Components

3 Twig Components
7 Render Count
3 ms Render Time
380.0 MiB Memory Usage

Components

Name Metadata Render Count Render Time
ProductState
"App\Twig\Components\ProductState"
components/ProductState.html.twig
3 0.68ms
ProductMostRecent
"App\Twig\Components\ProductMostRecent"
components/ProductMostRecent.html.twig
3 1.96ms
ProductType
"App\Twig\Components\ProductType"
components/ProductType.html.twig
1 0.21ms

Render calls

ProductState App\Twig\Components\ProductState 380.0 MiB 0.30 ms
Input props
[
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        #description: """
          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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Component
App\Twig\Components\ProductState {#93066
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          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
          """
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ProductType App\Twig\Components\ProductType 380.0 MiB 0.21 ms
Input props
[
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    #id: 11249
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        #id: 40005
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          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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Component
App\Twig\Components\ProductType {#93246
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          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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ProductMostRecent App\Twig\Components\ProductMostRecent 380.0 MiB 0.64 ms
Input props
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          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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App\Twig\Components\ProductMostRecent {#93321
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      "en_US" => App\Entity\Product\ProductTranslation {#7920
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        #translatable: App\Entity\Product\Product {#7310}
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          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
          \t\t\t\t<br />\n
          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
          """
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ProductMostRecent App\Twig\Components\ProductMostRecent 380.0 MiB 0.62 ms
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          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
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          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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          New IEEE Standard - Active.<br />\n
          Terms, test methods, test circuits, measurement procedures, and preferred result values for the surge mitigation parameters of isolating transformers used in networking devices and equipment are set in this standard. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data).<br />\n
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          This standard sets terms, test methods, test circuits, measurement procedures, and preferred result values for the surge parameters of isolating transformers used in networking devices and equipment. Three types of isolating transformer are considered: mains low frequency power, high frequency power (switching mode power supplies) and signal (e.g., Ethernet data). The surge parameters of the isolating transformer insulation barrier covered by this standard are as follows:<br />\n
          - Rated impulse voltage<br />\n
          - Input winding to output winding capacitance<br />\n
          - Insulation resistance<br />\n
          Additional parameters for signal isolating transformers are as follows:<br />\n
          - Core saturation voltage-time product<br />\n
          - Rated input winding rms current for a given temperature rise<br />\n
          This standard does not cover the transformer parameters required to help ensure appropriate operation on the service (e.g., signal transformer return loss).<br />\n
          The main purpose of this standard is to define a series of transformer impulse withstand voltage ratings that are higher than those of IEEE Std 802.3™ [B21]1 with the intent to improve transformer insulation performance in uncontrolled environments. In the interests of international standardization, the voltage values used are harmonized with the series defined in IEC 60664-1[B11] for low-voltage equipment insulation coordination. This IEEE standard is applicable to home networking installations, which are typically uncontrolled environments, where the surge voltage levels and the corresponding required transformer impulse withstand voltages can be higher than the LAN A controlled environment as defined by IEEE Std 802.3(TM)[B21].
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