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The role of the measuring microscope

The role of the measuring microscope, Total:319 items.

In the international standard classification, The role of the measuring microscope involves: Electrical wires and cables, Fluid power systems, Optical equipment, Water quality, Metrology and measurement in general, Air quality, Materials for aerospace construction, Linear and angular measurements, Mechanical testing, Textile fibres, Analytical chemistry, Physics. Chemistry, Optics and optical measurements, Testing of metals, Surface treatment and coating, Test conditions and procedures in general, Non-destructive testing, Coals, Nuclear energy engineering, Wood technology processes, Aerospace fluid systems and components, Inorganic chemicals, Lubricants, industrial oils and related products, Microbiology, Raw materials for rubber and plastics, Construction materials, Paints and varnishes, Corrosion of metals, Paint ingredients, Ceramics, Medical sciences and health care facilities in general, Non-ferrous metals, Iron and steel products, Glass, Electrical equipment for working in special conditions, Semiconducting materials, Plastics.


International Organization for Standardization (ISO), The role of the measuring microscope

  • ISO/TS 21383:2021 Microbeam analysis - Scanning electron microscopy - Qualification of the scanning electron microscope for quantitative measurements
  • ISO 19056-1:2015 Microscopes - Definition and measurement of illumination properties - Part 1: Image brightness and uniformity in bright field microscopy
  • ISO 19056-3:2022 Microscopes — Definition and measurement of illumination properties — Part 3: Incident light fluorescence microscopy with incoherent light sources
  • ISO 4912:1981 Textiles; Cotton fibres; Evaluation of maturity; Microscopic method
  • ISO 19056-2:2019 Microscopes — Definition and measurement of illumination properties — Part 2: Illumination properties related to the colour in bright field microscopy
  • ISO 21222:2020 Surface chemical analysis — Scanning probe microscopy — Procedure for the determination of elastic moduli for compliant materials using atomic force microscope and the two-point JKR method
  • ISO 9220:2022 Metallic coatings — Measurement of coating thickness — Scanning electron microscope method
  • ISO 11952:2019 Surface chemical analysis — Scanning-probe microscopy — Determination of geometric quantities using SPM: Calibration of measuring systems
  • ISO 19214:2017 Microbeam analysis - Analytical electron microscopy - Method of determination for apparent growth direction of wirelike crystals by transmission electron microscopy
  • ISO 2647:1973 Wool; Determination of percentage of medullated fibres by the projection microscope
  • ISO 23420:2021 Microbeam analysis — Analytical electron microscopy — Method for the determination of energy resolution for electron energy loss spectrum analysis
  • ISO 11952:2014 Surface chemical analysis - Scanning-probe microscopy - Determination of geometric quantities using SPM: Calibration of measuring systems
  • ISO 19749:2021 Nanotechnologies - Measurements of particle size and shape distributions by scanning electron microscopy
  • ISO/DIS 23124:2023 Surface Chemical Analysis — Measurement of lateral and axial resolutions of Raman microscope
  • ISO 7404-5:2009 Methods for the petrographic analysis of coals - Part 5: Method of determining microscopically the reflectance of vitrinite
  • ISO/WD TR 23683:2023 Surface chemical analysis — scanning probe microscopy — Guideline for experimental quantification of carrier concentration in semiconductor devices by using electric scanning probe microscopy
  • ISO 8672:1993 Air quality; determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy; membrane filter method
  • ISO 8672:2014 Air quality - Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy - Membrane filter method
  • ISO 18337:2015 Surface chemical analysis - Surface characterization - Measurement of the lateral resolution of a confocal fluorescence microscope
  • ISO 22262-2:2014 Air quality - Bulk materials - Part 2: Quantitative determination of asbestos by gravimetric and microscopical methods
  • ISO 4407:2002 Hydraulic fluid power - Fluid contamination - Determination of particulate contamination by the counting method using an optical microscope
  • ISO 24639:2022 Microbeam analysis — Analytical electron microscopy — Calibration procedure of energy scale for elemental analysis by electron energy loss spectroscopy
  • ISO 13095:2014 Surface Chemical Analysis - Atomic force microscopy - Procedure for in situ characterization of AFM probe shank profile used for nanostructure measurement
  • ISO 16592:2006 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steels using a calibration curve method
  • ISO 16592:2012 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steels using a calibration curve method
  • ISO 4967:2013 Steel.Determination of content of non-metallic inclusions.Micrographic method using standard diagrams
  • ISO 3146:2000 Plastics - Determination of melting behaviour (melting temperature or melting range) of semi-crystalline polymers by capillary tube and polarizing-microscope methods
  • ISO 13383-2:2012 Fine ceramics (advanced ceramics, advanced technical ceramics) - Microstructural characterization - Part 2: Determination of phase volume fraction by evaluation of micrographs

Professional Standard - Machinery, The role of the measuring microscope

American Society for Testing and Materials (ASTM), The role of the measuring microscope

  • ASTM F728-81(1997)e1 Standard Practice for Preparing An Optical Microscope for Dimensional Measurements
  • ASTM F72-95(2001) Standard Specification for Gold Wire for Semiconductor Lead Bonding
  • ASTM D1245-84(2003) Standard Practice for Examination of Water-Formed Deposits by Chemical Microscopy
  • ASTM E3060-16 Standard Guide for Subvisible Particle Measurement in Biopharmaceutical Manufacturing Using Dynamic (Flow) Imaging Microscopy
  • ASTM E2859-11(2017) Standard Guide for Size Measurement of Nanoparticles Using Atomic Force Microscopy
  • ASTM E285-08(2015) Standard Test Method for Oxyacetylene Ablation Testing of Thermal Insulation Materials
  • ASTM D7201-06(2011) Standard Practice for Sampling and Counting Airborne Fibers, Including Asbestos Fibers, in the Workplace, by Phase Contrast Microscopy (with an Option of Transmission Electron Microscopy)
  • ASTM E2859-11 Standard Guide for Size Measurement of Nanoparticles Using Atomic Force Microscopy
  • ASTM E2859-11(2023) Standard Guide for Size Measurement of Nanoparticles Using Atomic Force Microscopy
  • ASTM D1245-08 Standard Practice for Examination of Water-Formed Deposits by Chemical Microscopy
  • ASTM D1245-11 Standard Practice for Examination of Water-Formed Deposits by Chemical Microscopy
  • ASTM B748-90(2006) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM B748-90(1997) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM D5235-18 Standard Test Method for Microscopic Measurement of Dry Film Thickness of Coatings on Wood Products
  • ASTM E1813-96e1 Standard Practice for Measuring and Reporting Probe Tip Shape in Scanning Probe Microscopy
  • ASTM E1813-96(2002) Standard Practice for Measuring and Reporting Probe Tip Shape in Scanning Probe Microscopy
  • ASTM E1813-96(2007) Standard Practice for Measuring and Reporting Probe Tip Shape in Scanning Probe Microscopy
  • ASTM B748-90(2021) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM D5235-13 Standard Test Method for Microscopical Measurement of Dry Film Thickness of Coatings on Wood Products
  • ASTM D5235-14 Standard Test Method for Microscopic Measurement of Dry Film Thickness of Coatings on Wood Products
  • ASTM B748-90(2016) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM D2798-11a(2019) Standard Test Method for Microscopical Determination of the Vitrinite Reflectance of Coal
  • ASTM D2798-20 Standard Test Method for Microscopical Determination of the Vitrinite Reflectance of Coal
  • ASTM D5671-95(2011) Standard Practice for Polishing and Etching Coal Samples for Microscopical Analysis by Reflected Light
  • ASTM D5770-02 Standard Test Method for Semiquantitative Micro Determination of Acid Number of Lubricating Oils During Oxidation Testing
  • ASTM D5770-96 Standard Test Method for Semiquantitative Micro Determination of Acid Number of Lubricating Oils During Oxidation Testing
  • ASTM D5770-02(2007) Standard Test Method for Semiquantitative Micro Determination of Acid Number of Lubricating Oils During Oxidation Testing
  • ASTM F3294-18 Standard Guide for Performing Quantitative Fluorescence Intensity Measurements in Cell-based Assays with Widefield Epifluorescence Microscopy
  • ASTM D5756-02 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Concentration
  • ASTM D5756-95 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Concentration
  • ASTM D5235-97 Standard Test Method for Microscopical Measurement of Dry Film Thickness of Coatings on Wood Products
  • ASTM D3849-95a(2000) Standard Test Method for Carbon Black - Primary Aggregate Dimensions from Electron Microscope Image Analysis
  • ASTM D3849-07 Standard Test Method for Carbon Black-Morphological Characterization of Carbon Black Using Electron Microscopy
  • ASTM D3849-22 Standard Test Method for Carbon Black—Morphological Characterization of Carbon Black Using Electron Microscopy
  • ASTM C1356-96(2001) Standard Test Method for Quantitative Determination of Phases in Portland Cement Clinker by Microscopical Point-Count Procedure
  • ASTM B748-90(2001) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM D7634-10 Standard Test Method for Visualizing Particulate Sizes and Morphology of Particles Contained in Hydrogen Fuel by Microscopy
  • ASTM B748-90(2010) Standard Test Method for Measurement of Thickness of Metallic Coatings by Measurement of Cross Section with a Scanning Electron Microscope
  • ASTM B651-83(2001) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with the Double-Beam Interference Microscope
  • ASTM B651-83(1995) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with the Double-Beam Interference Microscope
  • ASTM B651-83(2006) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with Double-Beam Interference Microscope
  • ASTM B651-83(2015) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with Double-Beam Interference Microscope
  • ASTM C1356-07 Standard Test Method for Quantitative Determination of Phases in Portland Cement Clinker by Microscopical Point-Count Procedure
  • ASTM C1356-07(2012) Standard Test Method for Quantitative Determination of Phases in Portland Cement Clinker by Microscopical Point-Count Procedure
  • ASTM B588-88(2001) Standard Test Method for Measurement of Thickness of Transparent or Opaque Coatings by Double-Beam Interference Microscope Technique
  • ASTM D3849-14a Standard Test Method for Carbon Black—Morphological Characterization of Carbon Black Using Electron Microscopy
  • ASTM D605-82(1996)e1 Standard Specification for Magnesium Silicate Pigment (Talc)
  • ASTM D6059-96(2011) Standard Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Scanning Electron Microscopy
  • ASTM B487-20 Standard Test Method for Measurement of Metal and Oxide Coating Thickness by Microscopical Examination of Cross Section
  • ASTM D6057-96(2011) Standard Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Phase Contrast Microscopy
  • ASTM B651-83(2019) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with Double-Beam Interference Microscope
  • ASTM E1588-07e1 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/Energy Dispersive X-ray Spectrometry
  • ASTM E1588-07 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy Dispersive X-ray Spectrometry
  • ASTM D4616-95(2000) Standard Test Method for Microscopical Analysis by Reflected Light and Determination of Mesophase in a Pitch
  • ASTM D4616-95 Standard Test Method for Microscopical Analysis by Reflected Light and Determination of Mesophase in a Pitch
  • ASTM D4616-95(2018) Standard Test Method for Microscopical Analysis by Reflected Light and Determination of Mesophase in a Pitch
  • ASTM B487-85(1997) Standard Test Method for Measurement of Metal and Oxide Coating Thickness by Microscopical Examination of a Cross Section
  • ASTM D5755-95 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Concentrations
  • ASTM D5755-02 Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Structure Number Concentrations
  • ASTM D5756-02(2008) Standard Test Method for Microvacuum Sampling and Indirect Analysis of Dust by Transmission Electron Microscopy for Asbestos Mass Surface Loading
  • ASTM E3060-23 Standard Guide for Subvisible Particle Measurement in Biopharmaceutical Manufacturing Using Dynamic (Flow) Imaging Microscopy
  • ASTM D6056-96(2011) Standard Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Transmission Electron Microscopy
  • ASTM E1588-95(2001) Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy-Dispersive Spectroscopy
  • ASTM E1588-08 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy Dispersive X-ray Spectrometry
  • ASTM E1588-10 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy Dispersive X-ray Spectrometry
  • ASTM E1588-95 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy-Dispersive Spectroscopy
  • ASTM B651-83(2010) Standard Test Method for Measurement of Corrosion Sites in Nickel Plus Chromium or Copper Plus Nickel Plus Chromium Electroplated Surfaces with Double-Beam Interference Microscope
  • ASTM E2142-01 Standard Test Methods for Rating and Classifying Inclusions in Steel Using the Scanning Electron Microscope
  • ASTM E1967-98(2003) Standard Test Method for the Automated Determinaton of Refractive Index of Glass Samples Using the Oil Immersion Method and a Phase Contrast Microscope
  • ASTM E1967-19 Standard Test Method for the Automated Determination of Refractive Index of Glass Samples Using the Oil Immersion Method and a Phase Contrast Microscope
  • ASTM F1438-93(1999) Standard Test Method for Determination of Surface Roughness by Scanning Tunneling Microscopy for Gas Distribution System Components
  • ASTM F1438-93(2020) Standard Test Method for Determination of Surface Roughness by Scanning Tunneling Microscopy for Gas Distribution System Components
  • ASTM E1967-98 Standard Test Method for the Automated Determinaton of Refractive Index of Glass Samples Using the Oil Immersion Method and a Phase Contrast Microscope
  • ASTM D4454-85(2002) Standard Test Method for Simultaneous Enumeration of Total and Respiring Bacteria in Aquatic Systems by Microscopy
  • ASTM F1372-93(1999) Standard Test Method for Scanning Electron Microscope (SEM) Analysis of Metallic Surface Condition for Gas Distribution System Components
  • ASTM F1372-93(2020) Standard Test Method for Scanning Electron Microscope (SEM) Analysis of Metallic Surface Condition for Gas Distribution System Components
  • ASTM D7391-09 Standard Test Method for Categorization and Quantification of Airborne Fungal Structures in an Inertial Impaction Sample by Optical Microscopy
  • ASTM D7391-17 Standard Test Method for Categorization and Quantification of Airborne Fungal Structures in an Inertial Impaction Sample by Optical Microscopy
  • ASTM D7391-20 Standard Test Method for Categorization and Quantification of Airborne Fungal Structures in an Inertial Impaction Sample by Optical Microscopy
  • ASTM D7391-17e1 Standard Test Method for Categorization and Quantification of Airborne Fungal Structures in an Inertial Impaction Sample by Optical Microscopy
  • ASTM D4454-85(2009) Standard Test Method for Simultaneous Enumeration of Total and Respiring Bacteria in Aquatic Systems by Microscopy
  • ASTM F1438-93(2012) Standard Test Method for Determination of Surface Roughness by Scanning Tunneling Microscopy for Gas Distribution System Components
  • ASTM E280-98(2004)e1 Standard Reference Radiographs for Heavy-Walled (4 &189; to 12-in. [114 to 305-mm]) Steel Castings
  • ASTM E280-21 Standard Reference Radiographs for Heavy-Walled (412 to 12 in. (114 to 305 mm)) Steel Castings
  • ASTM E2809-22 Standard Guide for Using Scanning Electron Microscopy/Energy Dispersive X-Ray Spectroscopy (SEM/EDS) in Forensic Polymer Examinations

Korean Agency for Technology and Standards (KATS), The role of the measuring microscope

  • KS I ISO 4407:2012 Hydraulic fluid power-Fluid contamination-Determination of particulate contamination by the counting method using an optical microscope
  • KS P ISO 10936-2:2020 Optics and photonics — Operation microscopes — Part 2: Light hazard from operation microscopes used in ocular surgery
  • KS D 2716-2008(2018) Measurement of nanoparticle diameter-Transmission electron microscope
  • KS D 2714-2006 Scanning probe microscope-Method for lateral force microscope
  • KS D 2716-2008 Measurement of nanoparticle diameter-Transmission electron microscope
  • KS D 0204-2007 Steel-Determination of content of nonmetallic inclusions-Micrographic method using standard diagrams
  • KS D ISO 9220-2009(2022) Metallic coatings-Measurement of coating thickness-Scanning electron microscope method
  • KS D 8519-2009(2015) Metallic and oxide coating-Measurement of coating thickness-Microscopical method
  • KS D ISO 9220-2009(2017) Metallic coatings-Measurement of coating thickness-Scanning electron microscope method
  • KS D 0204-1982 Steel-Determination of content of nonmetallic inclusions-Micrographic method using standard diagrams
  • KS K ISO 2647:2009 Wool-Determination of percentage of medullated fibres by the projection microscope
  • KS I ISO 13794-2008(2018) Ambient air-Determination of asbestos fibres-Indirect-transfer transmission electron microscopy method
  • KS I ISO 8672:2021 Air quality — Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy —Membrane filter method
  • KS I ISO 8672-2006(2017) Air quality-Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy(Membrane filter method)
  • KS I ISO 8672:2006 Air quality-Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy(Membrane filter method)
  • KS C IEC 62629-12-1:2022 3D Display Devices — Part 12-1: Measuring methods for stereoscopic displays using glasses — Optical
  • KS E 4005-2013 Portable polarizing microscope for sampling and determining incombustible matter in coal and rock-dust mixtures
  • KS D ISO 2128:2011 Anodizing of aluminium and its alloys-Determination of thickness of anodic oxidation coatings-Non-destructive measurement by split-beam microscope
  • KS D 0204-2007(2022) Steel-Determination of content of nonmetallic inclusions-Micrographic method using standard diagrams
  • KS D 0204-2002 Steel-Determination of content of nonmetallic inclusions-Micrographic method using standard diagrams
  • KS D 0204-2007(2017) Steel-Determination of content of nonmetallic inclusions-Micrographic method using standard diagrams
  • KS D ISO 16592:2011 Microbeam analysis-Electron probe microanalysis-Guidelines for determining the carbon content of steels using a calibration curve method
  • KS D ISO 16592-2011(2016) Microbeam analysis-Electron probe microanalysis-Guidelines for determining the carbon content of steels using a calibration curve method
  • KS D 8310-2001(2016) Anodizing of aluminium and its alloys-Determination of mass per unit area(surface density) of anodic oxide coatings(gravimetric method) and determination of thickness of anodic oxide coatings(non-dest
  • KS D 8310-2001(2021) Anodizing of aluminium and its alloys-Determination of mass per unit area(surface density) of anodic oxide coatings(gravimetric method) and determination of thickness of anodic oxide coatings(non-dest
  • KS M ISO 3146:2012 Plastics-Determination of melting behaviour(melting temperature or melting range) of semi-crystalline polymers by capillary tube and polarizing-microscope methods

Japanese Industrial Standards Committee (JISC), The role of the measuring microscope

  • JIS B 7152:1991 Biological microscope objectives and eyepieces -- Methods of measurement of performance
  • JIS K 3850-1:2000 Measuring method for airborne fibrous particles -- Part 1: Optical microscopy method and scanning electron microscopy method
  • JIS M 8816:1992 Solid mineral fuels -- Methods of microscopical measurement for the macerals and reflectance
  • JIS R 1683:2007 Test method for surface roughness of ceramic thin films by atomic force microscopy
  • JIS R 1683:2014 Test method for surface roughness of ceramic thin films by atomic force microscopy
  • JIS H 8680-3:1998 Test methods for thickness of anodic oxide coatings on aluminium and aluminium alloys -- Part 3: Non-destructive measurement by split-beam microscope
  • JIS K 3850-3:2000 Measuring method for airborne fibrous particles -- Part 3: Indirect-transfer transmission electron microscopy method
  • JIS K 3850-2:2000 Measuring method for airborne fibrous particles -- Part 2: Direct-transfer transmission electron microscopy method
  • JIS H 8680-3:2013 Anodizing of aluminium and its alloys.Determination of thickness of anodic oxidation coatings.Part 3: Non-destructive measurement by split-beam microscope
  • JIS M 7301:1968 Portable polarizing microscope for sampling and determining incombustible matter in coal and rock-dust mixtures

British Standards Institution (BSI), The role of the measuring microscope

  • BS ISO 19056-3:2022 Microscopes. Definition and measurement of illumination properties - Incident light fluorescence microscopy with incoherent light sources
  • BS ISO 19056-1:2015 Microscopes. Definition and measurement of illumination properties. Image brightness and uniformity in bright field microscopy
  • BS ISO 19056-2:2019 Microscopes. Definition and measurement of illumination properties - Illumination properties related to the colour in bright field microscopy
  • 21/30395346 DC BS ISO 19056-3. Microscopes. Definition and measurement of illumination properties. Part 3. Incident light fluorescence microscopy with incoherent light sources
  • BS 2043:1968 Method for the determination of wool fibre fineness by the use of a projection microscope
  • 18/30339980 DC BS ISO 19056-2. Microscopes. Definition and measurement of illumination properties. Part 2. Illumination properties related to the colour in bright field microscopy
  • BS ISO 21222:2020 Surface chemical analysis. Scanning probe microscopy. Procedure for the determination of elastic moduli for compliant materials using atomic force microscope and the two-point JKR method
  • 19/30351707 DC BS ISO 21222. Surface chemical analysis. Scanning probe microscopy. Procedure for the determination of elastic moduli for compliant materials using atomic force microscope and the two-point JKR method
  • BS ISO 7404-5:2009 Methods for the petrographic analysis of coals - Method of determining microscopically the reflectance of vitrinite
  • BS ISO 11952:2019 Surface chemical analysis. Scanning-probe microscopy. Determination of geometric quantities using SPM: Calibration of measuring systems
  • BS ISO 19749:2021 Nanotechnologies. Measurements of particle size and shape distributions by scanning electron microscopy
  • 21/30394409 DC BS ENISO 9220. Metallic coatings. Measurement of coating thickness. Scanning electron microscope method
  • BS ISO 23420:2021 Microbeam analysis. Analytical electron microscopy. Method for the determination of energy resolution for electron energy loss spectrum analysis
  • BS ISO 22262-2:2014 Air quality. Bulk materials. Quantitative determination of asbestos by gravimetric and microscopical methods
  • 20/30395419 DC BS EN ISO 1463. Metallic and oxide coatings. Measurement of coating thickness. Microscopical method
  • BS EN ISO 9220:2022 Tracked Changes. Metallic coatings. Measurement of coating thickness. Scanning electron microscope method
  • BS ISO 8672:2014 Air quality. Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy. Membrane filter method
  • BS 3900-E12.1:2000 Methods of test for paints - Determination of Knoop hardness by measurement of the indentation length using a microscope
  • BS IEC 62629-12-2:2019 3D display devices - Measuring methods for stereoscopic displays using glasses. Motion blur
  • 20/30380369 DC BS ISO 23420. Microbeam analysis. Analytical electron microscopy. Method for the determination of energy resolution for electron energy loss spectrum analysis
  • BS ISO 18337:2015 Surface chemical analysis. Surface characterization. Measurement of the lateral resolution of a confocal fluorescence microscope
  • 23/30420097 DC BS ISO 23124 Surface Chemical Analysis. Measurement of lateral and axial resolutions of Raman microscope
  • BS ISO 13095:2014 Surface Chemical Analysis. Atomic force microscopy. Procedure for in situ characterization of AFM probe shank profile used for nanostructure measurement
  • PD IEC TS 62607-9-1:2021 Nanomanufacturing. Key control characteristics. Traceable spatially resolved nano-scale stray magnetic field measurements. Magnetic force microscopy
  • BS EN ISO 2128:2010 Anodizing of aluminium and its alloys. Determination of thickness of anodic oxidation coatings. Non-destructive measurement by split-beam microscope
  • BS DD ISO/TS 10798:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • 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)
  • BS ISO 16592:2012 Microbeam analysis. Electron probe microanalysis. Guidelines for determining the carbon content of steels using a calibration curve method
  • BS EN 12373-3:1999 Aluminium and Aluminium Alloys - Anodizing - Part 3: Determination of Thickness of Anodic Oxidation Coatings - Non-Destructive Measurement by Split-Beam Microscope Ratified European Text

CZ-CSN, The role of the measuring microscope

  • CSN 65 6337-1974 Determination of mechanical impurities content using a microscope

KR-KS, The role of the measuring microscope

  • KS P ISO 10936-2-2020 Optics and photonics — Operation microscopes — Part 2: Light hazard from operation microscopes used in ocular surgery
  • KS D 2716-2023 Measurement of nanoparticle diameter — Transmission electron microscope
  • KS C ISO 19749-2023 Nanotechnologies — Measurements of particle size and shape distributions by scanning electron microscopy
  • KS C ISO 21363-2023 Nanotechnologies — Measurements of particle size and shape distributions by transmission electron microscopy
  • KS I ISO 8672-2021 Air quality — Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy —Membrane filter method
  • KS C IEC 62629-12-1-2022 3D Display Devices — Part 12-1: Measuring methods for stereoscopic displays using glasses — Optical

(U.S.) Ford Automotive Standards, The role of the measuring microscope

RU-GOST R, The role of the measuring microscope

  • GOST 8.003-2010 State system for ensuring the uniformity of measurements. Tool-making microscopes. Verification procedure
  • GOST R 8.594-2009 State system for ensuring the uniformity of measurements. Scanning electron microscopes
  • GOST R ISO 27911-2015 State system for ensuring the uniformity of measurements. Surface chemical analysis. Scanning-probe microscopy. Definition and calibration of the lateral resolution of a near-field optical microscope
  • GOST R 8.697-2010 State system for ensuring the uniformity of measurements. Interpenar spacings in crystals. Method for measurement by means of a transmission electron microscope
  • GOST R 8.593-2009 State system for ensuring the uniformity of measurements. Atomic-force scanning probe microscopes. Method for verification
  • GOST 9450-1976 Measurements microhardness by diamond instruments indentation
  • GOST R 8.700-2010 State system for ensuring the uniformity of measurements. Method of surface roughness effective height measurements by means of scanning probe atomic force microscope
  • GOST R ISO 4967-2009 Steel. Determination of content of nonmetallic inclusions. Micrographic method using standard diagrams

RO-ASRO, The role of the measuring microscope

  • STAS 1456/3-1974 Steels for rolling bearings DETERMINATION OF MIGROPOROSITIES Microscopical method
  • STAS 10552-1976 DETERMINATION OF THE DELTA-FERRITE CONTENT IN THE DEPOSITED METAL BY WELDING OF AUSTENITICAL STEELS Microscopic method
  • STAS 1456/2-1974 Steels for rolling bearings DETERMINATION OF BANDED CARBIDES Microscopical method
  • STAS 5490-1980 Metallography METHODS FOR RENDERING EVIDENT AND DETERMINING BY MYCROSCOPE THE GRAIN SIZE IN STEELS
  • SR ISO 4407:1991 Hydraulic fluid power -Fluid contamination - Determinatidn of particulate contamination by the counting method using a microscope

PL-PKN, The role of the measuring microscope

  • PN C05551-1987 Water and waste water Determination of the phytoplankton ?uantity by using the inverted microscope
  • PN H87903-1972 Irwestigations o? copper alloys castings Preparation and sampling ot ?es? pieces for microscopis examinations
  • PN Z04097 Arkusz 01-1974 Air purity protection Tests for the size composition of dust Measurement of quantitative distribution of projective dust particie size ^2 (im with micros- cope without using of immersion li?uid

Association of German Mechanical Engineers, The role of the measuring microscope

  • VDI/VDE 2656 Blatt 1-2008 Determination of geometrical quantities by using of Scanning Probe Microscopes - Calibration of measurement systems
  • VDI/VDE 2655 Blatt 1.1-2008 Optical measurement and microtopographies - Calibration of interference microscopes and depth measurement standards for roughness measurement
  • VDI/VDE 2655 Blatt 1.2-2010 Optical measurement of microtopography - Calibration of confocal microscopes and depth setting standards for roughness measurement
  • VDI 3492-2004 Indoor air measurement - Ambient air measurement - Measurement of inorganic fibrous particles - Scanning electron microscopy method
  • VDI 3492-2013 Indoor air measurement - Ambient air measurement - Measurement of inorganic fibrous particles - Scanning electron microscopy method
  • VDI 3861 Blatt 2-2008 Stationary source emissions - Measurement of inorganic fibrous particles in exhaust gas - Scanning electron microscopy method

VN-TCVN, The role of the measuring microscope

  • TCVN 6035-1995 Textiles.Cotton fibres.Evaluation of maturity.Microscopic method
  • TCVN 6504-1999 Air quality.Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy.Membrane filter method

PT-IPQ, The role of the measuring microscope

FI-SFS, The role of the measuring microscope

Association Francaise de Normalisation, The role of the measuring microscope

  • NF G06-008*NF EN ISO 20705:2020 Textiles - Quantitative microscopical analysis - General principles of testing
  • NF EN ISO 20705:2020 Textiles - Analyse quantitative par microscopie - Principes généraux des essais
  • NF A91-110:2004 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method.
  • NF A91-110*NF EN ISO 1463:2021 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method
  • NF A91-108:1995 Metallic coatings. Measurement of coating thickness. Scanning electron microscope method.
  • NF A91-108*NF EN ISO 9220:2022 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method
  • NF EN ISO 9220:2022 Revêtements métalliques - Mesurage de l'épaisseur de revêtement - Méthode au microscope électronique à balayage
  • NF G07-075:2020 Wool - Determination of percentage of medullated fibres by the projection microscope
  • NF G07-075:1971 Determination of the percentage of wool fibre medullation using a projection microscope.
  • NF X43-050:1996 Air quality. Determination of the asbestos fiber concentration by transmission electron microscopy. Indirect method.
  • NF X43-050:2021 Air quality - Determination of the asbestos fiber concentration by transmission electron microscopy - Indirect method
  • NF X43-066-2*NF ISO 22262-2:2014 Air quality - Bulk materials - Part 2 : quantitative determination of asbestos by gravimetric and microscopical methods
  • NF A91-481*NF EN ISO 2128:2010 Anodizing of aluminium and its alloys - Determination of thickness of anodic oxidation coatings - Non-destructive measurement by split-beam microscope
  • NF X43-269:2017 Qualité de l'air - Air des lieux de travail - Prélèvement sur filtre à membrane pour la détermination de la concentration en nombre de fibres par les techniques de microscopie : MOCP, MEBA et META - Comptage par MOCP
  • NF T70-360:2007 Energetic materials for defence - Physico-chemical analyses and properties - Measurement of the penetration depth of plasticizers and/or deterrents - Method by microscopy
  • NF X21-007:2008 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steel using a calibration curve method.
  • NF B41-204-2*NF EN ISO 13383-2:2016 Fine ceramics (advanced ceramics, advanced technical ceramics) - Microstructural characterization - Part 2 : determination of phase volume fraction by evaluation of micrographs

IT-UNI, The role of the measuring microscope

  • UNI 6500-1969
  • UNI 7604-1976 Examination with electron microscope of metallic materials by the replica technique. Preparation of replicas for microfractography examination.
  • UNI 7329-1974 Examination with electron microscope of metallic materials by the replica technique. Preparation of replicas for microstructure examination.
  • UNI 5423-1964 Textiles: tests. Determination of the diameter of the woollen fibres with the projecting microscope.

CH-SNV, The role of the measuring microscope

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, The role of the measuring microscope

  • GB/T 42659-2023 Surface Chemical Analysis Scanning Probe Microscopy Determination of Geometric Quantities Using Scanning Probe Microscopy: Measurement System Calibration
  • GB/T 31227-2014 Test method for the surface roughness by atomic force microscope for sputtered thin films
  • GB/T 32282-2015 Measurement of Dislocation Density in Gallium Nitride Single Crystal by Cathodoluminescence Microscopy
  • GB/T 27760-2011 Test method for calibrating the z-magnification of an atomic force microscope at subnanometer displacement levels using Si(111) monatomic steps
  • GB/T 20082-2006 Hydraulic fluid power-Fluid contamination-Determination of particulate contamination by the counting method using an optical microscope
  • GB/T 8014.3-2005 Anodizing of aluminium and its alloys-The measuring method of thickness of anodic oxide coatings Part 3:Split-beam microscope method

German Institute for Standardization, The role of the measuring microscope

  • DIN SPEC 52407:2015-03 Nanotechnologies - Methods for preparation and assessment for particle measurements with atomic force microscopy (AFM) and transmission scanning electron microscopy (TSEM)
  • DIN 53943-3:1983 Testing of textiles; cotton fibre maturity; determination of the percent maturity; microscopic method using a polarisation microscope
  • DIN EN ISO 9220:2022-05 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO 9220:2022); German version EN ISO 9220:2022
  • DIN EN ISO 9220:2021 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO/DIS 9220:2021); German and English version prEN ISO 9220:2021
  • DIN 58943-32:1995 Medical microbiology - Diagnosis of tuberculosis - Part 32: Detection of mycobacteria by microscopic methods
  • DIN 58959-4:1997-06 Quality management in medical microbiology - Part 4: Requirements for investigations using light microscopes / Note: To be replaced by DIN 58959-6 Beiblatt 2 (2021-08, t).
  • DIN 22020-5:2005-02 Investigations of the raw material in hard-coal-mining - Microscopical examinations of hard coal, coke and briquettes - Part 5: Reflectance measurements on vitrinites / Note: DIN 22020-5 (1986-09) remains valid alongside this standard until 2005-07-31.
  • DIN 58943-32:2011 Medical microbiology - Diagnosis of tuberculosis - Part 32: Detection of mycobacteria by microscopic methods; Text in German and English
  • DIN 58943-32:2015 Medical microbiology - Diagnosis of tuberculosis - Part 32: Detection of mycobacteria by microscopic methods; Text in German and English
  • DIN EN ISO 1463:2021 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2021); German version EN ISO 1463:2021
  • DIN EN ISO 2128:2010-12 Anodizing of aluminium and its alloys - Determination of thickness of anodic oxidation coatings - Non-destructive measurement by split-beam microscope (ISO 2128:2010); German version EN ISO 2128:2010
  • DIN EN 12373-3:1999 Aluminium and aluminium alloys - Anodizing - Part 3: Determination of thickness of anodic oxidation coatings; non-destructive measurement by split-beam-microscope; German version EN 12373-3:1998
  • DIN 22020-5:2005 Investigations of the raw material in hard-coal-mining - Microscopical examinations of hard coal, coke and briquettes - Part 5: Reflectance measurements on vitrinites
  • DIN 50452-1:1995 Testing of materials for semiconductor technology - Test method for particle analysis in liquids - Part 1: Microscopic determination of particles
  • DIN ISO 16592:2015 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steels using a calibration curve method (ISO 16592:2012)

HU-MSZT, The role of the measuring microscope

SE-SIS, The role of the measuring microscope

  • SIS SS-ISO 1463:1983 Meta I lic and oxide coatings - Measure- ment of coating thickness - Microscopi- cal method
  • SIS SMS 2953-1971 Measurement of metal and oxide coating thicknesses by microscopic examination of cross-sections

Group Standards of the People's Republic of China, The role of the measuring microscope

Danish Standards Foundation, The role of the measuring microscope

  • DS/EN ISO 9220:1995 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method
  • DS/EN ISO 1463:2021 Metallic and oxide coatings – Measurement of coating thickness – Microscopical method (ISO 1463:2021)
  • DS/EN ISO 2128:2010 Anodizing of aluminium and its alloys - Determination of thickness of anodic oxidation coatings - Non-destructive measurement by split-beam microscope

ES-UNE, The role of the measuring microscope

  • UNE-EN ISO 1463:2021 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2021)
  • UNE-EN ISO 9220:2022 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO 9220:2022)

AENOR, The role of the measuring microscope

  • UNE 40023:1973 METHOD TO DETERMINE THE DIAMETER OF WOOL FIBRES BY MEANS OF THE PROJECTION MICROSCOPE.
  • UNE-EN ISO 9220:1996 METALLIC COATINGS. MEASUREMENT OF COATING THICKNESS. SCANNING ELECTRON MICROSCOPE METHOD. (ISO 9220:1988).
  • UNE-EN ISO 1463:2005 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2003)
  • UNE-EN ISO 2128:2011 Anodizing of aluminium and its alloys - Determination of thickness of anodic oxidation coatings - Non-destructive measurement by split-beam microscope (ISO 2128:2010)

ESDU - Engineering Sciences Data Unit, The role of the measuring microscope

  • SPB-M6-2-2010 Apr.08: Colloidal Interactions Between Asphaltene and Different Surfaces Measured by Atomic force microscopy (AFM)
  • SPB-M14-1-2010 Sept.10: Interactions and rheological properties of Asphaltenes studied by Atomic Force Microscopy

PH-BPS, The role of the measuring microscope

  • PNS ISO 21363:2021 Nanotechnologies - Measurements of particle size and shape distributions by transmission electron microscopy

American National Standards Institute (ANSI), The role of the measuring microscope

  • ANSI/ASTM D6057:2001 Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Phase Contrast Microscopy
  • ANSI/ASTM D6059:2001 Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Scanning Electron Microscopy
  • ANSI/ASTM D6056:2001 Test Method for Determining Concentration of Airborne Single-Crystal Ceramic Whiskers in the Workplace Environment by Transmission Electron Microscopy

Professional Standard - Nuclear Industry, The role of the measuring microscope

  • EJ/T 20176-2018 Atomic Force Microscope Measuring Method of Edge Sharpness of Diamond Tool

国家质量监督检验检疫总局, The role of the measuring microscope

  • SN/T 4693-2016 Determination of asbestos in daily latex consumer products by polarized light microscopy

Society of Automotive Engineers (SAE), The role of the measuring microscope

  • SAE AS598-2012 Aerospace Microscopic Sizing and Counting of Particulate Contamination for Fluid Power Systems

未注明发布机构, The role of the measuring microscope

  • SAE AS598A-2081 Aerospace Microscopic Sizing and Counting of Particulate Contamination for Fluid Power Systems
  • DIN EN ISO 21363:2022 Nanotechnologies – measurements of particle size and particle shape distributions using transmission electron microscopy

SAE - SAE International, The role of the measuring microscope

  • SAE AS598A-2018 Aerospace Microscopic Sizing and Counting of Particulate Contamination for Fluid Power Systems

Professional Standard - Aviation, The role of the measuring microscope

  • HB 5931.8-1989 Contamination Test of Aircraft Hydraulic System - Determination of Solid Pollution Degree of Working Fluid by Microscope Contrast Method
  • HB 5931.5-1986 Determination of solid particle pollution degree of working fluid by microscopic counting method for pollution test of aircraft hydraulic system

Military Standard of the People's Republic of China-General Armament Department, The role of the measuring microscope

  • GJB 380.8-1998 Contamination test of aircraft hydraulic system using microscope comparison method to determine the solid contamination degree of working fluid
  • GJB 380.5A-2015 Aviation working fluid contamination test Part 5: Determination of solid particle contamination by microscopic counting method
  • GJB 380.8A-2015 Aviation working fluid contamination test Part 8: Determination of solid particle contamination by microscopic contrast method

European Committee for Standardization (CEN), The role of the measuring microscope

  • EN ISO 19749:2023 Nanotechnologies - Measurements of particle size and shape distributions by scanning electron microscopy (ISO 19749:2021)
  • prEN ISO 9220:2021 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO/DIS 9220:2021)
  • EN 12373-3:1998 Aluminium and Aluminium Alloys - Anodizing - Part 3: Determination of Thickness of Anodic Oxidation Coatings - Non-Destructive Measurement by Split-Beam Microscope Ratified European Text
  • EN ISO 13383-2:2016 Fine ceramics (advanced ceramics, advanced technical ceramics) - Microstructural characterization - Part 2: Determination of phase volume fraction by evaluation of micrographs (ISO 13383-2:2012)

Lithuanian Standards Office , The role of the measuring microscope

  • LST EN ISO 9220:2001 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO 9220:1988)
  • LST EN ISO 1463:2004 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2003)
  • LST EN ISO 1463:2021 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2021)
  • LST ISO 8672:2001 Air quality. Determination of the number concentration of airborne inorganic fibres by phase contrast optical microscopy. Membrane filter method
  • LST EN ISO 2128:2011 Anodizing of aluminium and its alloys - Determination of thickness of anodic oxidation coatings - Non-destructive measurement by split-beam microscope (ISO 2128:2010)

AT-ON, The role of the measuring microscope

  • OENORM EN ISO 1463:2021 Metallic and oxide coatings - Measurement of coating thickness - Microscopical method (ISO 1463:2021)
  • OENORM EN ISO 9220:2021 Metallic coatings - Measurement of coating thickness - Scanning electron microscope method (ISO/DIS 9220:2021)

GM North America, The role of the measuring microscope

CU-NC, The role of the measuring microscope

  • NC 90-01-50-1987 Metrological Assurance. Instrumentation Microscopes Methods and Means of Verification

NO-SN, The role of the measuring microscope

  • NS 1181-1979 Metal and oxide coating - Measurement of thickness by microscopical examination of cross-sections

Military Standard of the People's Republic of China-Commission of Science,Technology and Industry for National Defence, The role of the measuring microscope

  • GJB 380.5A-2004 Contamination test method of operating liquid for aviation Part 5:Determination of solid particle contamination level by counting method using a microscope
  • GJB 380.8A-2004 Contamination test method of operating fluid for aviation Part 8:Determination of solid particle contamination level by compare method using a microscope

TIA - Telecommunications Industry Association, The role of the measuring microscope

  • TIA/EIA-455-45-B-1992 FOTP-45 Method for Measuring Optical Fiber Geometry Using a Laboratory Microscope (Withdrawn May@ 2003)

ES-AENOR, The role of the measuring microscope

工业和信息化部, The role of the measuring microscope

  • SJ/T 11759-2020 Measurement of Photovoltaic Cell Electrode Grid Line Aspect Ratio Laser Scanning Confocal Microscopy

IN-BIS, The role of the measuring microscope

Professional Standard - Aerospace, The role of the measuring microscope

  • QJ 2724.4-1995 Microscopic Particle Counting Method for Determination of Solid Particle Contamination of Working Fluids in Aerospace Hydraulic Pollution Control

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, The role of the measuring microscope

  • GB/T 32262-2015 Preparation of deoxyribonucleic acid sample for atomic force microscope measurement

YU-JUS, The role of the measuring microscope

  • JUS U.M1.056-1993 Concrete - Determination for contents and factor pore's distance of aerated concrete with line microscope analysis

BE-NBN, The role of the measuring microscope

  • NBN EN ISO 9220:1995 Metallic coatings - Measurement of coating thickness - Scanning électron microscope method (ISO 9220:1988)

Professional Standard - Commodity Inspection, The role of the measuring microscope

  • SN/T 3131-2012 Determination of asbestos in bicycle brake rubbers.Palarized light microscope and X-ray diffraction method

BELST, The role of the measuring microscope

  • STB 2210-2011 Nano-sized carbon and non-carbon materials and composites based on them. Method for determining parameters using scan electron microscopy measurements
  • STB 2209-2011 Nano-sized carbon and non-carbon materials and composites based on them. The technique for determining elemental composition using scan electron microscopy measurements

GOSTR, The role of the measuring microscope

  • PNST 377-2019 Automobile roads of general use. Petroleum-based bitumen binders. The method for determining the distribution of the polymer using fluorescence microscopy

International Electrotechnical Commission (IEC), The role of the measuring microscope

  • IEC TS 62607-9-1:2021 Nanomanufacturing - Key control characteristics - Part 9-1: Traceable spatially resolved nano-scale stray magnetic field measurements - Magnetic force microscopy




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