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Miniature fuses - Part 8: Fuse resistors with particular overcurrent protection
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GB/T 9364.8-2023
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Basic data | Standard ID | GB/T 9364.8-2023 (GB/T9364.8-2023) | | Description (Translated English) | Miniature fuses - Part 8: Fuse resistors with particular overcurrent protection | | Sector / Industry | National Standard (Recommended) | | Classification of Chinese Standard | K31 | | Classification of International Standard | 29.120.50 | | Word Count Estimation | 22,272 | | Date of Issue | 2023-12-28 | | Date of Implementation | 2024-07-01 | | Issuing agency(ies) | State Administration for Market Regulation, China National Standardization Administration |
GB/T 9364.8-2023: Miniature fuses - Part 8: Fuse resistors with particular overcurrent protection---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 29:120:50
CCSK31
National Standards of People's Republic of China
Miniature fuses Part 8: With special overcurrent
Protective fuse resistor
(IEC 60127-8:2018, MOD)
Published on 2023-12-28
2024-07-01 Implementation
State Administration for Market Regulation
Released by the National Standardization Administration Committee
Table of contents
PrefaceⅠ
Introduction III
1 Scope 1
2 Normative references 1
3 Terms and Definitions 2
4 General requirements 3
5 Standard rating 3
6 signs 4
7 General instructions for testing 4
8 Dimensions and construction 5
9 Electrical Requirements 8
Reference 16
Figure 1 Perforated circuit test board with special overcurrent protection fuse resistor 12
Figure 2 Surface-mounted circuit test board with special overcurrent protection fuse resistor 13
Figure 3 Standard test seat 13
Figure 4 Fixture for surface mount fuse resistor with special overcurrent protection15
Figure 5 Test circuit 15 tested according to 9:3
Table 1 Creepage distances and clearances (absolute minimum values) 6
Table 2 Test voltage for dielectric strength10
Table 3 List of tests for each rated power consumption value 11
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:
This document is Part 8 of GB/T 9364 "Miniature Fuses": GB/T 9364 has released the following parts:
---Part 1: Definition of miniature fuses and general requirements for miniature fuse links;
---Part 2: Tubular fuse links;
---Part 3: Ultra-small fuse links;
---Part 4: Universal modular fuse (UMF) through-hole and surface mount;
---Part 5: Guidelines for quality assessment of small fuse links;
---Part 6: Fuse supports for small fuse links;
---Part 7: Small fuse links for special applications;
---Part 8: Fusing resistors with special overcurrent protection;
---Part 10: User Guide;
---Part 11: Fuse links for LED lamps:
This document is modified to adopt IEC 60127-8:2018 "Miniature fuses Part 8: Fusing resistors with special overcurrent protection":
The technical differences between this document and IEC 60127-8:2018 and their reasons are as follows:
--- Added "This document specifies the general requirements, standard ratings, markings, and tests for fuse resistors with special overcurrent protection
Technical requirements such as general description, dimensions and structural and electrical requirements" to comply with the requirements of GB/T 1:1 (see Chapter 1);
---Deleted the normative references to IEC 60115-4-101 and IEC 60115-4-102 to adapt to my country's technical conditions and improve
Operability (see Chapter 1, Chapter 2, Chapter 3);
---Replaced IEC 60127-1:2006 and its Amd1:2011 and Amd2: with the normatively cited GB/T 9364:1-2015
2015, in order to adapt to my country's technical conditions and improve operability (see Chapter 3, Chapter 4, Chapter 6, Chapter 7, Chapter 8 and Chapter 9
chapter);
---Replaced IEC 60115-1:2008 with normatively cited GB/T 5729 to adapt to my country's technical conditions and improve operability
sex (see Chapter 3);
---The test temperature requirements for operating characteristics at room temperature have been changed to adapt to my country's technical conditions and improve operability (see 3:9,
9:2:1);
---Replaced IEC 61249-2-7:2002 with normatively cited IEC 61249-2-7 to adapt to my country's technical conditions and improve reliability
Operability (see 7:3:2);
---Replaced IEC 60068-2-21:2006 with normatively cited GB/T 2423:60 to adapt to my country's technical conditions and improve reliability
Operability (see 8:3);
---Replaced IEC 60326-3:1991 with normatively cited GB/T 4588:3 and corrected the listing location of the file, changing the file from
References have been adjusted to Chapter 2 to adapt to my country's technical conditions and improve operability (see 8:4);
---When the dielectric strength test is changed, it is recommended to set the current to adapt to my country's technical conditions and improve operability (see 9:3:4):
Please note that some content in this document may be subject to patents: The publisher of this document assumes no responsibility for identifying patents:
This document is proposed by the China Electrical Equipment Industry Association:
This document is under the jurisdiction of the National Fuse Standardization Technical Committee (SAC/TC340):
This document was drafted by: Weikai Certification and Testing Co:, Ltd:, Holiland (Xiamen) Circuit Protection Technology Co:, Ltd:, Shanghai Songshan Electronics Co:, Ltd:
Co:, Ltd:, Nanjing Sutter Technology Development Co:, Ltd:, Foshan Gaoming Ouyi Electronics Manufacturing Co:, Ltd:, China Electrical Equipment Research Institute Co:, Ltd:
Co:, Ltd:, Xiamen Salt Electronics Co:, Ltd:, Foshan Intellectual Property Protection Promotion Association, Foshan Nanhai District Changcai Electrical Components Factory, Zhejiang You
Anchor Technology Co:, Ltd:, Shenzhen Liangsheng Electronics Co:, Ltd:, Dongguan Better Electronic Technology Co:, Ltd:, Yiwu Jianghao Plastic Technology Co:, Ltd:
Co:, Ltd:, Xi'an Xumai Intelligent Home Appliance Technology Co:, Ltd:, Zhangzhou Tailong Lighting Engineering Co:, Ltd:, Guangdong Xueying Electric Co:, Ltd:, Fujian
Xinglongsheng Construction Engineering Co:, Ltd:, Guangdong Limai Testing Technology Co:, Ltd:, Zhejiang Xiemei Technology Co:, Ltd:, Guangdong Angyixin Technology Co:, Ltd:
Company, Shaanxi Jinyoubang Technology Co:, Ltd:, Guangdong Tehua Technology Co:, Ltd:, Rhine Technology (Shanghai) Co:, Ltd:, Shandong Jiada Testing Co:, Ltd:
Company, Shaanxi Guohongfu Testing Technology Co:, Ltd:
The main drafters of this document: Zou Jianqiang, Cai Jun, Lin Wenyuan, Chen Mingqin, Ou Zhiwen, Nan Shirong, Sun Ting, Liang Changwen, Lin Lubo, Chen Zhen,
Li Zhiqiang, Nan Lejin, Li Junbing, Yan Wenhua, Xu Yueping, Chen Feng, Li Ying, Nie Hongxia, Li Yicong, Huang Qiongfang, Zheng Decan, Xiang Xianbing, Li Lanying,
Zhang Yuanlin, Shi Bing, Deng Weihong, Lin Hongsong:
Introduction
GB/T 9364 aims to standardize the technical requirements for small fuses: As a circuit safety protection component, small fuses are used to protect various
Electrical devices, electronic equipment and components therein, such as home appliances, IT, AV, digital products, etc:
GB/T 9364 is intended to consist of the following parts:
---Part 1: Definition of miniature fuses and general requirements for miniature fuse links: The purpose is to standardize the definition and general requirements of small fuses
Sum test requirements:
---Part 2: Tubular fuse links: The purpose is to standardize the standard specifications, size and structure, electrical performance and other technologies of tubular fuse links:
technical requirements:
---Part 3: Ultra-small fuse links: The purpose is to standardize the standard specifications, size and structure, and electrical performance of ultra-small fuse links:
and other technical requirements:
---Part 4: Universal modular fuse (UMF) through-hole and surface mount: The purpose is to standardize the general modular fuse-link
Standard specification sheet, size and structure, electrical performance and other technical requirements:
---Part 5: Guidelines for quality assessment of small fuse links: The purpose is to provide operable and quantifiable methods for quality assessment of small fuse links:
Guidelines:
---Part 6: Fuse supports for small fuse links: The purpose is to standardize the ratings,
Technical requirements such as protection against electric shock, electrical clearances and creepage distances, electrical requirements, mechanical requirements, thermal requirements and durability:
---Part 7: Small fuse links for special applications: The purpose is to standardize the standard specifications and construction of small fuse links for special applications:
Technical requirements such as structure and electrical performance:
---Part 8: Fusing resistors with special overcurrent protection: The purpose is to standardize fused circuit breakers with special overcurrent protection:
Technical requirements such as general requirements, standard ratings, size and structure, and electrical requirements for resistors:
---Part 9: Small fuses for special applications with partial breaking capacity: The purpose is to standardize special equipment with partial breaking capability:
Technical requirements such as general requirements, standard ratings, size and structure, and electrical requirements for small fuses for special applications:
---Part 10: User Guide: The purpose is to introduce the important properties of small fuses and fuse holders, and guide users in their selection and
use:
---Part 11: Fuse links for LED lamps: The purpose is to standardize the general requirements, standard ratings, and standards for fuse links for LED lights:
specifications, testing, dimensions and structure, electrical performance and other technical requirements:
This document can provide guidance for the production of fuse resistor products with special overcurrent protection and improve the technical performance and safety of the product:
Reliability, protects various electrical devices, electronic equipment and the components in them:
Miniature fuses Part 8: With special overcurrent
Protective fuse resistor
1 Scope
This document specifies the general requirements, standard ratings, markings, general instructions for testing, and dimensions of fuse resistors with special overcurrent protection:
technical requirements such as size and structural and electrical requirements:
This document applies to printed circuit and substrate systems used to protect electrical installations, electronic equipment and the like intended for indoor use:
Components, and the rated voltage does not exceed AC 500V/DC 500V fuse resistor with special overcurrent protection:
This document does not apply to electrical installations with special overcurrent protection intended for use under special conditions (e:g: corrosive or explosive atmospheres)
fuse resistor:
The purpose of this document is:
a) Establish uniform requirements for fuse resistors with special overcurrent protection functions in order to protect electrical appliances or appliances in the most appropriate way
parts;
b) Define the performance of fuse resistors with special overcurrent protection in order to provide guidance to manufacturers of electrical and electronic equipment and ensure their use
Replace with a special overcurrent protection fuse resistor of similar size and characteristics;
c) Establish a uniform test method for fuse resistors with special overcurrent protection to verify the values specified by the manufacturer (e:g: rated power
consumption, operating characteristics and rated breaking capacity values):
Manufacturers of fuse resistors with special overcurrent protection are responsible for ensuring that their products comply with the resistor-related standards GB/T 5729
Require:
This document adopts the requirements in GB/T 9364:1-2015:
NOTE: Fusing resistors with special overcurrent protection used in electrical or electronic installations are not expected to be replaceable by the end user:
2 Normative reference documents
The contents of the following documents constitute essential provisions of this document through normative references in the text: Among them, the dated quotations
For undated referenced documents, only the version corresponding to that date applies to this document; for undated referenced documents, the latest version (including all amendments) applies to
this document:
GB/T 2423:60 Environmental testing of electrical and electronic products Part 2: Test methods Test U: Lead-out and overall mounting parts strength
Degree (GB/T 2423:60-2008, IEC 60068-2-21:2006, IDT)
GB/T 4588:3 Design and use of printed boards (GB/T 4588:3-2002, IEC 60326-3:1991, IDT)
GB/T 5169:1-2015 Fire hazard test for electrical and electronic products Part 1: Fire test terminology (IEC 60695-4:2012,
IDT)
GB/T 5169:12-2013 Fire hazard test for electrical and electronic products Part 12: Basic test methods for glow wire/hot wire
Glow wire flammability index (GWFI) test method for materials (IEC 60695-2-12:2010, IDT)
GB/T 5169:13-2013 Fire hazard test for electrical and electronic products Part 13: Basic test methods for glow wire/hot wire
Glow wire ignition temperature (GWIT) test method for materials (IEC 60695-2-13:2010, IDT)
GB/T 5729 Fixed resistors for electronic equipment Part 1: General specifications (GB/T 5729-2003, IEC 60115-1:2001,
IDT)
GB/T 9364:1-2015 Small fuses Part 1: Small fuse definitions and general requirements for small fuse links
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