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GB/T 46886-2025General technical requirements for intelligent inspection equipment (English PDF)

智能检测装备通用技术要求

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Issued by

SAMR; SAC

Level / Type

National · Recommended

Issue date

December 31, 2025

Implementation date

July 1, 2026

Scope

GB/T 46886-2025 is the English-translated version of 智能检测装备通用技术要求.

GB/T 46886-2025 is the Chinese national standard covering the automated inspection machine - the sensing, the decision that classifies a part as good or bad, the false accept and false reject rates that are the only figures that matter, the traceability of each judgement and the retraining when the product changes. First edition. It was issued on 31 December 2025 and has been in force since 1 July 2026, as a first edition. The document is under the responsibility of the China Machinery Industry Federation. This page is published from the official record of the 2025 edition; the clause text of a standard this recent is not yet in circulation, and the figures, limits and tables it contains are those of the document itself, delivered in full with the English translation.

Document preview — GB/T 46886-2025

National Standard of the People's Republic of China

ICS
25.040.40
Classification
N 17

Issued by: State Administration for Market Regulation; Standardization Administration of the PRC

Contents

  • 1.Scope1
  • 2 Normative References1
  • 3.Terms and Definitions1
  • 4.Abbreviations2
  • 5 System Architecture2
  • 6.Technical Requirements3
  • 6.1 Functional Requirements3
  • 6.2 Performance Requirements6
  • 6.3 Data and Model Requirements9
  • 7.Assessment Methods10
  • 7.1 Functional Evaluation Methods10
  • 7.2 Performance Evaluation Methods11
  • 18 References20

Foreword

This document complies with the provisions of GB/T 1.1-2020 "Standardization Work Guidelines Part

1.Structure and Drafting Rules of Standardization Documents". Drafting. Please note that some content in this document may involve patents. The issuing organization of this document assumes no responsibility for identifying patents. This document was proposed by the China Machinery Industry Federation. This document is under the jurisdiction of the National Technical Committee on Standardization of Industrial Process Measurement, Control and Automation (SAC/TC124). This document was drafted by: China National Machinery Industry Instrumentation Technology and Economic Research Institute and Beijing Machinery Industry Automation Research Institute Co., Ltd. Nuclear Power Operation Research (Shanghai) Co., Ltd., Guangdian Measurement & Testing Group Co., Ltd., Shanghai Shentian Industrial Co., Ltd., Hefei Jinxing Intelligent Control Technology Co., Ltd., Zhongke Huiyuan Vision Technology (Luoyang) Co., Ltd., Aerospace Science and Industry Defense Technology Research and Testing Center, Zhejiang Maimu Intelligent Technology Co., Ltd., Medtronic Medical Industrial Equipment Co., Ltd., Nanjing University of Science and Technology, the Fifth Research Institute of Electronics of the Ministry of Industry and Information Technology Xi'an Shuhe Information Technology Co., Ltd., Beijing Lingbang Intelligent Equipment Co., Ltd., Beijing Jingyi Group Co., Ltd., and Jike Development Technology Joint-stock companies, China Machinery Testing Equipment Co., Ltd., Zhengzhou Great Wall Science & Industry Trade Co., Ltd., Beijing Harbin Institute of Technology Huiyu Technology Co., Ltd. Aobo (Beijing) Intelligent Technology Co., Ltd., Shenzhen Simou Information Technology Co., Ltd., Bocheng Intelligent Equipment Co., Ltd., Shanghai Hang Digital Intelligence Technology Co., Ltd., Hunan University, Beijing Institute of Technology, CRRC Changchun Railway Vehicles Co., Ltd., and Shanghai Baian Sensing Technology Co., Ltd. Limited Company, Southwest University, China Instrument and Control Society, Shanghai Chaoqun Testing Technology Co., Ltd., Beijing Xinlian Railway Group Co., Ltd. Company, Beijing Aerospace Star Technology Co., Ltd., China Electronics Science & Technology Co., Ltd., High-Dimensional Optics (Guangzhou) Technology Co., Ltd., Beijing Beijing Instrument & Meter Research Institute Co., Ltd., China Resources Pharmaceutical Holdings Co., Ltd., Suzhou Silicon Vision Technology Co., Ltd., Shenzhen New Vision Intelligent Technology Co., Ltd. Limited Liability Company, Tianxin Instrument Group Co., Ltd., Hangzhou Wolai Intelligent Technology Co., Ltd., China Jiliang University, Inspur Electronic Information Industry Joint-stock company, Hexagon Manufacturing Intelligence Technology (Qingdao) Co., Ltd., Shenyang University of Technology, Guangdong Product Quality Supervision and Inspection Institute, Kunshan Aodro Automation Technology Co., Ltd., Chengdu Shuzhilian Technology Co., Ltd., FITE (Tianjin) Testing Technology Co., Ltd., Shanghai Zhongtai Packaging Technology Co., Ltd., Suzhou Tianlida Precision Technology Co., Ltd., Guangzhou Yihong Intelligent Equipment Co., Ltd., Chongqing Mengxun Electronics Technology Co., Ltd., Guangdong Institute of Metrology, Goertek Inc., Hebei Baoli Engineering Equipment Co., Ltd. Beijing Dyna Experimental Technology Co., Ltd., ZTE Corporation, Beijing Daheng Image Vision Co., Ltd., Harbin Institute of Technology Xue, Whale (Shanghai) Intelligent Technology Co., Ltd., Wuxi Jiuxiao Technology Co., Ltd., Beijing Chengyitong Control Technology Group Co., Ltd. Beijing Zhongjia Zhirui Intelligent Equipment Technology Co., Ltd., Dongfang Electric Group Science and Technology Research Institute Co., Ltd., and Koronos Medical Devices (Shanghai) Co., Ltd., China Three Gorges Corporation, Shenzhen Mingrui Ideal Technology Co., Ltd., and Huixin Quanzhi Industrial Internet Technology Co., Ltd. Technology (Qingdao) Co., Ltd., Dongguan Kangshida Automation Technology Co., Ltd., Nanjing Youbei Electric Technology Co., Ltd., Beijing Jiaodongli Technology Co., Ltd. Limited Company, Guangdong University of Technology and Teacher Education. The main drafters of this document are. Wang Chunxi, Wang Chengcheng, Zhao Yanling, Bai Hua, Gao Jie, Liu Bin, Liu Xin, Wang Yugui, Yi Xiaojian, Ming Zhimao, and Qi Yong. Yu Meimei, Wang Jian, Zhou Xuelian, Pan Congyuan, Zhang Xinyun, Quan Dingke, Li Dan, Pan Guangze, Wang Zhenlin, Wang Lianfu, Li Bo, Zhang Zhengtao, Hao Guanya Zhu Haibin, Lin Junhua, Tang Lihua, Huang Wencai, Liu Min, Chen Jing, Guo Bin, Hu Xiaofeng, Pan Yi, Hao Jian, Sun Zhihong, Li Wenyu, Yang Hongliang, Tan Ying, Wang Yingkuan, Liu Dongxu, Zhong Shaolong, Wei Hongxing, Zhu Kangjian, Hu Huanlei, Liu Shu, Zhang Chi, Song Shenggong, Zhang Haiqing, Zhu Junfeng, Chen Cong, Wang Chengying Ren Xia, Ji Yunjing, He Deyu, Cui Zhongwei, Luo Jian, Xu Songyan, Zhao Kelun, Shen Yuan, Feng Shanzhai, Li Jianlei, Wang Ran, Cui Xiaolong, Zhu Ruihui, Yu Bin, Wang Xiaolong, Chang Zhifang, Wang Li, Li Shao, Liu Cheng, Tong Xiling, Ma Rubo, Liu Yuping, Tao Chaojian, Zhang Xiaoling, Zhang Wei, Zhao Jianlin, Xi Xiaopeng, Fu Yan Cao Bin, Wang Gang, Pan Hongwen, Yu Tao, Wang Zhengjie, Huang Rui, Cheng Rui, Gao Jinrui, Zhao Qi, Tan Xueying, Cui Junning, Wu Tonghai, Luo Jiaxin, Xiao Shang Yang Tao, Liang Kai, Wang Chao, Zheng Shoufeng, Dong Jian, Qiao Jingyu, Wang Xinhua, Deng Junguang. General technical requirements for intelligent testing equipment

1 Scope

GB/T 46886-2025 is the Chinese national standard covering the automated inspection machine - the sensing, the decision that classifies a part as good or bad, the false accept and false reject rates that are the only figures that matter, the traceability of each judgement and the retraining when the product changes. First edition. It was issued on 31 December 2025 and has been in force since 1 July 2026, as a first edition. The document is under the responsibility of the China Machinery Industry Federation. This page is published from the official record of the 2025 edition; the clause text of a standard this recent is not yet in circulation, and the figures, limits and tables it contains are those of the document itself, delivered in full with the English translation.

This document specifies the system architecture and technical requirements for intelligent testing equipment, and describes the corresponding evaluation methods. This document is applicable to manufacturers, users, research institutes, and other relevant organizations conducting research, development, manufacturing, and testing evaluation of intelligent testing equipment.

2 Normative references

The contents of the following documents, through normative references within the text, constitute essential provisions of this document. Dated citations are not included. For references to documents, only the version corresponding to that date applies to this document; for undated references, the latest version (including all amendments) applies. This document.

GB/T 2423.1-2008 Environmental testing of electrical and electronic products - Part

3 Terms and Definitions

The following terms and definitions apply to this document.

3.1 Based on sensors and instruments, this research focuses on intelligent detection needs related to process implementation, quality control, equipment operation management, and safety and environmental monitoring. It possesses intelligent features such as integrated perception, autonomous analysis, and real-time feedback, which are used to achieve stable production operation, ensure product quality, and improve manufacturing efficiency. Online detection equipment for objectives such as efficiency and ensuring service safety.

3.2 repeatability To obtain independent test/measurement results, the same operator, using the same method and the same test or measurement facilities, must complete the test/measurement within a short timeframe. The precision of testing/measuring the same test/measurement object within a given interval.

......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — 24 pages — is available in the English PDF.

Referenced standards

Normative references

GB/T 2423.1-2008 · GB/T 2423.2-2008 · GB/T 2423.3-2016 · GB/T 2423.10-2019 · GB/T 5226.1-2019 · GB/T 17626.2 · GB/T 17626.3

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