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Delivery: <= 5 days. True-PDF full-copy in English will be manually translated and delivered via email. GB/T 18403.1-2022: Expression of performance of gas analyzers - Part 1: General Status: Valid GB/T 18403.1: Historical versions
Basic dataStandard ID: GB/T 18403.1-2022 (GB/T18403.1-2022)Description (Translated English): Expression of performance of gas analyzers - Part 1: General Sector / Industry: National Standard (Recommended) Classification of Chinese Standard: N53 Classification of International Standard: 71.040.10 Word Count Estimation: 31,330 Date of Issue: 2022-10-12 Date of Implementation: 2023-05-01 Older Standard (superseded by this standard): GB/T 18403.1-2001 Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration GB/T 18403.1-2022: Expression of performance of gas analyzers - Part 1: General---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.Expression of performance of gas analyzers - Part 1.General ICS 71.040.10 CCSN53 National Standards of People's Republic of China Replace GB/T 18403.1-2001 Performance representation of gas analyzers - Part 1.General (IEC 61207-1.2010, IDT) Released on 2022-10-12 2023-05-01 Implementation State Administration for Market Regulation Released by the National Standardization Management Committee table of contentsPreface III Introduction IV 1 Scope and purpose1 2 Normative references 1 3 Terms and Definitions 2 3.1 General 2 3.2 Basic terms and definitions 2 3.3 General terms and definitions for equipment and operations5 3.4 Terms and definitions of representation methods 8 3.5 Terms and definitions related to gas analyzers 10 4 Description Procedure 12 4.1 Explanation of values and ranges 12 4.2 Working, storage and transport conditions 12 4.3 Performance characteristics for which ratings are given 13 4.4 Uncertainty limits for each specified range 13 4.5 Other performance characteristics 14 5 Qualification test procedure 14 5.1 Overview 14 5.2 Gas standard substance 15 5.3 Adjustment during the test 15 5.4 Reference conditions when measuring inherent uncertainty 15 5.5 Reference conditions for the measurement of influence quantities 15 5.6 Test procedure 15 Appendix A (informative) Recommended value of performance impact quantity in GB/T 6592-2010 20 A.1 Overview 20 A.2 Climatic conditions 20 A.3 Mechanical conditions 22 A.4 Main power supply conditions 22 Appendix B (informative) Calculation of performance characteristics based on drift test 24 Reference 25forewordThis document is drafted in accordance with the provisions of GB/T 1.1-2020 "Guidelines for Standardization Work Part 1.Structure and Drafting Rules for Standardization Documents". This document is the first part of GB/T 18403 "Gas Analyzer Performance Indication". GB/T 18403 has published the following parts. --- Part 1.General; --- Part 2.Oxygen in gas (using high temperature electrochemical sensor); --- Part 3.Paramagnetic oxygen analyzer; --- Part 6.Photometric analyzer. This document replaces GB/T 18403.1-2001 "Gas Analyzer Performance Representation Part 1.General Rules", and GB/T 18403.1- Compared with.2001, except for structural adjustment and editorial changes, the main technical changes are as follows. --- Added the terms and definitions of span calibration gas (see 3.5.5); --- Deleted terms and definitions such as true value, agreed true value, and specified scope of work (see Chapter 3 of the.2001 edition); --- Change "error limit" to "uncertainty limit" (see 4.1, 4.4, 4.1, 4.4 of the.2001 edition); ---Change "inherent error limit" to "intrinsic uncertainty limit" (see 4.4.2, 4.4.1 of the.2001 edition); --- Change "linearity error" to "linearity uncertainty" (see 4.4.3.1, 4.4.2.1 of the.2001 edition); ---Change "interference error" to "interference uncertainty" (see 4.4.3.2, 4.4.2.2 of the.2001 edition); --- Added the calculation method of inherent uncertainty (see 5.6.2, 5.6.1 of the.2001 edition); --- Added the calculation method of "the maximum value of the standard deviation of each concentration input value as the repeatability value of the measurement" (see 5.6.4,.2001 version 5.6.3); --- Added the calculation diagram of output fluctuation (see 5.6.5, 5.6.4 of the.2001 edition); ---Changed the range of drift test, expanded from 50%~90% of the range to 50%~100% (see 5.6.6, 5.6.5 of the.2001 edition); ---Changed the range of lag time, rise time and fall time test, expanded from 70%~90% of full scale to 70%~ 100% (see 5.6.7, 5.6.6 of the.2001 edition); ---Changed the concentration range of the calibration gas fed in during the warm-up time measurement, expanding from 50%~90% of the full scale to 70%~100% (see 5.6.8, 5.6.7 of the.2001 edition); --- Changed the concentration range of the mixed gas in the interference uncertainty test, expanded from 70% to 90% of the range to 70% to 100% (see 5.6.9.2, 5.6.8.1 of the.2001 edition); --- Changed the calibration gas concentration range in the deviation test, expanded from 10% to 90% of the full scale to 0% to 100% (see 5.6.10.1, 5.6.9 of the.2001 edition); This document identically adopts IEC 61207-1.2010 "Gas Analyzer Performance Representation Part 1.General Rules". Please note that some contents of this document may refer to patents. The issuing agency of this document assumes no responsibility for identifying patents. This document is proposed by China Machinery Industry Federation. This document is under the jurisdiction of the National Industrial Process Measurement Control and Automation Standardization Technical Committee (SAC/TC124). This document is drafted by. Focus Technology (Hangzhou) Co., Ltd., China Instrument Industry Association, Ningbo Datong Yongwei Mechanical and Electrical Engineering Co., Ltd., Beijing Xuedilong Technology Co., Ltd., Sikmahak (Beijing) Instrument Co., Ltd., Chongqing Chuanghui Technology Co., Ltd., Han Granville Technology Group Co., Ltd., Hangzhou Peng Pu Technology Co., Ltd., Yi Nian Sensing Technology (Shenzhen) Co., Ltd., Shanghai Metrology and Testing Technology Co., Ltd. Technology Research Institute, Qingdao Minghua Electronic Instrument Co., Ltd., Beijing Anxinchuang Technology Co., Ltd. The main drafters of this document. Yu Dahai, Wang Sicheng, Yan Hairong, Xu Ruichuan, Gao Wu, Fang Peiji, Zheng Jie, Wang Gang, Ye Huajun, Wang Junyang, Chen Lan, Tian Hongbing, Wu Chunyuan, Qiao Ting, Xiao Wei, Ren Yan, Gu Haitao. The release status of previous versions of this document and the documents it replaces are as follows. ---First published as GB/T 18403.1-2001 in.2001; --- This is the first revision.IntroductionGas analyzer is a process analysis instrument for measuring gas composition, which is widely used in environmental monitoring and other fields. Gas analyzers are mainly based on The principles of spectroscopy, chromatography, mass spectrometry, and electrochemistry measure the content of a certain substance in a gas. This document is the basic standard for the gas analyzer manufacturing industry. It is the basis for the development, manufacture and testing of gas analyzers. Due to the different detection principles, GB/T 18403 "Performance Representation of Gas Analyzers" intends to Consists of the following five parts. --- Part 1.General. The aim is to specify general principles for the performance representation of gas analyzers for the real-time on-line determination of the composition of gas mixtures. --- Part 2.Oxygen in gases (using high temperature electrochemical sensors). It is designed to stipulate the measurement of oxygen content in gas based on electrochemical sensors Quantitative analyzer performance detection method. --- Part 3.Paramagnetic oxygen analyzer. It is intended to specify the measurement of oxygen content in gases based on the high paramagnetic properties of oxygen in a magnetic field The profiler's performance detection method. --- Part 6.Photometric analyzer. A gas analyzer designed to specify the measurement of the content of individual components in a gas based on the photoresponse at different wavelengths performance testing method. --- Part 7.Tunable semiconductor laser gas analyzer. It aims to specify the measurement based on tunable semiconductor laser absorption spectroscopy technology The performance detection method of the gas analyzer for measuring the content of each component in the gas. Performance representation of gas analyzers - Part 1.General1 Scope and purposeThis document applies to gas analyzers for the determination of the composition of gas mixtures. This document specifies the terms, definitions, requirements and test methods for gas analyzers (hereinafter referred to as analyzers). Other parts of this series of standards Parts, such as GB/T 18403.2, describe special types of analyzers using high-temperature electrochemical sensors. This document is consistent with the provisions in GB/T 6592 and IEC 60770. This document applies to analyzers that are permanently installed in any location (indoor or outdoor), as well as to sample handling systems and in-situ measurement techniques. technical analyzer. This document applies to a complete set of analyzers provided by the same manufacturer, including all mechanical, electrical and electronic components of the analyzer. The same applies to sensor units and electronics units from different manufacturers. For the purposes of this document, any AC or DC regulated power supply supplied or specified by the manufacturer, whether or not connected to the analyzer Installations are integrated and are considered part of the analyzer. For safety requirements, refer to the relevant provisions of IEC 61010-1. If one or more components of the sample are flammable and air or a gas mixture containing oxygen or other oxidizing components is present, then Concentration ranges of reactive components are restricted outside the flammable range. For the standard range of analog DC and pneumatic signals in process control systems, refer to the relevant provisions of IEC 60381-1 and IEC 60382. For the method of selecting the test value of influence quantity, refer to the relevant regulations of IEC 60654. Please refer to the relevant provisions of IEC 61187 for the file requirements of the analyzer. See ISO 31-0 for general principles concerning quantities, units and symbols, and see ISO 1000. This document does not apply to ancillary devices such as recorders, analog-to-digital converters or data acquisition systems used in conjunction with analyzers. But when two or When more analyzers are combined and sold as a system, and only one electronic unit is provided to continuously measure several parameters, these readouts The output components are considered to be part of the analyzer, and the EMF-current or EMF-voltage converters integrated with the analyzer also include included. Purpose of this document. ---Specify general terms and definitions related to the performance of analyzers for continuous measurement of gas composition; --- Unify the methods used to manufacture and test the performance characteristics of such analyzers; --- Specifies the tests and test methods required to determine the functional characteristics; --- Provide basic information to support the application of ISO 9001 quality assurance standards.2 Normative referencesThe contents of the following documents constitute the essential provisions of this document through normative references in the text. Among them, dated references For documents, only the version corresponding to the date is applicable to this document; for undated reference documents, the latest version (including all amendments) is applicable to this document. GB/T 6592-2010 Performance representation of electrical and electronic measuring equipment (IEC 60359.2001, IDT) Note. GB/T 2423 (all parts) Environmental testing for electrical and electronic products [IEC 60068 (all parts)] ISO 31-0 General principles about quantities, units and symbols (Quantitiesandunits-Generalprinciples) Note. GB/T 3101-1993 General Principles Relating to Quantities, Units and Symbols (ISO 31-0.1992, IDT) ......Tips & Frequently Asked Questions:Question 1: How long will the true-PDF of GB/T 18403.1-2022_English be delivered?Answer: Upon your order, we will start to translate GB/T 18403.1-2022_English as soon as possible, and keep you informed of the progress. The lead time is typically 3 ~ 5 working days. The lengthier the document the longer the lead time.Question 2: Can I share the purchased PDF of GB/T 18403.1-2022_English with my colleagues?Answer: Yes. 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