Components

4 Twig Components
16 Render Count
13 ms Render Time
102.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
7 1.44ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
7 4.77ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.21ms
ProductCard
"App\Twig\Components\ProductCard"
components/ProductCard.html.twig
1 7.23ms

Render calls

ProductState App\Twig\Components\ProductState 66.0 MiB 0.31 ms
Input props
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Component
App\Twig\Components\ProductState {#93054
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          The scope of this guide is to document the procedures for monitoring, managing and cleaning contaminated electrical insulators (excluding nuclear, toxic and hazardous chemical contaminants), of all types, using varied equipment and techniques. Because of the great variety of conditions, practices, electrical system designs and contamination possibilities, this guide is offered to describe a number of approaches to monitoring, managing and cleaning of insulators on power systems. All factors must be considered to specific situations in deciding whether and how to use the information in this guide.<br />\n
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ProductType App\Twig\Components\ProductType 68.0 MiB 0.21 ms
Input props
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          The scope of this guide is to document the procedures for monitoring, managing and cleaning contaminated electrical insulators (excluding nuclear, toxic and hazardous chemical contaminants), of all types, using varied equipment and techniques. Because of the great variety of conditions, practices, electrical system designs and contamination possibilities, this guide is offered to describe a number of approaches to monitoring, managing and cleaning of insulators on power systems. All factors must be considered to specific situations in deciding whether and how to use the information in this guide.<br />\n
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App\Twig\Components\ProductType {#93234
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ProductMostRecent App\Twig\Components\ProductMostRecent 68.0 MiB 0.71 ms
Input props
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ProductState App\Twig\Components\ProductState 74.0 MiB 0.20 ms
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          b) Review substation grounding practices with special reference to safety, and develop safety criteria for design.<br />\n
          c) Provide a procedure for the design of practical grounding systems, based on these criteria.<br />\n
          d) Develop analytical methods as an aid in the understanding and solution of typical voltage gradient problems.<br />\n
          e) Provide benchmarks cases to compare the results of IEEE Std 80(TM) equations to commercially<br />\n
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          The concept and use of safety criteria are described in Clause 1 through Clause 8, practical aspects of designing a grounding system are covered in Clause 9 through Clause 13, and procedures and evaluation techniques for the grounding system assessment (in terms of safety criteria) are described in Clause 14 through Clause 20. Supporting material is organized in Annex A through Annex H.<br />\n
          This guide is primarily concerned with safe grounding practices for power frequencies in the range of 50 Hz to 60 Hz. The problems peculiar to dc substations and the effects of lightning surges are beyond the scope of this guide. A grounding system designed as described herein will, nonetheless, provide some degree of protection against steep wave front surges entering the substation and passing to earth through its ground.
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          b) Review substation grounding practices with special reference to safety, and develop safety criteria for design.<br />\n
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