GSO IEC TS 62271-319:2026

IEC TS 62271-319:2024
Gulf Standard   Current Edition · Approved on 17 September 2026

High-voltage switchgear and controlgear – Part 319: Alternating current circuit-breakers intended for controlled switching

GSO IEC TS 62271-319:2026 Files

English 75 Pages
Current Edition Reference Language

GSO IEC TS 62271-319:2026 Scope

IEC TS 62271-319:2024 is applicable to alternating current circuit-breakers with intentional non-simultaneous pole operation designed for indoor or outdoor installations and for operation at frequencies of 50 Hz and 60 Hz on systems having voltages above 1 000 V. This document provides additional ratings and type tests to be conducted for this type of circuit-breaker and is intended to be used in conjunction with IEC 62271‑100:2021. Intentional non-simultaneous pole operation can be implemented by mechanical or electrical means and both methods are within the scope of this document.

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 1899:2016
 
Gulf Standard
GCC Standard voltages and frequencies for AC transmission and distribution systems

Recently Published from Electrical Sector

GSO ISO 20816-21:2026
ISO 20816-21:2025 
Gulf Standard
Mechanical vibration — Measurement and evaluation of machine vibration — Part 21: Horizontal axis wind turbines
GSO CEN/TR 16999:2026
CEN/TR 16999:2019 
Gulf Standard
Solar energy systems for roofs - Requirements for structural connections to solar panels
GSO IEC 60884-2-7:2026
IEC 60884-2-7:2025 
Gulf Standard
Plugs and socket-outlets for household and similar purposes - Part 2-7: Particular requirements for cord extension sets
GSO IEC TR 63411:2026
IEC TR 63411:2025 
Gulf Standard
Grid connection of offshore wind via VSC-HVDC systems