13.280;17.240 标准查询与下载



共找到 85 条与 相关的标准,共 6

Direct reading personal dose equivalent meters for X, gamma, beta and neutron radiations

ICS
13.280;17.240
CCS
F84
发布
2013-03-21
实施

Radioactive aerosol monitors

ICS
13.280;17.240
CCS
F74
发布
2013-03-21
实施

Radiation Protection Instrumentation Test and Calibration, Portable Survey Instruments

ICS
13.280;17.240
CCS
F81
发布
2013-01-01
实施

"This standard applies to all kinds of passive dosimetry systems that are used for measuring -the personal dose equivalent Hp(10) (for whole body dosimetry)@ ?C the personal dose equivalent Hp(3) (for eye lens dosimetry)@ -the personal dose equivalent Hp(0@07) (for both whole body and extremity dosimetry)@ -the ambient dose equivalent H*(10) (for environmental dosimetry)@ or -the directional dose equivalent H '(0@07) (for environmental dosimetry). NOTE 1 The term ""environmental dosimetry"" means ambient@ area@ and environmental monitoring in this standard. This standard applies to dosimetry systems that measure external photon and/or beta radiation in the dose range between 0@01 mSv and 10 Sv and in the energy ranges. All the energy values are mean energies with respect to the prevailing dose quantity. The dosimetry systems usually use electronic devices for the data evaluation and thus are often computer controlled. NOTE 2 In this standard@ ""dose"" means dose equivalent@ unless otherwise stated. NOTE 3 For Hp(10) and H*(10) no beta radiation is considered. Reasons: 1) Hp(10) and H*(10) are a conservative estimate for the effective dose which is not a suitable quantity for beta radiation. 2) No conversion coefficients are available in ICRU 56@ ICRU 57 or ISO 6980-3. NOTE 4 The maximum energy ranges are the energy limits within which type tests according to this standard are possible. The test methods concerning the design (Clause 8)@ the instruction manual (Clause 9)@ the software (Clause 10)@ environmental influences (Clause 13)@ electromagnetic influences (Clause 14)@ mechanical influences (Clause 15)@ and the documentation (Clause 16) are independent of the type of radiation. Therefore@ they can also be applied to other dosimetry systems@ e.g. for neutrons@ utilizing the corresponding type of radiation for testing. This standard is intended to be applied to dosimetry systems that are capable of evaluating doses in the required quantity and unit (Sv) from readout signals in any quantity and unit. The only correction that may be applied to the evaluated dose (indicated value) is the one resulting from natural background radiation using extra dosemeters. NOTE 5 The correction due to natural background can be made before or after the dose calculation."

Radiation protection instrumentation - Passive integrating dosimetry systems for personal and environmental monitoring of photon and beta radiation

ICS
13.280;17.240
CCS
F84
发布
2012-12
实施
2012-12-07

Radiation protection instrumentation - Environmental, electromagnetic and mechanical performance requirements

ICS
13.280;17.240
CCS
F84
发布
2012-12
实施

이 표준은 개인이 착용하는 청각 또는 시청각 경고 장치에 적용된다.이 표준은 60

Radiation protection instrumentation-Monitoring equipment-Personal warning devices for X and gamma radiations

ICS
13.280;17.240
CCS
F84
发布
2012-11-23
实施
2012-11-23

이 표준은 비상 상황에서 공기에 대한 흡수선량과 흡수선량률을 측정하는 계측기의 성능 인자에

High range beta and photon dose and dose rate portable instruments for emergency radiation protection purposes

ICS
13.280;17.240
CCS
F84
发布
2012-11-23
实施
2012-11-23

Radiation protection instrumentation - Electronic counting dosemeters for pulsed fields of ionizing radiation

ICS
13.280;17.240
CCS
F84
发布
2012-09
实施

Nuclear energy - Measurement of radioactivity in the environment - Water - Part 2 : measurement of radium 226 activity in water - Method by coprecipitation and gamma spectrometry.

ICS
13.280;17.240
CCS
F74
发布
2012-06-01
实施
2012-06-30

This part of IEC 61577 describes the specific requirements for instruments measuring the volumetric activity of airborne short-lived radon decay products and/or their ambient potential alpha-energy concentration outdoors@ in dwellings@ and in workplaces including underground mines. This standard applies practically to all types of electronic instruments that are based on grab sampling@ continuous sampling technique and electronic integrating measurement methods. The measurement of activity retained by a sampling device@ for example a filtering device@ can be performed both during sampling or after the completion of a collection cycle. The different types of instrumentation used for measurements are stated in IEC 61577-1.

Radiation protection instrumentation - Radon and radon decay product measuring instruments - Part 3: Specific requirements for radon decay product measuring instruments

ICS
13.280;17.240
CCS
F84
发布
2011-12-01
实施
2011-12-13

This Japanese Industrial Standard specifies the installed articles surface contamination monitoring assemblies for beta emitters (hereafter referred to as the "monitor") intended for detecting the contamination by the nuclide to emit beta rays of 0.15 MeV or over in the maximum energy for measuring the surface contamination of articles carried out from the controlled area of nuclear facility and the like.

Installed articles surface contamination monitoring assemblies for beta emitters

ICS
13.280;17.240
CCS
F84
发布
2011-11-21
实施

Radioactive iodine samplers

ICS
13.280;17.240
CCS
F84
发布
2010-11-22
实施

Radiation protection. Performance criteria for radiobioassay

ICS
13.280;17.240
CCS
F74
发布
2010-10-31
实施
2010-10-31

This International Standard provides criteria for quality assurance and control, and evaluation of performance of radiobioassay service laboratories. Criteria and guidance for in vivo radiobioassay and in vitro radiobioassay are given in separate clauses. The following are within the scope of this International Standard: ⎯ the accuracy of ⎯ in vivo measurements of activity and quantities of selected important radionuclides in test phantoms, and ⎯ in vitro measurements of activity and quantities of selected important radionuclides in test samples; ⎯ minimal requirements for detection limit; ⎯ minimum testing levels and testing ranges; ⎯ requirements for reporting radiobioassay results by service laboratories; ⎯ quality assurance in service laboratories; ⎯ quality control in service laboratories; ⎯ protocol for reporting test evaluations by service laboratories to the testing laboratory; ⎯ default procedures when the service laboratory customer does not specify the performance criteria; ⎯ applications of y# for different methods (see Annexes A and B). The following are not within the scope of this International Standard: ⎯ detailed radiochemical methods for separating radionuclides from biological samples; ⎯ detailed procedures for in vivo and in vitro radioactivity measurements; ⎯ biokinetic data and mathematical models for converting radiobioassay results into dose (dose assessment); ⎯ procedures for the preparation and distribution of test samples and phantoms by the testing laboratories.

Radiation protection - Performance criteria for radiobioassay

ICS
13.280;17.240
CCS
C57
发布
2010-10-01
实施
2010-10-01

This International Standard applies to hand-held instruments used for the detection and localization of neutron emitting radioactive material. These instruments are highly sensitive meaning that they are designed to detect slight variations in the range of usual background that may be caused by illicit trafficking or inadvertent movement of radioactive material. This high sensitivity allows scanning of larger volume items such as vehicles and containers. These instruments may also be used in fixed or temporally fixed unattended mode to monitor check points or critical areas. Instruments addressed by this standard will also provide a means to detect photon radiation for personal protection. This standard does not apply to the performance of radiation protection instrumentation which is covered in IEC 61005 and in IEC 61526. The object of this standard is to establish performance requirements, provide examples of acceptable test methods, and to specify general characteristics, general test conditions, radiation characteristics, electrical safety, and environmental characteristics, that are used to determine if an instrument meets the requirements of this standard. The results of tests performed provide information to government agencies and other users on the capability of radiation detection instruments for reliably detecting neutron sources. Obtaining operating performance that meets or exceeds the specifications as stated in this standard depends upon properly establishing appropriate operating parameters, maintaining calibration, implementing a suitable response testing and maintenance program, auditing compliance with quality requirements, and providing proper training for operating personnel.

Radiation protection instrumentation - Highly sensitive hand-held instruments for neutron detection of radioactive material

ICS
13.280;17.240
CCS
F84
发布
2010-06
实施
2010-06-23

This International Standard applies to hand-held instruments used for the detection and localization of radioactive photon emitting materials. These instruments are highly sensitive meaning that they are designed to detect slight variations in the range of usual photon background caused mainly by illicit trafficking or inadvertent movement of radioactive material. Compared to pocket devices (see IEC 62401), this highly sensitive instrument allows the scanning of larger volume items such as vehicles or containers. They may also be used in fixed or temporarily fixed unattended mode to monitor check points or critical areas. These instruments also provide an indication of the ambient dose equivalent rate from photon radiation. However, this standard does not apply to the performance of radiation protection instrumentation which is covered in IEC 60846-1 and IEC 61526. These instruments may provide additional functions as described below without including all features of specialized portable identification devices as defined by IEC 62327: ? rejecting natural background variation encountered when used in movement; ? sorting alarms of interest from naturally occurring radioactive material (NORM) or medical radionuclides originated alarms; ? provide source categorization data (including limited photon spectra) to a remote location. The object of this standard is to establish performance requirements including physical characteristics, general test conditions, radiation characteristics, electrical safety, and environmental conditions. This standard provides examples of acceptable test methods to determine if an instrument meets the requirements of this standard. The results of tests performed provide information to users on the capability of radiation detection instruments for reliably detecting photon sources. Obtaining operating performance that meets or exceeds the specifications as stated in this standard depends upon properly establishing appropriate operating parameters, maintaining calibration, implementing a suitable response testing and maintenance program, providing proper training for operating personnel and developing operating procedures that address the instrument limitations and capabilities.

Radiation protection instrumentation - Highly sensitive hand-held instruments for photon detection of radioactive material

ICS
13.280;17.240
CCS
F84
发布
2010-06
实施
2010-06-23

This International Standard specifies the operational and performance requirements for spectroscopy-based portal monitors used for the detection and identification of illicit trafficking of radioactive material. Spectroscopy-based portal monitors have the ability to detect gamma and neutron radiation and identify gamma-emitting radionuclides that may be present in or on persons, vehicles, containers, or packages in a static or transient mode of operation. Operational requirements established by this standard include radiation detection and gamma-emitting radionuclide identification, and those requirements associated with the expected electrical, mechanical, and environmental conditions when a portal monitor is deployed. The object of this standard is to establish performance requirements and to give examples of acceptable test methods, and to specify general characteristics, general test conditions, radiation characteristics, electrical safety, and environmental characteristics to determine if a portal monitor meets the requirements of this standard. Special applications, which may include a monitor’s operation under weather conditions or for detection needs not addressed by this standard, shall require additional testing. Obtaining operating performance that meets or exceeds the specifications as stated in this standard depends upon properly installing the monitor, establishing appropriate operating parameters, providing security for the monitor, maintaining calibration, implementing a suitable response testing and maintenance program, auditing compliance with quality requirements, and providing proper training for operating personnel.

Radiation protection instrumentation - Spectroscopy-based portal monitors used for the detection and identification of illicit trafficking of radioactive material

ICS
13.280;17.240
CCS
F79
发布
2010-05
实施
2013-07-04

Ceiling values for induced and contact current requirements are specified, and distinctions between localized exposure and spatial peak power density are clarified in this amendment.

Safety levels with respect to human exposure to radio frequency electromagnetic fields, 3 kHZ to 300 GHz - Amendment 1: Specifies ceiling limits for induced and contact current, clarifies distinctions between localized exposure and spatial peak power dens

ICS
13.280;17.240
CCS
C71
发布
2010-03-16
实施
2010-02-02

This International Standard is applicable to mobile radiation detection systems used for the detection, quantification and identification of photon and/or neutron emitters in the environment. This includes point and distributed radiation sources.

Radiation protection instrumentation - Mobile instrumentation for the measurement of photon and neutron radiation in the environment

ICS
13.280;17.240
CCS
F84
发布
2010-03
实施
2010-03-22

Area monitors for X and Gamma rays

ICS
13.280;17.240
CCS
F84
发布
2009-10-20
实施



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