GSO IEC 62828-5:2024

IEC 62828-5:2020
Gulf Standard   Current Edition · Approved on 25 April 2024

Reference conditions and procedures for testing industrial and process measurement transmitters - Part 5: Specific procedures for flow transmitters

GSO IEC 62828-5:2024 Files

GSO IEC 62828-5:2024 Scope

IEC 62828-5:2020 establishes specific procedures for testing flow transmitters used in measuring and control systems for industrial process and for machinery control systems. For general test procedures, reference is to be made to IEC 62828-1:2017, applicable to all types of industrial and process measurement transmitters.
This document – together with IEC 62828-1:2017 – is the reference standard for testing every type of flow transmitter, not only for liquids but also for gases and for steam.
In this document, "industrial flow transmitters" consistently covers all types of flow transmitters used in measuring and control systems for industrial process and for machinery.

Best Sellers From Metrology Sector

GSO OIML R87:2021
OIML R87:2016 
Gulf Standard
Quantity of product in prepackages
GSO OIML R79:2021
OIML R79:2015 
Gulf Standard
Labeling requirements for prepackages
OS GSO OIML R76-1:2009
OIML R 76-1:2006 
Omani Standard
Non-automatic weighing instruments – Part 1: Metrological and technical requirements - Tests
GSO OIML R 76-1:2009
OIML R 76-1:2006 
Gulf Standard
Non-automatic weighing instruments – Part 1: Metrological and technical requirements - Tests

Recently Published from Metrology Sector

GSO IEC 62055-31:2024
IEC 62055-31:2022 
Gulf Standard
Electricity metering - Payment systems - Part 31: Particular requirements - Static payment meters for active energy (classes 0,5, 1 and 2)
GSO ISO 16399:2024
ISO 16399:2023 
Gulf Standard
Agricultural irrigation equipment — Meters for irrigation water
GSO ISO 80004-1:2024
ISO 80004-1:2023 
Gulf Standard
Nanotechnologies – Vocabulary — Part 1: Core vocabulary
GSO ISO 19749:2024
ISO 19749:2021 
Gulf Standard
Nanotechnologies — Measurements of particle size and shape distributions by scanning electron microscopy