GB/T 47158-2026
UpcomingShunt power capacitors of the self-healing type for AC systems having a rated voltage above 1 000 V
标称电压1000 V以上交流系统用自愈式并联电力电容器
Application Summary AI generated
This standard specifies performance requirements, testing methods, and safety guidelines for self-healing shunt power capacitors designed for AC electrical systems with nominal voltages exceeding 1,000 V. It is applied in high-voltage power transmission and distribution networks, industrial substations, and renewable energy installations to improve power factor correction and voltage stability. The standard ensures reliable operation and self-recovery from dielectric breakdown in capacitors used for reactive power compensation in utility and heavy industrial settings.
Related Standards
GB/T 5994-2003
Fixed capacitors for use in electronic equipment--Part 4-1:Blank detail specification--Auminium electrolytic capacitors with non-solid electrolyte--Assessment level E
GB/T 5993-2003
Fixed capacitors for use in electronic equipment--Part 4:Sectional specification--Aluminium electrolytic capacitors with solid and non-solid electrolyte
GB/T 7214-2003
Fixed capacitors for use in electronic equipment--Part 15-3:Blank detail specification--Fixed tantalum capacitors with solid electrolyte and porous anode--Assessment level E
GB/T 7213-2003
Fixed capacitors for use in electronic equipment--Part 15:Sectional specification--Fixed tantalum capacitors with non-solid or solid electrolyte
GB/T 3984.1-2004
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GB/T 12747.1-2004
Shunt power capacitors of the self-healing type for a.c. systems having a rated valtage up to and including 1000V--Part 1:General--Performance,testing and rating--Safety requirements--Guide for installation and operation
GB/T 12747.2-2004
Shunt power capacitors of the self-healing type for a.c.systems having a rated voltage up to and including 1000V--Part 2:Ageing test,self-healing test and destruction test
GB/T 3984.2-2004
Power capacitors for induction heating installations--Part 2:Ageing test,destruction test and requirements for disconnecting internal fuses
Transparency note: The application summary and key sentences on this page were automatically generated by AI from the standard's original text. This content has not been human-verified and should not be used for compliance or regulatory purposes. Always refer to the official standard document from the issuing authority.