
Revision of IEEE C37.41-2008 and supersedes IEEE C37.40-2003. Required procedures for performing design tests for high-voltage fuses, as well as for fuse disconnecting switches, are specified. These design tests, as appropriate to a particular device, include the following test types: dielectric, interrupting, radio-influence, temperature-rise, time-current, manual-operation, liquid-tightness, thermal-cycle, bolt-torque, withstand tests for motor circuit fuses, expulsion fuses using polymeric insulators, load-break, and short-time current.
- Sponsor Committee
- PE/SWG - Switchgear
Learn More - Status
- Active Standard
- PAR Approval
- 2012-12-05
- Superseding
- C37.41-2008
- Corrigendum
-
C37.41-2016/Cor 1-2017
- Board Approval
- 2016-09-22
- History
-
- ANSI Approved:
- 2018-03-23
- Published:
- 2016-12-09
Additional Resources
- Erratas
- C37.41-2016_erratum.pdf
Working Group Details
- Society
- IEEE Power and Energy Society
Learn More - Sponsor Committee
- PE/SWG - Switchgear
Learn More - Working Group
-
HVF-WG_C37.41 - HVF - IEEE Standard for Design Tests and Specifications for High-Voltage (> 1000 V) Fuses and Accessories
Learn More - IEEE Program Manager
- Jennifer Santulli
Contact - Working Group Chair
- Sterlin Cochran
C37.41-2016/Cor 1-2017
IEEE Standard Design Tests for High-Voltage (>1000 V) Fuses and Accessories Corrigenda 1
Corrigenda concerning required procedures for performing design tests for high-voltage fuses are specified. These design tests, are appropriate to expulsion fuses, and cover interrupting tests and fuses using polymeric insulators.
C37.41-2000
IEEE Standard Design Tests For High-Voltage Fuses, Distribution Enclosed Single-Pole Air Switches, Fuse Disconnecting Switches, and Accessories
Required procedures for performing design tests for high-voltage distribution-class and power-class fuses, as well as for fuse disconnecting switches and enclosed single-pole air switches are specified. These design tests, as appropriate to a particular device, include the following test types-dielectric, interrupting, load-break, making current, radio-influence, short-time current, temperature-rise, time-current, mechanical, and liquid-tightness.
C37.41-2008
IEEE Standard Design Tests for High-Voltage (>1000 V) Fuses, Fuse and Disconnecting Cutouts, Distribution Enclosed Single-Pole Air Switches, Fuse Disconnecting Switches, and Fuse Links and Accessories Used with These Devices
Required procedures for performing design tests for high-voltage distribution class and power class fuses, as well as for fuse-disconnecting switches and enclosed single-pole air switches, are specified. These design tests, as appropriate to a particular device, include the following test types: dielectric, interrupting, load-break, radio-influence, short-time current, temperature rise, time-current, manual operation, thermal-cycle, bolt torque, and liquid tightness.