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GB/T 42567.3-2023 English PDF

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GB/T 42567.3-2023: Reference conditions and procedures for testing industrial and process measurement transmitters - Part 3: Specific procedures for temperature transmitters
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
GB/T 42567.3-2023244 Add to Cart 3 days Reference conditions and procedures for testing industrial and process measurement transmitters - Part 3: Specific procedures for temperature transmitters Valid

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Basic data

Standard ID: GB/T 42567.3-2023 (GB/T42567.3-2023)
Description (Translated English): Reference conditions and procedures for testing industrial and process measurement transmitters - Part 3: Specific procedures for temperature transmitters
Sector / Industry: National Standard (Recommended)
Classification of Chinese Standard: N18
Classification of International Standard: 25.040
Word Count Estimation: 12,135
Date of Issue: 2023-05-23
Date of Implementation: 2023-12-01
Issuing agency(ies): State Administration for Market Regulation, China National Standardization Administration

GB/T 42567.3-2023: Reference conditions and procedures for testing industrial and process measurement transmitters - Part 3: Specific procedures for temperature transmitters


---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.
ICS 25:040 CCSN18 National Standards of People's Republic of China Industrial process measurement transmitter test Reference Conditions and Procedures Part 3: Specific procedures for temperature transmitters transmitters (IEC 62828-3:2018, IDT) Released on 2023-05-23 2023-12-01 Implementation State Administration for Market Regulation Released by the National Standardization Management Committee

table of contents

Preface I Introduction II 1 Scope 1 2 Normative references 1 3 Terms and Definitions 1 3:1 Definition of temperature 1 4 Overview of Temperature Transmitter 2 5 Reference test conditions 2 6 Test procedure 2 6:1 General 2 6:2 Tests under standard and working reference test conditions 3 6:2:1 General 3 6:2:2 Conventional methods for accuracy verification in acceptance and routine tests4 7 Technical Documentation 4 7:1 General 4 7:2 Total probability error 5 Appendix A (Informative) Temperature Transmitter 6 Reference 7 Figure 1 Schematic diagram of temperature transmitter test configuration 2 Figure 2 Terminal Connection Example 3 of RTD and TC Figure 3 Example 4 of measurement error graph Table 1 Measurement Error Table Example 4

foreword

This document is in accordance with the provisions of GB/T 1:1-2020 "Guidelines for Standardization Work Part 1: Structure and Drafting Rules for Standardization Documents" drafting: This document is part 3 of GB/T 42567 "Reference Conditions and Procedures for Testing Transmitters for Industrial Process Measurement": GB/T 42567 The following parts have been published: --- Part 1: General procedures for all types of transmitters; --- Part 2: Specific procedures for pressure transmitters; --- Part 3: Specific procedures for temperature transmitters: This document is equivalent to IEC 62828-3:2018 "Reference Conditions and Procedures for Testing Transmitters for Industrial Process Measurement - Part 3: Temperature Transmitter Specific Procedures": The following minimal editorial changes have been made to this document: ---Correct "For long-distance transmission, RTD only uses 2-wire connection (not 3-wire or 4-wire connection)" in Appendix A to "For For long-distance transmission, RTDs use 3- or 4-wire connections (not 2-wire connections)" (original error): 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 was drafted by: Anhui Tiankang (Group) Co:, Ltd:, Chongqing Xin'an Network Security Level Evaluation Co:, Ltd:, Shanghai Modulus Instrument Co:, Ltd:, Xiamen Yudian Automation Technology Co:, Ltd:, Shenzhen Biaoli Technology Development Co:, Ltd:, Tianjin Zhonghuan Temperature Instrument Co:, Ltd: Co:, Ltd:, China Silian Instrument Group Co:, Ltd:, Shenzhen Tean Electronics Co:, Ltd:, Southwest University, Nanjing Youbei Electric Co:, Ltd: Division, Jiangsu Jack Instrument Co:, Ltd:, Shenzhen Ertai Technology Co:, Ltd:, Chongqing Chuanyi Seventeen Factory Co:, Ltd:, Shanghai Industrial Automation Instrument Research Institute Co:, Ltd:, Shanghai Chenzhu Instrument Co:, Ltd:, Endress Haus (China) Automation Co:, Ltd:, Nanyang Explosion-proof Electric Research Institute Co:, Ltd:, Hangzhou Automation Technology Research Institute Co:, Ltd:, Shanghai Enbang Automation Instrument Co:, Ltd:, Shanghai Fanyi Technology Electronics Co:, Ltd: Company, Hangzhou Chunjiang Instrument Co:, Ltd:, Qingdao Automation Instrument Co:, Ltd:, Shenyang Zhongkebo Micro Technology Co:, Ltd:, Shanghai Modulus Auto Dynamic System Co:, Ltd:, Jiangsu Huaxia Instrument Co:, Ltd:, Shanghai Lige Instrument Co:, Ltd:, Beijing Brady Instrument Co:, Ltd:, Shenzhen Shenzhen Wanxun Automatic Control Co:, Ltd:, Shandong Freed Measurement and Control System Co:, Ltd:, Shaanxi Chuangwei Technology Co:, Ltd:, Chongqing Wei'an Test Equipment Co:, Ltd: Manufacturing Co:, Ltd:, Dandong Tongbo Electric (Group) Co:, Ltd:, Nanyang Huaye Explosion-proof Instrument Co:, Ltd:, Xiamen Metrology Verification Test Institute, Xiamen Anton Electronics Co:, Ltd:, Baxter (Fujian) Intelligent Equipment Technology Co:, Ltd:, Guangdong Dongqi Electric Co:, Ltd:, Xi'an Ansen Intelligent Instrument Co:, Ltd:, Shanghai Gelin Automation Technology Co:, Ltd:, Zhongshan Dongfeng Town Burlington Electronic Appliance Factory, Shanghai Mingkong Sensing Technology Co:, Ltd: Technology Co:, Ltd:, Liaocheng Xinyuan Group Co:, Ltd:, Jiangsu Huahai Measurement and Control Technology Co:, Ltd:, Shandong Provincial Institute of Metrology, Rockwell Automation (China) Co:, Ltd:, Chongqing Materials Research Institute Co:, Ltd:, Siemens (China) Co:, Ltd:, Jiangsu Xinhui Measurement and Control Technology Co:, Ltd: The main drafters of this document: Mao Wenwen, Li Chuanyou, Zhang Weiqun, Han Hengchao, Jiang Yanfang, Zhang Yibin, Ren Junmin, Che Junlin, Liu Jin, Xu Changhong, Zhang Ying, Yang Yang, Huang Qiaoli, Liu Feng, Zhang Xinguo, Lu Jing, Cao Changhao, Min Xinyi, Zheng Yanzhe, Yang Guilin, Xiao Honglian, Chen Jianjun, Zhou Yi, Jia Juanmin, Bu Yan, Zhang Peng, Wu Shangying, Wu Dade, Yang Weishan, Zhao Hong, Wang Haohan, Sun Jianyu, Chen Wenxian, Gao Jidong, Zou Jing, Wei Huilin, Wu Hongwei, Ou Wenhui, Zhang Yiding, Sun Xiaowei, Chen Jiongyu, Xiao Guozhuan, Huang Zhezhao, Zhang Fei, Zhu Weining, Zhao Junhu, Liang Wanqing, Zhang Lixiang, Wang Zongmin, Lu Haidong, Zhang Shuai, Gao Jingmei, Zhang Dengyou, Gao Jiaxing, Zhang Yan, Wang Peng, Meng Junjie:

Introduction

Most of the current standards for industrial process measurement transmitters are relatively old and based on analog transmitters: same At the same time, many industrial process measurement transmitters are also developing, and they are very different from analog transmitters: they are usually digital, and in the computing department Part (mainly digital electronic circuits) and measurement part (mainly mechanical structure), both include more functions and newer interfaces: currently saved There are relevant standards for measuring digital transmitters in some processes, but there is still a lack of suitable test methods for some performance aspects: Existing test standards for industrial process measurement transmitters are scattered documents, so identifying and selecting Selecting all transmitter standards for measuring a specific process quantity (pressure, temperature, flow, level, etc:) is difficult, impractical and time consuming: In order to solve the above problems, so as to be better used by manufacturers and users, and to provide systematically for different types of industrial process measurement transmitters For a comprehensive test method, GB/T 42567 is proposed to consist of the following 5 parts: --- Part 1: General procedures for all types of transmitters: The purpose is to provide measurement and control systems for industrial processes and machinery All types of transmitters used provide the reference conditions and procedural framework for the experiments: --- Part 2: Specific procedures for pressure transmitters: Intended for use in measurement and control systems for industrial processes and machinery The pressure transmitter provides specific test reference conditions and procedures: --- Part 3: Specific procedures for temperature transmitters: Intended for use in measurement and control systems for industrial processes and machinery The temperature transmitter provides specific test reference conditions and procedures: --- Part 4: Specific procedures for level transmitters: Intended for use in measurement and control systems for industrial processes and machinery The level transmitter provides specific test reference conditions and procedures: --- Part 5: Specific procedures for flow transmitters: Intended for use in measurement and control systems for industrial processes and machinery The flow transmitter provides specific test reference conditions and procedures: In the process of formulating the GB/T 42567 series of standards, many test procedures in GB/T 18271 were adopted, and necessary Improve: Industrial process measurement transmitter test Reference Conditions and Procedures Part 3: Specific procedures for temperature transmitters

1 Scope

This document specifies specific test procedures for temperature transmitters used in measurement and control systems in industrial process and mechanical control systems: When the sensing element (RTD, TC, etc:) in the process measurement transmitter is separated from the temperature transmitter, this document only applies to parts of the temperature transmitter: When the sensing element is fully integrated with the temperature transmitter, this document applies to the entire transmitter: For general test procedures, please refer to IEC 62828-1, which applies to all types of industrial process measurement transmitters: NOTE: In industrial process applications, the term "industrial transmitter" or "process transmitter" is often also used to indicate a process measurement transmitter: This document does not apply to the sensing element itself (such as RTD, TC, etc:) and radiation thermometers:

2 Normative references

The 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 42567:1-2023 Reference conditions and procedures for testing of industrial process measurement transmitters Part 1: All types of transmitters General procedures for (IEC 62828-1:2017, IDT) IEC 62828-1 Reference conditions and procedures for testing transmitters for industrial process measurement Part 1: General procedures for all types of transmitters

3 Terms and Definitions

3:1 Definition of temperature The terms and definitions defined in IEC 62828-1 and the following apply to this document: ISO and IEC maintain terminology databases for standardization at: ---ISO : http://www:iso:org/obp: 3:1:1 Suitable automatic system for compensating thermocouples to EMF at 0°C: 3:1:2 A temperature scale adopted by the International Committee of Weights and Measures (CIPM) in 1989 for practical measurement purposes:
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