GSO IEC 60331-2:2025
IEC 60331-2:2018
Gulf Standard
Current Edition
·
Approved on
22 April 2025
Tests for electric cables under fire conditions - Circuit integrity - Part 2: Test method for fire with shock at a temperature of at least 830 °C for cables of rated voltage up to and including 0,6/1,0 kV and with an overall diameter not exceeding 20 mm
GSO IEC 60331-2:2025 Files
English
25 Pages
Current Edition
Reference Language
Obtaining this standard through the store is currently unavailable.
You can acquire it directly from its source or from one of the member countries stores
GSO IEC 60331-2:2025 Scope
IEC 60331-2:2018 specifies the test method for cables which are required to maintain circuit integrity when subject to fire and mechanical shock under specified conditions.
This document is applicable to cables of rated voltage not exceeding 600 V/1 000 V, including those of rated voltage below 80 V, metallic data and telecom cables and optical fibre cables.
It is intended for use when testing cables of not greater than 20 mm overall diameter.
Cables of larger diameter are intended to be tested using the apparatus, procedure and requirements of IEC 60331-1.
This document includes details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to electric power and control cables with rated voltage up to and including 600 V/1000 V. Details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to metallic data and telecom cables and optical fibre cables are not given by IEC 60331-2.
Although the scope is restricted to cables with rated voltage up to and including 0,6/1,0 kV, the procedure can be used, with the agreement of the manufacturer and the purchaser, for cables with rated voltage up to and including 1,8/3 (3,3) kV, provided that suitable fuses are used.
Annex A provides the method of verification of the burner and control system used for the test.
Requirements are stated for an identification that may optionally be marked on the cable to signify compliance with this standard.
This second edition cancels and replaces the first edition published in 2009. It constitutes a technical revision.
The significant technical changes with respect to the previous edition are as follows:
– extension of the scope with metallic data and telecom cables and optical fibre cables, although details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to metallicdata and telecom cables and optical fibre cables are not given by IEC 60331-2;
– improved description of the test environment;
– mandatory use of mass flow meters/controllers as the means of controlling accurately the input flow rates of fuel and air to the burner;
– improved figure illustrating method of mounting of the sample regarding bending radius;
– improved description of the information to be included in the test report.
This document is applicable to cables of rated voltage not exceeding 600 V/1 000 V, including those of rated voltage below 80 V, metallic data and telecom cables and optical fibre cables.
It is intended for use when testing cables of not greater than 20 mm overall diameter.
Cables of larger diameter are intended to be tested using the apparatus, procedure and requirements of IEC 60331-1.
This document includes details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to electric power and control cables with rated voltage up to and including 600 V/1000 V. Details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to metallic data and telecom cables and optical fibre cables are not given by IEC 60331-2.
Although the scope is restricted to cables with rated voltage up to and including 0,6/1,0 kV, the procedure can be used, with the agreement of the manufacturer and the purchaser, for cables with rated voltage up to and including 1,8/3 (3,3) kV, provided that suitable fuses are used.
Annex A provides the method of verification of the burner and control system used for the test.
Requirements are stated for an identification that may optionally be marked on the cable to signify compliance with this standard.
This second edition cancels and replaces the first edition published in 2009. It constitutes a technical revision.
The significant technical changes with respect to the previous edition are as follows:
– extension of the scope with metallic data and telecom cables and optical fibre cables, although details for the specific point of failure, continuity checking arrangement, test sample, test procedure and test report relevant to metallicdata and telecom cables and optical fibre cables are not given by IEC 60331-2;
– improved description of the test environment;
– mandatory use of mass flow meters/controllers as the means of controlling accurately the input flow rates of fuel and air to the burner;
– improved figure illustrating method of mounting of the sample regarding bending radius;
– improved description of the information to be included in the test report.
Best Sellers From Electrical Sector
GSO 2530:2016
Gulf Standard
Energy Labelling And Minimum Energy Performance Requirements For Air-Conditioners

GSO 34:2007
Gulf Technical Regulation
LEAD-ACID STARTER BATTERIES USED FOR
MOTOR VEHICLES AND INTERNAL
COMBUSTION ENGINES

GSO 35:2007
Gulf Standard
Methods of test
for lead-acid starter batteries used for motor vehicles
and internal combustion engines

GSO 2693:2022
Gulf Standard
The GCC Terrestrial Radio Receiver Specifications for AM/FM/T-DAB+

Recently Published from Electrical Sector
GSO IEC 60287-2-1:2025
IEC 60287-2-1:2023
Gulf Standard
Electric cables - Calculation of the current rating - Part 2-1: Thermal resistance - Calculation of thermal resistance


GSO IEC TR 63396:2025
IEC TR 63396:2021
Gulf Standard
Noise measurement method on power capacitors


GSO IEC TS 61850-7-7:2025
IEC TS 61850-7-7:2018
Gulf Standard
Communication networks and systems for power utility automation - Part 7-7: Machine-processable format of IEC 61850-related data models for tools


GSO IEC 62271-101:2025
IEC 62271-101:2021
Gulf Standard
High-voltage switchgear and controlgear - Part 101: Synthetic testing

