BH GSO IEC 60068-2-78:2016
IEC 60068-2-78:2012
Bahraini Standard
Current Edition
·
Approved on
08 February 2016
Environmental testing - Part 2-78: Tests - Test Cab: Damp heat, steady state
BH GSO IEC 60068-2-78:2016 Files
English
null Pages
Current Edition
Reference Language
Obtaining this standard through the store is currently unavailable. You can acquire it directly from its source.
BH GSO IEC 60068-2-78:2016 Scope
This part of IEC 60068 establishes a test method for determining the ability of components or equipment to withstand transportation, storage and use under conditions of high humidity. The object of this standard is to investigate the effect of high humidity at constant temperature without condensation on a specimen over a prescribed period.
It is applicable to small equipment or components as well as large equipment, and can be applied to both heat-dissipating and non-heat-dissipating specimens.
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
BH GSO 34:2015
GSO 34:2007
Bahraini 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
Recently Published from Electrical Sector
GSO IEC 63522-32:2026
IEC 63522-32:2025
Gulf Standard
Electrical relays - Tests and measurements - Part 32: Acoustic noise
GSO IEC TR 63411:2026
IEC TR 63411:2025
Gulf Standard
Grid connection of offshore wind via VSC-HVDC systems
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 ISO 20816-21:2026
ISO 20816-21:2025
Gulf Standard
Mechanical vibration — Measurement and evaluation of machine vibration — Part 21: Horizontal axis wind turbines