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JJG 1199-2023 English PDF

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JJG 1199-2023: Optically Stimulated Luminescence Dosimetry Systems Used in Personal and Environmental Monitoring for X and Gamma Radiation
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
JJG 1199-2023529 Add to Cart 5 days Optically Stimulated Luminescence Dosimetry Systems Used in Personal and Environmental Monitoring for X and Gamma Radiation Valid

Similar standards

JJG 1193   JJG 1192   JJF 1199   

Basic data

Standard ID: JJG 1199-2023 (JJG1199-2023)
Description (Translated English): Optically Stimulated Luminescence Dosimetry Systems Used in Personal and Environmental Monitoring for X and Gamma Radiation
Sector / Industry: Metrology & Measurement Industry Standard
Word Count Estimation: 26,291
Date of Issue: 2023-10-12
Date of Implementation: 2024-04-12
Issuing agency(ies): State Administration for Market Regulation

JJG 1199-2023: Optically Stimulated Luminescence Dosimetry Systems Used in Personal and Environmental Monitoring for X and Gamma Radiation


---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
National Measurement Verification Regulations of the People's Republic of China X, gamma radiation for personal and environmental monitoring Luminescent dose measurement (device) system Released on 2023-10-12 Implemented on 2024-04-12 Released by the State Administration for Market Regulation X, gamma radiation for personal and environmental monitoring Luminescence dose measurement (device) system calibration procedures XandGammaRadiation Responsible unit: National Technical Committee on Ionizing Radiation Measurement Main drafting unit: China Institute of Metrology Shanghai Institute of Metrology and Testing Technology Participating units in the drafting: Guangdong Institute of Metrology Jiangsu Institute of Metrology The National Ionizing Radiation Measurement Technical Committee is entrusted with the interpretation of this regulation: The main drafter of this regulation: Li Dehong (China Institute of Metrology) Chen Jianxin (Shanghai Institute of Metrology and Testing Technology) Lu Yazhu (Chinese Institute of Metrology) Participating drafters: Huang Jianwei (China Institute of Metrology) He Yun (Guangdong Institute of Metrology) Wang Peng (Jiangsu Institute of Metrology) Wu Guoguang (Guangdong Institute of Metrology)

Table of contents

Introduction(Ⅱ) 1 Scope(1) 2 Cited documents(1) 3 Terminology and units of measurement(1) 3:1 Terminology(1) 3:2 Unit of measurement(2) 4 Overview(2) 5 Measurement performance requirements (3) 6 General technical requirements(3) 6:1 Reader(3) 6:2 Dosimeter(4) 7 Measuring instrument control(4) 7:1 Verification conditions (4) 7:1:1 Measurement standards (4) 7:1:2 Reference radiation(4) 7:1:3 Supporting equipment(4) 7:1:4 Environmental conditions(4) 7:2 Verification items (5) 7:3 Calibration method(5) 7:3:1 General features(5) 7:3:2 Dosimeter(5) 7:3:3 Coefficient of variation(6) 7:3:4 Nonlinear response(6) 7:3:5 Relative error(7) 7:3:6 Energy response(7) 7:3:7 Quantity test(7) 7:4 Processing of verification results (8) 7:5 Calibration cycle(8) Appendix A Recommended format for calibration records (9) Appendix B: Calibration certificate inner page information and recommended format (10) Appendix C: Inner page information and recommended format of verification result notification (11) Appendix D Conversion coefficient for converting air kerma into dose equivalent (12) Appendix EX Reference Radiation Characteristics and Generation Conditions (14) Appendix F Confidence Interval(16)

Introduction

JJF1002-2010 "Rules for Writing National Measurement Verification Regulations", JJF1001-2011 "General Measurement Terminology and Definition" and JJF1059:1-2012 "Evaluation and Expression of Measurement Uncertainty" jointly support the formulation of this regulation basic series of specifications: This regulation is released for the first time: X, gamma radiation for personal and environmental monitoring Luminescence dose measurement (device) system calibration procedures

1 Scope

This procedure is applicable to the measurement dose range of 0:01mSv~10Sv and the energy range of 80keV~1:3MeV The photon external irradiation personal dose equivalent Hp(10) and the surrounding dose equivalent H*(10), and the energy range is The first calibration and follow-up of the photoluminescence dosimetry system for the personal dose equivalent Hp (0:07) of 30keV~250keV Calibration and in-service inspection: This procedure does not apply to personal dose monitoring devices equipped with extremity dosimeters:

2 cited documents

This regulation cites the following documents: JJF1035 Ionizing radiation measurement terms and definitions GB/T 12162:1 X and γ reference radiation for calibration of dosimeters and dose rate meters and determination of their energy response Radiation Part 1: Radiation Characteristics and Generation Methods GB/T 12162:2 X and γ reference radiation for calibration of dosimeters and dose rate meters and determination of their energy response Radiation Part 2: Reference for radiation protection in the energy range 8keV~1:3MeV and 4MeV~9MeV radiation dosimetry GB/T 12162:3 X and γ reference radiation for calibration of dosimeters and dose rate meters and determination of their energy response Radiation Part 3: Calibration of site dosimeters and personal dosimeters and determination of energy response and angular response IEC 62387:2012 Radiation protection instruments Passive accumulation of photon and beta radiation for personal and environmental monitoring For dated referenced documents, only the dated version applies to this regulation; for undated referenced documents, only the dated version applies: The latest version (including all modification orders) applies to this regulation:

3 Terminology and units of measurement

The following terms and definitions apply to this regulation: 3:1 Terminology When a substance is irradiated by ionizing radiation and then irradiated by excitation light, the light emission produced by the excitation of the irradiation Phenomenon: A specified number of photoluminescent materials, or a combination of photoluminescent materials and non-photoluminescent materials with a certain quality quantity, shape or size of the device:
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