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Micro powder sample divider

Micro powder sample divider, Total:44 items.

In the international standard classification, Micro powder sample divider involves: Plastics, Optical equipment, Analytical chemistry, Semiconductor devices, Metalliferous minerals, Powder metallurgy, Electricity. Magnetism. Electrical and magnetic measurements, Magnetic materials.


American Society for Testing and Materials (ASTM), Micro powder sample divider

  • ASTM D5675-13(2018) Standard Classification for Low Molecular Weight PTFE and FEP Micronized Powders
  • ASTM D5675-13(2023) Standard Classification for Low Molecular Weight PTFE and FEP Micronized Powders
  • ASTM D5675-13 Standard Classification for Low Molecular Weight PTFE and FEP Micronized Powders
  • ASTM D6682-01 Standard Test Method for Measuring the Shear Stresses of Powders Using the Peschl Rotational Split Level Shear Tester
  • ASTM D6682-01(2006) Standard Test Method for Measuring Shear Stresses of Powders Using Peschl Rotational Split Level Shear Tester
  • ASTM D6682-08 Standard Test Method for Measuring Shear Stresses of Powders Using Peschl Rotational Split Level Shear Tester

Institute of Interconnecting and Packaging Electronic Circuits (IPC), Micro powder sample divider

International Organization for Standardization (ISO), Micro powder sample divider

  • ISO 20720:2018 Microbeam analysis - Methods of specimen preparation for analysis of general powders using WDS and EDS

国家市场监督管理总局、中国国家标准化管理委员会, Micro powder sample divider

  • GB/T 41074-2021 Microbeam analysis—Method of specimen preparation for analysis of general powders using WDS and EDS

British Standards Institution (BSI), Micro powder sample divider

  • BS ISO 20720:2018 Microbeam analysis. Methods of specimen preparation for analysis of general powders using WDS and EDS
  • 20/30404083 DC BS IEC 62047-38. Semiconductor devices. Micro-electromechanical devices. Part 38. Test method for adhesion strength of metal powder paste in MEMS interconnection

ES-AENOR, Micro powder sample divider

Professional Standard - Machinery, Micro powder sample divider

  • JB/T 53334-1999 Product quality classification of powder metallurgy automobile shock absorber parts (for internal use)

YU-JUS, Micro powder sample divider

  • JUS C.N2.005-1988 Powder metallurgy. Sintered metal materials, excluding hardmetals. PrepaPowder metallurgy. Sintered metal materials, excluding hardmetals. Preparation of samples for chemical analysis for determination of carbon content

International Electrotechnical Commission (IEC), Micro powder sample divider

  • IEC 62047-38:2021 Semiconductor devices - Micro-electromechanical devices - Part 38: Test method for adhesion strength of metal powder paste in MEMS interconnection
  • IEC 60404-6:2018+AMD1:2021 CSV Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specim
  • IEC 60404-6:2018 RLV Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specim
  • IEC 60404-6:2018 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens
  • IEC 60404-6:2003/COR1:2009 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range of 20 Hz to 200 kHz by the use of ring specimens; Corrigendum 1
  • IEC 60404-6:2003 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range of 20 Hz to 200 kHz by the use of ring specimens
  • IEC 60404-6:2021 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens
  • IEC 60404-6:2018/AMD1:2021 Amendment 1 - Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use

Association Francaise de Normalisation, Micro powder sample divider

  • XP X43-080-1*XP CEN/TS 16817-1:2015 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1 : technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler
  • XP CEN/TS 16817-1:2015 Air ambiant - Surveillance des effets d'organismes génétiquement modifiés (OGM) - Surveillance du pollen - Partie 1 : échantillonnage technique du pollen à l'aide d'un filtre de masse à pollen (FMP) et d'un échantillonneur Sigma-2
  • NF C28-906:2004 Magnetic materials - Part 6 : methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 200 kHz by the use of ring specimens.
  • NF C28-906/A1:2021 Magnetic materials - Part 6 : methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens
  • NF C28-906*NF EN IEC 60404-6:2018 Magnetic materials - Part 6 : methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens
  • NF EN IEC 60404-6:2018 Matériaux magnétiques - Partie 6 : méthodes de mesure des propriétés magnétiques des matériaux métalliques et des matériaux en poudre magnétiquement doux, aux fréquences comprises entre 20 Hz et 100 kHz, sur des éprouvettes en forme de tore
  • NF EN IEC 60404-6/A1:2021 Matériaux magnétiques - Partie 6 : méthodes de mesure des propriétés magnétiques des matériaux métalliques et des matériaux en poudre magnétiquement doux, aux fréquences comprises entre 20 Hz et 100 kHz, sur des éprouvettes en forme de tore

German Institute for Standardization, Micro powder sample divider

  • DIN CEN/TS 16817-1:2016-01*DIN SPEC 33971:2016-01 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler; German version CEN/TS 16817-1:2015
  • DIN EN 60404-6:2004 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range of 20 Hz to 200 kHz by the use of ring specimens (IEC 60404-6:2003); German version EN 60404-6:20

European Committee for Standardization (CEN), Micro powder sample divider

  • CEN/TS 16817-1:2015 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring - Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler

CEN - European Committee for Standardization, Micro powder sample divider

  • PD CEN/TS 16817-1:2015 Ambient air - Monitoring the effects of genetically modified organisms (GMO) - Pollen monitoring Part 1: Technical pollen sampling using pollen mass filter (PMF) and Sigma-2-sampler

Professional Standard - Geology, Micro powder sample divider

  • DZ/T 0279.10-2016 Methods of Analysis of Regional Geochemical Samples - Part 10: Determination of Chlorine and Bromine Quantification Powder Compression - X-ray Fluorescence Spectrometry
  • DZ/T 0279.1-2016 Analytical methods of regional geochemical samples Part 1: Determination of 24 components such as aluminum oxide and other components by powder compression—X-ray fluorescence spectrometry

Korean Agency for Technology and Standards (KATS), Micro powder sample divider

  • KS C IEC 60404-6:2002 Magnetic materials-Part 6:Methods ofmeasurement of the magnetic properties of isotropic nickel-iron soft magnetic alloys, types E1, E3 and E4

ES-UNE, Micro powder sample divider

  • UNE-EN IEC 60404-6:2018/A1:2021 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens (Endorsed by Asociación Española de Normalizac...
  • UNE-EN IEC 60404-6:2018 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens (Endorsed by Asociación Española de Normalizac...
  • UNE-EN IEC 60404-6:2018/AC:2018-12 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens (Endorsed by Asociación Española de Normalizac...

Danish Standards Foundation, Micro powder sample divider

  • DS/EN 60404-6:2003 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 200 kHz by the use of ring specimens
  • DS/EN IEC 60404-6:2021 Magnetic materials – Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens

European Committee for Electrotechnical Standardization(CENELEC), Micro powder sample divider

  • EN IEC 60404-6:2018 Magnetic materials - Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 100 kHz by the use of ring specimens
  • EN 60404-6:2003 Magnetic materials Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 200 kHz by the use of ring specimens

AENOR, Micro powder sample divider

  • UNE-EN 60404-6:2004 Magnetic materials -- Part 6: Methods of measurement of the magnetic properties of magnetically soft metallic and powder materials at frequencies in the range 20 Hz to 200 kHz by the use of ring specimens




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