GET https://dev.normadoc.fr/products/ieee-1562-2007-ieee00002300-241075

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 {#113737
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            #id: 32701
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            #description: """
              New IEEE Standard - Inactive-Reserved.<br />\n
              A method for properly sizing the PV array and battery for stand-alone PV systems where PV is the only charging source is recommended (in conjunction with IEEE Std 1013(TM)). Load calculations and determination of solar radiation in the sizing of the system need special attention. Additionally, the critical nature of the load in deciding an acceptable annual availability needs to be considered.<br />\n
              \t\t\t\t<br />\n
              This guide provides information to assist in sizing the array and battery of a stand-alone photovoltaic system. Systems considered in this guide consist of PV as the only power source and a battery for energy storage. These systems also commonly employ controls to protect the battery from being over- or undercharged, and may employ a power conversion subsystem (inverter or converter).<br />\n
              This guide is applicable to all stand-alone PV systems where PV is the only charging source. This guide does not include PV hybrid systems nor grid-connected systems. This guide covers lead-acid batteries only; nickel-cadmium and other battery types are not included. This guide does not include the sizing of the system controller, inverter, wiring, or other system components.<br />\n
              The purpose of this guide is to provide procedures to size the PV array and battery according to accepted methods, to improve the performance, cost-effectiveness, and lifetimes of stand-alone PV systems. The issues of array utilization, battery-charge efficiency, and system losses are also considered in terms of their effect on system sizing. These procedures are intended to assist designers, manufacturers, system integrators, users, and laboratories with information necessary for sizing, modeling, and evaluating the performance of stand-alone PV systems.
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            #metaKeywords: null
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        #reviews: Doctrine\ORM\PersistentCollection {#7613 …}
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View Format same as normalized format

Submitted Data

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Passed Options

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data
Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113737
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          "en_US" => App\Entity\Product\ProductTranslation {#7921
            #locale: "en_US"
            #translatable: App\Entity\Product\Product {#7311}
            #id: 32701
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              New IEEE Standard - Inactive-Reserved.<br />\n
              A method for properly sizing the PV array and battery for stand-alone PV systems where PV is the only charging source is recommended (in conjunction with IEEE Std 1013(TM)). Load calculations and determination of solar radiation in the sizing of the system need special attention. Additionally, the critical nature of the load in deciding an acceptable annual availability needs to be considered.<br />\n
              \t\t\t\t<br />\n
              This guide provides information to assist in sizing the array and battery of a stand-alone photovoltaic system. Systems considered in this guide consist of PV as the only power source and a battery for energy storage. These systems also commonly employ controls to protect the battery from being over- or undercharged, and may employ a power conversion subsystem (inverter or converter).<br />\n
              This guide is applicable to all stand-alone PV systems where PV is the only charging source. This guide does not include PV hybrid systems nor grid-connected systems. This guide covers lead-acid batteries only; nickel-cadmium and other battery types are not included. This guide does not include the sizing of the system controller, inverter, wiring, or other system components.<br />\n
              The purpose of this guide is to provide procedures to size the PV array and battery according to accepted methods, to improve the performance, cost-effectiveness, and lifetimes of stand-alone PV systems. The issues of array utilization, battery-charge efficiency, and system losses are also considered in terms of their effect on system sizing. These procedures are intended to assist designers, manufacturers, system integrators, users, and laboratories with information necessary for sizing, modeling, and evaluating the performance of stand-alone PV systems.
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            #metaKeywords: null
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        #fallbackLocale: "en_US"
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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 @1743289200 {#7317
          date: 2025-03-30 00:00:00.0 Europe/Paris (+01:00)
        }
        -lastUpdatedAt: DateTime @1630447200 {#7292
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        }
        -author: ""
        -publishedAt: DateTime @1210543200 {#7318
          date: 2008-05-12 00:00:00.0 Europe/Paris (+02:00)
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        -documents: Doctrine\ORM\PersistentCollection {#7465 …}
        -favorites: Doctrine\ORM\PersistentCollection {#7500 …}
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      #optionValues: Doctrine\ORM\PersistentCollection {#8320 …}
      #position: 0
      #createdAt: DateTime @1751041158 {#7967
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      }
      #updatedAt: DateTime @1756908201 {#8121
        date: 2025-09-03 16:03:21.0 Europe/Paris (+02:00)
      }
      #enabled: true
      #translations: Doctrine\ORM\PersistentCollection {#8264 …}
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same as passed value
product
App\Entity\Product\Product {#7311
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  #variants: Doctrine\ORM\PersistentCollection {#7744 …}
  #options: Doctrine\ORM\PersistentCollection {#7916
    #collection: Doctrine\Common\Collections\ArrayCollection {#7918 …}
    #initialized: true
    -snapshot: [ …4]
    -owner: App\Entity\Product\Product {#7311}
    -association: [ …21]
    -em: ContainerHAOxQ06\EntityManagerGhostEbeb667 {#775 …}
    -backRefFieldName: null
    -typeClass: Symfony\Component\VarDumper\Caster\CutStub {#262798 …}
    -isDirty: false
  }
  #associations: Doctrine\ORM\PersistentCollection {#7900 …}
  #createdAt: DateTime @1751038252 {#7274
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  }
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    date: 2025-07-31 15:44:04.0 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: 32701
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      #slug: "ieee-1562-2007-ieee00002300-241075"
      #description: """
        New IEEE Standard - Inactive-Reserved.<br />\n
        A method for properly sizing the PV array and battery for stand-alone PV systems where PV is the only charging source is recommended (in conjunction with IEEE Std 1013(TM)). Load calculations and determination of solar radiation in the sizing of the system need special attention. Additionally, the critical nature of the load in deciding an acceptable annual availability needs to be considered.<br />\n
        \t\t\t\t<br />\n
        This guide provides information to assist in sizing the array and battery of a stand-alone photovoltaic system. Systems considered in this guide consist of PV as the only power source and a battery for energy storage. These systems also commonly employ controls to protect the battery from being over- or undercharged, and may employ a power conversion subsystem (inverter or converter).<br />\n
        This guide is applicable to all stand-alone PV systems where PV is the only charging source. This guide does not include PV hybrid systems nor grid-connected systems. This guide covers lead-acid batteries only; nickel-cadmium and other battery types are not included. This guide does not include the sizing of the system controller, inverter, wiring, or other system components.<br />\n
        The purpose of this guide is to provide procedures to size the PV array and battery according to accepted methods, to improve the performance, cost-effectiveness, and lifetimes of stand-alone PV systems. The issues of array utilization, battery-charge efficiency, and system losses are also considered in terms of their effect on system sizing. These procedures are intended to assist designers, manufacturers, system integrators, users, and laboratories with information necessary for sizing, modeling, and evaluating the performance of stand-alone PV systems.
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      #metaKeywords: null
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  -supplier: Proxies\__CG__\App\Entity\Supplier\Supplier {#7324 …}
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  -apiLastModifiedAt: DateTime @1743289200 {#7317
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  }
  -lastUpdatedAt: DateTime @1630447200 {#7292
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  -author: ""
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    date: 2008-05-12 00:00:00.0 Europe/Paris (+02:00)
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  -documents: Doctrine\ORM\PersistentCollection {#7465 …}
  -favorites: Doctrine\ORM\PersistentCollection {#7500 …}
}
same as passed value

Resolved Options

Option Value
action
""
allow_extra_fields
false
allow_file_upload
false
attr
[]
attr_translation_parameters
[]
auto_initialize
true
block_name
null
block_prefix
null
by_reference
true
compound
true
constraints
[]
csrf_field_name
"_token"
csrf_message
"The CSRF token is invalid. Please try to resubmit the form."
csrf_protection
true
csrf_token_id
null
csrf_token_manager
Symfony\Component\Security\Csrf\CsrfTokenManager {#113757
  -generator: Symfony\Component\Security\Csrf\TokenGenerator\UriSafeTokenGenerator {#113758 …}
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  -namespace: Closure() {#113761 …}
}
data
Sylius\Bundle\OrderBundle\Controller\AddToCartCommand {#113737
  -cart: App\Entity\Order\Order {#13365 …}
  -cartItem: App\Entity\Order\OrderItem {#113725
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    #order: null
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    #units: Doctrine\Common\Collections\ArrayCollection {#113750 …}
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    #adjustments: Doctrine\Common\Collections\ArrayCollection {#113749 …}
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    #version: 1
    #variant: App\Entity\Product\ProductVariant {#8104
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        #id: 9423
        #code: "IEEE00002300"
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        #variants: Doctrine\ORM\PersistentCollection {#7744 …}
        #options: Doctrine\ORM\PersistentCollection {#7916
          #collection: Doctrine\Common\Collections\ArrayCollection {#7918 …}
          #initialized: true
          -snapshot: [ …4]
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          -em: ContainerHAOxQ06\EntityManagerGhostEbeb667 {#775 …}
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          -typeClass: Symfony\Component\VarDumper\Caster\CutStub {#262798 …}
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        #associations: Doctrine\ORM\PersistentCollection {#7900 …}
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        #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: 32701
            #name: "IEEE 1562:2007"
            #slug: "ieee-1562-2007-ieee00002300-241075"
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              New IEEE Standard - Inactive-Reserved.<br />\n
              A method for properly sizing the PV array and battery for stand-alone PV systems where PV is the only charging source is recommended (in conjunction with IEEE Std 1013(TM)). Load calculations and determination of solar radiation in the sizing of the system need special attention. Additionally, the critical nature of the load in deciding an acceptable annual availability needs to be considered.<br />\n
              \t\t\t\t<br />\n
              This guide provides information to assist in sizing the array and battery of a stand-alone photovoltaic system. Systems considered in this guide consist of PV as the only power source and a battery for energy storage. These systems also commonly employ controls to protect the battery from being over- or undercharged, and may employ a power conversion subsystem (inverter or converter).<br />\n
              This guide is applicable to all stand-alone PV systems where PV is the only charging source. This guide does not include PV hybrid systems nor grid-connected systems. This guide covers lead-acid batteries only; nickel-cadmium and other battery types are not included. This guide does not include the sizing of the system controller, inverter, wiring, or other system components.<br />\n
              The purpose of this guide is to provide procedures to size the PV array and battery according to accepted methods, to improve the performance, cost-effectiveness, and lifetimes of stand-alone PV systems. The issues of array utilization, battery-charge efficiency, and system losses are also considered in terms of their effect on system sizing. These procedures are intended to assist designers, manufacturers, system integrators, users, and laboratories with information necessary for sizing, modeling, and evaluating the performance of stand-alone PV systems.
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            #metaKeywords: null
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        #currentLocale: "en_US"
        #currentTranslation: null
        #fallbackLocale: "en_US"
        #variantSelectionMethod: "match"
        #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …}
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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 @1743289200 {#7317
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        }
        -lastUpdatedAt: DateTime @1630447200 {#7292
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        -releasedAt: null
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