ZH

RU

ES

field emission scan

field emission scan, Total:383 items.

In the international standard classification, field emission scan involves: Integrated circuits. Microelectronics, Physics. Chemistry, Transport, Medical equipment, Fibre optic communications, Electromagnetic compatibility (EMC), Road vehicle systems, Photography, Non-destructive testing, Electronic display devices, Optical equipment, Non-ferrous metals, Products of non-ferrous metals, Vocabularies, Protection against crime, Graphic technology, Applications of information technology, Electronic tubes, Medical sciences and health care facilities in general, Radiation protection, Acoustics and acoustic measurements, Passenger cars. Caravans and light trailers, Metrology and measurement in general, Geology. Meteorology. Hydrology, Soil quality. Pedology, Lubricants, industrial oils and related products, Audio, video and audiovisual engineering, Electric road vehicles, Optics and optical measurements, Paints and varnishes, Analytical chemistry, Nuclear energy engineering, Wastes, Space systems and operations, Air quality, Wind turbine systems and other alternative sources of energy.


NEMA - National Electrical Manufacturers Association, field emission scan

  • NEMA NU 2-1994 Performance Measurements of Position Emission Tomographs
  • NEMA NU 2-2012 Performance Measurements of Positron Emission Tomographs
  • NEMA NU 2-2018 Performance Measurements of Positron Emission Tomographs (PET)

Professional Standard - Medicine, field emission scan

British Standards Institution (BSI), field emission scan

  • PD IEC/TS 61967-3:2014 Integrated circuits. Measurement of electromagnetic emissions. Measurement of radiated emissions. Surface scan method
  • PD IEC/TR 61948-3:2018 Tracked Changes. Nuclear medicine instrumentation. Routine tests. Positron emission tomographs
  • BS ISO 16067-1:2003 Photography. Spatial resolution measurements for electronic scanners for photographic images. Scanners for reflective media
  • BS EN IEC 61675-1:2022 Tracked Changes. Radionuclide imaging devices. Characteristics and test conditions. Positron emission tomographs
  • PD IEC/TR 61967-1-1:2015 Integrated circuits. Measurement of electromagnetic emissions. General conditions and definitions. Near-field scan data exchange format
  • BS ISO 15708-1:2017 Non-destructive testing. Radiation methods for computed tomography. Terminology
  • BS ISO 15708-4:2017 Non-destructive testing. Radiation methods for computed tomography. Qualification
  • BS PD IEC/TS 61967-3:2014 Integrated circuits. Measurement of electromagnetic emissions. Measurement of radiated emissions. Surface scan metho
  • BS EN 16016-1:2011 Non destructive testing. Radiation methods. Computed tomography. Terminology
  • BS EN 16016-4:2011 Non destructive testing. Radiation methods. Computed tomography. Qualification
  • BS DD IEC/TS 61967-3:2005 Integrated circuits - Measurement of electromagnetic emissions, 150 kHzto 1 GHz - Measurement of radiated emissions - Surface scan method
  • 20/30423980 DC BS EN IEC 61675-1. Radionuclide imaging devices. Characteristics and test conditions. Part 1. Positron emission tomographs
  • BS ISO 15708-3:2017 Non-destructive testing. Radiation methods for computed tomography. Operation and interpretation
  • BS ISO 23159:2020 Non-destructive testing. Gamma ray scanning method on process columns
  • BS PD IEC/TR 61967-1-1:2015 Integrated circuits. Measurement of electromagnetic emissions. General conditions and definitions. Near-field scan data exchange format
  • BS EN 16016-3:2011 Non destructive testing. Radiation methods. Computed Tomography. Operation and interpretation
  • BS EN ISO 15708-1:2019 Non-destructive testing. Radiation methods for computed tomography. Terminology
  • 19/30373364 DC BS ISO 23159. Non-destructive testing. Gamma ray scanning method on process columns
  • BS EN ISO 15708-4:2019 Non-destructive testing. Radiation methods for computed tomography. Qualification
  • PD IEC TR 61948-2:2019 Tracked Changes. Nuclear medicine instrumentation. Routine tests. Scintillation cameras and single photon emission computed tomography imaging
  • BS ISO 15708-2:2017 Non-destructive testing. Radiation methods for computed tomography. Principles, equipment and samples
  • 18/30335408 DC BS IEC 62963. Radiation protection instrumentation. Bottle / can liquid X-ray computed tomography (CT) inspection systems
  • BS EN ISO 15708-3:2019 Non-destructive testing. Radiation methods for computed tomography. Operation and interpretation
  • BS EN 12543-1:1999 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Scanning method
  • BS EN 12543-1:1999(2008) Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Scanning method
  • BS IEC 62963:2020 Radiation protection instrumentation. X-ray computed tomography (CT) inspection systems of bottled/canned liquids
  • BS IEC 62945:2018 Radiation protection instrumentation. Measuring the imaging performance of X-ray computed tomography (CT) security-screening systems
  • BS PD IEC/TS 62132-9:2014 Integrated circuits. Measurement of electromagnetic immunity. Measurement of radiated immunity. Surface scan method
  • BS EN ISO 15708-2:2019 Non-destructive testing. Radiation methods for Computed tomography. Principles, equipment and samples
  • PD IEC/TS 62132-9:2014 Integrated circuits. Measurement of electromagnetic immunity. Measurement of radiated immunity. Surface scan method
  • BS ISO 17123-9:2018 Optics and optical instruments. Field procedures for testing geodetic and surveying instruments - Terrestrial laser scanners
  • BS ISO 27911:2011 Surface chemical analysis. Scanning-probe microscopy. Definition and calibration of the lateral resolution of a near-field optical microscope
  • BS EN 61828:2002 Ultrasonics - Focusing transducers - Definitions and measurement methods for the transmitted fields
  • BS ISO 14620-2:2011 Space systems. Safety requirements. Launch site operations
  • BS ISO 14620-2:2019 Tracked Changes. Space systems. Safety requirements. Launch site operations
  • PD ISO/TR 17400:2021 Space systems. Space launch complexes, integration sites and other facilities. General testing guidelines
  • BS EN 60601-2-44:2009+A2:2016 Medical electrical equipment - Particular requirements for the basic safety and essential performance of X-ray equipment for computed tomography
  • BS EN 60601-2-44:2009 Medical electrical equipment - Particular requirements for basic safety and essential performance of X-ray equipment for computed tomography
  • BS EN 60601-2-44:2009+A11:2011 Medical electrical equipment. Particular requirements for the basic safety and essential performance of X-ray equipment for computed tomography
  • BS EN 60601-2-44:2009+A1:2012 Medical electrical equipment. Particular requirements for the basic safety and essential performance of X-ray equipment for computed tomography
  • DD ISO/TS 10798:2011 Nanotechnologies. Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • BS DD ENV 50204:1996 Radiated electromagnetic field from digital radio telephones - Immunity test

International Electrotechnical Commission (IEC), field emission scan

  • IEC 47A/880/CD:2012 Integrated Circuits - Measurement of Electromagnetic Emissions - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC 47A/900/CD:2013 IEC/TS 61967-3, Ed. 2: Integrated circuits - Measurement of electromagnetic emissions - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC 47A/925/DTS:2014 IEC/TS 61967-3, Ed. 2: Integrated Circuits - Measurement of electromagnetic emissions - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC TR 61967-1-1:2015 Integrated circuits - Measurement of electromagnetic emissions - Part 1-1: General conditions and definitions - Near-field scan data exchange format
  • IEC 47A/912/CD:2013 IEC/TS 61967-3, Ed. 2: Integrated Circuits - Measurement of Electromagnetic Emissions - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC 61675-2:2015 Radionuclide imaging devices - Characteristics and test conditions - Part 2: Gamma cameras for planar, wholebody, and SPECT imaging
  • IEC TR 61967-1-1:2010 Integrated circuits - Measurement of electromagnetic emissions - Part 1: General conditions and definitions - Near-field scan data exchange format
  • IEC TS 61967-3:2014 Integrated circuits - Measurement of electromagnetic emissions - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC 61967-1-1:2010 Integrated circuits – Measurement of electromagnetic emissions – Part 1-1: General conditions and definitions – Near-field scan data exchange format
  • IEC 62963:2020 Radiation protection instrumentation - X-ray computed tomography (CT) inspection systems of bottled/canned liquids
  • IEC 62945:2018 Radiation protection instrumentation - Measuring the imaging performance of X-ray computed tomography (CT) security-screening systems
  • IEC TS 61967-3:2005 Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 3: Measurement of radiated emissions - Surface scan method
  • IEC 87/513/CD:2012 IEC/TS 62791: Ultrasonics - Pulse-echo scanners - Low-echo sphere phantoms for performance testing of gray-scale medical ultrasound scanners applicable to a broad range of transducer types
  • IEC 87/526/CD:2013 IEC/TS 62791: Ultrasonics - Pulse-echo scanners - Low-echo sphere phantoms for performance testing of gray-scale medical ultrasound scanners applicable to a broad range of transducer types
  • IEC TS 62132-9:2014 Integrated circuits - Measurement of electromagnetic immunity - Part 9: Measurement of radiated immunity - Surface scan method

Military Standard of the People's Republic of China-General Armament Department, field emission scan

  • GJB 2666-1996 Specification for scanning reflective beryllium mirrors
  • GJB 2666A-2018 Specification for scanning reflective beryllium mirrors
  • GJB 5216A-2017 Manned spacecraft launch site test and launch procedures
  • GJB 4233A-2011 Technical safety rules of test and launch for spaceflight launching site
  • GJB 8975-2017 Requirements for monitoring atmospheric electric fields at space launch sites
  • GJB 7235-2011 Requirements for rehearsal program in spacecraft launching complex
  • GJB 8974-2017 Space Launch Site Safety Design Guidelines
  • GJB 4402A-2011 Requirements for the check and maintenance of spacecraft launch complex equipments
  • GJB 9869-2020 Space launch site air supply system design specifications
  • GJB 4115-2000 Requirements for preparation of training outline for satellite launch occasions
  • GJB 4402-2002 Space launch site equipment inspection and maintenance requirements
  • GJB 8976-2017 Space Launch Site Star-Arrow Joint Operating Procedures
  • GJB 7335-2011 Bleed-off criterion for conventional propellants in spacecraft launching complex
  • GJB 7911-2012 Rules for conventional propellants filling of spacecraft launch site
  • GJB 7899-2012 Regulations on thunder & lightning precaution and alarm for aerospace launch site
  • GJB 7910-2012 Rules for cryogenic propellants filling of spacecraft launch site
  • GJB 5848-2006 Detection methods of propellant leak for satellite on launching site
  • GJB 6762-2009 Bleed-off criterion for cryogenic propellants in spacecraft launching complex
  • GJB 1474.3-1992 Propellant Usage Rules for Space Launch Site Liquid Hydrogen
  • GJB 1474.4-1992 Propellant usage rules for space launch sites helium
  • GJB 7062-2010 General specification for satellite test signal transmission system in the space launch center
  • GJB 6900-2009 Safe application rules for conventional fueling system of spacecraft launch site
  • GJB 7344-2011 Safety application rules for tower service system of spacecraft launch site
  • GJB 7894-2012 Requirements of processing failure in test mission for spacecraft launch site
  • GJB 4996A-2017 Manned spacecraft and launch site system interface requirements
  • GJB 4233-2001 Technical safety rules for missile (rocket) and satellite launch sites
  • GJB 4020A-2015 Astronaut system technical requirements for launch site system
  • GJB 1474.1-1992 Rules for the use of propellants at the space launch site anhydrous hydrazine
  • GJB 3754-1999 Criteria for Ground Safety Control of Space Launch Sites
  • GJB 10146-2021 Construction Standards for Environmental Protection Facilities at Space Launch Sites
  • GJB 6763-2009 Safety criterion for cryogenic propellant system in space launching site
  • GJB 7900-2012 Leakage examine method for fueling system in spacecraft launch site
  • GJB 7061-2010 Interface requirement between launch site system and satellite system
  • GJB 9709-2020 Interface requirements between space application systems and launch site systems
  • GJB 9593-2019 Space launch site service tower facility installation operating procedures
  • GJB 1474.2-1992 Rules for the use of propellants at the space launch site: dimethylhydrazine
  • GJB 4020-2000 Technical requirements for astronaut systems on launch site systems
  • GJB 7337-2011 Code for information transmission between launch vehicle,spacecraft and space launch site
  • GJB 7909-2012 Requirements for the use and maintenance for conventional fueling equipments of spacecraft launch site
  • GJB 5219-2004 Testing requirements for gas trace oil used in space launch site testing
  • GJB 10154-2021 Technical specifications for grounding systems of ground facilities at space launch sites
  • GJB 9091-2013 Regulation for air seal tightness test of conventional liquid launch vehicle at launch site
  • GJB 4033-2000 Technical requirements for launch sites for strategic missiles and launch vehicles
  • GJB 9080-2017 Safety guidelines for manned spacecraft oxygen supply systems at space launch sites

TIA - Telecommunications Industry Association, field emission scan

  • 455-164-1986 Scanning Far-Field@ Fiber Single-Mode@ Measurement of Mode Field Diameter
  • EIA/TIA-455-164A-1991 FOTP-164 Single-Mode Fiber@ Measurement of Mode Field Diameter by Far-Field Scanning
  • EIA/TIA-455-165A-1993 FOTP-165 Mode-Field Diameter Measurement by Near-Field Scanning Technique
  • TSB-4979-2013 Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field

IN-BIS, field emission scan

Group Standards of the People's Republic of China, field emission scan

  • T/SAS 0003-2018 Bismuth germanate scintillation crystals for positron emission tomography
  • T/CAB 0144-2022 Recycled Anode Metal Target for X-Ray Tube of CT Scanner
  • T/CIRA 42-2022
  • T/CSIQ 3103-2015 X-ray computed tomography method for testing the internal microstructure of ceramic works of art
  • T/CSAE 45-2015 Electromagnetic field emission intensity of electric vehicles (9KHZ-30MHZ)
  • T/BSRS 090-2023 Technical specification for soil radiation risk assessment at sites for the development and utilization site of associated radioactive mines

国家市场监督管理总局、中国国家标准化管理委员会, field emission scan

  • GB/T 39867-2021 Bismuth germanate scintillation crystal for positron emission tomography

Indonesia Standards, field emission scan

  • SNI 03-7066-2005 The screening of airplane passangers and goods in airports
  • SNI IEC/TR 61948-3:2012 Nuclear medicine instrumentation - Routine test - Part 3: Positron emission tomographs
  • SNI IEC/TR 61948-2:2012 Nuclear medicine instrumentation - Routine test - Part 2: Scintillation cameras and single photon emission computed tomography imaging

National Electrical Manufacturers Association(NEMA), field emission scan

  • NEMA NU 2-2001 Performance Measurements of Position Emission Tomographs Replaces NU 1:1994

RU-GOST R, field emission scan

  • GOST R 56109-2014 Medical electrical equipment. Positron emission tomographs together with X-ray equipment for computed tomography. Technical requirements for governmental purchases
  • GOST R 56123-2014 Medical electrical equipment. Single photon emission computed tomographs. Technical requirements for governmental purchases
  • GOST R 56108-2014 Medical electrical equipment. Positron emission tomograph. Technical requirements for governmental purchases

US-FCR, field emission scan

能源部, field emission scan

ESD - ESD ASSOCIATION, field emission scan

  • SP14.5-2015 Near-Field Immunity Scanning - Component/Module/PCB Level

American National Standards Institute (ANSI), field emission scan

  • ANSI/EIA 455-174:1988 Mode Field Diameter of Single-Mode Optical Fiber by Knife-Edge Scanning in the Far Field
  • ANSI/EIA 455-174A:1994 Mode Field Diameter of Single-Mode Optical Fiber by Knife-Edge Scanning in the Far Field
  • ANSI/ASME B89.4.23-2020 X-Ray Computed Tomography (CT) Performance Evaluation
  • ANSI IT8.7/2-1993 Graphic Technology – Color Reflection Target for Input Scanner Calibration
  • ANSI/EIA 501-A:1990 Measurement of X-Radiation from Raster-Scanned Direct-View Data Display Cathode Ray Tubes, Recommended Practice for
  • ANSI/ESD SP14.5-2021 Electrostatic Discharge Sensitivity Testing Near-Field Immunity Scanning Component/Module/PCB Level
  • ANSI N42.45-2010 Standard for Evaluating the Image Quality of X-ray Computed Tomography (CT) Security-Screening Systems
  • ANSI/IEEE C63.18:2014 Recommended Practice for an on-Site@ Ad Hoc Test Method for Estimating Electrimagnetic Immunity of Medical Devices to Radiated Radio-Frequency (RF) Emissions from RF Transmitters
  • ANSI/IEEE C63.18:1997 Recommended Practice for an On-Site, Ad-Hoc Test Method for Estimating Radiated Electromagnetic Immunity of Medical Devices to Specific Radio Frequency Transmitters

Society of Automotive Engineers (SAE), field emission scan

  • 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 J1492-1998 Measurement of Light Vehicle Stationary Exhaust System Sound Level Engine Speed Sweep Method
  • SAE J1752-2-2011 Measurement of Radiated Emissions from Integrated Circuits Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz

SAE - SAE International, field emission scan

  • SAE J1752-2-2016 Measurement of Radiated Emissions from Integrated Circuits-Surface Scan Method (Loop Probe Method) 10 MHz to 3 GHz

(U.S.) Telecommunications Industries Association , field emission scan

  • EIA-455-174-1988 FOTP-174 Mode Field Diameter of Single-Mode Optical Fiber by Knife-Edge Scanning in the Far Field
  • TIA TSB-4979-2013 Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field

Danish Standards Foundation, field emission scan

  • DS/IEC/TR 61948-3:2006 Nuclear medicine instrumentation - Routine tests - Part 3: Positron emission tomographs
  • DS/EN 61675-1/A1:2008 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs
  • DS/EN 61675-1:1998 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs
  • DS/EN 61675-2/A1:2005 Radionuclide imaging devices - Characteristics and test conditions -- Part 2: Single photon emission computertomographs
  • DS/EN 61675-2:1998 Radionuclide imaging devices - Characteristics and test conditions - Part 2: Single photon emission computer tomographs
  • DS/EN 16016-1:2011 Non destructive testing - Radiation methods - Computed tomography - Part 1: Terminology
  • DS/EN 16016-4:2011 Non destructive testing - Radiation methods - Computed tomography - Part 4: Qualification
  • DS/IEC/TR 61948-2:2003 Nuclear medicine instrumentation - Routine tests - Part 2: Scintillation cameras and single photon emission computed tomography imaging
  • DS/EN 16016-3:2011 Non destructive testing - Radiation methods - Computed Tomography - Part 3: Operation and interpretation
  • DS/EN 16016-2:2011 Non destructive testing - Radiation methods - Computed tomography - Part 2: Principle, equipment and samples
  • DS/EN 13477-1:2001 Non-destructive testing - Acoustic emission - Equipment characterisation - Part 1: Equipment description
  • DS/EN 12543-1:2002 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 1: Scanning method

Korean Agency for Technology and Standards (KATS), field emission scan

  • KS C IEC TR 61948-3:2020 Nuclear medicine instrumentation — Routine tests —Part 3: Positron emission tomographs
  • KS C IEC TR 61948-3:2017 Nuclear medicine instrumentation ─ Routine tests ─ Part 3: Positron emission tomographs
  • KS A ISO 16067-1:2005 Photography-Spatial resolution measurements of electronic scanners for photographic image-Part 1:Scanners for reflective media
  • KS B ISO 23159:2022 Non-destructive testing — Gamma ray scanning method on process columns
  • KS A ISO 16067-1-2005(2020) Photography-Spatial resolution measurements of electronic scanners for photographic image-Part 1:Scanners for reflective media
  • KS D 2713-2016 Evaluation of spatial resolution of NSOM(Near-field Scanning Optical Microscope)
  • KS D 2713-2016(2021) Evaluation of spatial resolution of NSOM(Near-field Scanning Optical Microscope)
  • KS C IEC 61675-2:2018 Radionuclide imaging devices — Characteristics and test conditions — Part 2: Gamma cameras for planar, wholebody, and SPECT imaging
  • KS B ISO 15708-1:2008 Non-destructive testing-Radiation methods-Computed tomography-Part 1:Principles
  • KS B ISO 15708-1:2018 Non-destructive testing — Radiation methods for computed tomography — Part 1: Terminology
  • KS B ISO 15708-2:2018 Non-destructive testing —Radiation methods for computed tomography — Part 2: Principles, equipment and samples

KR-KS, field emission scan

  • KS C IEC TR 61948-3-2020 Nuclear medicine instrumentation — Routine tests —Part 3: Positron emission tomographs
  • KS B ISO 23159-2022 Non-destructive testing — Gamma ray scanning method on process columns
  • KS C IEC 61675-2-2018 Radionuclide imaging devices — Characteristics and test conditions — Part 2: Gamma cameras for planar, wholebody, and SPECT imaging
  • KS B ISO 15708-1-2018 Non-destructive testing — Radiation methods for computed tomography — Part 1: Terminology
  • KS B ISO 15708-2-2018 Non-destructive testing —Radiation methods for computed tomography — Part 2: Principles, equipment and samples

German Institute for Standardization, field emission scan

  • DIN 6871-1:2003-02 Cyclotron systems for positron emissions tomography - Part 1: Requirements for constructional radiation protection
  • DIN IEC/TS 61967-3:2015 Integrated circuits - Measurement of electromagnetic emissions - Part 3: Measurement of radiated emissions - Surface scan method (IEC/TS 61967-3:2014)
  • DIN 6855-4:2016-11 Constancy testing of nuclear medicine instruments - Part 4: Positron emission tomographs (PET)
  • DIN IEC/TS 61967-3:2012 Integrated Circuits - Measurement of Electromagnetic Emissions - Part 3: Measurement of radiated emissions - Surface scan methodIntegrated circuits (IEC 47A/880/CD:2012)
  • DIN EN 14664:2005-02 Cyclotron systems for positron emission tomography - Part 2: Radiation protection labyrinths and wall entrances
  • DIN 6871-2:2005-02 Cyclotron systems for positron emission tomography - Part 2: Radiation protection labyrinths and wall entrances
  • DIN EN 14437:2005-02 Cyclotron systems for positron emission tomography - Part 2: Radiation protection labyrinths and wall entrances
  • DIN EN IEC 61675-1:2022-12 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs (IEC 61675-1:2022); German version EN IEC 61675-1:2022
  • DIN EN ISO 15708-4:2019-09 Non-destructive testing - Radiation methods for computed tomography - Part 4: Qualification (ISO 15708-4:2017); German version EN ISO 15708-4:2019
  • DIN EN ISO 15708-1:2019-09 Non-destructive testing - Radiation methods for computed tomography - Part 1: Terminology (ISO 15708-1:2017); German version EN ISO 15708-1:2019
  • DIN 6862-2:2019-09 Identification and characterization of radiological images in medical diagnosis - Part 2: Passing on of radiographs and related records in digital radiography, digital fluoroscopy, cone-beam computed tomography and computed tomography
  • DIN 6855-2:2013-01 Constancy testing of nuclear medical measuring systems - Part 2: Single crystal gamma-cameras used in planar scintigraphy and in anger type gamma cameras with rotating detector heads used in single photon emission tomography
  • DIN EN ISO 15708-3:2019-09 Non-destructive testing - Radiation methods for computed tomography - Part 3: Operation and interpretation (ISO 15708-3:2017); German version EN ISO 15708-3:2019
  • DIN IEC 62963:2020 Radiation protection instrumentation - X-ray computed tomography (CT) inspection systems of bottled/canned liquids (IEC 62963:2020)
  • DIN EN ISO 15708-1:2019 Non-destructive testing - Radiation methods for computed tomography - Part 1: Terminology (ISO 15708-1:2017)
  • DIN EN ISO 15708-4:2019 Non-destructive testing - Radiation methods for computed tomography - Part 4: Qualification (ISO 15708-4:2017)
  • DIN EN ISO 15708-2:2019-09 Non-destructive testing - Radiation methods for computed tomography - Part 2: Principles, equipment and samples (ISO 15708-2:2017); German version EN ISO 15708-2:2019
  • DIN EN 12543-1:1999-12 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 1: Scanning method; German version EN 12543-1:1999
  • DIN EN 12543-1:1999 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 1: Scanning method; German version EN 12543-1:1999
  • DIN EN ISO 15708-3:2019 Non-destructive testing - Radiation methods for computed tomography - Part 3: Operation and interpretation (ISO 15708-3:2017)
  • DIN EN 16016-4:2012 Non destructive testing - Radiation methods - Computed tomography - Part 4: Qualification; German version EN 16016-4:2011
  • DIN EN 13477-1:2013-11 Non destructive testing - Acoustic emission - Equipment characterisation - Part 1: Equipment description; German version EN 13477-1:2001
  • DIN EN ISO 15708-2:2019 Non-destructive testing - Radiation methods for computed tomography - Part 2: Principles, equipment and samples (ISO 15708-2:2017)
  • DIN IEC/TS 62132-9:2015 Integrated circuits - Measurement of electromagnetic immunity - Part 9: Measurement of radiated immunity - Surface scan method (IEC/TS 62132-9:2014)
  • DIN IEC/TS 62132-9:2012 Integrated circuits - measurement of electromagnetic immunity - Part 9: Measurement of radiated immunity - Surface scan method (IEC 47A/887/CD:2012)
  • DIN EN 16016-1:2011 Non destructive testing - Radiation methods - Computed tomography - Part 1: Terminology; Trilingual version EN 16016-1:2011
  • DIN EN 16016-3:2012 Non destructive testing - Radiation methods - Computed tomography - Part 3: Operation and interpretation; German version EN 16016-3:2011
  • DIN 6862-2:2011 Identification and characterization of radiological images in medical diagnosis - Part 2: Passing on of radiographs and related records in digital radiography, digital fluoroscopy and computed tomography

IT-UNI, field emission scan

  • UNI ISO 23159:2021 Non-destructive testing -- Gamma ray scanning method on process columns

国家能源局, field emission scan

Association Francaise de Normalisation, field emission scan

  • NF EN 12543-1:1999 Essais non destructifs - Caractéristiques des foyers émissifs des tubes radiogènes industriels utilises dans les essais non destructifs - Partie 1 : méthode par balayage
  • NF EN IEC 61675-1:2022 Dispositifs d'imagerie par radionucléides - Caractéristiques et conditions d'essai - Partie 1 : tomographes à émission de positrons
  • NF C74-221*NF EN 61262-1:1994 Medical electrical equipment. Characteristics of electro-optical X-ray image intensifiers. Part 1 : determination of the entrance field size.
  • NF EN ISO 15708-1:2019 Essais non destructifs - Méthodes par rayonnements pour la tomographie informatisée - Partie 1 : terminologie
  • NF EN ISO 15708-4:2019 Essais non destructifs - Méthodes par rayonnements pour la tomographie informatisée - Partie 4 : qualification
  • NF A09-261-4*NF EN ISO 15708-4:2019 Non-destructive testing - Radiation methods for computed tomography - Part 4 : qualification
  • NF EN ISO 15708-3:2019 Essais non destructifs - Méthodes par rayonnements pour la tomographie informatisée - Partie 3 : fonctionnement et interprétation
  • NF EN ISO 14096-2:2020 Essais non destructifs - Qualification des systèmes de numérisation des films radiographiques - Partie 2 : exigences minimales
  • NF EN ISO 15708-2:2019 Essais non destructifs - Méthodes par rayonnements pour la tomographie informatisée - Partie 2 : principes, équipements et échantillons
  • NF A09-231-1*NF EN 12543-1:1999 Non-destructive testing. Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing. Part 1 : scanning method
  • NF EN 13477-1:2001 Essais non destructifs - Émission acoustique - Caractérisation de l'équipement - Partie 1 : description de l'équipement
  • NF C97-913-2*NF EN 61391-2:2011 Ultrasonics - Pulse-echo scanners - Part 2 : measurement of maximum depth of penetration and local dynamic range
  • NF EN ISO 9614-2:1996 Acoustique - Détermination par intensimétrie des niveaux de puissance acoustique émis par les sources de bruit - Partie 2 : mesurage par balayage.
  • NF A09-353-1*NF EN 13477-1:2001 Non-destructive testing - Acoustic emission - Equipment characterisation - Part 1 : equipment description.
  • NF EN IEC 63073-1:2020 Dispositifs d'imagerie par radionucléides dédiés - Caractéristiques et conditions d'essai - Partie 1 : SPECT pour scintigraphie cardiaque
  • NF EN ISO 9614-3:2009 Acoustique - Détermination par intensimétrie des niveaux de puissance acoustique émis par les sources de bruit - Partie 3 : méthode de précision pour mesurage par balayage

American Society of Mechanical Engineers (ASME), field emission scan

Society of Motion Picture and Television Engineers (SMPTE), field emission scan

  • SMPTE ST 2016-4-2014 Vertical Ancillary Data Mapping of Pan-Scan Information
  • SMPTE RP 199-2004 Mapping of Pictures in Wide-Screen (16:9) Scanning Structure to Retain Original Aspect Ratio of the Work
  • SMPTE RP 199-1999 Mapping of Pictures in Wide-Screen (16:9) Scanning Structure to Retain Original Aspect Ratio of the Work

International Organization for Standardization (ISO), field emission scan

  • ISO 23159:2020 Non-destructive testing — Gamma ray scanning method on process columns
  • ISO 16067-1:2003 Photography - Spatial resolution measurements of electronic scanners for photographic images - Part 1: Scanners for reflective media
  • ISO 15708-4:2017 Non-destructive testing - Radiation methods for computed tomography - Part 4: Qualification
  • ISO 15708-1:2017 Non-destructive testing - Radiation methods for computed tomography - Part 1: Terminology
  • ISO 15708-1:2002 Non-destructive testing - Radiation methods - Computed tomography - Part 1: Principles
  • ISO/CD 15708-4:2023 Non-destructive testing — Radiation methods for computed tomography — Part 4: Qualification
  • ISO/TS 10798:2011 Nanotechnologies - Charaterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis
  • ISO 15708-3:2017 Non-destructive testing - Radiation methods for computed tomography - Part 3: Operation and interpretation
  • ISO/CD 15708-3:2023 Non-destructive testing — Radiation methods for computed tomography — Part 3: Operation and interpretation
  • ISO 15708-2:2017 Non-destructive testing - Radiation methods for computed tomography - Part 2: Principles, equipment and samples
  • ISO/CD 15708-2:2023 Non-destructive testing — Radiation methods for computed tomography — Part 2: Principles, equipment and samples
  • ISO 27911:2011 Surface chemical analysis - Scanning-probe microscopy - Definition and calibration of the lateral resolution of a near-field optical microscope
  • ISO 17123-9:2018 Optics and optical instruments — Field procedures for testing geodetic and surveying instruments — Part 9: Terrestrial laser scanners
  • ISO 20892:2018 Space systems - Launch complexes modernization process - General requirements
  • ISO 26870:2022 Space systems — Launch pad and integration site operational documents
  • ISO 14620-2:2011 Space systems - Safety requirements - Part 2: Launch site operations
  • ISO 14620-2:2000 Space systems-- Safety requirments - Part 2: Launch site operations
  • ISO 14620-2:2019 Space systems — Safety requirements — Part 2: Launch site operations

American Society for Testing and Materials (ASTM), field emission scan

  • ASTM E986-04 Standard Practice for Scanning Electron Microscope Beam Size Characterization
  • ASTM E986-04(2010) Standard Practice for Scanning Electron Microscope Beam Size Characterization
  • ASTM E1588-10e1 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/ Energy Dispersive X-ray Spectrometry
  • ASTM E1588-16 Standard Guide for Gunshot Residue Analysis by Scanning Electron Microscopy/Energy Dispersive X-Ray Spectrometry
  • ASTM E1588-16a Standard Practice for Gunshot Residue Analysis by Scanning Electron Microscopy/Energy Dispersive X-Ray Spectrometry
  • ASTM E1588-17 Standard Practice for Gunshot Residue Analysis by Scanning Electron Microscopy/Energy Dispersive X-Ray Spectrometry
  • ASTM E1728-02 Standard Practice for Collection of Settled Dust Samples Using Wipe Sampling Methods for Subsequent Lead Determination
  • ASTM F1512-94(2011) Standard Practice for Ultrasonic C-Scan Bond Evaluation of Sputtering Target-Backing Plate Assemblies
  • ASTM D8315-20 Standard Test Method for Determination of Wear Metals and Contamination Elements in Used Industrial Oils by Sweeping Flat Electrode Atomic Emission Spectrometry
  • 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 E2809-13 Standard Guide for Using Scanning Electron Microscopy/X-Ray Spectrometry in Forensic Paint Examinations
  • ASTM C1718-10 Standard Test Method for Nondestructive Assay of Radioactive Material by Tomographic Gamma Scanning
  • ASTM C1718-10(2019) Standard Test Method for Nondestructive Assay of Radioactive Material by Tomographic Gamma Scanning
  • ASTM E1507-98 Standard Guide for Describing and Specifying the Spectrometer of an Optical Emission Direct-Reading Instrument
  • ASTM E172-90(1999) Practice for Describing and Specifying the Excitation Source in Emission Spectrochemical Analysis (Withdrawn 2001)
  • ASTM D7706-11 Standard Practice for Rapid Screening of VOC Emissions from Products Using Micro-Scale Chambers
  • ASTM E1728-99 Standard Practice for Field Collection of Settled Dust Samples Using Wipe Sampling Methods for Lead Determination by Atomic Spectrometry Techniques
  • ASTM D6966-13 Standard Practice for Collection of Settled Dust Samples Using Wipe Sampling Methods for Subsequent Determination of Metals
  • ASTM E1588-20 Standard Practice for Gunshot Residue Analysis by Scanning Electron Microscopy/Energy Dispersive X-Ray Spectrometry
  • ASTM E1832-96e2 Standard Practice for Describing and Specifying a Direct-Current-Plasma Optical Emission Spectrometer

European Committee for Electrotechnical Standardization(CENELEC), field emission scan

  • EN IEC 61675-1:2022 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs

Standard Association of Australia (SAA), field emission scan

  • AS/NZS IEC 61675.1:2022 Radionuclide imaging devices — Characteristics and test conditions, Part 1: Positron emission tomographs

ES-UNE, field emission scan

  • UNE-EN 61675-1:2014 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs (Endorsed by AENOR in August of 2014.)
  • UNE-EN IEC 61675-1:2022 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs (Endorsed by Asociación Española de Normalización in June of 2022.)
  • UNE-EN ISO 15708-4:2020 Non-destructive testing - Radiation methods for computed tomography - Part 4: Qualification (ISO 15708-4:2017)
  • UNE-EN ISO 15708-1:2020 Non-destructive testing - Radiation methods for computed tomography - Part 1: Terminology (ISO 15708-1:2017)
  • UNE-EN ISO 15708-3:2020 Non-destructive testing - Radiation methods for computed tomography - Part 3: Operation and interpretation (ISO 15708-3:2017)
  • UNE-EN ISO 15708-2:2020 Non-destructive testing - Radiation methods for Computed tomography - Part 2: Principles, equipment and samples (ISO 15708-2:2017)

Professional Standard - Post and Telecommunication, field emission scan

  • YD/T 1690.3-2007 Interior of Telecommunication Equipment-Measurement of Electromagnetic Emissions-150KHz to 1GHz Part 3Measurement of Radiated Emissions-Surface Scan Method

GB-REG, field emission scan

未注明发布机构, field emission scan

  • DIN EN IEC 61675-1:2022 Imaging systems in nuclear medicine – characteristics and test conditions – Part 1: Positron emission tomographs
  • GJB 7345-2011 Space launch site warning sign requirements
  • DIN EN 13477-1:2001 Non-destructive testing Acoustic emission testing — device characterization Part 1: Device description

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc., field emission scan

  • ASHRAE SF-98-29-1-1998 Measurement of Radiant Heat Gain from Office Equipment Using a Scanning Radiometer (RP-822)

Japanese Industrial Standards Committee (JISC), field emission scan

  • JIS B 7442:2013 Industrial X-ray CT systems.Vocabulary
  • JIS T 61675-1:2016 Radionuclide imaging devices -- Characteristics and test conditions -- Part 1: Positron emission tomographs

Professional Standard - Judicatory, field emission scan

AENOR, field emission scan

  • UNE-EN 61675-2:1999/A1:2005 Radionuclide imaging devices - Characteristics and test conditions -- Part 2: Single photon emission computer tomographs
  • UNE-EN 16016-1:2012 Non destructive testing - Radiation methods - Computed tomography - Part 1: Terminology
  • UNE-EN 16016-4:2012 Non destructive testing - Radiation methods - Computed tomography - Part 4: Qualification
  • UNE-EN 16016-3:2012 Non destructive testing - Radiation methods - Computed Tomography - Part 3: Operation and interpretation
  • UNE-EN 16016-2:2012 Non destructive testing - Radiation methods - Computed tomography - Part 2: Principle, equipment and samples
  • UNE-EN 12543-1:2000 NON-DESTRUCTIVE TESTING - CHARACTERISTICS OF FOCAL SPOTS IN INDUSTRIAL X-RAY SYSTEMS FOR USE IN NON-DESTRUCTIVE TESTING - PART 1: SCANNING METHOD.

ECIA - Electronic Components Industry Association, field emission scan

  • 502-A-1989 Recommended Practice for Measurement of X-Radiation from Non-Raster-Scanned Direct-View Cathode Ray Tubes
  • 501-A-1990 Recommended Practice for the Measurement of X-Radiation from Raster-Scanned Direct-View Data Display Cathode-Ray Tubes
  • EIA-501-A-1990 Recommended Practice for the Measurement of X-Radiation from Raster-Scanned Direct-View Data Display Cathode-Ray Tubes

Lithuanian Standards Office , field emission scan

  • LST EN 61675-1-2001 Radionuclide imaging devices. Characteristics and test conditions. Part 1: Positron emission tomographs (IEC 61675-1:1998)
  • LST EN 61675-1-2001/A1-2008 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs (IEC 61675-1:1998/A1:2008)
  • LST EN 61675-2-2001 Radionuclide imaging devices. Characteristics and test conditions. Part 2: Single photon emission computer tomographs (IEC 61675-2:1998)
  • LST EN 16016-1-2011 Non destructive testing - Radiation methods - Computed tomography - Part 1: Terminology
  • LST EN 16016-4-2011 Non destructive testing - Radiation methods - Computed tomography - Part 4: Qualification
  • LST EN 61675-2-2001/A1-2005 Radionuclide imaging devices. Characteristics and test conditions. Part 2: Single photon emission computer tomographs (IEC 61675-2:1998/A1:2004)
  • LST EN 16016-3-2011 Non destructive testing - Radiation methods - Computed Tomography - Part 3: Operation and interpretation
  • LST EN 16016-2-2011 Non destructive testing - Radiation methods - Computed tomography - Part 2: Principle, equipment and samples
  • LST EN 13477-1-2002 Non-destructive testing - Acoustic emission - Equipment characterisation - Part 1: Equipment description
  • LST EN 12543-1-2001 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 1: Scanning method

General Administration of Quality Supervision, Inspection and Quarantine of the People‘s Republic of China, field emission scan

  • GB/T 17362-2008 Scanning electron microscope X-ray energy spectrum analysis method for gold products
  • GB/T 17362-1998 Nondestructive method of X-ray EDS analysis with SEM for gold jewelry
  • GB/T 17359-1998 General specification of X-ray EDS quantitative analysis for EPMA and SEM
  • GB/T 37274-2018(英文版) Specifications for safe firing area map drawing at weather odification rocket launching sites
  • GB/T 25758.1-2010 Non-destructive testing.Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing.Part 1:Scanning method
  • GB/T 17361-1998 Identification method of authigenic clay mineral in sedimentary rock by SEM & XEDS
  • GB/T 19267.6-2008 Physical and chemical examination of trace evidence in forensic sciences.Part 6:Scanning electron microscope/X ray energy dispersive spectrometry
  • GB/T 32869-2016 Nanotechnologies.Characterization of single-wall carbon nanotubes using scanning electron microscopy and energy dispersive X-ray spectrometry analysis

工业和信息化部, field emission scan

  • JB/T 13467-2018 Non-destructive testing scanning laser excitation ultrasonic field visual inspection method

American Institute of Aeronautics and Astronautics (AIAA), field emission scan

Professional Standard - Public Safety Standards, field emission scan

  • GA/T 1522-2018 Forensic Science Shooting Residue Inspection Scanning Electron Microscopy/X-Ray Spectroscopy
  • GA/T 1938-2021 Forensic Science Metal Inspection Scanning Electron Microscopy/X-Ray Spectroscopy
  • GA/T 1937-2021 Forensic Science Rubber Inspection Scanning Electron Microscopy/X-ray Spectroscopy
  • GA/T 1939-2021 Forensic Science Current Spot Examination Scanning Electron Microscopy/X-ray Spectroscopy
  • GA/T 1521-2018 Forensic Science Plastics Elemental Composition Examination Scanning Electron Microscopy/X-ray Spectroscopy
  • GA/T 1519-2018 Forensic Science Toner Elemental Composition Inspection Scanning Electron Microscopy/X-ray Spectroscopy
  • GA/T 909-2010 Collecting and packaging method for trace evidence-Gunshot residue(SEM/EDS examination)
  • GA/T 1520-2018 Forensic science black powder, pyrotechnic powder element composition inspection scanning electron microscope/X-ray energy spectrometry
  • GA/T 823.3-2018 Methods of Examination of Paint Evidence in Forensic Science Part 3: Scanning Electron Microscopy/X-ray Spectroscopy

Illuminating Engineering Society of North America, field emission scan

  • IESNA TM-25-2013 Ray File Format for the Description of the Emission Property of Light Sources

CEN - European Committee for Standardization, field emission scan

  • EN ISO 15708-4:2019 Non-destructive testing - Radiation methods for computed tomography - Part 4: Qualification
  • EN ISO 15708-1:2019 Non-destructive testing - Radiation methods for computed tomography - Part 1: Terminology
  • EN ISO 15708-3:2019 Non-destructive testing - Radiation methods for computed tomography - Part 3: Operation and interpretation

AT-OVE/ON, field emission scan

  • OVE EN IEC 61675-1:2021 Radionuclide imaging devices - Characteristics and test conditions - Part 1: Positron emission tomographs (IEC 62C/811/CDV) (english version)

Electronic Components, Assemblies and Materials Association, field emission scan

  • ECA EIA-501-A-1990 Recommended Practice for the Measurement of X-Radiation from Raster-Scanned Direct-View Data Display Cathode-Ray Tubes

国家食品药品监督管理局, field emission scan

  • YY/T 1538-2017 Performance and test methods of automatic scanning water phantom system for radiotherapy

Institute of Electrical and Electronics Engineers (IEEE), field emission scan

  • ST 2016-4:2007 ST 2016-4:2007 - SMPTE Standard - Vertical Ancillary Data Mapping of Pan-Scan Information
  • ST 2016-4:2014 ST 2016-4:2014 - SMPTE Standard - Vertical Ancillary Data Mapping of Pan-Scan Information
  • SMPTE ST 2016-4:2007 ST 2016-4:2007 - SMPTE Standard - Vertical Ancillary Data Mapping of Pan-Scan Information
  • IEEE/ANSI C63.7-2015 American National Standard Guide for Construction of Test Sites for Performing Radiated Emission Measurements
  • ANSI/IEEE PC63.7/D rev17, December 2014 American National Standard Guide for Construction of Test Sites for Performing Radiated Emission Measurements
  • ANSI N42.45-2021 American National Standard for Evaluating the Image Quality of X-ray Computed Tomography (CT) Security-Screening Systems
  • IEEE/ANSI N42.45-2021 American National Standard for Evaluating the Image Quality of X-ray Computed Tomography (CT) Security-Screening Systems
  • IEEE Std C63.18-2014 Recommended Practice for an on-Site, Ad Hoc Test Method for Estimating Electrimagnetic Immunity of Medical Devices to Radiated Radio-Frequency (RF) Emissions from RF Transmitters
  • IEEE Std C63.7-2015 American National Standard Guide for Construction of Test Sites for Performing Radiated Emission Measurements
  • IEEE/ANSI N42.45-2011 American National Standard for Evaluating the Image Quality of X-ray Computed Tomography (CT)Security-Screening Systems
  • IEEE N42.45-2011 American National Standard for Evaluating the Image Quality of X-ray Computed Tomography (CT) Security-Screening Systems
  • RP 199:2004 RP 199:2004 - SMPTE Recommended Practice - Mapping of Pictures in Wide-Screen (16:9) Scanning Structure to Retain Original Aspect Ratio of the Work
  • IEEE Std C63.7-2005 Standard Guide for Construction of Open Area Test Sites for Performing Radiated Emission Measurements

IEC - International Electrotechnical Commission, field emission scan

  • IEC 61675-2:2005 Radionuclide imaging devices – Characteristics and test conditions – Part 2: Single photon emission computed tomographs (Edition 1.1; Consolidated Reprint)

Professional Standard - Electron, field emission scan

  • SJ/T 11006-1996 Semiconductor TV integrated circuits - General principles of measuring methods for horizontal and vertical sweep circuits
  • SJ/T 11008-1996 Detailed specifications for electronic components - Semiconductor TV integrated circuits - CD11235CP line and field sweep circuits
  • SJ/T 10987-1996 Detailed specifications for electronic components - Semiconductor TV integrated circuits - CD5435CP magnetic field sweep circuits
  • SJ/T 11087-1996 Detailed specifications for electronic components - Semiconductor integrated circuits - CD7698CP horizontal and vertical sweep and chrominance processing circuits
  • SJ/T 10784-1996 Detailed specifications for electronic components - Semiconductor integrated circuits - CD7609CP horizontal and vertical sweep circuits (Applicable for certification)

Federal Aviation Administration (FAA), field emission scan

European Committee for Standardization (CEN), field emission scan

  • EN 16016-4:2011 Non destructive testing - Radiation methods - Computed tomography - Part 4: Qualification
  • EN 16016-3:2011 Non destructive testing - Radiation methods - Computed Tomography - Part 3: Operation and interpretation
  • EN 16016-2:2011 Non destructive testing - Radiation methods - Computed tomography - Part 2: Principle, equipment and samples
  • EN 12543-1:1999 Non-destructive testing - Characteristics of focal spots in industrial X-ray systems for use in non-destructive testing - Part 1: Scanning method
  • EN 16016-1:2011 Non destructive testing - Radiation methods - Computed tomography - Part 1: Terminology
  • EN 13477-1:2001 Non-destructive testing - Acoustic emission - Equipment characterisation - Part 1: Equipment description

Professional Standard - Commodity Inspection, field emission scan

  • SN/T 2649.1-2010 Determination of asbestos in cosmetics for import and export.Part 1:X-ray diffraction and scan electron microscopy method

Professional Standard - Aerospace, field emission scan

  • QJ 2448-1993 Surface (ship) air missile approach launch procedure
  • QJ 3281-2006 Detection method of spacecraft propellant leakage at launch site
  • QJ 2573-1993 Ground (ship) air missile flight test approach launch safety requirements
  • QJ 1520-1988 总体

Guangdong Provincial Standard of the People's Republic of China, field emission scan

  • DB44/T 1216-2013 Characterization of graphene using scanning electron microscopy and X-ray spectroscopy
  • DB44/T 1215-2013 Characterization of Single-Walled Carbon Nanotubes Using Scanning Electron Microscopy and Energy Spectroscopy

Fujian Provincial Standard of the People's Republic of China, field emission scan

  • DB35/T 110-2000 Electron probe and scanning electron microscope X-ray energy spectrum analysis method for paint physical evidence detection

CZ-CSN, field emission scan

Jiangsu Provincial Standard of the People's Republic of China, field emission scan

  • DB32/T 4451.7-2023 Clinical use management and quality control regulations for medical imaging equipment Part 7: single photon emission computed tomography system (SPECT)

中国气象局, field emission scan

  • QX/T 545-2020 Calibration method of infrared radiation of Fengyun series polar-orbiting meteorological satellite visible light infrared scanning radiometer on-orbiting satellite

(U.S.) Ford Automotive Standards, field emission scan

  • FORD FLTM BJ 127-01-2001 SCANNING BROOKFIELD VISCOMETER TEST FOR LOW TEMPERATURE ENGINE OIL PUMPABILITY Replaces FLTM BJ 027-01
  • FORD FLTM BJ 127-1-2001 SCANNING BROOKFIELD VISCOMETER TEST FOR LOW TEMPERATURE ENGINE OIL PUMPABILITY (Replaces FLTM BJ 027-01)

Professional Standard - Radio Television Film, field emission scan

  • GY 5069-2001 Standard for selective site of MW and SW Transmitting station
  • GY 5068-2001 Standard for selective site of FM and TV Transmitting station

ECMA - European Association for Standardizing Information and Communication Systems, field emission scan

  • ECMA 172-1992 PROCEDURE FOR MEASUREMENT OF EMISSIONS OF ELECTRIC AND MAGNETIC FIELDS FROM VDUs FROM 5 Hz TO 400 kHz

IEEE - The Institute of Electrical and Electronics Engineers@ Inc., field emission scan

  • IEEE C63.7-2015 American National Standard Guide for Construction of Test Sites for Performing Radiated Emission Measurements

YU-JUS, field emission scan

  • JUS N.N6.222-1985 Radiocommunications. Equipment used in the mppile seil/ices. Equipments employing A3E, F3E orG3E emissions. Methods of measurement. Radiation test site (30 m)
  • JUS N.N6.234-1985 Radiocommunications. Equipment used in the mobi/e services. Receivers employing A3E, F3E or G3E emissions. Methods of measurement. Intermodulation response

Professional Standard - Petrochemical Industry, field emission scan

  • SH/T 0686-1999 Standard test method for use of the refractometer for field test determination of the freezing point of aqueous engine coolants

Professional Standard - Machinery, field emission scan

  • JB/T 11603.1-2013 Non-destructive testing instruments.Acoustic emission.Equipment characterization.Part 1: Equipment description

GOSTR, field emission scan

  • PNST 508-2020 Nanotechnologies. Single-wall carbon nanotubes. Characterization by scanning electron microscopy and energy dispersive X-ray spectrometry

Defense Logistics Agency, field emission scan

能源, field emission scan

  • NB/T 31069-2015 Wind farm monitoring system communication - mapping to communication protocols




Copyright ©2007-2023 ANTPEDIA, All Rights Reserved