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Surge arresters – Part 8: Metal-oxide surge arresters with external series gap (EGLA) for overhead transmission and distribution lines of a.c. systems above 1 kV - Edition 2.0

contributor authorIEC - International Electrotechnical Commission
date accessioned2018-07-31T09:58:07Z
date available2018-07-31T09:58:07Z
date copyright2017.11.01
date issued2017
identifier otherHXIUCGAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;jsessiouthor:%22NAVY%20-%20YD%20-/handle/yse/264375
description abstractThis part of IEC 60099 covers metal-oxide surge arresters with external series gap (externally gapped line arresters (EGLA)) that are applied on overhead transmission and distribution lines, only to protect insulator assemblies from lightning-caused flashovers. This document defines surge arresters to protect the insulator assembly from lightning-caused over-voltages only. Therefore, and since metal-oxide resistors are not permanently connected to the line, the following items are not considered for this document: • switching impulse spark-over voltage; • residual voltage at steep current and switching current impulse; • thermal stability; • long-duration current impulse withstand duty; • power-frequency voltage versus time characteristics of an arrester; • disconnector test; • aging duties by power-frequency voltage. Considering the particular design concept and the special application on overhead transmission and distribution lines, some unique requirements and tests are introduced, such as the verification test for coordination between insulator withstand and EGLA protective level, the follow current interrupting test, mechanical load tests, etc. Designs with the EGLA\'s external series gap installed in parallel to an insulator are not covered by this document.
languageEnglish
titleIEC 60099-8num
titleSurge arresters – Part 8: Metal-oxide surge arresters with external series gap (EGLA) for overhead transmission and distribution lines of a.c. systems above 1 kV - Edition 2.0en
typestandard
page72
statusActive
treeIEC - International Electrotechnical Commission:;2017
contenttypefulltext


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