Components

4 Twig Components
181 Render Count
460 ms Render Time
82.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductCard
"App\Twig\Components\ProductCard"
components/ProductCard.html.twig
60 455.92ms
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
60 14.12ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
60 52.40ms
PageBanner
"App\Twig\Components\PageBanner"
components/PageBanner.html.twig
1 4.09ms

Render calls

PageBanner App\Twig\Components\PageBanner 70.0 MiB 4.09 ms
Input props
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Component
App\Twig\Components\PageBanner {#94652
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ProductCard App\Twig\Components\ProductCard 72.0 MiB 11.79 ms
Input props
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          \t\t\t\t<br />\n
          This guide identifies the mechanisms and analytical approach for ac interference effects on conductive linear facilities due to the operation of co-located electric transmission lines. The common mechanisms for ac interference, including magnetic inductive coupling, capacitive coupling, and conductive voltage transfer through soil are discussed. Included are general guidelines and considerations for performing detailed ac interference analyses, with sections specific to the analysis of co-located pipeline and railroad facilities. This guide does not dictate specific compliance limits, direct when an ac interference analysis must be performed, or cover other issues that may need to be considered in joint-use corridors, such as effects due to lightning striking the line or dc corrosion on structures.<br />\n
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Attributes
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Component
App\Twig\Components\ProductCard {#95379
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          New IEEE Standard - Active.<br />\n
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          \t\t\t\t<br />\n
          This guide identifies the mechanisms and analytical approach for ac interference effects on conductive linear facilities due to the operation of co-located electric transmission lines. The common mechanisms for ac interference, including magnetic inductive coupling, capacitive coupling, and conductive voltage transfer through soil are discussed. Included are general guidelines and considerations for performing detailed ac interference analyses, with sections specific to the analysis of co-located pipeline and railroad facilities. This guide does not dictate specific compliance limits, direct when an ac interference analysis must be performed, or cover other issues that may need to be considered in joint-use corridors, such as effects due to lightning striking the line or dc corrosion on structures.<br />\n
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ProductState App\Twig\Components\ProductState 72.0 MiB 0.23 ms
Input props
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          New IEEE Standard - Active.<br />\n
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          \t\t\t\t<br />\n
          This guide identifies the mechanisms and analytical approach for ac interference effects on conductive linear facilities due to the operation of co-located electric transmission lines. The common mechanisms for ac interference, including magnetic inductive coupling, capacitive coupling, and conductive voltage transfer through soil are discussed. Included are general guidelines and considerations for performing detailed ac interference analyses, with sections specific to the analysis of co-located pipeline and railroad facilities. This guide does not dictate specific compliance limits, direct when an ac interference analysis must be performed, or cover other issues that may need to be considered in joint-use corridors, such as effects due to lightning striking the line or dc corrosion on structures.<br />\n
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Component
App\Twig\Components\ProductState {#97402
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          New IEEE Standard - Active.<br />\n
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          \t\t\t\t<br />\n
          This guide identifies the mechanisms and analytical approach for ac interference effects on conductive linear facilities due to the operation of co-located electric transmission lines. The common mechanisms for ac interference, including magnetic inductive coupling, capacitive coupling, and conductive voltage transfer through soil are discussed. Included are general guidelines and considerations for performing detailed ac interference analyses, with sections specific to the analysis of co-located pipeline and railroad facilities. This guide does not dictate specific compliance limits, direct when an ac interference analysis must be performed, or cover other issues that may need to be considered in joint-use corridors, such as effects due to lightning striking the line or dc corrosion on structures.<br />\n
          The electric utility industry is often encouraged or required to share corridors with other linear facilities, such as pipelines and railroads. Electric transmission lines can electromagnetically couple onto and energize adjacent facilities, resulting in electrical hazards to personnel and equipment. Guidance for analyzing these hazards is limited. The purpose of this guide is to provide general guidance on when a study may be required to analyze these hazards, what data is needed for a study, available industry compliance limits, general scenarios that may need to be analyzed, and sample mitigation approaches. This guide aids users, from both the electric utility and affected facility, in understanding the concerns and to develop approaches for studying and mitigating ac interference issues on their systems. While the guide focuses on co-located transmission lines and pipeline or railroad facilities, much of the information applies to similar linear facilities.
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ProductMostRecent App\Twig\Components\ProductMostRecent 72.0 MiB 0.69 ms
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          a) 833/958 through 8333/10 417 kVA, single-phase; 750/862 through 10 000/12 500 kVA, three-phase; high voltage, 2400 through 138 000 volts; low-voltage, 480 through 36 230 volts—without load tap changing; b) 12 000/16 000/20 000 through 60 000/80 000/100 000 kVA, three-phase; high voltage, 23 000 through 230 000 volts; low voltage, 4800 through 36 230 volts—without load tap changing;<br />\n
          c) 3750/4687 through 10 000/12 500 kVA, three-phase; high voltage, 6900 through 138 000; low voltage, 2400 through 36 230 volts—with load tap changing;<br />\n
          d) 12 000/16 000/20 000 through 60 000/80 000/100 000 kVA, three-phase; high voltage, 23 000 through 230 000 volts; low voltage, 4800 through 36 230 volts—with load tap changing.<br />\n
          It is not intended that this standard apply to dry-type, regulating, pad-mounted, secondary-network, furnace, rectifier, or mine transformers.<br />\n
          The purpose of this project is to update C57.12.10 and to remove any reference to distribution transformers which will be covered in a new stand alone standard, C57.12.36.
          """
        #metaKeywords: null
        #metaDescription: null
        #shortDescription: "American National Standard for Transformers-230 kV and Below 833 / 958 through 8333 / 10 417 kVA, Single-Phase, and 750 / 862 through 60 000 / 80 000 / 100 000 kVA, Three-Phase Without Load Tap Changing; and 3750 / 4687 through 60 000 / 80 000 / 100 000 kVA with Load Tap Changing-Safety Requirement"
        -notes: "Superseded"
      }
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Component
App\Twig\Components\ProductState {#99317
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    #code: "IEEE00003313"
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    #variants: Doctrine\ORM\PersistentCollection {#95787 …}
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    #translations: Doctrine\ORM\PersistentCollection {#95775 …}
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      "en_US" => App\Entity\Product\ProductTranslation {#99310
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        #translatable: App\Entity\Product\Product {#95768}
        #id: 34785
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        #description: """
          New IEEE Standard - Superseded.<br />\n
          <br />\n
          \t\t\t\t<br />\n
          This standard covers certain electrical, dimensional, and mechanical characteristics and takes into consideration certain safety features of 60-Hz, two-winding, liquid-immersed transformers rated as follows, and used for step-down or step-up purposes:<br />\n
          a) 833/958 through 8333/10 417 kVA, single-phase; 750/862 through 10 000/12 500 kVA, three-phase; high voltage, 2400 through 138 000 volts; low-voltage, 480 through 36 230 volts—without load tap changing; b) 12 000/16 000/20 000 through 60 000/80 000/100 000 kVA, three-phase; high voltage, 23 000 through 230 000 volts; low voltage, 4800 through 36 230 volts—without load tap changing;<br />\n
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          It is not intended that this standard apply to dry-type, regulating, pad-mounted, secondary-network, furnace, rectifier, or mine transformers.<br />\n
          The purpose of this project is to update C57.12.10 and to remove any reference to distribution transformers which will be covered in a new stand alone standard, C57.12.36.
          """
        #metaKeywords: null
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    #images: Doctrine\ORM\PersistentCollection {#95781 …}
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  -stateAttributeCode: "state"
  -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1831 …}
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ProductMostRecent App\Twig\Components\ProductMostRecent 74.0 MiB 0.95 ms
Input props
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          New IEEE Standard - Superseded.<br />\n
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          It is not intended that this standard apply to dry-type, regulating, pad-mounted, secondary-network, furnace, rectifier, or mine transformers.<br />\n
          The purpose of this project is to update C57.12.10 and to remove any reference to distribution transformers which will be covered in a new stand alone standard, C57.12.36.
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Component
App\Twig\Components\ProductMostRecent {#99394
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          New IEEE Standard - Superseded.<br />\n
          <br />\n
          \t\t\t\t<br />\n
          This standard covers certain electrical, dimensional, and mechanical characteristics and takes into consideration certain safety features of 60-Hz, two-winding, liquid-immersed transformers rated as follows, and used for step-down or step-up purposes:<br />\n
          a) 833/958 through 8333/10 417 kVA, single-phase; 750/862 through 10 000/12 500 kVA, three-phase; high voltage, 2400 through 138 000 volts; low-voltage, 480 through 36 230 volts—without load tap changing; b) 12 000/16 000/20 000 through 60 000/80 000/100 000 kVA, three-phase; high voltage, 23 000 through 230 000 volts; low voltage, 4800 through 36 230 volts—without load tap changing;<br />\n
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          It is not intended that this standard apply to dry-type, regulating, pad-mounted, secondary-network, furnace, rectifier, or mine transformers.<br />\n
          The purpose of this project is to update C57.12.10 and to remove any reference to distribution transformers which will be covered in a new stand alone standard, C57.12.36.
          """
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  +label: "Historical"
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}
ProductCard App\Twig\Components\ProductCard 74.0 MiB 7.81 ms
Input props
[
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    #id: 10233
    #code: "IEEE00003950"
    #attributes: Doctrine\ORM\PersistentCollection {#95816 …}
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      date: 2025-08-08 00:50:04.0 Europe/Paris (+02:00)
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    #enabled: true
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    #translationsCache: [
      "en_US" => App\Entity\Product\ProductTranslation {#99519
        #locale: "en_US"
        #translatable: App\Entity\Product\Product {#95799}
        #id: 35941
        #name: "IEEE C37.121:1989 (R2006)"
        #slug: "ieee-c37-121-1989-r2006-ieee00003950-241885"
        #description: """
          New IEEE Standard - Superseded.<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts. The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
          1.2<br />\n
          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          1.3<br />\n
          This standard does not cover the following installations:<br />\n
          1) Substations in which the transformer section includes load-tap-changing equipment<br />\n
          2) Substations in which the transformer section is described and defined as &quot;network,&quot; &quot;subway,&quot; &quot;vault,&quot; or &quot;underground&quot; in American National Standards C57.12.24-1989, C57.12.40-1982, and C57.12.57-19871<br />\n
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          5) Rectifier-type substations<br />\n
          6) Mobile substations<br />\n
          7) Installations in ships, watercraft, railway rolling stock, aircraft, or automotive vehicles other than mobile homes and recreational vehicles<br />\n
          8) Installations for mines<br />\n
          9) Installations of railways for generation, transformation, transmission, or distribution of power used exclusively for operation of rolling stock, or for installations used exclusively for signaling and railway communication purposes.<br />\n
          10) Installations of communication equipment that is under the exclusive control of communication utilities, located outdoors or in building spaces used exclusively for such installations.<br />\n
          11) Installations under the exclusive control of electric utilities for the purpose of communication, or metering; or for the generation, control, transformation, transmission, and distribution of electric energy located in buildings used exclusively by utilities for such purposes or located outdoors on property owned or leased by the utility or on public highways, streets, roads, etc; or outdoors by established rights on private property.<br />\n
          1.4<br />\n
          It is intended that the incoming, outgoing, transformer, and transition sections included in a unit substation shall meet the basic requirements of applicable industry standards for those sections. In addition, these sections shall meet any<br />\n
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          """
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  }
  "layout" => "vertical"
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  "showStatusBadges" => true
  "imageFilter" => "product_listing_thumbnail"
  "additionalClasses" => "h-100 border-0"
  "hasStretchedLink" => true
  "backgroundColor" => "secondary-lighter"
  "hoverType" => "border-black"
]
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Component
App\Twig\Components\ProductCard {#99499
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    #id: 10233
    #code: "IEEE00003950"
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    #enabled: true
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      "en_US" => App\Entity\Product\ProductTranslation {#99519
        #locale: "en_US"
        #translatable: App\Entity\Product\Product {#95799}
        #id: 35941
        #name: "IEEE C37.121:1989 (R2006)"
        #slug: "ieee-c37-121-1989-r2006-ieee00003950-241885"
        #description: """
          New IEEE Standard - Superseded.<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts. The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
          1.2<br />\n
          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          1.3<br />\n
          This standard does not cover the following installations:<br />\n
          1) Substations in which the transformer section includes load-tap-changing equipment<br />\n
          2) Substations in which the transformer section is described and defined as &quot;network,&quot; &quot;subway,&quot; &quot;vault,&quot; or &quot;underground&quot; in American National Standards C57.12.24-1989, C57.12.40-1982, and C57.12.57-19871<br />\n
          3) Substations in which the transformer section is described and defined as &quot;pad-mounted&quot; in American National Standards C57.12.22-1989, C57.12.26-1987, and C57.12.271<br />\n
          4) Substations with gas-insulated equipment, such as substations insulated with SF6, described in ANSI/IEEE C37.122-19891<br />\n
          5) Rectifier-type substations<br />\n
          6) Mobile substations<br />\n
          7) Installations in ships, watercraft, railway rolling stock, aircraft, or automotive vehicles other than mobile homes and recreational vehicles<br />\n
          8) Installations for mines<br />\n
          9) Installations of railways for generation, transformation, transmission, or distribution of power used exclusively for operation of rolling stock, or for installations used exclusively for signaling and railway communication purposes.<br />\n
          10) Installations of communication equipment that is under the exclusive control of communication utilities, located outdoors or in building spaces used exclusively for such installations.<br />\n
          11) Installations under the exclusive control of electric utilities for the purpose of communication, or metering; or for the generation, control, transformation, transmission, and distribution of electric energy located in buildings used exclusively by utilities for such purposes or located outdoors on property owned or leased by the utility or on public highways, streets, roads, etc; or outdoors by established rights on private property.<br />\n
          1.4<br />\n
          It is intended that the incoming, outgoing, transformer, and transition sections included in a unit substation shall meet the basic requirements of applicable industry standards for those sections. In addition, these sections shall meet any<br />\n
          additional requirements imposed by this standard when they are used as part of a unit substation.
          """
        #metaKeywords: null
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        #shortDescription: "American National Standard for Switchgear - Unit Substations - Requirements"
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    #images: Doctrine\ORM\PersistentCollection {#95812 …}
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    -lastUpdatedAt: DateTime @1578006000 {#95796
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    -author: ""
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    -documents: Doctrine\ORM\PersistentCollection {#95802 …}
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ProductState App\Twig\Components\ProductState 74.0 MiB 0.24 ms
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[
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      "en_US" => App\Entity\Product\ProductTranslation {#99519
        #locale: "en_US"
        #translatable: App\Entity\Product\Product {#95799}
        #id: 35941
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        #description: """
          New IEEE Standard - Superseded.<br />\n
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          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
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          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          1.3<br />\n
          This standard does not cover the following installations:<br />\n
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App\Twig\Components\ProductState {#99526
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          New IEEE Standard - Superseded.<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts. The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
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          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
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ProductMostRecent App\Twig\Components\ProductMostRecent 74.0 MiB 0.91 ms
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          New IEEE Standard - Superseded.<br />\n
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          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
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          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          1.3<br />\n
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          1) Substations in which the transformer section includes load-tap-changing equipment<br />\n
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          7) Installations in ships, watercraft, railway rolling stock, aircraft, or automotive vehicles other than mobile homes and recreational vehicles<br />\n
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App\Twig\Components\ProductMostRecent {#99603
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          New IEEE Standard - Superseded.<br />\n
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          \t\t\t\t<br />\n
          1.1<br />\n
          This standard covers the requirements for three-phase unit substations for step-down operation in the range of 112.5 kVA through 10 000 kVA at primary voltages of 601 volts through 38 kilovolts.<br />\n
          1.2<br />\n
          The standard is intended for use as the basis for the coordination of equipment by assisting in the selection of components. A variety of designs for unit substations are possible using various combinations of incoming sections, transformer sections, outgoing sections, and transition (throat) sections. Since the transformer section determines the kVA and voltage capabilities of a unit substation, the ratings of the various types of unit substations are described in terms of transformer capability.<br />\n
          1.3<br />\n
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          2) Substations in which the transformer section is described and defined as &quot;network,&quot; &quot;subway,&quot; &quot;vault,&quot; or &quot;underground&quot; in American National Standards C57.12.24-1989, C57.12.40-1982, and C57.12.57-19871<br />\n
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          5) Rectifier-type substations<br />\n
          6) Mobile substations<br />\n
          7) Installations in ships, watercraft, railway rolling stock, aircraft, or automotive vehicles other than mobile homes and recreational vehicles<br />\n
          8) Installations for mines<br />\n
          9) Installations of railways for generation, transformation, transmission, or distribution of power used exclusively for operation of rolling stock, or for installations used exclusively for signaling and railway communication purposes.<br />\n
          10) Installations of communication equipment that is under the exclusive control of communication utilities, located outdoors or in building spaces used exclusively for such installations.<br />\n
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          1.4<br />\n
          It is intended that the incoming, outgoing, transformer, and transition sections included in a unit substation shall meet the basic requirements of applicable industry standards for those sections. In addition, these sections shall meet any<br />\n
          additional requirements imposed by this standard when they are used as part of a unit substation.
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ProductMostRecent App\Twig\Components\ProductMostRecent 74.0 MiB 1.03 ms
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ProductCard App\Twig\Components\ProductCard 74.0 MiB 7.22 ms
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ProductState App\Twig\Components\ProductState 74.0 MiB 0.26 ms
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Component
App\Twig\Components\ProductState {#100822
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    #id: 10574
    #code: "IEEE00004629"
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          New IEEE Standard - Inactive-Withdrawn.<br />\n
          This standard is one of a series of complementary standards covering various types of high-voltage fuses and switches, arranged so that certain standards apply to all devices while other standards provide additional specifications for a particular device. For any device, ANSI/IEEE C37.40-1993, ANSI/IEEE C37.41-1994, plus the additional standard covering that device, constitute a complete standard for the device. In addition, ANSI/IEEE C37.48-1987 (R1992) is an application, operation, and maintenance guide for all the devices.<br />\n
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  -stateAttributeCode: "state"
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ProductMostRecent App\Twig\Components\ProductMostRecent 74.0 MiB 0.98 ms
Input props
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Attributes
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Component
App\Twig\Components\ProductMostRecent {#100899
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ProductCard App\Twig\Components\ProductCard 74.0 MiB 6.55 ms
Input props
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          Revision Standard - Inactive-Withdrawn.<br />\n
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Component
App\Twig\Components\ProductCard {#101004
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}
ProductState App\Twig\Components\ProductState 74.0 MiB 0.22 ms
Input props
[
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Component
App\Twig\Components\ProductState {#101031
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        #description: """
          Revision Standard - Inactive-Withdrawn.<br />\n
          This standard establishes specifications for high voltage (above 1000 volts) expulsion and current-limiting type power class fuses, and accessories. All of these devices are intended for use on alternating current systems.<br />\n
          \t\t\t\t
          """
        #metaKeywords: null
        #metaDescription: null
        #shortDescription: "Amerian National Standard for High Voltage Expulsion and Current-Limiting Type Power Class Fuses and Fuse Disconnecting Switches"
        -notes: "Inactive-Withdrawn"
      }
    ]
    #currentLocale: "en_US"
    #currentTranslation: null
    #fallbackLocale: "en_US"
    #variantSelectionMethod: "match"
    #productTaxons: Doctrine\ORM\PersistentCollection {#96050 …}
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    #reviews: Doctrine\ORM\PersistentCollection {#96052 …}
    #averageRating: 0.0
    #images: Doctrine\ORM\PersistentCollection {#96054 …}
    -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#95458 …}
    -subscriptionCollections: Doctrine\ORM\PersistentCollection {#96042 …}
    -apiLastModifiedAt: DateTime @1754517600 {#96037
      date: 2025-08-07 00:00:00.0 Europe/Paris (+02:00)
    }
    -lastUpdatedAt: DateTime @1578006000 {#96038
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    }
    -author: ""
    -publishedAt: DateTime @975711600 {#96039
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    -releasedAt: null
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    }
    -edition: null
    -coreDocument: "C37.46"
    -bookCollection: ""
    -pageCount: 29
    -documents: Doctrine\ORM\PersistentCollection {#96044 …}
    -favorites: Doctrine\ORM\PersistentCollection {#96046 …}
  }
  +appearance: "state-withdrawn"
  +labels: [
    "Withdrawn"
  ]
  -stateAttributeCode: "state"
  -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1831 …}
}
ProductMostRecent App\Twig\Components\ProductMostRecent 74.0 MiB 0.69 ms
Input props
[
  "product" => App\Entity\Product\Product {#96041
    #id: 10575
    #code: "IEEE00004630"
    #attributes: Doctrine\ORM\PersistentCollection {#96058 …}
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          Revision Standard - Inactive-Withdrawn.<br />\n
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        #metaKeywords: null
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    #averageRating: 0.0
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    -documents: Doctrine\ORM\PersistentCollection {#96044 …}
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  }
]
Attributes
[]
Component
App\Twig\Components\ProductMostRecent {#101108
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    #id: 10575
    #code: "IEEE00004630"
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    #variants: Doctrine\ORM\PersistentCollection {#96060 …}
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          Revision Standard - Inactive-Withdrawn.<br />\n
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    -documents: Doctrine\ORM\PersistentCollection {#96044 …}
    -favorites: Doctrine\ORM\PersistentCollection {#96046 …}
  }
  +label: "Most Recent"
  +icon: "check-xs"
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  -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1831 …}
}
ProductCard App\Twig\Components\ProductCard 76.0 MiB 6.44 ms
Input props
[
  "product" => App\Entity\Product\Product {#96071
    #id: 10579
    #code: "IEEE00004640"
    #attributes: Doctrine\ORM\PersistentCollection {#96088 …}
    #variants: Doctrine\ORM\PersistentCollection {#96090 …}
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    #enabled: true
    #translations: Doctrine\ORM\PersistentCollection {#96078 …}
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        #locale: "en_US"
        #translatable: App\Entity\Product\Product {#96071}
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          Revision Standard - Inactive-Withdrawn.<br />\n
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          This standard establishes specifications for high voltage (above 1000 volts) distribution class current limiting type fuses and associated accessories. All of these devices are intended for use on alternating current systems. These specifications apply to the following specific types of equipment:<br />\n
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    #averageRating: 0.0
    #images: Doctrine\ORM\PersistentCollection {#96084 …}
    -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#95458 …}
    -subscriptionCollections: Doctrine\ORM\PersistentCollection {#96072 …}
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    -documents: Doctrine\ORM\PersistentCollection {#96074 …}
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  }
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  "hasStretchedLink" => true
  "backgroundColor" => "secondary-lighter"
  "hoverType" => "border-black"
]
Attributes
[]
Component
App\Twig\Components\ProductCard {#101213
  +product: App\Entity\Product\Product {#96071
    #id: 10579
    #code: "IEEE00004640"
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          Revision Standard - Inactive-Withdrawn.<br />\n
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          This standard establishes specifications for high voltage (above 1000 volts) distribution class current limiting type fuses and associated accessories. All of these devices are intended for use on alternating current systems. These specifications apply to the following specific types of equipment:<br />\n
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    #images: Doctrine\ORM\PersistentCollection {#96084 …}
    -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#95458 …}
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    -bookCollection: ""
    -pageCount: 21
    -documents: Doctrine\ORM\PersistentCollection {#96074 …}
    -favorites: Doctrine\ORM\PersistentCollection {#96076 …}
  }
  +layout: "vertical"
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  +showStatusBadges: true
  +additionalClasses: "h-100 border-0"
  +linkLabel: ""
  +imageFilter: "product_listing_thumbnail"
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  +backgroundColor: "secondary-lighter"
  +hoverType: "border-black"
}
ProductState App\Twig\Components\ProductState 74.0 MiB 0.18 ms
Input props
[
  "product" => App\Entity\Product\Product {#96071
    #id: 10579
    #code: "IEEE00004640"
    #attributes: Doctrine\ORM\PersistentCollection {#96088 …}
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    #createdAt: DateTime @1751039151 {#96066
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    #enabled: true
    #translations: Doctrine\ORM\PersistentCollection {#96078 …}
    #translationsCache: [
      "en_US" => App\Entity\Product\ProductTranslation {#101233
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        #translatable: App\Entity\Product\Product {#96071}
        #id: 37325
        #name: "IEEE C37.47:2000"
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          Revision Standard - Inactive-Withdrawn.<br />\n
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          This standard establishes specifications for high voltage (above 1000 volts) distribution class current limiting type fuses and associated accessories. All of these devices are intended for use on alternating current systems. These specifications apply to the following specific types of equipment:<br />\n
          a) Distribution class current limiting type fuses and fuse units.<br />\n
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        #metaKeywords: null
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    #currentTranslation: null
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    #averageRating: 0.0
    #images: Doctrine\ORM\PersistentCollection {#96084 …}
    -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#95458 …}
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    -apiLastModifiedAt: DateTime @1754517600 {#96068
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  }
]
Attributes
[
  "showFullLabel" => false
]
Component
App\Twig\Components\ProductState {#101240
  +product: App\Entity\Product\Product {#96071
    #id: 10579
    #code: "IEEE00004640"
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    #variants: Doctrine\ORM\PersistentCollection {#96090 …}
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    }
    #enabled: true
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        #translatable: App\Entity\Product\Product {#96071}
        #id: 37325
        #name: "IEEE C37.47:2000"
        #slug: "ieee-c37-47-2000-ieee00004640-242231"
        #description: """
          Revision Standard - Inactive-Withdrawn.<br />\n
          This standard establishes specifications for high voltage (above 1000 volts) distribution class current limiting type fuses and associated accessories. All of these devices are intended for use on alternating current systems.<br />\n
          \t\t\t\t<br />\n
          This standard establishes specifications for high voltage (above 1000 volts) distribution class current limiting type fuses and associated accessories. All of these devices are intended for use on alternating current systems. These specifications apply to the following specific types of equipment:<br />\n
          a) Distribution class current limiting type fuses and fuse units.<br />\n
          b) Distribution class current-limiting fuse disconnecting switches.<br />\n
          c) Items (a) thru (b) used in fuse enclosure packages (FEP) (see types listed in Clause 1.1 below)<br />\n
          d) Fuse supports, fuse units, refill units and fuse mountings of the type used exclusively with distribution class current limiting type fuses, and fuse disconnecting switches.<br />\n
          e) Removable switch blades of the type used exclusively with distribution class current limiting type fuses, and fuse disconnecting switches.
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        #metaKeywords: null
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    #currentLocale: "en_US"
    #currentTranslation: null
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    #averageRating: 0.0
    #images: Doctrine\ORM\PersistentCollection {#96084 …}
    -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#95458 …}
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    -author: ""
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    -pageCount: 21
    -documents: Doctrine\ORM\PersistentCollection {#96074 …}
    -favorites: Doctrine\ORM\PersistentCollection {#96076 …}
  }
  +appearance: "state-withdrawn"
  +labels: [
    "Withdrawn"
  ]
  -stateAttributeCode: "state"
  -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1831 …}
}
ProductMostRecent App\Twig\Components\ProductMostRecent 76.0 MiB 0.71 ms
Input props
[
  "product" => App\Entity\Product\Product {#96071
    #id: 10579
    #code: "IEEE00004640"
    #attributes: Doctrine\ORM\PersistentCollection {#96088 …}
    #variants: Doctrine\ORM\PersistentCollection {#96090 …}
    #options: Doctrine\ORM\PersistentCollection {#96094 …}
    #associations: Doctrine\ORM\PersistentCollection {#96092 …}
    #createdAt: DateTime @1751039151 {#96066
      date: 2025-06-27 17:45:51.0 Europe/Paris (+02:00)
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ProductCard App\Twig\Components\ProductCard 76.0 MiB 7.21 ms
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ProductMostRecent App\Twig\Components\ProductMostRecent 78.0 MiB 0.67 ms
Input props
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ProductCard App\Twig\Components\ProductCard 78.0 MiB 6.26 ms
Input props
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Attributes
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Component
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ProductState App\Twig\Components\ProductState 78.0 MiB 0.19 ms
Input props
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Component
App\Twig\Components\ProductState {#105403
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ProductMostRecent App\Twig\Components\ProductMostRecent 78.0 MiB 0.80 ms
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App\Twig\Components\ProductMostRecent {#105480
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          In the dc electric railways, when a train regenerates power, usually the power has to be consumed within the dc network because the dc traction power systems are often not reversible. Several technologies improve receptivity: energy consumption, energy feedback, and energy storage. Solution selection depends on the application. The energy feedback systems (EFSs) convert energy to ac power system as system dc voltage rises. Engineers are helped by this guide to decide where these EFSs can provide the greatest benefits, determine which design solutions will have the maximum effectiveness, and evaluate the costs and benefits of developing new EFS projects.<br />\n
          \t\t\t\t<br />\n
          This guide specifies the requirements and testing methods for a stationary energy feedback system to be used in trackside installations for a dc electrified railway power supply network. This system can harvest electric energy from the dc power supply network and feed the energy back to the ac power supply network. This guide covers terms and definitions, rating values, performance requirements, and test requirements. Performance requirements include efficiency, temperature, lifetime, control and protection, electromagnetic compatibility (EMC), and mechanical characteristics. Test requirements will cover methods and criteria for type test, routine test, and commissioning test. However, the systems with the following functions are not included in this guide: - Resistive consumption of regenerated power - Energy storage system<br />\n
          The purpose of this guide is to achieve the following objectives:<br />\n
          - Definition of the energy feedback system:<br />\n
          - Terms and definitions for the energy feedback system<br />\n
          - Rated value<br />\n
          - Typical topologies<br />\n
          - Definition of the performance for the energy feedback system:<br />\n
          - General requirements such as rating, efficiency, temperature and lifetime<br />\n
          - Control and protection requirements, include inverter/converter/static var generator/active power filter control, short circuit protection, earth-fault protection, overload protection<br />\n
          - Electromagnetic compatibility (EMC)
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App\Twig\Components\ProductCard {#107612
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ProductState App\Twig\Components\ProductState 80.0 MiB 0.26 ms
Input props
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Component
App\Twig\Components\ProductState {#107646
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ProductMostRecent App\Twig\Components\ProductMostRecent 80.0 MiB 1.04 ms
Input props
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Component
App\Twig\Components\ProductMostRecent {#107720
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ProductCard App\Twig\Components\ProductCard 80.0 MiB 8.73 ms
Input props
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Attributes
[]
Component
App\Twig\Components\ProductCard {#107842
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ProductState App\Twig\Components\ProductState 82.0 MiB 0.20 ms
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ProductCard App\Twig\Components\ProductCard 82.0 MiB 8.86 ms
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