optical spectrum analyzer
  • JIS C 6122-5-1:2001 Optical fiber amplifiers -- Test methods -- Part 5-1: Test methods for reflectance parameters -- Optical spectrum analyzer test method
  • JIS C 6122-10-4:2012 Optical amplifiers -- Test methods -- Part 10-4: Multichannel parameters -- Interpolated source subtraction method using an optical spectrum analyzer
  • JIS C 6122-3-2:2006 Optical amplifiers -- Test methods -- Part 3-2: Noise figure parameters -- Electrical spectrum analyzer method
  • JIS K 0166:2011 Surface chemical analysis -- High-resolution Auger electron spectrometers -- Calibration of energy scales for elemental and chemical-state analysis
  • JIS C 6122-1-2:2011 Optical amplifiers -- Test methods -- Part 1-2: Power and gain parameters -- Electrical spectrum analyzer method
  • JIS K 0161:2010 Surface chemical analysis -- Auger electron spectroscopy -- Description of selected instrumental performance parameters
  • JIS B 7263-1:2007 Optics and optical instruments -- Test methods for telescopic systems -- Part 1: Test methods for basic characteristics
  • JIS H 1632-3:2014 Titanium.ICP atomic emission spectrometry.Part 3: Determination of boron
  • JIS T 15004-2:2013 Ophthalmic instruments.Fundamental requirements and test methods.Part 2: Light hazard protection

Korean Agency for Technology and Standards (KATS), Basic Parts of a Spectrum Analyzer

  • KS C IEC 61290-5-1:2007 Optical amplifiers-Test methods-Part 5-1:Reflectance parameters -Optical spectrum analyzer method
  • KS C 6918-1995(2020) Test methods of fiber-optic spectrum analyzer
  • KS C IEC 61207-6-2014(2019) Expression of performance of gas analyzers — Part 6: Photometric analyzers
  • KS C IEC 61290-5-3:2003 Basic specification for optical amplifier test methods-Part 5-3:Test methods for reflectance parameters-Reflectance tolerance using an electrical spectrum analyser
  • KS C IEC 61290-5-1-2007(2022) Optical amplifiers-Test methods-Part 5-1:Reflectance parameters -Optical spectrum analyzer method
  • KS C IEC 61290-5-1-2007(2017) Optical amplifiers-Test methods-Part 5-1:Reflectance parameters -Optical spectrum analyzer method
  • KS C IEC 61290-5-3-2003(2018)
  • KS C IEC 61290-3-1-2005(2020) Optical amplifiers-Test methods-Part 3-1:Noise figure parameters-Optical spectrum analyzer method
  • KS D ISO 15472:2003 Surface chemical analysis-X-ray photoelectron spectrometers-Calibration of energy scales
  • KS D ISO 17973-2011(2021) Surface chemical analysis-Medium-resolution Auger electron spectrometers-Calibration of energy scales for elemental analysis
  • KS C IEC 61290-3-1:2005 Optical amplifiers-Test methods-Part 3-1:Noise figure parameters-Optical spectrum analyzer method
  • KS D ISO 15470-2005(2020) Surface chemical analysis-X-ray photoelectron spectroscopy-Description of selected instrumental performance parameters
  • KS C IEC 61290-3-2-2005(2020) Optical amplifiers-Part 3-2:Test methods for noise figure parameters-Electrical spectrum analyzer method
  • KS D ISO 19319-2005(2020) Surface chemical analysis-Auger electron spectroscopy and X-ray photoelectron spectroscopy-Determination of lateral resolution, analysis area, and sample area viewed by the analyzer
  • KS C IEC 61290-10-1-2005(2020) Optical amplifiers-Test methods-Part 10-1:Multichannel parameters-Pulse method using an optical switch and optical spectrum analyzer
  • KS D ISO 17973:2011 Surface chemical analysis-Medium-resolution Auger electron spectrometers-Calibration of energy scales for elemental analysis
  • KS D ISO 21270:2005 Surface chemical analysis-X-ray photoelectron and Auger electron spectrometers-Linearity of intensity scale
  • KS C IEC 61290-10-2-2005(2020) Optical amplifiers-Test methods-Part 10-2:Multichannel parameters-Pulse method using a gated optical spectrum analyzer
  • KS D ISO 21270-2005(2020) Surface chemical analysis-X-ray photoelectron and Auger electron spectrometers-Linearity of intensity scale
  • 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 C IEC 60601-2-39:2008 Peritoneal dialysis equipment
  • KS C IEC 60601-2-39:2017 Medical electrical equipment — Part 2-39: Particular requirements for basic safety and essential performance of peritoneal dialysis equipment
  • KS D ISO 15470:2005 Surface chemical analysis-X-ray photoelectron spectroscopy-Description of selected instrumental performance parameters
  • KS C IEC 61290-10-2:2005 Optical amplifiers-Test methods-Part 10-2:Multichannel parameters-Pulse method using a gated optical spectrum analyzer
  • KS D ISO 17974-2011(2021) Surface chemical analysis-High-resolution Auger electron spectrometers-Calibration of energy scales for elemental and chemical-state analysis
  • KS D ISO 3815-1-2006(2016) Zinc and zinc alloys-Part 1:Analysis of solid samples by optical emission spectrometry
  • KS D ISO 15632:2018 Microbeam analysis — Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers for use in electron probe microanalysis
  • KS D ISO 17974:2011 Surface chemical analysis-High-resolution Auger electron spectrometers-Calibration of energy scales for elemental and chemical-state analysis
  • KS M ISO 78-4:2010 Layouts for standards-Part 4:Standard for atomic absorption spectrometric analysis
  • KS D 1702-2015 Platium-Determination of trace-element content by inductively coupled plasma spectrometric analysis-Matrix matching method
  • KS D ISO 15471:2005 Surface chemical analysis-Auger electron spectroscopy-Description of selected instrumental performance parameters
  • KS E ISO 9208:2001 Aluminium ores-Determination of vanadium content-BPHA spectrophotometric method
  • KS D ISO 7530-4-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 4:Determination of copper content
  • KS D ISO 7530-2-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 2:Determination of cobalt content
  • KS D ISO 7530-9-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 9:Determination of vanadium content
  • KS D ISO 7530-7-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 7:Determination of aluminium content
  • KS D ISO 7530-6-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 6:Determination of manganese content
  • KS D ISO 7530-3-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 3:Determination of chromium content
  • KS D ISO 7530-8-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 8:Determination of silicon content
  • KS B ISO TR 14999-1:2011 Optics and photonics-Interferometric measurement of optical elements and optical systems-Part 1:Terms, definitions and fundamental relationships
  • KS D ISO 7530-9:2012 Nickel alloys-Flame atomic absorption spectrometric analysis-Part 9:Determination of vanadium content
  • KS D ISO 7530-4-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 4:Determination of copper content
  • KS D ISO 7530-6-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 6:Determination of manganese content
  • KS D ISO 7530-9-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 9:Determination of vanadium content
  • KS D ISO 7530-7-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 7:Determination of aluminium content
  • KS D ISO 7530-8-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 8:Determination of silicon content
  • KS D ISO 7530-2-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 2:Determination of cobalt content
  • KS D ISO 7530-5-2012(2017) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 5:Determination of iron content
  • KS D ISO 7530-5-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 5:Determination of iron content
  • KS D ISO 7530-3-2012(2022) Nickel alloys-Flame atomic absorption spectrometric analysis-Part 3:Determination of chromium content

American National Standards Institute (ANSI), Basic Parts of a Spectrum Analyzer

  • ANSI/TIA/EIA 455-221-2001 Optical Fiber Amplifiers - Basic Specification - Part 5 -1: Test Method for Reflectance Parameters - Optical Spectrum Analyzer
  • ANSI/TIA/EIA 455-209-2000 FOTP209 - IEC 61290-2-1 - Optical Fibre Amplifiers - Basic Specification Part 2-1: Test Methods for Optical Power Parameters - Optical Spectrum Analyzer
  • ANSI/TIA/EIA 455-206-2000 FOTP206 - IEC 61290-1-1 - Optical Fiber Amplifiers - Basic Specification Part 1-1: Test Methods for Gain Parameters - Optical Spectrum Analyzer
  • ANSI/TIA/EIA 455-210-2000 FOTP210-IEC 61290-2-2 - Optical Fibre Amplifiers - Basic Specification - Part 2-2: Test Methods for Optical Power Parameters - Electrical Spectrum Analyzer
  • ANSI/TIA-455-209-2000 FOTP209 - IEC 61290-2-1 - Optical Fibre Amplifiers - Basic Specification Part 2-1: Test Methods for Optical Power Parameters - Optical Spectrum Analyzer
  • ANSI/TIA/EIA 455-207-2000 FOTP207 - IEC 61290-1-2- Optical Fiber Amplifiers - Basic Specification Part 1-2: Test Methods for Gain Parameters - Electrical Spectrum Analyzer
  • ANSI/TIA-455-206-2000 FOTP206 - IEC 61290-1-1 - Optical Fiber Amplifiers - Basic Specification Part 1-1: Test Methods for Gain Parameters - Optical Spectrum Analyzer
  • ANSI/TIA-455-210-2000 FOTP210-IEC 61290-2-2 - Optical Fibre Amplifiers - Basic Specification - Part 2-2: Test Methods for Optical Power Parameters - Electrical Spectrum Analyzer
  • ANSI/TIA-455-207-2000 FOTP207 - IEC 61290-1-2- Optical Fiber Amplifiers - Basic Specification Part 1-2: Test Methods for Gain Parameters - Electrical Spectrum Analyzer

Association Francaise de Normalisation, Basic Parts of a Spectrum Analyzer

  • NF C93-805-5-1:2001 Optical fibre amplifiers - Basic specification - Part 5-1 : test methods for reflectance parameters - Optical spectrum analyser.
  • NF C93-805-2-2*NF EN 61290-2-2:1998 Optical fibre amplifiers. Basic specification. Part 2-2 : test methods for optical power parameters. Electrical spectrum analyzer.
  • NF C93-846-1*NF EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1 : optical spectrum analyzers
  • NF EN 61207-6:2015 Expression des performances des analyseurs de gaz - Partie 6 : analyseurs photométriques
  • NF EN 62129-1:2016 Étalonnage des appareils de mesure de longueur d'onde/appareil de mesure de la fréquence optique - Partie 1 : analyseurs de spectre optique
  • NF EN 61290-5-3:2002 Amplificateurs à fibres optiques - Spécification de base - Partie 5-3 : méthodes d'essai des paramètres de réflectance - Tolérance de réflectance en utilisant un analyseur de spectre électrique
  • NF EN 61290-5-1:2006 Amplificateurs optiques - Méthodes d'essais - Partie 5-1 : paramètres de réflectance - Méthode d'analyseur de spectre optique
  • NF C93-805-5-3*NF EN 61290-5-3:2002 Optical fibre amplifiers - Basic specification - Part 5-3 : test methods for reflectance parameters - Reflectance tolerance using an electrical spectrum analyser.
  • NF C93-805-3-1*NF EN 61290-3-1:2004 Optical amplifiers - Test methods - Part 3-1 : noise figure parameters - Optical spectrum analyzer method
  • NF EN 61290-3-1:2004 Amplificateurs optiques - Méthodes d'essai - Partie 3-1 : paramètres du facteur de bruit - Méthode d'analyseur du spectre optique
  • NF C93-805-1-1:2020 Optical amplifiers - Test methods - Part 1-1 : Power and gain parameters - Optical spectrum analyzer method
  • NF C93-805-1-1*NF EN 61290-1-1:2017 Optical amplifiers - Test methods - Part 1-1 : power and gain parameters - Optical spectrum analyzer method
  • NF EN IEC 61290-1-1:2020 Amplificateurs optiques - Méthodes d'essai - Partie 1-1 : paramètres de puissance et de gain - Méthode de l'analyseur de spectre optique
  • NF EN 61207-7:2014 Expression des performances des analyseurs de gaz - Partie 7 : analyseurs de gaz laser à semiconducteurs accordables
  • NF X21-054*NF ISO 17973:2006 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis.
  • NF C93-805-1-1:2007 Optical amplifiers - Test methods - Part 1-1 : power and gain parameters - Optical spectrum analyzer method.
  • NF C93-845-2*NF EN 62150-2:2011 Fibre optic active components and devices - Test and measurement procedures - Part 2 : ATM-PON transceivers.
  • NF EN 61290-10-2:2008 Amplificateurs optiques - Méthodes d'essai - Partie 10-2 : paramètres à canaux multiples - Méthode d'impulsion utilisant un analyseur de spectre optique stroboscopique
  • NF EN 61290-10-1:2009 Amplificateurs optiques - Méthodes d'essai - Partie 10-1 : paramètres à canaux multiples - Méthode d'impulsion utilisant un interrupteur optique et un analyseur de spectre optique
  • NF C93-805-5-2*NF EN 61290-5-2:2004 Optical amplifiers - Test methods - Part 5-2 : reflectance parameters - Electrical spectrum analyser method
  • NF EN 61290-5-2:2004 Amplificateurs optiques - Méthodes d'essai - Partie 5-2 : paramètres du facteur de réflexion - Méthode de l'analyseur de spectre électrique
  • NF C93-805-10-4*NF EN 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4 : multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • NF EN 61290-10-4:2007 Amplificateurs optiques - Méthodes d'essai - Partie 10-4 : paramètres à canaux multiples - Méthode par soustraction de source interpolée en utilisant un analyseur de spectre optique
  • NF A06-902*NF EN 12938:2000 Methods for the analysis of pewter - Determination of alloying and impurity element contents by atomic spectrometry.
  • NF EN 61290-3-2:2009 Amplificateurs optiques - Méthodes d'essais - Partie 3-2 : paramètres du facteur de bruit - Méthode de l'analyseur spectral électrique
  • NF C93-805-10-2:2003 Optical amplifiers - Test methods - Part 10-2 : multichannel parameters - Pulse method using a gated optical spectrum analyzer.
  • NF C93-805-10-2*NF EN 61290-10-2:2008 Optical amplifiers - Test methods - Part 10-2 : multichannel parameters - Pulse method using a gated optical spectrum analyzer
  • NF C93-805-1-2*NF EN 61290-1-2:2006 Optical amplifiers - Test methods - Part 1-2 : power and gain parameters - Electrical spectrum analyzer method.
  • NF V56-003-2*NF EN 16466-2:2013 Vinegar - Isotopic analysis of acetic acid and water - Part 2: 0C-IRMS analysis of acetic acid
  • NF EN 61290-1-2:2006 Amplificateurs optiques - Méthodes d'essai - Partie 1-2 : paramètres de puissance et de gain - Méthode de l'analyseur de spectre électrique
  • NF S12-300-2*NF EN ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2 : light hazard protection.
  • NF EN ISO 15004-2:2007 Instruments ophtalmiques - Exigences fondamentales et méthodes d'essai - Partie 2 : protection contre les dangers de la lumière
  • NF ISO 7530-9:2007 Alliages de nickel - Analyse par spectrométrie d'absorption atomique dans la flamme - Partie 9 : dosage du vanadium
  • NF EN 63005-1:2017 Enregistreurs de données vidéo pour l'identification et l'analyse des causes des accidents des véhicules routiers - Partie 1 : exigences de bases
  • NF C93-805-2-3*NF EN 61290-2-3:1998 Optical fibre amplifiers. Basic specification. Part 2-3 : test methods for optical power parameters. Optical power meter.
  • NF ISO 7530-8:2007 Alliages de nickel - Analyse par spectrométrie d'absorption atomique dans la flamme - Partie 8 : dosage du silicium
  • NF EN IEC 80601-2-71:2018 Appareils électromédicaux - Partie 2-71 : exigences particulières pour la sécurité de base et les performances essentielles des appareils d'imagerie spectroscopique proche infrarouge (NIRS)
  • NF C74-391*NF EN IEC 80601-2-71:2018 Medical electrical equipment - Part 2-71 : particular requirements for the basic safety and essential performance of functional near-infrared spectroscopy (NIRS) equipment
  • NF EN ISO 18314-4:2021 Analyse colorimétrique - Partie 4 : indice de metamérisme de paires d'échantillon pour changement d'illuminant
  • NF A06-841-7*NF EN 12441-7:2005 Zinc and zinc alloys - Chemical analysis - Part 7 : determination of tin - Flame atomic absorption spectrometric method after extraction.
  • NF A08-903:1991 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 3 : determination of chromium content.
  • NF A08-904:1991 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 4 : determination of copper content.
  • NF A08-905:1991 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 5 : determination of iron content.

ZA-SANS, Basic Parts of a Spectrum Analyzer

  • SANS 62129:2008 Calibration of optical spectrum analyzers
  • SANS 61290-5-1:2007 Optical amplifiers - Test methods Part 5-1: Reflectance parameters - Optical spectrum analyzer method
  • SANS 61280-1-3:1998 Fibre optic communication subsystem basic test procedures Part 1-3: Test procedures for general communication subsystems - Central wavelength and spectral width measurement

European Committee for Electrotechnical Standardization(CENELEC), Basic Parts of a Spectrum Analyzer

  • EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers
  • EN 61290-5-3:2002 Optical Fibre Amplifiers - Basic Specification Part 5-3: Test Methods for Reflectance Parameters - Reflectance Tolerance Using an Electrical Spectrum Analyser
  • EN 61290-1-1:2015 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • EN IEC 61290-1-1:2020 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method
  • EN 61207-7:2013 Expression of performance of gas analyzers - Part 7: Tuneable semiconductor laser gas analyzers
  • EN 61290-10-1:2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer
  • EN 61290-5-1:2006 Optical amplifiers - Test methods Part 5-1: Reflectance parameters - Optical spectrum analyzer method
  • EN 61290-3-1:2003 Optical amplifiers Test methods Part 3-1: Noise figure parameters Optical spectrum analyzer method
  • EN 61290-10-4:2007 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer
  • EN 61290-3-2:2008 Optical amplifiers - Test methods - Part 3-2: Noise figure parameters - Electrical spectrum analyzer method
  • EN 61290-5-2:2004 Optical amplifiers Test methods Part 5-2: Reflectance parameters Electrical spectrum analyser method
  • EN IEC 80601-2-71:2018 Medical electrical equipment - Part 2-71: Particular requirements for the basic safety and essential performance of functional near-infrared spectroscopy (NIRS) equipment
  • EN 61290-1-2:2005 Optical amplifiers - Test methods Part 1-2: Power and gain parameters - Electrical spectrum analyzer method

ES-UNE, Basic Parts of a Spectrum Analyzer

  • UNE-EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers (Endorsed by AENOR in July of 2016.)
  • UNE-EN 61290-5-3:2002 Optical fibre amplifiers - Basic specification -- Part 5-3: Test methods for reflectance parameters - Reflectance tolerance using an electrical spectrum analyser. (Endorsed by AENOR in October of 2002.)
  • UNE-EN 61290-3-1:2003 Optical amplifiers - Test methods -- Part 3-1: Noise figure parameters - Optical spectrum analyzer method (Endorsed by AENOR in April of 2004.)
  • UNE-EN IEC 61290-1-1:2020 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (Endorsed by Asociación Española de Normalización in December of 2020.)
  • UNE-EN 61290-1-1:2015 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (Endorsed by AENOR in August of 2015.)
  • 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 61290-5-2:2004 Optical amplifiers - Test methods -- Part 5-2: Reflectance parameters - Electrical spectrum analyser method (Endorsed by AENOR in September of 2004.)
  • UNE-EN 61290-5-1:2006 Optical amplifiers - Test methods -- Part 5-1: Reflectance parameters - Optical spectrum analyzer method (IEC 61290-5-1:2006). (Endorsed by AENOR in October of 2006.)
  • 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.)
  • UNE-EN 61290-3-2:2008 Optical amplifier test methods -- Part 3-2: Noise figure parameters - Electrical spectrum analyzer method (Endorsed by AENOR in February of 2009.)
  • UNE-EN 61290-1-2:2005 Optical amplifiers - Test methods -- Part 1-2: Power and gain parameters - Electrical spectrum analyzer method (Endorsed by AENOR in March of 2006.)
  • UNE-EN ISO 23674:2023 Cosmetics - Analytical methods - Direct determination of traces of mercury in cosmetics by thermal decomposition and atomic absorption spectrometry (mercury analyser) (ISO 23674:2022)
  • UNE-EN 61290-10-4:2007 Optical amplifiers - Test methods -- Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer (IEC 61290-10-4:2007). (Endorsed by AENOR in November of 2007.)
  • UNE-EN IEC 80601-2-71:2018 Medical electrical equipment - Part 2-71: Particular requirements for the basic safety and essential performance of functional Near-Infrared Spectroscopy (NIRS) equipment (Endorsed by Asociación Española de Normalización in August of 2018.)

Lithuanian Standards Office , Basic Parts of a Spectrum Analyzer

  • LST EN 62129-2006 Calibration of optical spectrum analyzers (IEC 62129:2006)
  • LST EN 62129-2006/AC-2007 Calibration of optical spectrum analyzers (IEC 62129:2006)
  • LST EN 61207-6-2001 Expression of performance of gas analyzers. Part 6: Photometric analyzers (IEC 61207-6:1994)
  • LST EN 61290-5-3-2003 Optical fibre amplifiers. Basic specification. Part 5-3: Test methods for reflectance parameters. Reflectance tolerance using an electrical spectrum analyzer (IEC 61290-5-3:2002)
  • LST EN 61290-5-1-2006 Optical amplifiers -Test methods - Part 5-1: Reflectance parameters - Optical spectrum analyzer method (IEC 61290-5-1:2006)
  • LST EN 61290-3-1-2004 Optical amplifiers. Test methods. Part 3-1: Noise figure parameters. Optical spectrum analyzer method (IEC 61290-3-1:2003)
  • LST EN 61290-1-1-2007 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2006)
  • LST EN IEC 61290-1-1:2020 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2020)
  • LST EN 61290-10-1-2009 Optical amplifiers - Test methods - Part 10-1: Multichannel parameters - Pulse method using an optical switch and optical spectrum analyzer (IEC 61290-10-1:2009)
  • LST 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)
  • LST EN 61290-10-4-2007 Optical amplifiers - Test methods - Part 10-4: Multichannel parameters - Interpolated source subtraction method using an optical spectrum analyzer (IEC 61290-10-4:2007)
  • LST EN 61290-5-2-2004 Optical amplifiers. Test methods. Part 5-2: Reflectance parameters. Electrical spectrum analyser method (IEC 61290-5-2:2003)
  • LST EN ISO 12966-1:2015 Animal and vegetable fats and oils - Gas chromatography of fatty acid methyl esters - Part 1: Guidelines on modern gas chromatography of fatty acid methyl esters (ISO 12966-1:2014)
  • LST EN ISO 12966-1:2015/AC:2015 Animal and vegetable fats and oils - Gas chromatography of fatty acid methyl esters - Part 1: Guidelines on modern gas chromatography of fatty acid methyl esters (ISO 12966-1:2014)
  • LST EN 61290-1-2-2006 Optical amplifiers. Test methods. Part 1-2: Power and gain parameters. Electrical spectrum analyzer method (IEC 61290-1-2:2005)
  • LST EN 61290-3-2-2008 Optical amplifiers - Test methods - Part 3-2: Noise figure parameters - Electrical spectrum analyzer method (IEC 61290-3-2:2008)
  • LST EN ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection (ISO 15004-2:2007)

German Institute for Standardization, Basic Parts of a Spectrum Analyzer

  • DIN EN 62129:2007 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006
  • DIN EN 62129-1:2016 Calibration of wavelength/optical frequency measurement instruments - Part 1: Optical spectrum analyzers (IEC 62129-1:2016); German version EN 62129-1:2016
  • DIN EN 61207-6:2016-03 Expression of performance of gas analyzers - Part 6: Photometric analyzers (IEC 61207-6:2014); German version EN 61207-6:2015 / Note: DIN EN 61207-6 (1995-02) remains valid alongside this standard until 2017-12-30.
  • DIN EN 12938:2000 Methods for the analysis of pewter - Determination of alloying and impurity element contents by atomic spectrometry (includes AC:2000); German version EN 12938:1999 + AC:2000
  • DIN EN 61290-5-1:2007 Optical amplifiers - Test methods - Part 5-1: Reflectance parameters - Optical spectrum analyzer method (IEC 61290-5-1:2006); German version EN 61290-5-1:2006
  • DIN EN 62129 Berichtigung 1:2008 Calibration of optical spectrum analyzers (IEC 62129:2006); German version EN 62129:2006, Corrigendum to DIN EN 62129:2007-01; German version CENELEC-Cor. :2006 to EN 62129:2006
  • DIN 51418-2:2015 X-ray spectrometry - X-ray emission and X-ray fluorescence analysis (XRF) - Part 2: Definitions and basic principles for measurements, calibration and evaluation of results
  • DIN 51418-2:1996 X-ray spectrometry - X-ray emission- and X-ray fluorescense analysis (XRF) - Part 2: Definitions and basic principles for measurements, calibration and evaluation of results
  • DIN EN 61207-6:2016 Expression of performance of gas analyzers - Part 6: Photometric analyzers (IEC 61207-6:2014); German version EN 61207-6:2015
  • DIN EN 61290-5-1:2007-03 Optical amplifiers - Test methods - Part 5-1: Reflectance parameters - Optical spectrum analyzer method (IEC 61290-5-1:2006); German version EN 61290-5-1:2006 / Note: DIN EN 61290-5-1 (2001-06) remains valid alongside this standard until 2009-06-01.
  • DIN 51418-1:1996 X-ray spectrometry - X-ray emission- and X-ray fluorescence analysis (XRF) - Part 1: Definitions and basic principles
  • DIN 51418-1:2008-08 X-ray spectrometry - X-ray emission- and X-ray fluorescence analysis (XRF) - Part 1: Definitions and basic principles
  • DIN EN 61290-3-1:2004 Optical amplifiers - Test methods - Part 3-1: Noise figure parameters - Optical spectrum analyzer method (IEC 61290-3-1:2003); German version EN 61290-3-1:2003
  • DIN EN 61290-3-1:2004-05 Optical amplifiers - Test methods - Part 3-1: Noise figure parameters - Optical spectrum analyzer method (IEC 61290-3-1:2003); German version EN 61290-3-1:2003
  • 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 61290-1-1:2007 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2006); German version EN 61290-1-1:2006
  • DIN EN 61290-10-4:2008 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
  • DIN 51418-1:2008 X-ray spectrometry - X-ray emission- and X-ray fluorescence analysis (XRF) - Part 1: Definitions and basic principles
  • 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 61290-5-2:2004 Optical amplifiers - Test methods - Part 5-2: Reflectance parameters - Electrical spectrum analyser method (IEC 61290-5-2:2003); German version EN 61290-5-2:2004
  • DIN ISO 15472:2020 Surface chemical analysis - X-ray photoelectron spectrometers - Calibration of energy scales (ISO 15472:2010); Text in English
  • 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 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 ISO 16129:2020 Surface chemical analysis - X-ray photoelectron spectroscopy - Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer (ISO 16129:2018); Text in English
  • DIN EN 61290-5-3:2002 Optical fibre amplifiers - Basic specification - Part 5-3: Test methods for reflectance parameters; Reflectance tolerance using an electrical spectrum analyser (IEC 61290-5-3:2002); German version EN 61290-5-3:2002
  • DIN EN 61290-1-1:2016 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2015); German version EN 61290-1-1:2015
  • DIN EN 61290-3-2:2009-06 Optical amplifier - Test methods - Part 3-2: Noise figure parameters - Electrical spectrum analyzer method (IEC 61290-3-2:2008); German version EN 61290-3-2:2008 / Note: DIN EN 61290-3-2 (2003-08) remains valid alongside this standard until 2011-10-01....
  • DIN 51820-1:1989 Testing of lubricants; analysis of greases by infrared spectrometry; taking and evaluating an infrared spectrum
  • DIN V ENV 13800:2000 Lead and lead alloys - Analysis by flame atomic absorption spectrometry (FAAS) or inductively coupled plasma emission spectrometry (ICP-ES) without separation of the lead matrix; German version ENV 13800:2000
  • DIN EN IEC 61290-1-1:2019 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 86C/1563/CD:2018); Text in German and English
  • DIN EN IEC 61290-1-1:2022-07 Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2020); German version EN IEC 61290-1-1:2020 / Note: DIN EN 61290-1-1 (2016-03) remains valid alongside this standard until 2023-10...
  • DIN EN 61290-1-2:2006-07 Optical amplifier - Test methods - Part 1-2: Power and gain parameters - Electrical spectrum analyzer method (IEC 61290-1-2:2005); German version EN 61290-1-2:2005 / Note: DIN EN 61290-1-2 (1999-08) remains valid alongside this standard until 2008-10-0...
  • DIN EN 61290-10-1:2010 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
  • DIN 51418-2:2015-03 X-ray spectrometry - X-ray emission and X-ray fluorescence analysis (XRF) - Part 2: Definitions and basic principles for measurements, calibration and evaluation of results
  • DIN 51790-7:2002-01 Testing of liquid fuels - Determination of the vanadium and nickel content - Part 7: Analysis by wavelength dispersive X-ray spectrometry (XRS) and Fundamental-Parameter-Method
  • DIN EN 61290-1-2:2006 Optical amplifier - Test methods - Part 1-2: Power and gain parameters - Electrical spectrum analyzer method (IEC 61290-1-2:2005); German version EN 61290-1-2:2005
  • DIN ISO 15632:2022-09 Microbeam analysis - Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers (EDS) for use with a scanning electron microscope (SEM) or an electron probe microanalyser (EPMA) (ISO 15632:2...
  • DIN EN ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection (ISO 15004-2:2007);English version of DIN EN ISO 15004-2:2007-06
  • DIN EN ISO 15004-2:2007-06 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection (ISO 15004-2:2007); German version EN ISO 15004-2:2007 / Note: To be replaced by DIN EN ISO 15004-2 (2014-04).
  • DIN EN 61290-5-2:2004-12 Optical amplifiers - Test methods - Part 5-2: Reflectance parameters - Electrical spectrum analyser method (IEC 61290-5-2:2003); German version EN 61290-5-2:2004
  • DIN 51790-7:2002 Testing of liquid fuels - Determination of the vanadium and nickel content - Part 7: Analysis by wavelength dispersive X-ray spectrometry (XRS) and Fundamental-Parameter-Method
  • DIN 58960-1:1988-05 Photometers for analytical tests; used physical-chemical basic processes
  • DIN ISO 12858-3:2019-10 Optics and optical instruments - Ancillary devices for geodetic instruments - Part 3: Tribrachs (ISO 12858-3:2005)
  • DIN EN ISO 23674:2022 Cosmetics - Analytical methods - Direct determination of traces of mercury in cosmetics by thermal decomposition and atomic absorption spectrometry (mercury analyser) (ISO 23674:2022)
  • DIN 43870-1:1991 Meter mounting boards; dimensions based on a grid system
  • DIN ISO 14490-1:2006 Optics and optical instruments - Test methods for telescopic systems - Part 1: Test methods for basic characteristics (ISO 14490-1:2005) English version of DIN ISO 14490-1:2006-08
  • DIN 51577-4:2023-11 Testing of mineral oil hydrocarbons and similar products - Determination of chlorine and bromine content - Part 4: Analysis by energy dispersive X-ray spectrometry with low cost instruments

(U.S.) Telecommunications Industries Association , Basic Parts of a Spectrum Analyzer

  • TIA/EIA-455-209-2000 FOTP-209 IEC 61290-2-1 Optical Fibre Amplifiers - Basic Specification Part 2-1: Test Methods for Optical Power Parameters - Optical Spectrum Analyzer
  • TIA/EIA-455-206-2000 FOTP-206 IEC 61290-1-1 Optical Fibre Amplifiers - Basic Specification Part 1-1: Test Methods for Gain Parameters - Optical Spectrum Analyzer
  • TIA/EIA-455-210-2000 FOTP-210 IEC 61290-2-2 Optical Fibre Amplifiers - Basic Specification Part 2-2: Test Methods for Optical Power Parameters - Electrical Spectrum Analyzer

工业和信息化部/国家能源局, Basic Parts of a Spectrum Analyzer

  • JB/T 12962.2-2016 Energy dispersive X-ray fluorescence spectrometer Part 2: Elemental analyzers
  • JB/T 12962.3-2016 Energy dispersive X-ray fluorescence spectrometer Part 3: Coating thickness analyzer

IEC - International Electrotechnical Commission, Basic Parts of a Spectrum Analyzer

  • PAS 62129-2004 Calibration of optical spectrum analyzers (Edition 1.0;: 2006)

American Society for Testing and Materials (ASTM), Basic Parts of a Spectrum Analyzer

  • ASTM D8340-21 Standard Practice for Performance-Based Qualification of Spectroscopic Analyzer Systems
  • ASTM D8340-20a Standard Practice for Performance-Based Qualification of Spectroscopic Analyzer Systems
  • ASTM D8340-20 Standard Practice for Performance-Based Qualification of Spectroscopic Analyzer Systems
  • ASTM D8340-22 Standard Practice for Performance-Based Qualification of Spectroscopic Analyzer Systems
  • ASTM D6122-21 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, Field and Laboratory Infrared Spectrophotometer, and Raman Spectrometer Based Analyzer Systems
  • ASTM D6122-20a Standard Practice for Validation of the Performance of Multivariate Online, At-Line, Field and Laboratory Infrared Spectrophotometer, and Raman Spectrometer Based Analyzer Systems
  • ASTM D6122-20 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, Field and Laboratory Infrared Spectrophotometer, and Raman Spectrometer Based Analyzer Systems
  • ASTM D6122-22 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, Field and Laboratory Infrared Spectrophotometer, and Raman Spectrometer Based Analyzer Systems
  • ASTM D6247-10 Standard Test Method for Determination of Elemental Content of Polyolefins by Wavelength Dispersive X-ray Fluorescence Spectrometry
  • ASTM D7941/D7941M-23 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM D7941/D7941M-14 Standard Test Method for Hydrogen Purity Analysis Using a Continuous Wave Cavity Ring-Down Spectroscopy Analyzer
  • ASTM E2465-19 Standard Test Method for Analysis of Ni-Base Alloys by X-ray Fluorescence Spectrometry
  • ASTM F1375-92(2012) Standard Test Method for Energy Dispersive X-Ray Spectrometer (EDX) Analysis of Metallic Surface Condition for Gas Distribution System Components
  • 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 E2465-11e1 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E1009-95(2000) Standard Practice for Evaluating an Optical Emission Vacuum Spectrometer to Analyze Carbon and Low-Alloy Steel
  • ASTM E158-86(1996)e1 Standard Practice for Fundamental Calculations to Convert Intensities into Concentrations in Optical Emission Spectrochemical Analysis (Withdrawn 2004)
  • ASTM D7751-12 Standard Test Method for Determination of Additive Elements in Lubricating Oils by EDXRF Analysis
  • 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 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 E2465-11 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength-Dispersive X-Ray Fluorescence Spectrometry
  • ASTM E2465-13 Standard Test Method for Analysis of Ni-Base Alloys by Wavelength Dispersive X-Ray Fluorescence Spectrometry
  • ASTM D7165-10(2015) Standard Practice for Gas Chromatograph Based On-line/At-line Analysis for Sulfur Content of Gaseous Fuels
  • ASTM E1010-16 Standard Practice for Preparation of Disk Specimens of Steel and Iron by Remelting for Spectrochemical Analysis
  • ASTM D6122-10 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, and Laboratory Infrared Spectrophotometer Based Analyzer Systems
  • ASTM D6122-13 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, and Laboratory Infrared Spectrophotometer Based Analyzer Systems
  • ASTM D6122-15 Standard Practice for Validation of the Performance of Multivariate Online, At-Line, and Laboratory Infrared Spectrophotometer Based Analyzer Systems

TIA - Telecommunications Industry Association, Basic Parts of a Spectrum Analyzer

  • TIA/EIA-455-221-2001 FOTP-221-IEC 61290-5-1 - Optical Fiber Amplifiers - Basic Specification - Part 5-1: Test Method for Reflectance Parameters - Optical Spectrum Analyzer (Please refer to IEC 61290-5-1)
  • TIA/EIA-455-207-2000 FOTP-207 IEC 61290-1-2 Optical Fibre Amplifiers - Basic Specification Part 1-2: Test Methods for Gain Parameters - Electrical Spectrum Analyzer (Please refer to IEC 61290-1-2)

IN-BIS, Basic Parts of a Spectrum Analyzer

国家药监局, Basic Parts of a Spectrum Analyzer

  • YY/T 1740.2-2021 Medical Mass Spectrometry Part 2: Matrix-Assisted Laser Desorption Ionization Time-of-Flight Mass Spectrometry

American Bureau of Shipping , Basic Parts of a Spectrum Analyzer

  • ABS 125-2004 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE 慡FA?OF 慡FA (years)?CLASSIFICATION NOTATION)
  • ABS 104-2010 GUIDE FOR SPECTRAL-BASED FATIGUE ANALYSIS FOR FLOATING PRODUCTION, STORAGE AND OFFLOADING (FPSO) INSTALLATIONS
  • ABS 125 CORR-2008 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE 慡FA?OF 慡FA (years)?CLASSIFICATION NOTATION)

未注明发布机构, Basic Parts of a Spectrum Analyzer

  • DIN EN IEC 61290-1-1:2022 Test methods for fiber optic amplifiers – Part 1 1: Optical performance and gain parameters – Optical spectrum analyzer method
  • BS EN 61290-3-1:2003(2004) Optical amplifiers — Test methods — Part 3 - 1 : Noise figure parameters — Optical spectrum analyzer method

国家市场监督管理总局、中国国家标准化管理委员会, Basic Parts of a Spectrum Analyzer

  • GB/T 41073-2021 Surface chemical analysis—Electron spectroscopies—Minimum reporting requirements for peak fitting in X-ray photoelectron spectroscopy

VN-TCVN, Basic Parts of a Spectrum Analyzer

  • TCVN 5270-2008 Honey.Determination of hydroxymetylfurfural by spectrophotometric method
  • TCVN 1674-1-2009 Iron ores.Determination of vanadium.Prat1:BPHA spectrophotometric method

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Basic Parts of a Spectrum Analyzer

  • GB/T 29559-2013 Surface chemical analysis.Analysis of zinc and/or aluminium based metallic coatings by glow discharge optical emission spectrometry
  • GB/T 21006-2007 Surface chemical analysis.X-ray photoelectron and Auger electron spectrometers.Linearity of intensity scale
  • GB/T 22571-2008 Surface chemical analysis.X-ray photoelectron spectrometers.Calibration of energy scales
  • GB/T 4325.3-2013 Methods for chemical analysis of molybdenum.Part 3:Determination of bismuth content.Atomic fluorescence spectrometry
  • GB/T 4325.4-2013 Methods for chemical analysis of molybdenum.Part 4:Determination of tin content.Atomic fluorescence spectrometry
  • GB/T 4325.5-2013 Methods for chemical analysis of molybdenum.Part 5:Determination of antimony content.Atomic fluorescence spectrometry
  • GB/T 4325.6-2013 Methods for chemical analysis of molybdenum.Part 6:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/Z 32490-2016 Procedure for determination of background by X-ray photoelectron spectroscopy for surface chemical analysis
  • GB/T 28892-2012 Surface chemical analysis.X-ray photoelectron spectroscopy.Description of seleted instrumental performance parameters
  • GB/T 14849.10-2016 Methods for chemical analysis of industrial silicon - Part 10: Determination of mercury content by atomic fluorescence spectrometry
  • GB/T 6150.17-2022 Methods for chemical analysis of tungsten concentrates—Part 17:Determination of antimony content—Atomic fluorescence spectrometry
  • GB/T 6150.13-2022 Methods for chemical analysis of tungsten concentrates—Part 13:Determination of arsenic content—Atomic fluorescence spectrometry and the silver diethyldithiocarbamate(DDTC-Ag)spectrophotometry
  • GB/T 23364.1-2009 Methods for chemical analysis of high purity indium oxide.Part 1:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/T 23364.3-2009 Methods for chemical analysis of high purity indium oxide.Part 3:Determination of antimony content.Atomic fluorescenece spectrometry
  • GB/T 23364.2-2009 Methods for chemical analysis of high purity indium oxide.Part 2:Determination of tin content.Phenylfluorone spectrophotometry
  • GB/T 12689.5-2004 The methods for chemical analysis of zinc and zinc alloys-The determination of iron content-The sultosalicylic acid spectrometric method and the flame atomic absorption spectrometric method
  • GB/T 3884.9-2012 Methods for chemical analysis of copper concentrates.Part 9:Determination of arsenic and bismuth contents.Hydride generation-atomic fluorescence spectrometry method The potassium bromate titration method and The silver diethyl dithiocarbamate photometric
  • GB 9706.271-2022 Medical electrical equipment—Part 2-71: Particular requirements for the basic safety and essential performance of functional near-infrared spectroscopy (NIRS) equipment
  • GB/T 23362.1-2009 Methods for chemical analysis of high purity indium hydroxide.Part 1:Determination of arsenic content.Atomic fluorescence spectrometry
  • GB/T 23362.3-2009 Methods for chemical analysis of high purity indium hydroxide.Part 3:Determination of antimony content.Atomic fluorescene spectrometry
  • GB/T 14849.5-2010 Chemical analysis of slion metal.Part 5: Determination of elements content.Analysis using an X-ray fluorescence method
  • GB/T 3260.3-2013 Methods for chemical analysis of tin.Part 3:Determination of bismuth content.KI photometric method and flame atomic absorption spectrometric method
  • GB/T 4325.8-2013 Methods for chemical analysis of molybdenum.Part 8:Determination of cobalt content.5-CI-PADAB spectrophotometry and flame atomic absorption spectrometry
  • GB/T 23362.2-2009 Methods for chemical analysis of high purity indium hydroxide.Part 2:Determination of tin content.Phenylfluorone spectrophotometry
  • GB/T 4325.19-2013 Methods for chemical analysis of molybdenum.Part 19:Determination of chromium content.Diphenylcarbazide spectrophotometry

International Organization for Standardization (ISO), Basic Parts of a Spectrum Analyzer

  • ISO 17973:2016 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • ISO 17973:2002 Surface chemical analysis - Medium-resolution Auger electron spectrometers - Calibration of energy scales for elemental analysis
  • ISO 21270:2004 Surface chemical analysis - X-ray photoelectron and Auger electron spectrometers - Linearity of intensity scale
  • ISO 24417:2022 Surface chemical analysis — Analysis of metallic nanolayers on iron based substrates by glow-discharge optical-emission spectrometry
  • ISO 15470:2004 Surface chemical analysis - X-ray photoelectron spectroscopy - Description of selected instrumental performance parameters
  • ISO/CD 16094-2 Water quality — Analysis of plastics in water — Part 2: Method using vibrational spectroscopy
  • ISO 16129:2018 Surface chemical analysis — X-ray photoelectron spectroscopy — Procedures for assessing the day-to-day performance of an X-ray photoelectron spectrometer
  • ISO 17974:2002 Surface chemical analysis - High-resolution Auger electron spectrometers - Calibration of energy scales for elemental and chemical-state analysis
  • ISO 78-4:1983 Layouts for standards; Part 4: Standard for atomic absorption spectrometric analysis
  • ISO 12966-1:2014 Animal and vegetable fats and oils - Gas chromatography of fatty acid methyl esters - Part 1: Guidelines on modern gas chromatography of fatty acid methyl esters
  • ISO/CD 15004-2.2 Ophthalmic instruments — Fundamental requirements and test methods — Part 2: Light hazard protection
  • ISO 15471:2004 Surface chemical analysis - Auger electron spectroscopy - Description of selected instrumental performance parameters
  • ISO 15471:2016 Surface chemical analysis - Auger electron spectroscopy - Description of selected instrumental performance parameters
  • ISO 23674:2022 Cosmetics — Analytical methods — Direct determination of traces of mercury in cosmetics by thermal decomposition and atomic absorption spectrometry (mercury analyser)
  • ISO 14490-1:2005 Optics and optical instruments - Test methods for telescopic systems - Part 1: Test methods for basic characteristics
  • ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection
  • ISO/DIS 15004-2:2011 Ophthalmic instruments — Fundamental requirements and test methods — Part 2: Light hazard protection
  • ISO/TR 14999-1:2005 Optics and photonics - Interferometric measurement of optical elements and optical systems - Part 1: Terms, definitions and fundamental relationships
  • ISO/TS 13473-4:2008 Characterization of pavement texture by use of surface profiles - Part 4: Spectral analysis of surface profiles
  • ISO 7530-3:1990 Nickel alloys — Flame atomic absorption spectrometric analysisPart 3:Determination of chromium content
  • IEC 80601-2-71:2015 Medical electrical equipment — Part 2-71: Particular requirements for the basic safety and essential performance of functional Near-Infrared Spectroscopy (NIRS) equipment
  • IEC/CD 80601-2-71 Medical electrical equipment — Part 2-71: Particular requirements for the basic safety and essential performance of functional near-infrared spectroscopy (functional NIRS) equipment

ABS - American Bureau of Shipping, Basic Parts of a Spectrum Analyzer

  • ABS 125-2016 GUIDE FOR SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE ‘SFA (years)’ CLASSIFICATION NOTATION)
  • ABS 125 NOTICE 4-2012 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE ‘SFA (years)’ CLASSIFICATION NOTATION)
  • ABS 125 NOTICE 2-2007 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE ‘SFA’ OF ‘SFA (years)’ CLASSIFICATION NOTATION)
  • ABS 125 NOTICE 1-2006 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE ‘SFA’ OF ‘SFA (years)’ CLASSIFICATION NOTATION)
  • ABS 125 CORR-2012 GUIDANCE NOTES ON SPECTRAL-BASED FATIGUE ANALYSIS FOR VESSELS (FOR THE ‘SFA’ OF ‘SFA (years)’ CLASSIFICATION NOTATION)

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, Basic Parts of a Spectrum Analyzer

  • GB/T 22571-2017 Surface chemical analysis—X-ray photoelectron spectrometers—Calibration of energy scales
  • GB/T 1819.17-2017 Methods for chemical analysis of tin concentrates—Part 17:Determination of mercury content—Atomic fluorescence spectrometric method

KR-KS, Basic Parts of a Spectrum Analyzer

  • KS D ISO 15472-2003(2023)
  • KS D ISO 15632-2018 Microbeam analysis — Selected instrumental performance parameters for the specification and checking of energy-dispersive X-ray spectrometers for use in electron probe microanalysis

RO-ASRO, Basic Parts of a Spectrum Analyzer

  • STAS SR ISO 7359:1996 Essential cils - Analysis by gas chromatography on packed columns - General method
  • STAS SR ISO 7530-2:1995 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 2: Determination of cobalt content
  • STAS SR ISO 7530-3:1995 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 3: Determination of chromium content

Standard Association of Australia (SAA), Basic Parts of a Spectrum Analyzer

  • AS ISO 15470:2006 Surface chemical analysis - X-ray photoelectron spectroscopy - Description of selected instrumental performance parameters

PL-PKN, Basic Parts of a Spectrum Analyzer

  • PN-EN IEC 61290-1-1-2021-06 E Optical amplifiers - Test methods - Part 1-1: Power and gain parameters - Optical spectrum analyzer method (IEC 61290-1-1:2020)

International Commission on Illumination (CIE), Basic Parts of a Spectrum Analyzer

  • CIE 170-2-2015 Fundamental Chromaticity Diagram with Physiological Axes - Part 2: Spectral Luminous Efficiency Functions and Chromaticity Diagrams

Association of German Mechanical Engineers, Basic Parts of a Spectrum Analyzer

Military Standard of the People's Republic of China-Commission of Science,Technology and Industry for National Defence, Basic Parts of a Spectrum Analyzer

  • GJB 5404.4-2005 Analysis methods for trace elements in super alloys Part 4: Determination of cadium content by methyl isobutyl ketone extraction atomic fluorescence spectrometric method

Military Standard of the People's Republic of China-General Armament Department, Basic Parts of a Spectrum Analyzer

  • GJB 8781.4-2015 High temperature alloy trace element analysis method Part 4: Extraction and separation of methyl isobutyl ketone - Determination of cadmium content by atomic fluorescence spectrometry

RU-GOST R, Basic Parts of a Spectrum Analyzer

  • GOST ISO 11024-2-2015 Essential Oils. General guidance on chromatographic profiles. Part 2. Utilization of chromatographic profiles of samples of essential oils
  • GOST R ISO 7530-2-2016 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 2. Determination of cobalt content
  • GOST R ISO 7530-3-2016 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 3. Determination of chromium content
  • GOST R ISO 7530-9-2017 Nickel alloys. Flame atomic absorption spectrometric analysis. Part 9. Determination of vanadium content

Professional Standard - Geology, Basic Parts of a Spectrum Analyzer

  • DZ/T 0064.81-2021 Methods of Analytical Groundwater Quality Part 81: Determination of Mercury Amounts by Atomic Fluorescence Spectrometry
  • DZ/T 0064.67-2021 Methods of analysis of groundwater quality - Part 67: Determination of sulfides by p-aminodimethylaniline spectrophotometric method
  • DZ/T 0064.10-2021 Analytical methods for groundwater quality - Part 10: Determination of arsenic content by silver diethyldithiocarbamate spectrophotometric method

Group Standards of the People's Republic of China, Basic Parts of a Spectrum Analyzer

  • T/QAS 082.10-2023 Chemical Analysis of Rock Salt and Glauber's Salt - Part 10: Determination of Arsenic by Atomic Fluorescence Spectrometry
  • T/QAS 081.5-2023 Chemical analysis of polymetallic minerals - Part 5: Determination of gold by foam adsorption - atomic absorption spectrometry
  • T/QAS 081.4-2023 Chemical analysis of polymetallic minerals - Part 4: Determination of tin by hydride generation - atomic fluorescence spectrometry

European Committee for Standardization (CEN), Basic Parts of a Spectrum Analyzer

  • EN ISO 23674:2022 Cosmetics - Analytical methods - Direct determination of traces of mercury in cosmetics by thermal decomposition and atomic absorption spectrometry (mercury analyser) (ISO 23674:2022)
  • prEN ISO 23674:2021 Cosmetics - Analytical methods - Direct determination of traces of mercury in cosmetics by thermal decomposition - Atomic absorption spectrometry (mercury analyzer) (ISO/DIS 23674:2021)
  • PD CEN/TR 15522-2:2012 Oil spill identification - Waterborne petroleum and petroleum products - Part 2: Analytical methodology and interpretation of results based on GC-FID and GC-MS low resolution analyses

Professional Standard - Non-ferrous Metal, Basic Parts of a Spectrum Analyzer

  • YS/T 953.6-2014 Methods for chemical analysis of fire smelting nickel substrate material.Part 6:Determination of cobalt content.5-CI-PADAB spectrophotometric method and flame atomic absorption spectrometric method
  • YS/T 276.3-2011 Methods for chemical analysis of indium.Part 3: Determination of thallium content.Methyl green photometric method
  • YS/T 710.4-2009 Method for chemical analysis of cobalt oxide.Part 4:Determination of arsenic content.Atomic fluorescence spectrometry
  • YS/T 556.7-2009 Methods for chemical analysis of antimony concentrates.Part 7:Determination of mercury content.Atomic fluorescence spectrometry
  • YS/T 229.2-2013 Methods for chemical analysis of high pure lead.Part 2:Determination of arsenic content.Atomic fluorescence spectrometry
  • YS/T 229.3-2013 Methods for chemical analysis of high pure lead.Part 3:Determination of antimony content.Atomic fluorescence spectrometry
  • YS/T 990.8-2014 Methods for chemical analysis of copper matte.Part 8:Determination of arsenic content.Hydride generation-atomic fluorescence spectrometry、silver diethyldithiocarbamate spectrophotometry and potassium bromate titrimetry
  • YS/T 746.15-2010 Methods for chemical analysis of lead-free tin-based solders- Part 15: Determination of Germanium content- Salicylfluorone-sim polyethylene glycol phenyl ether spectrophotometry
  • YS/T 520.8-2007 Chemical analysis of gallium.Part 8:Determination of indium content.The ethyl violet spectrophotometric method
  • YS/T 539.7-2009 Methods for chemical analysis of nickel base alloy powder.Part 7:Determination of cobalt content.Nitroso-R salt spectrophotometry
  • YS/T 746.4-2010 Methods for chemical analysis of lead-free tin-based solders- Part 4: Determination of lead content- Flame atomic absorption spectrometric method
  • YS/T 746.6-2010 Methods for chemical analysis of lead-free tin-based solders- Part 6: Determination of antimony content- Flame atomic absorption spectrometric method
  • YS/T 746.7-2010 Methods for chemical analysis of lead-free tin-based solders- Part 7: Determination of iron content- Flame atomic absorption spectrometric method
  • YS/T 746.10-2010 Methods for chemical analysis of lead-free tin-based solders- Part 10: Determination of aluminum content- Electrothermal atomic absorption spectrometric method
  • YS/T 746.11-2010 Methods for chemical analysis of lead-free tin-based solders- Part 11: Determination of Cadmium content- Flame atomic absorption spectrometric method
  • YS/T 746.13-2010 Methods for chemical analysis of tin-based lead-free solders- Part 13: Determination of nickel content- Flame atomic absorption spectrometric method
  • YS/T 520.6-2007 Chemical analysis of gallium.Part 6: Determination of tin content.The salicylfluorone cetyltrimethylammonium bromide spectrophotometric method
  • YS/T 520.9-2007 Chemical analysis of gallium.Part 9:Determination of germanium content.The phenylfluorone-polyethylene glycol octyl phenyl ether extraction spectrophotometric method
  • YS/T 227.5-2010 Methods for chemical analysis of tellurium-Part 5: Determination of selenium content-2,3-Diamino naphthalene spectrophotometry
  • YS/T 281.1-2011 Methods for chemical analysis of cobalt.Part 1:Determination of iron content.Sulfosalicylic acid spectrophotometry
  • YS/T 276.2-2011 Methods for chemical analysis of indium.Part 2:Determination of tin content.Phenylfluorone-cetyltrimethyl ammonium bromide spectrophotometry
  • YS/T 74.5-2010 Methods for chemical analysis of cadmium- Part 5: Determination of copper content- Lead diethyldithio-carbamate spectrophotometry
  • YS/T 226.1-2009 Methods for chemical analysis of selenium.Part 1:Determination of bismuth content.Hydride generation-atomic fluorescence spectrometry
  • YS/T 226.2-2009 Methods for chemical analysis of selenium.Part 2:Determination of antimony content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.1-2010 Methods for chemical analysis of cadmium- Part 1: Determination of arsenic content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.2-2010 Methods for chemical analysis of cadmium- Part 2: Determination of antimony content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 227.1-2010 Methods for chemical analysis of tellurium-Part 1: Determination of bismuth content-Hydride generation-atomic fluorescence spectrometry
  • YS/T 227.10-2010 Methods for chemical analysis of tellurium-Part 10: Determination of arsenic content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 74.9-2010 Mehtods for chemical analysis of cadmium- Part 9:Determination of tin content- Hydride generation-atomic fluorescence spectrometry
  • YS/T 461.6-2013 Methods for chemical analysis of lead and zinc bulk concentrates.Part 6:The determination of mercury content.Atomic fluorescence spectrometry
  • YS/T 276.1-2011 Methods for chemical analysis of indium.Part 1:Determination of arsenic content.Hydride generation-atomic fluorescence spectrometry
  • YS/T 1605.5-2023 Methods for chemical analysis of roasted molybdenum concentrate— Part 5: Determination of antimony content— Atomic fluorescence spectrometry
  • YS/T 1605.4-2023 Methods for chemical analysis of roasted molybdenum concentrate— Part 4: Determination of tin content— Atomic fluorescence spectrometry
  • YS/T 1605.3-2023 Methods for chemical analysis of roasted molybdenum concentrate— Part 3: Determination of bismuth content— Flame atomic absorption spectrometry and atomic fluorescence spectrometry
  • YS/T 226.6-2009 Methods for chemical analysis of selenium.Part 6:Determination of sulfur content.Diphenylcarbazide spectrophotometry
  • YS/T 990.4-2014 Methods for chemical analysis of copper matte.Part 4:Determination of bismuth content.Atomic absorption spectrometry
  • YS/T 990.7-2014 Methods for chemical analysis of copper matte.Part 7:Determination of cadmium content.Atomic absorption spectrometry
  • YS/T 990.11-2014 Methods for chemical analysis of copper matte.Part 11:Determination of nickel content.Atomic absorption spectrmetry
  • YS/T 990.15-2014 Methods for chemical analysis of copper matte.Part 15:Determination of antimony content.Atomic absorption spectrometry

Professional Standard-Ships, Basic Parts of a Spectrum Analyzer

  • CB/T 3905.13-2005 Method for chemical analysis of tin-base bearing alloy - Part 13: Atomic absorption spectrographic method for the determination of zinc content
  • CB/T 3905.6-2005 Method for chemical analysis of tin-base bearing alloy - Part 6: Atomic absorption spectrographic method for the determination of copper content
  • CB/T 3905.8-2005 Method for chemical analysis of tin-base bearing alloy - Part 8: Atomic absorption spectrographic method for the determination of nickel content
  • CB/T 3905.9-2005 Method for chemical analysis of tin-base bearing alloy - Part 9: Atomic absorption spectrographic method for the determination of cadmium content
  • CB/T 3905.10-2005 Method for chemical analysis of tin-base bearing alloy - Part 10: Atomic absorption spectrographic method for the determination of plumbum content
  • CB/T 3905.12-2005 Method for chemical analysis of tin-base bearing alloy - Part 12: Atomic absorption spectrographic method for the determination of iron content

工业和信息化部, Basic Parts of a Spectrum Analyzer

  • YS/T 1341.6-2019 Methods of chemical analysis of crude zinc Part 6: Determination of arsenic content by atomic fluorescence spectrometry
  • YS/T 1341.7-2019 Methods of chemical analysis of crude zinc Part 7: Determination of antimony content Atomic fluorescence spectrometry
  • YS/T 1341.8-2019 Methods of chemical analysis of crude zinc Part 8: Determination of tin content Atomic fluorescence spectrometry
  • YS/T 445.13-2019 Methods of chemical analysis of silver concentrates Part 13: Determination of mercury content by atomic fluorescence spectrometry
  • YS/T 1171.8-2017 Methods for chemical analysis of recycled zinc raw materials Part 8: Determination of mercury content by atomic fluorescence spectrometry and cold atomic absorption spectrometry
  • YS/T 540.2-2018 Methods for chemical analysis of vanadium Part 2: Determination of chromium amount diphenylcarbazide spectrophotometric method

U.S. Air Force, Basic Parts of a Spectrum Analyzer

CZ-CSN, Basic Parts of a Spectrum Analyzer

Professional Standard - Energy, Basic Parts of a Spectrum Analyzer

  • 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, Basic Parts of a Spectrum Analyzer

  • 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, Basic Parts of a Spectrum Analyzer

  • OENORM EN ISO 23674:2021 Cosmetics - Analytical methods - Direct determination of traces of mercury in cosmetics by thermal decomposition - Atomic absorption spectrometry (mercury analyzer) (ISO/DIS 23674:2021)

Professional Standard - Machinery, Basic Parts of a Spectrum Analyzer

  • JB/T 8425-1996 Standard test method of X-ray fluorescence spectrometric analysis of content of chromium, nickel, molybdenum and vanadium in iron base dusty spray

AENOR, Basic Parts of a Spectrum Analyzer

  • UNE-EN ISO 15004-2:2007 Ophthalmic instruments - Fundamental requirements and test methods - Part 2: Light hazard protection (ISO 15004-2:2007)

Professional Standard - Medicine, Basic Parts of a Spectrum Analyzer

  • YY 0792.2-2010 Ophthalmic instruments.Endoilluminators.Part 2 : Fundamental requirements and test methods for optical radiation safety

PT-IPQ, Basic Parts of a Spectrum Analyzer

  • NP 104-3-1988 Chemistry Layouts for standards Part 3: Standards for molecular absorption spectrometry




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