GET https://dev.normadoc.fr/products/ieee-998-1996-r2002-ieee00001376-240628

Forms

  • sylius_add_to_cart
    • cartItem
    • _token

sylius_add_to_cart

Form type:
"Sylius\Bundle\CoreBundle\Form\Type\Order\AddToCartType"

Errors

This form has no errors.

Default Data

Property Value
Model Format same as normalized format
Normalized Format
Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113783
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            #id: 30913
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            #description: """
              New IEEE Standard - Superseded.<br />\n
              Design information for the methods historically and typically applied by substation designers to minimize direct lightning strokes to equipment and buswork within substations is provided. Two approaches, the classical empirical method and the electrogeometric model, are presented in detail. A third approach involving the use of active lightning terminals is also briefly reviewed.<br />\n
              \t\t\t\t<br />\n
              The scope of this guide is the identiÞcation and discussion of design procedures to provide direct stroke shielding of<br />\n
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              strokes were investigated during the preparation of this guide, and information is provided on two methods found to be<br />\n
              widely used:<br />\n
              a) The classical empirical method<br />\n
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              The intent of this guide is to provide design information for the methods historically and typically applied by<br />\n
              substation designers to minimize direct lightning strokes to equipment and buswork within substations. The general<br />\n
              nature of lightning is discussed in clause 2 and the problems associated with providing protection from direct strikes<br />\n
              are described in clause 3. The methods reviewed in this guide for designing a system of protection are explained in<br />\n
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              extensive bibliography for further study of the subject.
              """
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View Format same as normalized format

Submitted Data

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Passed Options

Option Passed Value Resolved Value
data
Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113783
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        #enabled: true
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            #locale: "en_US"
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            #id: 30913
            #name: "IEEE 998:1996 (R2002)"
            #slug: "ieee-998-1996-r2002-ieee00001376-240628"
            #description: """
              New IEEE Standard - Superseded.<br />\n
              Design information for the methods historically and typically applied by substation designers to minimize direct lightning strokes to equipment and buswork within substations is provided. Two approaches, the classical empirical method and the electrogeometric model, are presented in detail. A third approach involving the use of active lightning terminals is also briefly reviewed.<br />\n
              \t\t\t\t<br />\n
              The scope of this guide is the identiÞcation and discussion of design procedures to provide direct stroke shielding of<br />\n
              outdoor distribution, transmission, and generating plant substations. All known methods of shielding from direct<br />\n
              strokes were investigated during the preparation of this guide, and information is provided on two methods found to be<br />\n
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              a) The classical empirical method<br />\n
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              A third approach, which involves the use of active lightning terminals, is brießy reviewed in clause 6.<br />\n
              This guide does not purport to include all shielding methods that may have been developed. The guide also does not<br />\n
              address protection from surges entering a substation over power or communication lines or the personnel safety issues.<br />\n
              Users of this guide should thoroughly acquaint themselves with all factors that relate to the design of a particular<br />\n
              installation and use good engineering judgment in the application of the methods given here, particularly with respect<br />\n
              to the importance and value of the equipment being protected.<br />\n
              The intent of this guide is to provide design information for the methods historically and typically applied by<br />\n
              substation designers to minimize direct lightning strokes to equipment and buswork within substations. The general<br />\n
              nature of lightning is discussed in clause 2 and the problems associated with providing protection from direct strikes<br />\n
              are described in clause 3. The methods reviewed in this guide for designing a system of protection are explained in<br />\n
              clauses 4 and 5, and sample calculations are given in annex B to illustrate use of the methods. Clause 7 contains an<br />\n
              extensive bibliography for further study of the subject.
              """
            #metaKeywords: null
            #metaDescription: null
            #shortDescription: "IEEE Guide for Direct Lightning Stroke Shielding of Substations"
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          }
        ]
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        #fallbackLocale: "en_US"
        #variantSelectionMethod: "match"
        #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …}
        #channels: Doctrine\ORM\PersistentCollection {#7628 …}
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        #reviews: Doctrine\ORM\PersistentCollection {#7613 …}
        #averageRating: 0.0
        #images: Doctrine\ORM\PersistentCollection {#7645 …}
        -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#7324 …}
        -subscriptionCollections: Doctrine\ORM\PersistentCollection {#7321 …}
        -apiLastModifiedAt: DateTime @1754517600 {#7317
          date: 2025-08-07 00:00:00.0 Europe/Paris (+02:00)
        }
        -lastUpdatedAt: DateTime @1578006000 {#7292
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        -author: ""
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same as passed value
product
App\Entity\Product\Product {#7311
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  #associations: Doctrine\ORM\PersistentCollection {#7900 …}
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    date: 2025-08-08 00:38:24.0 Europe/Paris (+02:00)
  }
  #enabled: true
  #translations: Doctrine\ORM\PersistentCollection {#7922 …}
  #translationsCache: [
    "en_US" => App\Entity\Product\ProductTranslation {#7921
      #locale: "en_US"
      #translatable: App\Entity\Product\Product {#7311}
      #id: 30913
      #name: "IEEE 998:1996 (R2002)"
      #slug: "ieee-998-1996-r2002-ieee00001376-240628"
      #description: """
        New IEEE Standard - Superseded.<br />\n
        Design information for the methods historically and typically applied by substation designers to minimize direct lightning strokes to equipment and buswork within substations is provided. Two approaches, the classical empirical method and the electrogeometric model, are presented in detail. A third approach involving the use of active lightning terminals is also briefly reviewed.<br />\n
        \t\t\t\t<br />\n
        The scope of this guide is the identiÞcation and discussion of design procedures to provide direct stroke shielding of<br />\n
        outdoor distribution, transmission, and generating plant substations. All known methods of shielding from direct<br />\n
        strokes were investigated during the preparation of this guide, and information is provided on two methods found to be<br />\n
        widely used:<br />\n
        a) The classical empirical method<br />\n
        b) The electrogeometric model<br />\n
        A third approach, which involves the use of active lightning terminals, is brießy reviewed in clause 6.<br />\n
        This guide does not purport to include all shielding methods that may have been developed. The guide also does not<br />\n
        address protection from surges entering a substation over power or communication lines or the personnel safety issues.<br />\n
        Users of this guide should thoroughly acquaint themselves with all factors that relate to the design of a particular<br />\n
        installation and use good engineering judgment in the application of the methods given here, particularly with respect<br />\n
        to the importance and value of the equipment being protected.<br />\n
        The intent of this guide is to provide design information for the methods historically and typically applied by<br />\n
        substation designers to minimize direct lightning strokes to equipment and buswork within substations. The general<br />\n
        nature of lightning is discussed in clause 2 and the problems associated with providing protection from direct strikes<br />\n
        are described in clause 3. The methods reviewed in this guide for designing a system of protection are explained in<br />\n
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        """
      #metaKeywords: null
      #metaDescription: null
      #shortDescription: "IEEE Guide for Direct Lightning Stroke Shielding of Substations"
      -notes: "Superseded"
    }
  ]
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  #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …}
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  #reviews: Doctrine\ORM\PersistentCollection {#7613 …}
  #averageRating: 0.0
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  -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#7324 …}
  -subscriptionCollections: Doctrine\ORM\PersistentCollection {#7321 …}
  -apiLastModifiedAt: DateTime @1754517600 {#7317
    date: 2025-08-07 00:00:00.0 Europe/Paris (+02:00)
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  -lastUpdatedAt: DateTime @1578006000 {#7292
    date: 2020-01-03 00:00:00.0 Europe/Paris (+01:00)
  }
  -author: ""
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    date: 1995-11-30 00:00:00.0 Europe/Paris (+01:00)
  }
  -releasedAt: null
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  }
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  -documents: Doctrine\ORM\PersistentCollection {#7465 …}
  -favorites: Doctrine\ORM\PersistentCollection {#7500 …}
}
same as passed value

Resolved Options

Option Value
action
""
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false
allow_file_upload
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attr_translation_parameters
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auto_initialize
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block_name
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csrf_token_manager
Symfony\Component\Security\Csrf\CsrfTokenManager {#113803
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data
Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113783
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  -cartItem: App\Entity\Order\OrderItem {#113771
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    #units: Doctrine\Common\Collections\ArrayCollection {#113795 …}
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    #variant: App\Entity\Product\ProductVariant {#8100
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        #id: 8976
        #code: "IEEE00001376"
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        }
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        #translations: Doctrine\ORM\PersistentCollection {#7922 …}
        #translationsCache: [
          "en_US" => App\Entity\Product\ProductTranslation {#7921
            #locale: "en_US"
            #translatable: App\Entity\Product\Product {#7311}
            #id: 30913
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            #slug: "ieee-998-1996-r2002-ieee00001376-240628"
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              New IEEE Standard - Superseded.<br />\n
              Design information for the methods historically and typically applied by substation designers to minimize direct lightning strokes to equipment and buswork within substations is provided. Two approaches, the classical empirical method and the electrogeometric model, are presented in detail. A third approach involving the use of active lightning terminals is also briefly reviewed.<br />\n
              \t\t\t\t<br />\n
              The scope of this guide is the identiÞcation and discussion of design procedures to provide direct stroke shielding of<br />\n
              outdoor distribution, transmission, and generating plant substations. All known methods of shielding from direct<br />\n
              strokes were investigated during the preparation of this guide, and information is provided on two methods found to be<br />\n
              widely used:<br />\n
              a) The classical empirical method<br />\n
              b) The electrogeometric model<br />\n
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              address protection from surges entering a substation over power or communication lines or the personnel safety issues.<br />\n
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