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Database: 365,228(8 Aug 2026)

Is ICP radiation high?

Is ICP radiation high?, Total:188 items.

The international standard classification for "Is ICP radiation high?" includes: Nuclear power plants. Safety , Nuclear energy engineering , General methods of tests and analysis for food products , Radiographic equipment , Iron and steel castings , Geology. Meteorology. Hydrology .

The Chinese standard classification for "Is ICP radiation high?" includes: Nuclear facilities radiation safety , Nuclear instrument and detector in general , Basic standards and general methods , Medical radiographic equipment , Casting , Meteorology .


Professional Standard - Nuclear Industry

  • EJ/T 20122-2016 Radiation protection programmes for the transport of radioactive material
  • EJ/T 1203-2006 Requirements of radiation protection program for decommissioning operations of nuclear facilities

Heilongjiang Provincial Standard of the People's Republic of China

General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China

  • GB/T 13160-1991 Program for testing radiation shields in light water reactors (LWR)
  • GB/T 17683.1-1999 Solar energy - Reference solar spectral irradiance at the ground at different receiving conditions - Part 1: Direct normal and hemispherical solar irradiance for air mass 1.5
  • GB/T 18527.2-2001 Code of good irradiation practice for sprout inhibition of garlic
  • GB 13160-1991 Radiation shielding inspection program for light water reactor nuclear power plant
  • GB/T 7247.9-2016 Safety of laser products - Part 9: Maximum allowable exposure to incoherent optical radiation
  • GB/T 4079-1994 Test procedures for amplifiers and charge-sensitive preamplifiers used with detectors of ionizing radiation

Group Standards of the People's Republic of China

Professional Standard - Medicine

  • YY/T 0479-2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

未注明发布机构

  • AS/NZS 2211.9:2002(R2014) Safety of laser products - Compilation of maximum permissible exposure to incoherent optical radiation

Professional Standard - Machinery

中华人民共和国国家质量监督检验检疫总局、中国国家标准化管理委员会

  • GB/T 34955-2017 Atmospheric radiation effects-Guidelines for single event effects testing for avionics systems

National Metrological Technical Specifications of the People's Republic of China

  • JJF 2091-2024 Program of Pattern Evaluation of Personal Dose Equivalent HP(10) Monitors for X and γ Radiations

中国气象局

  • QX/T 139-2020 Level 1C data format of polar orbiting meteorological satellite atmospheric vertical sounding data - Radiance

HU-MSZT

International Telecommunication Union (ITU)

RU-GOST R

  • GOST 25645.147-1989 Ionizing radiation in Earth's atmosphere. Characteristics of radiation current distribution
  • GOST 25645.153-1990 Earth atmosphere diffused radiation. Model of spatial-time distribution
  • GOST 25819-1983 Lasers. Methods of pulse laser radiation peak power measurement
  • GOST R 50755-1995 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

Institute of Electrical and Electronics Engineers (IEEE)

  • IEEE Std 301-1969*ANSI N42.2-1969 IEEE Test Procedures for Amplifiers and Preamplifiers for Semiconductor Radiation Detectors (For Ionizing Radiation)
  • IEEE Std 301-1976 IEEE Standard Test Procedures for Amplifiers and Preamplifiers for Semi- Conductor Radiation Detectors for Ionizing Radiation
  • IEEE 301-1988 Standard Test Procedures for Amplifiers and Preamplifiers Used with Detectors of Ionizing Radiation
  • IEEE Std 301-1988 IEEE Standard Test Procedures for Amplifiers and Preamplifiers used with Detectors of Ionizing Radiation

IEEE - The Institute of Electrical and Electronics Engineers@ Inc.

  • IEEE 301-1969 Test Procedure for Amplifiers and Preamplifiers for Semiconductor Radiation Detectors (For Ionizing Radiation)
  • IEEE 301-1976 STANDARD TEST PROCEDURES FOR AMPLIFIERS AND PREAMPLIFIERS FOR SEMICONDUCTOR RADIATION DETECTORS FOR IONIZING RADIATION (R 1982)

SCC

  • NZS 6609.1:1990 Radiofrequency radiation - Maximum exposure levels - 100 kHz to 300 GHz
  • AS 2772:1985 Maximum exposure levels - Radio-frequency radiation - 300 kHz to 300 GHz
  • AS O108:1969 Sawn boards from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • CEI 45-11:1997 Standardized test methods for semiconductor radiation detectors and related amplifiers and preamplifiers
  • INT 375-1954 Australian Interim Gradings for Radiata Pine Mouldings
  • AS 1783:1975 Lining boards milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • AS 1781:1975 Sawn boards from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • INT 371-1954 Australian Interim Grading Rules for Sawn Timber from Radiata Pine
  • AS 2772.1:1985 Radio frequency radiation, Part 1: Maximum exposure levels - 300 kHz to 300 GHz
  • BS DD IEC/PAS 62396-3:2007 Process management for avionics. Atmospheric radiation effects-Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • IEC 60340:1970 Test procedures for amplifiers and preamplifiers for semiconductor detectors for ionizing radiation
  • BS DD IEC/TS 62396-3:2008 Process management for avionics. Atmospheric radiation effects-Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • IEC 60340:1974 Test procedures for amplifiers and preamplifiers for semiconductor detectors for ionizing radiation
  • AS 2772.1:1990 Radiofrequency radiation, Part 1: Maximum exposure levels - 100 kHz to 300 GHz
  • INT 373-1954 Australian Interim Rules for Milled Radiata Pine Lining
  • INT 372-1954 Australian Interim Grading Rules for Milled Radiata Pine Flooring
  • AS O110:1969 Specification for lining milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • VDI 2310 BLATT 1-2010 Maximum emission values — Objectives and significance of the VDI 2310 series of guidelines
  • IEC 60340A:1974 Supplement A - Test procedures for amplifiers and preamplifiers for semiconductor detectors for ionizing radiation
  • AS O112:1969 Specification for mouldings milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • AS 1782 TO 1787:1975 Flooring milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • AS 1782:1975 Flooring milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • INT 374-1954 Australian Interim Grading Rules for Milled Radiata Pine Weatherboards
  • NS 359:1943 Shaft hole sources and diameter transitions — Hole key radii — Indicative bem
  • AS 1785:1975 Mouldings milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • AS 2099:1977 Visually stress-graded seasoned Australian-grown softwood (conifers) for structural purposes (excluding radiata pine and cypress pine)
  • 12/30276658 DC BS IEC 62396-3. Process management for avionics. Atmospheric radiation effects. Part 3. Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • AS O107:1969 Framing and planks from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • DANSK DS/EN 60806:2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • CEI EN 60806:2005 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • AENOR UNE-EN 60806:2005 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • AS 1786:1975 Joinery timber milled from Australian grown conifers (softwoods) (excluding radiata pine and cypress pine)
  • NEMA XR 10-1986(R2003) Measurement of the Maximum Symmetrical Radiation Field from a Rotating Anode X-Ray Tube Used for Medical Diagnosis
  • 11/30246255 DC BS EN 62396-1. Process management for avionics. Atmospheric radiation effects. Part 1. Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • MIL MIL-PRF-32111-2002 SPACE HEATER LARGE - RADIANT, NON-POWERED, LIQUID & SOLID FUEL
  • BS 642:1951 Calcium carbide (graded sizes)
  • BS 642:1935 Carbide of calcium (graded sizes)
  • DANSK DS/EN IEC 60806:2023 Determination of the maximum symmetrical radiation field of X-ray tube assemblies and X-ray source assemblies for medical diagnosis
  • CEI EN IEC 60806:2023 Determination of the maximum symmetrical radiation field of X-ray tube assemblies and X-ray source assemblies for medical diagnosis
  • DIN EN 62396-1 E:2010 Draft Document - Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment (IEC 107/129/DTS:2010)

RO-ASRO

  • STAS 740-1967 Size and units of energy and photometric radiation

Underwriters Laboratories (UL)

CZ-CSN

YU-JUS

  • JUS N.N0.205-1990 Radiocommunicatioa. Radiofrequency radioation. Maximum limits for people

Lithuanian Standards Office

  • LST ETS 300 127 Leid.1-2005 Equipment Engineering (EE); Radiated emission testing of physically large telecommunication systems
  • LST EN 60806-2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis (IEC 60806:1984)

ETSI - European Telecommunications Standards Institute

  • PRETS 300 127-1993 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems
  • ETS 300 127-1994 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems
  • PRETS 300 127-1991 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems

European Telecommunications Standards Institute (ETSI)

  • ETSI ETS 300 127-1994 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems
  • ETSI PRETS 300 127-1993 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems
  • ETSI PRETS 300 127-1991 Equipment Engineering (EE); Radiated Emission Testing of Physically Large Telecommunication Systems

British Standards Institution (BSI)

  • DD IEC/PAS 62396-3:2007 Process management for avionics. Atmospheric radiation effects - Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • DD IEC/TS 62396-3:2008 Process management for avionics. Atmospheric radiation effects - Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • BS IEC 62396-1:2012 Process management for avionics. Atmospheric radiation effects. Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • BS DD IEC/TS 62396-1:2006 Process management for avionics - Atmospheric radiation effects - Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • BS IEC 62396-1:2016 Process management for avionics. Atmospheric radiation effects. Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • DD IEC/TS 62396-1:2006 Process management for avionics. Atmospheric radiation effects - Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • BS EN 62396-1:2016 Process management for avionics. Atmospheric radiation effects - Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • BS EN 60806:2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • BS EN IEC 60806:2022 Determination of the maximum symmetrical radiation field of X-ray tube assemblies and X-ray source assemblies for medical diagnosis

Korean Agency for Technology and Standards (KATS)

  • KS C IEC 61171-2005(2020) Radiation protection instrumentation-Monitoring equipment-Atmospheric radioactive iodines in the environment
  • KS C IEC 61171:2005 Radiation protection instrumentation-Monitoring equipment-Atmospheric radioactive iodines in the environment
  • KS C IEC 61171-2020 Radiation protection instrumentation-Monitoring equipment-Atmospheric radioactive iodines in the environment
  • KS B ISO 9845-1:2018 Solar energy — Reference solar spectral irradiance at the ground at different receiving conditions — Part 1: Direct normal and hemispherical solar irradiance for air mass 1.5
  • KS C IEC 60806:2002 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • KS C IEC 60806-2002(2017) Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

European Committee for Electrotechnical Standardization(CENELEC)

  • HD 404-1980 Test Procedures for Amplifiers and Preamplifiers for Semiconductor Detectors for Ionizing Radiation
  • HD 513 S1-1989 Determination of the Maximum Symmetrical Radiation Field from a Rotating Anode X-Ray Tube for Medical Diagnosis

American National Standards Institute (ANSI)

  • ANSI/IEEE 301:1988 Amplifiers and Preamplifiers for Semiconductor Detectors for lonizing Radiation, Test Procedures for
  • ANSI N323C-2009 Radiation Protection Instrumentation Test and Calibration - Air Monitoring Instruments
  • ANSI C57.12.20-1997 Transformers - Overhead-Type Distribution Transformers, 500 kVA and Smaller: High Voltage, 34 500 Volts and Below; Low Voltage, 7970/13 800Y Volts and Below
  • ANSI/ANS 2.15-2013 Criteria for Modeling and Calculating Atmospheric Dispersion of Routine Radiological Releases from Nuclear Facilities
  • ANSI C57.12.24-2000 Transformers - Underground-Type Three-Phase Distribution Transformers, 2500 kVA and Smaller: High Voltage 34 500 Grd Y/19 920 Volts and Below; Low Voltage, 480 Volts and Below - Requirements

American Society for Testing and Materials (ASTM)

  • ASTM E1167-87(2008) Standard Guide for Radiation Protection Program for Decommissioning Operations
  • ASTM E1167-15(2021) Standard Guide for Radiation Protection Program for Decommissioning Operations

International Electrotechnical Commission (IEC)

  • IEC PAS 62396-3:2007 Process management for avionics - Atmospheric radiation effets - Part 3: Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • IEC 61151:1992 Nuclear instrumentation; amplifiers and preamplifiers used with detectors of ionizing radiation; test procedures
  • IEC 61171:1992 Radiation protection instrumentation; monitoring equipment; atmospheric radioactive iodines in the environment
  • IEC TS 62396-3:2008 Process management for avionics - Atmospheric radiation effects - Part 3: Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation
  • IEC TS 62396-1:2006 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • IEC 60806:2022 Determination of the maximum symmetrical radiation field of X-ray tube assemblies and X-ray source assemblies for medical diagnosis
  • IEC 61000-3-2:2014 Electromagnetic compatibility (EMC) - Part 3-2: Limits - Limits for harmonic current emissions (equipment input current <= 16 A per phase)

GSO

  • GSO IEC 62396-3:2015 Process management for avionics - Atmospheric radiation effects - Part 3: System design optimization to accommodate the single event effects (SEE) of atmospheric radiation
  • BH GSO IEC 62396-1:2016 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • OS GSO IEC 62396-1:2014 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • GSO IEC 60806:2014 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • GSO IEC 62396-1:2014 Process management for avionics - Atmospheric radiation effects - Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • OS GSO IEC 60806:2014 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • BH GSO IEC 60806:2016 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

Defense Logistics Agency

Society of Automotive Engineers (SAE)

  • SAE J1113/4-1998 Immunity to Radiated Electromagnetic Fields - Bulk Current Injection (BCI) Method
  • SAE J1113/4-2020 Immunity to Radiated Electromagnetic Fields - Bulk Current Injection (BCI) Method
  • SAE J1407-1995 Vehicle Electromagnetic Radiated Susceptibility Testing Using a LargeTEM Cell

International Organization for Standardization (ISO)

  • ISO 9845-1:1992 Solar energy; reference solar spectral irradiance at the ground at different receiving conditions; part 1: direct normal and hemispherical solar irradiance for air mass 1,5

IEC - International Electrotechnical Commission

  • TS 62396-3-2008 Process management for avionics – Atmospheric radiation effects – Part 3: Optimising system design to accommodate the single event effects (SEE) of atmospheric radiation (Edition 1.0)
  • PAS 62396-3-2007 Process management for avionics – Atmospheric radiation effects – Part 3: Optimising system design to accommodate the Single Event Effects (SEE) of atmospheric radiation (Edition 1.0)
  • TS 62396-1-2006 Process management for avionics – Atmospheric radiation effects – Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment (Edition 1.0)

TR-TSE

  • TS 3433-1979 TEST PROCEDURES FOR AMPLIFIERS AND PREAMPLIFIERS FOR SEMICONDUCTOR DETECTORS FOR IONIZING RADIATION

SAE - SAE International

  • SAE J1113/4-1997 Immunity to Radiated Electromagnetic Fields - Bulk Current Injection (BCI) Method
  • SAE J1113-4-2004 Immunity to Radiated Electromagnetic Fields - Bulk Current Injection (BCI) Method
  • SAE J1113-4-2014 Electromagnetic Susceptibility Test Procedures for Vehicle Components (Except Aircraft)
  • SAE J1113-4-2020 Electromagnetic Susceptibility Test Procedures for Vehicle Components (Except Aircraft)
  • SAE J1113-4-1998 Immunity to Radiated Electromagnetic Fields - Bulk Current Injection (BCI) Method
  • SAE J1113/4-1995 Immunity to Radiated Electric Fields - Bulk Current Injection (BCI) Method@ Recommended Practice
  • SAE J1407-1982 Vehicle Electromagnetic Radiated Susceptibility Testing Using A Large Tem Cell
  • SAE J1407-1988 Vehicle Electromagnetic Radiated Susceptibility Testing Using a Large TEM Cell@ Information Report;

European Committee for Standardization (CEN)

  • HD 404 S1-1980 Test procedures for amplifiers and preamplifiers for semiconductor detectors for ionizing radiation

Standard Association of Australia (SAA)

  • IEC 62396-1:2016 RLV Process management for avionics — Atmospheric radiation effects — Part 1: Accommodation of atmospheric radiation effects via single event effects within avionics electronic equipment
  • AS/NZS 2211.9:2002 Safety of laser products - Compilation of maximum permissible exposure to incoherent optical radiation

ITU-R - International Telecommunication Union/ITU Radiocommunication Sector

CU-NC

  • NC 90-14-06-1986 Metrological Assurance. Work Total Radiation Pyrometers Telescope. Verification Methods and Means

Association Francaise de Normalisation

  • NF C74-126*NF EN 60806:2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • NF EN IEC 60806:2023 Determination of the maximum symmetrical radiation field of equipped sheaths and x-ray sets used in medical diagnosis

VN-TCVN

  • TCVN 3718-1-2005 Management of radio frequency radiation fields hazards.Part 1: Maximum exposure levels 3 kHz to 300 GHz

IN-BIS

  • IS 11645-1985 Test procedures for amplifiers and preamplifiers of semiconductor detectors for ionizing radiation

Danish Standards Foundation

  • DS/EN 60806:2004 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis
  • DS/ETS 300127:1994 Equipment Engineering (EE); Radiated emission testing of physically large telecommunication systems

SE-SIS

  • SIS SS IEC 340:1981 Nuclear instrumentation — Test procedures for amplifiers and preamplifiers for semiconductor detectors for ionizing radiation
  • SIS SS-ISO 8769:1990 Reference sources for the calibration of sur- face contamination monitors — Beta-emit- ters (maximum beta energy greater than 0,15 MeV) and alpha-emitters

KR-KS

  • KS B ISO 9845-1-2018 Solar energy — Reference solar spectral irradiance at the ground at different receiving conditions — Part 1: Direct normal and hemispherical solar irradiance for air mass 1.5
  • KS C IEC 60806-2002(2022) Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

U.S. Military Regulations and Norms

National Electrical Manufacturers Association(NEMA)

  • NEMA XR 10-1986 Measurement of the Maximum Symmetrical Radiation Field from a Rotating Anode X-Ray Tube Used for Medical Diagnosis

German Institute for Standardization

  • DIN EN 60806:2006 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis (IEC 60806:1984); German version EN 60806:2004
  • DIN EN IEC 60806:2022-09 Determination of the maximum symmetrical radiation field of X-ray tube assemblies and X-ray source assemblies for medical diagnosis (IEC/CDV 60806:2021); German and English version prEN IEC 60806:2021 / Note: Date of issue 2022-08-12*Intended as replac...
  • DIN EN 60806:2006-04 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis (IEC 60806:1984); German version EN 60806:2004 / Note: To be replaced by DIN EN IEC 60806 (2022-09).

AENOR

  • UNE-EN 60806:2005 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

Japanese Industrial Standards Committee (JISC)

  • JIS Z 4122:2009 Determination of the maximum symmetrical radiation field from a rotating anode X-ray tube for medical diagnosis

VDI - Verein Deutscher Ingenieure

  • VDI 2310-1974 Maximum environmental quality values for air pollutants

ASHRAE - American Society of Heating@ Refrigerating and Air-Conditioning Engineers@ Inc.

  • ASHRAE DA-00-8-3-2000 Using Radiant Cooled Floors to Condition Large Spaces and Maintain Comfort Conditions

Military Standards (MIL-STD)