Components

3 Twig Components
11 Render Count
7 ms Render Time
168.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
5 1.54ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
5 5.01ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.34ms

Render calls

ProductState App\Twig\Components\ProductState 168.0 MiB 0.45 ms
Input props
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          Revision Standard - Active.<br />\n
          This standard applies to low-voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
          \t\t\t\t<br />\n
          This standard applies to low voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
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Component
App\Twig\Components\ProductState {#95109
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          \t\t\t\t<br />\n
          This standard applies to low voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
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          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
          Due to the voltage and energy levels employed in the majority of tests contained herein, all measurements should be considered hazardous and appropriate caution should be taken in their performance.
          """
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ProductType App\Twig\Components\ProductType 168.0 MiB 0.34 ms
Input props
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          \t\t\t\t<br />\n
          This standard applies to low voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
          The tests in this standard are intended as design tests as defined in the IEEE Standards Dictionary Online and provide a means of comparison among various gas discharge tube surge-protective components.<br />\n
          Gas discharge tubes are used to provide over-voltage protection in electrical circuits. When the breakdown (sparkover) voltage of the gas discharge tube is exceeded, the normal high-impedance state of the tube changes to a low-impedance state to allow the gas discharge tube to conduct the surge discharge current. After the tube conducts the surge discharge current, it interrupts the flow of power follow current and returns to its high impedance state.<br />\n
          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
          Due to the voltage and energy levels employed in the majority of tests contained herein, all measurements should be considered hazardous and appropriate caution should be taken in their performance.
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Component
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          This standard applies to low-voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
          \t\t\t\t<br />\n
          This standard applies to low voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
          The tests in this standard are intended as design tests as defined in the IEEE Standards Dictionary Online and provide a means of comparison among various gas discharge tube surge-protective components.<br />\n
          Gas discharge tubes are used to provide over-voltage protection in electrical circuits. When the breakdown (sparkover) voltage of the gas discharge tube is exceeded, the normal high-impedance state of the tube changes to a low-impedance state to allow the gas discharge tube to conduct the surge discharge current. After the tube conducts the surge discharge current, it interrupts the flow of power follow current and returns to its high impedance state.<br />\n
          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
          Due to the voltage and energy levels employed in the majority of tests contained herein, all measurements should be considered hazardous and appropriate caution should be taken in their performance.
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ProductMostRecent App\Twig\Components\ProductMostRecent 168.0 MiB 1.08 ms
Input props
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          \t\t\t\t<br />\n
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          The tests in this standard are intended as design tests as defined in the IEEE Standards Dictionary Online and provide a means of comparison among various gas discharge tube surge-protective components.<br />\n
          Gas discharge tubes are used to provide over-voltage protection in electrical circuits. When the breakdown (sparkover) voltage of the gas discharge tube is exceeded, the normal high-impedance state of the tube changes to a low-impedance state to allow the gas discharge tube to conduct the surge discharge current. After the tube conducts the surge discharge current, it interrupts the flow of power follow current and returns to its high impedance state.<br />\n
          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
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          The tests in this standard are intended as design tests as defined in the IEEE Standards Dictionary Online and provide a means of comparison among various gas discharge tube surge-protective components.<br />\n
          Gas discharge tubes are used to provide over-voltage protection in electrical circuits. When the breakdown (sparkover) voltage of the gas discharge tube is exceeded, the normal high-impedance state of the tube changes to a low-impedance state to allow the gas discharge tube to conduct the surge discharge current. After the tube conducts the surge discharge current, it interrupts the flow of power follow current and returns to its high impedance state.<br />\n
          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
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ProductState App\Twig\Components\ProductState 168.0 MiB 0.31 ms
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ProductMostRecent App\Twig\Components\ProductMostRecent 168.0 MiB 1.07 ms
Input props
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App\Twig\Components\ProductMostRecent {#102491
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          Revision Standard - Superseded.<br />\n
          This standard applies to gas-tube surge-protective devices for application on systems with voltages, 1000 V rms or 1200 V dc.<br />\n
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          This standard applies to gas-tube surge-protective device components for application on systems with voltages less than or equal to 1000 V rms or 1200 V dc. These protective devices are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from direct current (dc) to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics of gas-tube surge-protective devices.<br />\n
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}
ProductState App\Twig\Components\ProductState 168.0 MiB 0.27 ms
Input props
[
  "product" => App\Entity\Product\Product {#7519
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    #attributes: Doctrine\ORM\PersistentCollection {#8208 …}
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    #createdAt: DateTime @1751040380 {#7536
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          Revision Standard - Active.<br />\n
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          This standard applies to low voltage gas discharge tube (GDT ) surge-protective components for application on systems with voltages less than or equal to 1000 V rms or 1500 V dc. These protective components are designed to limit voltage surges on balanced or unbalanced communication circuits and on power circuits operating from dc to 420 Hz. This standard contains a series of standard test criteria for determining the electrical characteristics and ratings of gas discharge tube surge-protective components.<br />\n
          The tests in this standard are intended as design tests as defined in the IEEE Standards Dictionary Online and provide a means of comparison among various gas discharge tube surge-protective components.<br />\n
          Gas discharge tubes are used to provide over-voltage protection in electrical circuits. When the breakdown (sparkover) voltage of the gas discharge tube is exceeded, the normal high-impedance state of the tube changes to a low-impedance state to allow the gas discharge tube to conduct the surge discharge current. After the tube conducts the surge discharge current, it interrupts the flow of power follow current and returns to its high impedance state.<br />\n
          This standard's test criteria and definitions provide a common engineering language that is beneficial to the user and manufacturer of gas discharge tube surge-protective components.<br />\n
          Due to the voltage and energy levels employed in the majority of tests contained herein, all measurements should be considered hazardous and appropriate caution should be taken in their performance.
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        #metaKeywords: null
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Attributes
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Component
App\Twig\Components\ProductState {#109114
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