GET https://dev.normadoc.fr/products/ieee-1410-2004-ieee00003358-241620

Components

4 Twig Components
14 Render Count
20 ms Render Time
126.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
6 3.26ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
6 6.56ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.58ms
ProductCard
"App\Twig\Components\ProductCard"
components/ProductCard.html.twig
1 10.73ms

Render calls

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          Revision Standard - Superseded.<br />\n
          Measures for improving the lightning protection performance of schemes applied to overhead power distribution lines are discussed in this guide.<br />\n
          \t\t\t\t<br />\n
          This guide will identify factors that contribute to lightning-caused faults on overhead distribution lines and suggest improvements to existing and new constructions. This guide is limited to the protection of distribution-line insulation for system voltages 69 kV and below. Equipment protection considerations are covered in IEEE Std C62.22-1991.<br />\n
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          Revision Standard - Superseded.<br />\n
          Measures for improving the lightning protection performance of schemes applied to overhead power distribution lines are discussed in this guide.<br />\n
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          This guide will identify factors that contribute to lightning-caused faults on overhead distribution lines and suggest improvements to existing and new constructions. This guide is limited to the protection of distribution-line insulation for system voltages 69 kV and below. Equipment protection considerations are covered in IEEE Std C62.22-1991.<br />\n
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          Revision Standard - Superseded.<br />\n
          Measures for improving the lightning protection performance of schemes applied to overhead power distribution lines are discussed in this guide.<br />\n
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          This guide will identify factors that contribute to lightning-caused faults on overhead distribution lines and suggest improvements to existing and new constructions. This guide is limited to the protection of distribution-line insulation for system voltages 69 kV and below. Equipment protection considerations are covered in IEEE Std C62.22-1991.<br />\n
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          Revision Standard - Superseded.<br />\n
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          This guide will identify factors that contribute to lightning-caused faults on overhead distribution lines and suggest improvements to existing and new constructions. This guide is limited to the protection of distribution-line insulation for system voltages 69 kV and below. Equipment protection considerations are covered in IEEE Std C62.22-1991.<br />\n
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          Revision Standard - Superseded.<br />\n
          Measures for improving the lightning protection performance of schemes applied to overhead power distribution lines are discussed in this guide.<br />\n
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          This guide will identify factors that contribute to lightning-caused faults on overhead distribution lines and suggest improvements to existing and new constructions. This guide is limited to the protection of distribution-line insulation for system voltages 69 kV and below. Equipment protection considerations are covered in IEEE Std C62.22-1991.<br />\n
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          Revision Standard - Superseded.<br />\n
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ProductState App\Twig\Components\ProductState 96.0 MiB 0.29 ms
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          This guide covers the application of metal-oxide surge arresters (see IEEE Std C62.11-1993 ) to safeguard electric power equipment against the hazards of abnormally high voltage surges of various origins. Such overvoltages may cause flashovers and serious damage to equipment and thereby jeopardize the supply of power to users. It is essential to prevent this by the proper coordination of surge-protective devices with the insulation strength of the protected equipment. This application guide does not cover the application of low-voltage surge protective devices below 1000 V ac. However, it references these devices when applied to the secondary of a transformer since they are part of the transformer protection. The subject is broad, with many ramifications, and it requires a volume of considerable bulk to explain all possible cases in detail. Clause of this guide covers the basic cases for stations used to supply and switch electric power transmission, subtransmission, or distribution feeders. Information is included in Clause on application of arresters for protection of overhead and underground distribution systems, all distribution transformers, and other electric distribution equipment. Step-by-step directions toward proper solutions for various applications are provided. In many cases, the prescribed steps are adequate. More complex and special situations requiring study by experienced engineers are described, but specific solutions may not be given. These procedures are based on theoretical studies, test results, and experience.<br />\n
          The purpose of this annex is to provide a relatively simple method for calculating maximum allowable separation distances between surge arresters and equipment to be protected.
          """
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        #shortDescription: "IEEE Guide for Application of Metal-Oxide Surge Arresters for Alternating-Current Systems"
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