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Imaging of Electron Probes

Imaging of Electron Probes, Total:198 items.

In the international standard classification, Imaging of Electron Probes involves: Document imaging applications, Electrical accessories, Medical equipment, Optics and optical measurements, Ergonomics, Microprocessor systems, Optical equipment, Analytical chemistry, Radiation measurements, Photography, Test conditions and procedures in general, Applications of information technology, Ceramics, Information sciences. Publishing, Testing of metals, Integrated circuits. Microelectronics, Electromagnetic compatibility (EMC), Road vehicle systems, Data storage devices, Thermodynamics and temperature measurements, Semiconducting materials, Non-destructive testing, Electrical and electronic testing, Printed circuits and boards, Graphic technology.


Association for Information and Image Management (AIIM), Imaging of Electron Probes

  • AIIM TR27-1996 Electronic Imaging Request for Proposal (RFP) Guidelines
  • AIIM TR17-1989 Facsimile and Its Role in Electronic Imaging
  • AIIM TR26-2000 Resolution as It Relates to Photographic and Electronic Imaging
  • AIIM TR35-1995 Human and Organizational Issues for Successful Electronic Image Management (EIM) Implementation

Professional Standard - Machinery, Imaging of Electron Probes

  • JB/T 12074-2014 Quantitative analysis of composition metal.Electron probe microanalysis

British Standards Institution (BSI), Imaging of Electron Probes

  • BS EN 62220-1-3:2008 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-3: Determination of the detective quantum efficiency — Detectors used in dynamic imaging
  • BS EN 62220-1-1:2015 Tracked Changes. Medical electrical equipment. Characteristics of digital x-ray imaging devices. Determination of the detective quantum efficiency. Detectors used in radiographic imaging
  • BS ISO 13083:2015 Surface chemical analysis. Scanning probe microscopy. Standards on the definition and calibration of spatial resolution of electrical scanning probe microscopes (ESPMs) such as SSRM and SCM for 2D-dopant imaging and other purposes
  • BS ISO 12234-3:2016 Electronic still picture imaging. Removable memory. XMP for digital photography
  • BS ISO 23729:2022 Surface chemical analysis. Atomic force microscopy. Guideline for restoration procedure for atomic force microscopy images dilated by finite probe size
  • BS EN 1071-4:2006 Advanced technical ceramics - Methods of test for ceramic coatings - Determination of chemical composition by electron probe microanalysis (EPMA)
  • 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 EN IEC 62220-2-1:2023 Medical electrical equipment. Characteristics of digital X-ray imaging devices - Determination of dual-energy subtraction efficiency. Detectors used for dual-energy radiographic imaging
  • 21/30412880 DC BS ISO 23729. Surface chemical analysis. Atomic force microscopy. Guideline for restoration procedure for atomic force microscopy images dilated by finite probe size
  • BS ISO 19463:2018 Microbeam analysis. Electron probe microanalyser (EPMA). Guidelines for performing quality assurance procedures
  • BS IEC 62899-302-2:2018 Printed electronics - Equipment. Inkjet. Imaging-based measurement of droplet volume
  • 21/30414431 DC BS IEC 62220-2. Medical electrical equipment. Characteristics of digital X-ray imaging devices. Part 2. Determination of dual-energy subtraction efficiency. Detectors used for dual-energy radiographic imaging
  • BS IEC 62899-302-3:2021 Printed electronics. Equipment. Inkjet. Imaging-based measurement of drop direction
  • BS IEC 62899-302-1:2017 Printed electronics. Equipment. Inkjet. Imaging based measurement of jetting speed
  • BS ISO 16592:2012 Microbeam analysis. Electron probe microanalysis. Guidelines for determining the carbon content of steels using a calibration curve method
  • BS ISO 12653-2:2000 Electronic imaging - Test target for the black-and-white scanning of office documents - Method of use
  • BS ISO 12653-2:2001 Electronic imaging. Test target for the black-and-white scanning of office documents. Method of use
  • BS ISO 23692:2021 Microbeam analysis. Electron probe microanalysis. Quantitative analysis of Mn dendritic segregation in continuously cast steel product
  • BS ISO 11938:2013 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • BS EN 60512-16-1:2008 Connectors for electronic equipment - Tests and measurements - Part 16-1: Mechanical tests on contacts and terminations — Test 16a: Probe damage
  • BS ISO 11938:2012 Microbeam analysis. Electron probe microanalysis. Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • 20/30393735 DC BS ISO 23692. Microbeam analysis. Electron probe microanalysis. Quantitative analysis of Mn dendritic segregation in continuously cast steel product
  • 22/30458390 DC BS EN 61674 Ed.3.0. Medical electrical equipment. Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging
  • BS EN 62220-1:2004 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Determination of the detective quantum efficiency

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, Imaging of Electron Probes

  • GB/T 15075-1994 Method for testing EPMA instrument
  • GB/T 15244-2002 Quantitative analysis of glass by electron probe microanalysis
  • GB/Z 20495-2006 Electronic imaging. Human and organizational issues for successful Electronic Image Management(EIM)implementation
  • GB/T 17363-1998 Method of quantitative electron probe microanalysis on gold products
  • GB/T 15617-2002 Quantitative analysis of silicate minerals by electron probe microanalysis
  • GB/T 15245-2002 Quantitative analysis of rare earth element(REE) oxides by electron probe microanalysis(EPMA)
  • GB/T 15246-2002 Quantitative analysis of sulfide minerals by electron probe microanalysis
  • GB/T 15616-1995 Qantitative method for electron probe microanalysis of metals and alloys
  • GB/T 15616-2008 Quantitative method for electron probe microanalysis of metals and alloys
  • GB/T 17366-1998 Methods of mineral and rock specimen preparation for EPMA
  • GB/T 17360-1998 Method of quantitative electron probe microanalysis on low contents of Si and Mn in steels
  • GB/T 17506-1998 The method of electron probe micro analysis as corrosive layer on ferrous metals of ship
  • GB/T 17360-2008 Quantitative analysis method of low content Si and Mn in steel with electron probe microanalysis
  • GB/T 17506-2008 The analysis method of corrosive layer on ferrous metals of ship with EPMA
  • GB/T 17365-1998 Method of preparation for samples of metal and alloy in electron probe microanalysis
  • GB/T 15246-2022 Microbeam analysis—Quantitative analysis of sulfide minerals by electron probe microanalysis
  • GB/T 15247-2008 Microbeam analysis.Electron probe microanalysis.Guidelines for determining the carbon content of steels using calibration curve method
  • GB/T 14141-2009 Test method for sheet resistance of silicon epitaxial,diffused and ion-implanted layers using a collinear four-probe array
  • GB/Z 20649-2006 Electronic imaging-Recommendations for the management of electronic recording systems for the recording of documents that may be required as evidence,on WORM optical disk
  • GB/T 15247-1994 Electron probe quantitative analysis method of carbon in carbon steel and low alloy steel--Sensitivity curve method (detection limit method)
  • GB/Z 20648-2006 Electronic imaging-Recommendations for the expungement of information recorded on write-once optical media

Association Francaise de Normalisation, Imaging of Electron Probes

  • NF C74-220-1-3*NF EN 62220-1-3:2008 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3 : determination of the detective quantum efficiency - Detectors used in dynamic imaging.
  • NF Z42-010-2:1993 Electronic imaging - Scanning of office documents - Part2:Acquisition of electronic imaging management systems - Guidelines for a request for proposals
  • NF EN 62220-1-3:2008 Appareils électromédicaux - Caractéristiques des dispositifs d'imagerie numérique à rayonnement X - Partie 1-3 : détermination de l'efficacité quantique de détection - Détecteurs utilisés en imagerie dynamique
  • NF EN 62220-1-1:2015 Appareils électromédicaux - Caractéristiques des dispositifs d'imagerie à rayonnements X - Partie 1-1 : détermination de l'efficacité quantique de détection - Détecteurs utilisés en imagerie radiographique
  • NF EN 61674:2013 Appareils électromédicaux - Dosimètres à chambres d'ionisation et/ou à détecteurs à semi-conducteurs utilisés en imagerie de diagnostic à rayonnement X
  • NF ISO 11938:2012 Analyse par microfaisceaux - Analyse par microsonde électronique (microsonde de Castaing) - Méthodes d'analyse par cartographie élémentaire en utilisant la spectrométrie à dispersion de longueur d'onde
  • NF C74-204/A1:2006 Medical electrical equipment - Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging
  • NF EN 1071-4:2006 Céramiques techniques avancées - Méthodes d'essai pour revêtements céramiques - Partie 4 : détermination de la composition chimique par microanalyse avec sonde électronique (MASE)
  • NF EN IEC 62563-2:2021 Appareils électromédicaux - Systèmes d'imagerie médicale - Partie 2 : essais d'acceptation et de constance des systèmes d'imagerie médicale
  • NF EN 62220-1-2:2007 Appareils électromédicaux - Caractéristiques des dispositifs d'imagerie numérique à rayonnement X - Partie 1-2 : détermination de l'efficacité quantique de détection - Détecteurs utilisés en mammographie
  • NF Z42-011-2:2001 Electronic imaging - Part 2 : verification of the informations stored on CD media.
  • NF EN IEC 62220-2-1:2023 Appareils électromédicaux - Caractéristiques des dispositifs d'imagerie à rayonnement X - Partie 2-1 : détermination de l'efficacité de soustraction à double énergie - Détecteurs utilisés en imagerie radiographique à double énergie
  • NF EN 60512-16-1:2008 Connecteurs pour équipements électroniques - Essais et mesures - Partie 16-1 : essais mécaniques des contacts et des sorties - Essai 16a : endommagement par sonde d'essai
  • NF C74-204:2002 Medical electrical equipment - Dosimeters with ionization chambers and/or semi-conductor detectors as used in x-ray diagnosis imaging
  • NF Z42-011-1:1993 Electronic imaging - Permanence of information on digital optical disks - Part 1 :WORM type disks
  • NF X21-007:2008 Microbeam analysis - Electron probe microanalysis - Guidelines for determining the carbon content of steel using a calibration curve method.
  • NF C74-220-1-1*NF EN 62220-1-1:2015 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-1 : determination of the detective quantum efficiency - Detectors used in radiographic imaging

International Electrotechnical Commission (IEC), Imaging of Electron Probes

  • IEC 62220-1-3:2008 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging
  • IEC 62220-1-1:2015 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging
  • IEC 62220-1-2:2007 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-2: Determination of the detective quantum efficiency - Detectors used in mammography
  • IEC 61967-6:2002/AMD1:2008 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method
  • IEC 61967-6:2008 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method
  • IEC 61967-6:2002+AMD1:2008 CSV Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method
  • IEC 62220-2-1:2023 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 2-1: Determination of dual-energy subtraction efficiency - Detectors used for dual-energy radiographic imaging
  • IEC 61674:2012 Medical electrical equipment - Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging
  • IEC 61674:1997 Medical electrical equipment - Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging
  • IEC 62899-302-2:2018 Printed electronics - Part 302-2: Equipment - Inkjet - Imaging-based measurement of droplet volume
  • IEC 62899-302-1:2017 Printed electronics - Part 302-1: Equipment - Inkjet - Imaging based measurement of jetting speed
  • IEC 62899-302-3:2021 Printed electronics - Part 302-3: Equipment - Inkjet - Imaging-based measurement of drop direction
  • IEC 61674/AMD1:2002 Medical electrical equipment - Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging; Amendment 1

Professional Standard - Medicine, Imaging of Electron Probes

  • YY/T 0590.3-2011 Medical electrical equipment.Characteristics of digital X-ray imaging devices.Part 1-3:Determination of the detective quantum efficiency.Detectors used in dynamic imaging
  • YY/T 0590.1-2005 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1: Determination of the detective quantum efficiency
  • YY/T 0590.2-2010 Medical electrical equipment.Characteristics of digital X-ray imaging devices.Part 1-2 : Determination of the detective quantum efficiency. Detectors used in mammography
  • YY/T 0457.5-2003 Medical electrical equipment-Characteristics of electro-optical X-ray image intensifiers-Part 5:Determination of the detective quantum efficiency

International Organization for Standardization (ISO), Imaging of Electron Probes

  • ISO/TR 14105:2001 Electronic imaging - Human and organizational issues for successful Electronic Image Management (EIM) implementation
  • ISO/TS 12029:2007 Electronic imaging - Forms design optimization for electronic image management
  • ISO 13083:2015 Surface chemical analysis - Scanning probe microscopy - Standards on the definition and calibration of spatial resolution of electrical scanning probe microscopes (ESPMs) such as SSRM and SCM for 2D-dopant imaging and other purposes
  • ISO 15740:2013 Photography.Electronic still picture imaging.Picture transfer protocol (PTP) for digital still photography devices
  • ISO/TR 12033:2009 Document management - Electronic imaging - Guidance for the selection of document image compression methods
  • ISO 23729:2022 Surface chemical analysis — Atomic force microscopy — Guideline for restoration procedure for atomic force microscopy images dilated by finite probe size
  • ISO 15740:2005 Photography - Electronic still picture imaging - Picture transfer protocol (PTP) for digital still photography devices
  • 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 19463:2018 Microbeam analysis - Electron probe microanalyser (EPMA) - Guidelines for performing quality assurance procedures
  • ISO/TR 12037:1998 Electronic imaging - Recommendations for the expungement of information recorded on write-once optical media
  • ISO/TR 12654:1997 Electronic imaging - Recommendations for the management of electronic recording systems for the recording of documents that may be required as evidence, on WORM optical disk
  • 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 14535:2001 Photography - Room-light loading packages for electronic scanners and image-setting film and paper rolls - Dimensions and related requirements
  • ISO 11938:2012 Microbeam analysis - Electron probe microanalysis - Methods for elemental-mapping analysis using wavelength-dispersive spectroscopy
  • ISO 23692:2021 Microbeam analysis - Electron probe microanalysis - Quantitative analysis of Mn dendritic segregation in continuously cast steel product
  • ISO 17470:2004 Microbeam analysis - Electron probe microanalysis - Guidelines for qualitative point analysis by wavelength dispersive X-ray spectrometry

Danish Standards Foundation, Imaging of Electron Probes

  • DS/EN 62220-1-3:2008 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging
  • DS/EN 62220-1:2004 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1: Determination of the detective quantum efficiency
  • DS/EN 61967-6:2003 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz - 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method
  • DS/EN 1071-4:2006 Advanced technical ceramics - Methods of test for ceramic coatings - Part 4: Determination of chemical composition by electron probe microanalysis (EPMA)
  • DS/EN 61967-6/A1:2008 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method
  • DS/EN 61262-5:2013 Medical electrical equipment - Characteristics of electro-optical X-ray image intensifiers - Part 5: Determination of the detective quantum efficiency

European Committee for Electrotechnical Standardization(CENELEC), Imaging of Electron Probes

  • EN 62220-1-3:2008 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging
  • EN 62220-1-1:2015 Medical electrical equipment - Characteristics of digital x-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging
  • EN 62220-1-2:2007 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-2: Determination of the detective quantum efficiency - Detectors used in mammography

AENOR, Imaging of Electron Probes

  • UNE-EN 62220-1-3:2009 Medical electrical equipment - Characteristics of digital X-ray imaging devices -- Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging
  • UNE-EN 62220-1:2004 Medical electrical equipment - Characteristics of digital X-ray imaging devices -- Part 1: Determination of the detective quantum efficiency
  • UNE-ISO/TR 15801:2008 IN Electronic imaging -- Information stored electronically -- Recommendations for trustworthiness and reliability

Korean Agency for Technology and Standards (KATS), Imaging of Electron Probes

  • KS C IEC 62220-1-1:2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-1: Determination of the detective quantum efficiency — Detectors used in radiographic imaging
  • KS C IEC 62220-1-3:2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-3: Determination of the detective quantum efficiency — Detectors used in dynamic imaging
  • KS C IEC 62220-1-2005(2016) Medical electrical equipment-Characteristics of digital X-Ray imaging device-Part 1:Determination of the detective quantum efficiency
  • KS C IEC 62220-1-2:2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-2: Determination of the detective quantum efficiency — Detectors used in mammography
  • KS C IEC 61674:2018 Medical electrical equipment — Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging
  • KS C IEC 61674:2007 Medical electrical equipment-Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging
  • 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 ISO 16592-2011(2021) Microbeam analysis-Electron probe microanalysis-Guidelines for determining the carbon content of steels using a calibration curve method
  • KS C IEC 62899-302-2:2022 Printed electronics — Part 302-2: Equipment — Inkjet — Imaging-based measurement of droplet volume
  • KS C IEC 62899-302-1:2021 Printed electronics — Part 302-1: Equipment — Inkjet —Imaging based measurement of jetting speed

KR-KS, Imaging of Electron Probes

  • KS C IEC 62220-1-1-2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-1: Determination of the detective quantum efficiency — Detectors used in radiographic imaging
  • KS C IEC 62220-1-3-2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-3: Determination of the detective quantum efficiency — Detectors used in dynamic imaging
  • KS C IEC 62220-1-2-2020 Medical electrical equipment — Characteristics of digital X-ray imaging devices — Part 1-2: Determination of the detective quantum efficiency — Detectors used in mammography
  • KS C IEC 61674-2018 Medical electrical equipment — Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging
  • KS C IEC 62899-302-2-2022 Printed electronics — Part 302-2: Equipment — Inkjet — Imaging-based measurement of droplet volume
  • KS C IEC 62899-302-1-2021 Printed electronics — Part 302-1: Equipment — Inkjet —Imaging based measurement of jetting speed

German Institute for Standardization, Imaging of Electron Probes

  • DIN EN 62220-1-3:2011-04 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging (IEC 62220-1-3:2008); German version EN 62220-1-3:2008
  • DIN EN 62220-1-1:2021-11 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging (IEC 62220-1-1:2015); German version EN 62220-1-1:2015
  • DIN 6800-1:2016 Procedures of dosimetry with probe-type detectors for photon and electron radiation - Part 1: General
  • DIN 6800-1:2016-08 Procedures of dosimetry with probe-type detectors for photon and electron radiation - Part 1: General
  • DIN EN 62220-1-2:2009 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-2: Determination of the detective quantum efficiency - Detectors used in mammography (IEC 62220-1-2:2007); German version EN 62220-1-2:2007
  • DIN 6800-4:2000 Procedures of dosimetry with probe-type detectors for photon and electron radiation - Part 4: Film dosimetry
  • DIN EN 62220-1-2:2009-02 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-2: Determination of the detective quantum efficiency - Detectors used in mammography (IEC 62220-1-2:2007); German version EN 62220-1-2:2007
  • DIN EN 62220-1-1:2021 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging (IEC 62220-1-1:2015); German version EN 62220-1-1:2015
  • DIN 6800-5:2005 Procedures of dosimetry with probe-type detectors for photon and electron radiation - Part 5: Thermoluminescence dosimetry
  • DIN EN 1071-4:2006-05 Advanced technical ceramics - Methods of test for ceramic coatings - Part 4: Determination of chemical composition by electron probe microanalysis (EPMA); German version EN 1071-4:2006
  • DIN EN IEC 62220-2:2022-11 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 2: Determination of dual-energy subtraction efficiency - Detectors used for dual-energy radiographic imaging (IEC/CDV 62220-2:2022); German and English version prEN ...
  • DIN EN 61967-6:2008 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 6: Measurement of conducted emissions - Magnetic probe method (IEC 61967-6:2002 + A1:2008); German version EN 61967-6:2002 + A1:2008
  • DIN EN 61674:2005 Medical electrical equipment - Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging (IEC 61674:1997 + A1:2002); German version EN 61674:1997 + A1:2002
  • DIN EN 61674:2015-11 Medical electrical equipment - Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging (IEC 61674:2012); German version EN 61674:2013
  • DIN EN 60512-16-1:2009-03 Connectors for electronic equipment - Tests and measurements - Part 16-1: Mechanical tests on contacts and terminations - Test 16a: Probe damage (IEC 60512-16-1:2008); German version EN 60512-16-1:2008 / Note: DIN IEC 60512-8 (1994-05) remains valid al...
  • 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)
  • DIN EN IEC 61674:2023-03 Medical electrical equipment - Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging (IEC/CDV 61674:2023); German and English version prEN IEC 61674:2023 / Note: Date of issue 2023-02-17*Intended as repl...

ZA-SANS, Imaging of Electron Probes

  • ARP 076-2006 Electronic imaging - Human and organizational issues for successful Electronic Image Management (EIM) implementation
  • SANS 12029:2007 Electronic imaging - Forms design optimization for electronic image management
  • ARP 075-2006 Electronic imaging - Recommendations for the management of electronic recording systems for the recording of documents that may be required as evidence, on WORM optical disk

ES-UNE, Imaging of Electron Probes

  • UNE-EN 62220-1-1:2015 Medical electrical equipment - Characteristics of digital x-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging (Endorsed by AENOR in July of 2015.)
  • UNE-EN 1071-4:2006 Advanced technical ceramics - Methods of test for ceramic coatings - Part 4: Determination of chemical composition by electron probe microanalysis (EPMA) (Endorsed by AENOR in April of 2006.)
  • UNE-EN IEC 62220-2-1:2023 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 2-1: Determination of dual-energy subtraction efficiency - Detectors used for dual-energy radiographic imaging (Endorsed by Asociación Española de Normalización i...
  • UNE-EN 61674:2013 Medical electrical equipment - Dosimeters with ionization chambers and/or semiconductor detectors as used in X-ray diagnostic imaging (Endorsed by AENOR in April of 2013.)
  • UNE-EN 60512-16-1:2008 Connectors for electronic equipment - Tests and measurements -- Part 16-1: Mechanical tests on contacts and terminations - Test 16a: Probe damage (Endorsed by AENOR in November of 2008.)

Lithuanian Standards Office , Imaging of Electron Probes

  • LST EN 62220-1-1-2015 Medical electrical equipment - Characteristics of digital x-ray imaging devices - Part 1-1: Determination of the detective quantum efficiency - Detectors used in radiographic imaging (IEC 62220-1-1:2015)
  • LST EN 62220-1-3-2008 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1-3: Determination of the detective quantum efficiency - Detectors used in dynamic imaging (IEC 62220-1-3:2008)
  • LST EN 1071-4-2006 Advanced technical ceramics - Methods of test for ceramic coatings - Part 4: Determination of chemical composition by electron probe microanalysis (EPMA)
  • LST EN 61674-2001 Medical electrical equipment. Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnosis imaging (IEC 61674:1997)
  • LST EN 61967-6-2003 Integrated circuits. Measurement of electromagnetic emissions 150 kHz to 1 GHz. Part 6: Measurement of conducted emissions. Magnetic probe method (IEC 61967-6:2002)
  • LST EN 61674-2001/A1-2003 Medical electrical equipment. Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnosis imaging (IEC 61674:1997/A1:2002)

Standard Association of Australia (SAA), Imaging of Electron Probes

  • HB 177-2003 ISO/TR 14105 Electronic imaging - Human and organizational for successful Electronic Image Management (EIM) implementation
  • AS ISO 15801:2006 Electronic imaging - Information stored electronically - Recommendations for trustworthiness and reliability
  • HB 179-2003 ISO/TR 12037 Electronic imaging - Recommendations for the expungement of information recorded on write-once optical media

Japanese Industrial Standards Committee (JISC), Imaging of Electron Probes

  • JIS Z 6014:2008 Test chart for digitizing image -- Description and use in electronic imagery
  • JIS Z 6017:2006 Document management -- Long-term preservation for electronic imaging documents
  • JIS Z 6017:2013 Document management -- Long-term preservation for electronic imaging documents
  • JIS Z 6016:2003 Electronic imaging process of paper documents and microfilmed documents
  • JIS Z 6014:1995 Micrographics -- Test charts for digitizing image -- Description and use in electronic imagery
  • JIS Z 6016:2008 Electronic imaging process of paper documents and microfilmed documents
  • JIS Z 6016:2015 Electronic imaging process of paper documents and microfilmed documents
  • JIS K 0189:2013 Microbeam analysis.Electron probe microanalysis.Determination of experimental parameters for wavelength dispersive X-ray spectroscopy

RU-GOST R, Imaging of Electron Probes

  • GOST IEC 62220-1-2011 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Part 1. Determination of the detective quantum efficiency
  • GOST R IEC 62220-1-2006 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Part 1. Determination of the detective quantum efficiency
  • GOST R IEC 62220-1-3-2013 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Part 1-3. Determination of the detective quantum efficiency
  • GOST R IEC 61674-2006 Medical electrical equipment. Dosimeters with ionization chambers and/or semi-conductor detectors as used in X-ray diagnostic imaging
  • GOST IEC 61262-5-2011 Medical electrical equipment. Characteristics of electro-optical X-ray image intensifiers. Part 5. Determination of the detective quantum efficiency
  • GOST R IEC 61262-5-1999 Medical electrical equipment. Characteristics of electro-optical X-ray image intensifiers. Part 5. Determination of the detective quantum efficiency
  • GOST R IEC 62220-1-2-2010 Medical electrical equipment. Characteristics of digital X-ray imaging devices. Part 1-2. Determination of the detective quantum efficiency. Detectors used in mammography

国家食品药品监督管理局, Imaging of Electron Probes

  • YY/T 0590.1-2018 Medical electrical equipment - Characteristics of digital X-ray imaging devices - Part 1: Determination of the detective quantum efficiency

国家市场监督管理总局、中国国家标准化管理委员会, Imaging of Electron Probes

  • GB/T 17360-2020 Microbeam analysis—Method of quantitative determination for low contents of silicon and manganese in steels using electron probe microanalyzer

Society of Automotive Engineers (SAE), Imaging of Electron Probes

  • SAE J1752-2-2003 Measurement of Radiated Emissions from Integrated CircuitsSurface Scan Method (Loop Probe Method) 10 MHz to 3 GHz
  • SAE J1752/2-1995 Measurement of Radiated Emissions From Integrated Circuits-Surface Scan Method (Loop Probe Method) 10 Mhz to 3 Ghz
  • SAE J1752/2-2011 Measurement of Radiated Emissions from Integrated Circuits—Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz
  • SAE J1752/2-2016 Measurement of Radiated Emissions from Integrated Circuits—Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz
  • SAE J1752/2-2003 Measurement of Radiated Emissions from Integrated Circuits -- Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz

SAE - SAE International, Imaging of Electron Probes

  • SAE J1752-2-2016 Measurement of Radiated Emissions from Integrated Circuits-Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz
  • SAE J1752-2-1995 Electromagnetic Compatibility Measurement Procedures for Integrated Circuits - Integrated Circuit Radiated Emissions Diagnostic Procedure 1 MHz to 1000 MHz@ Magnetic Field - Loop Probe@ Recommended Practice (March 1995)

American Society for Testing and Materials (ASTM), Imaging of Electron Probes

  • ASTM E2730-21 Standard Guide for Calibration and Use of Thermocouple Reference Junction Probes in Evaluation of Electronic Reference Junction Compensation Circuits
  • ASTM E2730-22 Standard Guide for Calibration and Use of Thermocouple Reference Junction Probes in Evaluation of Electronic Reference Junction Compensation Circuits
  • ASTM E2730-10(2015)e1 Standard Practice for Calibration and Use of Thermocouple Reference Junction Probes in Evaluation of Electronic Reference Junction Compensation Circuits
  • ASTM E2730-10 Standard Practice for Calibration and Use of Thermocouple Reference Junction Probes in Evaluation of Electronic Reference Junction Compensation Circuits
  • ASTM E1735-95(2000)e1 Standard Test Method for Determining Relative Image Quality of Industrial Radiographic Film Exposed to X-Radiation from 4 to 25 MV
  • ASTM E1735-19 Standard Practice for Determining Relative Image Quality Response of Industrial Radiographic Imaging Systems from 4 to 25 MeV
  • ASTM F1392-00 Standard Test Method for Determining Net Carrier Density Profiles in Silicon Wafers by Capacitance-Voltage Measurements With a Mercury Probe

未注明发布机构, Imaging of Electron Probes

  • BS IEC 62220-2-1:2023 Medical electrical equipment — Characteristics of digital X - ray imaging devices Part 2 - 1 : Determination of dual - energy subtraction efficiency — Detectors used for dual - energy radiographic imaging
  • YY 0457.5-2003 Medical electrical equipment. Characteristics of photoelectric X-ray image intensifiers. Part 5: Determination of detection quantum efficiency

US-FCR, Imaging of Electron Probes

  • FCR NE-F-11-4T-1972 DETERMINATION OF A FIGURE OF MERIT FOR PUO2-UO2 FUEL PELLET HOMOGENEITY BY USE OF AN ELECTRON MICROPROBE (INACTIVE FOR NEW DESIGN)




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