Components

4 Twig Components
13 Render Count
23 ms Render Time
414.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
5 1.59ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
5 5.07ms
ProductCard
"App\Twig\Components\ProductCard"
components/ProductCard.html.twig
2 18.80ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.32ms

Render calls

ProductState App\Twig\Components\ProductState 412.0 MiB 0.44 ms
Input props
[
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    #id: 11214
    #code: "IEEE00005748"
    #attributes: Doctrine\ORM\PersistentCollection {#7700 …}
    #variants: Doctrine\ORM\PersistentCollection {#7743 …}
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          New IEEE Standard - Active.<br />\n
          <br />\n
          \t\t\t\t<br />\n
          This part of IEC/IEEE 62704 establishes the concepts, techniques, validation procedures, uncertainties and limitations of the finite difference time domain technique (FDTD) when used for determining the peak spatial-average and whole-body average specific absorption rate (SAR) in a standardized human anatomical model exposed to the electromagnetic field<br />\n
          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
          and provides the test vehicle, human body models and the general benchmark data for those models. It defines antenna locations, operating configurations, exposure conditions, and<br />\n
          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
          ICNIRP (1998).<br />\n
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Attributes
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Component
App\Twig\Components\ProductState {#93066
  +product: App\Entity\Product\Product {#7310
    #id: 11214
    #code: "IEEE00005748"
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          New IEEE Standard - Active.<br />\n
          <br />\n
          \t\t\t\t<br />\n
          This part of IEC/IEEE 62704 establishes the concepts, techniques, validation procedures, uncertainties and limitations of the finite difference time domain technique (FDTD) when used for determining the peak spatial-average and whole-body average specific absorption rate (SAR) in a standardized human anatomical model exposed to the electromagnetic field<br />\n
          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
          and provides the test vehicle, human body models and the general benchmark data for those models. It defines antenna locations, operating configurations, exposure conditions, and<br />\n
          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
          ICNIRP (1998).<br />\n
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}
ProductType App\Twig\Components\ProductType 412.0 MiB 0.32 ms
Input props
[
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    #id: 11214
    #code: "IEEE00005748"
    #attributes: Doctrine\ORM\PersistentCollection {#7700 …}
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    #createdAt: DateTime @1751039552 {#7274
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    #enabled: true
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        #locale: "en_US"
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        #id: 39865
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          New IEEE Standard - Active.<br />\n
          <br />\n
          \t\t\t\t<br />\n
          This part of IEC/IEEE 62704 establishes the concepts, techniques, validation procedures, uncertainties and limitations of the finite difference time domain technique (FDTD) when used for determining the peak spatial-average and whole-body average specific absorption rate (SAR) in a standardized human anatomical model exposed to the electromagnetic field<br />\n
          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
          and provides the test vehicle, human body models and the general benchmark data for those models. It defines antenna locations, operating configurations, exposure conditions, and<br />\n
          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
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Attributes
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Component
App\Twig\Components\ProductType {#93246
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          New IEEE Standard - Active.<br />\n
          <br />\n
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          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
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          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
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}
ProductMostRecent App\Twig\Components\ProductMostRecent 412.0 MiB 1.01 ms
Input props
[
  "product" => App\Entity\Product\Product {#7310
    #id: 11214
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Component
App\Twig\Components\ProductMostRecent {#93321
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          <br />\n
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          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
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          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
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ProductState App\Twig\Components\ProductState 412.0 MiB 0.30 ms
Input props
[
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          New IEEE Standard - Active.<br />\n
          <br />\n
          \t\t\t\t<br />\n
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          emitted by vehicle mounted antennas in the frequency range from 30 MHz to 1 GHz, which covers typical high power mobile radio products and applications. This document specifies<br />\n
          and provides the test vehicle, human body models and the general benchmark data for those models. It defines antenna locations, operating configurations, exposure conditions, and<br />\n
          positions that are typical of persons exposed to the fields generated by vehicle mounted antennas. The extended frequency range up to 6 GHz will be considered in future revisions of this document. This document does not recommend specific peak spatial-average and whole-body average SAR limits since these are found in other documents, e.g. IEEE C95.1-2005,<br />\n
          ICNIRP (1998).<br />\n
          Document will not contain a purpose clause.
          """
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ProductMostRecent App\Twig\Components\ProductMostRecent 414.0 MiB 0.96 ms
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          The scope of this standard is to define the methodology for the application of the finite difference time domain (FDTD) technique when used for determining the peak spatial-average specific absorption rate (SAR) in the human body exposed to wireless communication devices with known uncertainty. It defines methods to validate the numerical model of the device under test (DUT) and to assess its uncertainty when used in SAR simulations. Moreover, it defines procedures to determine the peak spatial average SAR in a cubical volume and to validate the correct implementation of the FDTD simulation software. This document will not recommend specific SAR limits since these are found elsewhere, e.g., in the guidelines published by the International Commission on Non-Ionizing Radiation Protection (ICNIRP) or in IEEE C95.1.
          """
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        #shortDescription: "IEC/IEEE International Standard for Determining the Peak Spatial Average Specific Absorption Rate (SAR) in the Human Body from Wireless Communications Devices, 30 MHz - 6 GHz. Part 1: General Requirements for using the Finite Difference Time Domain (FDTD) Method for SAR Calculations"
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