Components
4
Twig Components
8
Render Count
15
ms
Render Time
94.0
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Memory Usage
Components
| Name | Metadata | Render Count | Render Time |
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| ProductState |
"App\Twig\Components\ProductState"components/ProductState.html.twig |
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| ProductMostRecent |
"App\Twig\Components\ProductMostRecent"components/ProductMostRecent.html.twig |
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| ProductType |
"App\Twig\Components\ProductType"components/ProductType.html.twig |
1 | 0.19ms |
| ProductCard |
"App\Twig\Components\ProductCard"components/ProductCard.html.twig |
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Render calls
| ProductState | App\Twig\Components\ProductState | 66.0 MiB | 0.31 ms | |
|---|---|---|---|---|
| Input props | [ "product" => App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } "showFullLabel" => "true" ] |
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| Component | App\Twig\Components\ProductState {#93067 +product: App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } +appearance: "state-active" +labels: [ "Active" ] -stateAttributeCode: "state" -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1833 …} } |
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| ProductType | App\Twig\Components\ProductType | 66.0 MiB | 0.19 ms | |
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| Input props | [ "product" => App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } ] |
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| Component | App\Twig\Components\ProductType {#93247 +product: App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } +label: "Standard" -typeAttributeCode: "type" -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1833 …} } |
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| ProductMostRecent | App\Twig\Components\ProductMostRecent | 68.0 MiB | 0.75 ms | |
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| Input props | [ "product" => App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } ] |
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| Component | App\Twig\Components\ProductMostRecent {#93322 +product: App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } +label: "Most Recent" +icon: "check-xs" -mostRecentAttributeCode: "most_recent" -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1833 …} } |
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| Input props | [ "product" => App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } "showFullLabel" => "true" ] |
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| Component | App\Twig\Components\ProductState {#100279 +product: App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } +appearance: "state-active" +labels: [ "Active" ] -stateAttributeCode: "state" -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1833 …} } |
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| ProductMostRecent | App\Twig\Components\ProductMostRecent | 74.0 MiB | 0.71 ms | |
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| Input props | [ "product" => App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } ] |
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| Component | App\Twig\Components\ProductMostRecent {#100363 +product: App\Entity\Product\Product {#7311 #id: 12239 #code: "IEEE00007306" #attributes: Doctrine\ORM\PersistentCollection {#7701 …} #variants: Doctrine\ORM\PersistentCollection {#7744 …} #options: Doctrine\ORM\PersistentCollection {#7916 …} #associations: Doctrine\ORM\PersistentCollection {#7900 …} #createdAt: DateTime @1751040292 {#7274 : 2025-06-27 18:04:52.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754608621 {#7322 : 2025-08-08 01:17:01.0 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: 43965 #name: "IEEE 1528.7:2020" #slug: "ieee-1528-7-2020-ieee00007306-243892" #description: """ New IEEE Standard - Active.<br />\n In the wireless communication field, 5G and Internet of Things (IoT) solutions are the main emerging technologies and future wireless communication will rely on them. A methodology for classifying IoT devices based on radio frequency (RF) exposure characteristics is provided. Classification is based on frequency, bandwidth, radiated power, and typical installation configuration. Links between device class and available measurement/computational standards are provided. A framework criterion for exclusion classes for exposure assessment and criteria for addressing situations where exposure assessment is unavailable are included.<br />\n \t\t\t\t<br />\n This guide provides references to the appropriate methodology for classifying Internet of Things (IoT) devices based on radio frequency (RF) exposure characteristics. The use and operating modes for a wide variety of devices are considered by grouping them into several deployments and following an appropriate assessment route. Classification of devices is based on frequency, bandwidth, radiated power, and typical installation configuration. The methodology applies to both the short-range (from less than 1 m to 1 km) and long-range (greater than 1 km) technologies that operate from 0 Hz up to 300 GHz frequency range. The available standards and documents applicable for the compliance assessment of IoT technologies/solutions are identified in this guide. Links between device class and available measurement/computational standards are provided. Included within this document is guidance for exclusion classes, exposure assessments, and solutions to address situations where guidance is unavailable.<br />\n This guide does not specify measurement and computational methods to assess the exposure of IoT devices, even in the cases there are no appropriate assessment methods. Instead, this guide indicates gaps in available assessment methods, but is not intended to establish the assessment methodology """ #metaKeywords: null #metaDescription: null #shortDescription: "IEEE Guide for EMF Exposure Assessment of Internet of Things (IoT) Technologies and Devices" -notes: "Active" } ] #currentLocale: "en_US" #currentTranslation: null #fallbackLocale: "en_US" #variantSelectionMethod: "match" #productTaxons: Doctrine\ORM\PersistentCollection {#7534 …} #channels: Doctrine\ORM\PersistentCollection {#7628 …} #mainTaxon: Proxies\__CG__\App\Entity\Taxonomy\Taxon {#7309 …} #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 @1754517600 {#7317 : 2025-08-07 00:00:00.0 Europe/Paris (+02:00) } -lastUpdatedAt: DateTime @1636412400 {#7292 : 2021-11-09 00:00:00.0 Europe/Paris (+01:00) } -author: "" -publishedAt: DateTime @1610319600 {#7318 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -releasedAt: null -confirmedAt: null -canceledAt: DateTime @1610319600 {#7316 : 2021-01-11 00:00:00.0 Europe/Paris (+01:00) } -edition: null -coreDocument: "1528.7" -bookCollection: "" -pageCount: 90 -documents: Doctrine\ORM\PersistentCollection {#7465 …} -favorites: Doctrine\ORM\PersistentCollection {#7500 …} } +label: "Most Recent" +icon: "check-xs" -mostRecentAttributeCode: "most_recent" -localeContext: Sylius\Component\Locale\Context\CompositeLocaleContext {#1833 …} } |
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| ProductCard | App\Twig\Components\ProductCard | 94.0 MiB | 13.36 ms | |
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| Input props | [ "product" => App\Entity\Product\Product {#121765 #id: 10451 #code: "IEEE00004418" #attributes: Doctrine\ORM\PersistentCollection {#121770 …} #variants: Doctrine\ORM\PersistentCollection {#121768 …} #options: Doctrine\ORM\PersistentCollection {#121763 …} #associations: Doctrine\ORM\PersistentCollection {#121766 …} #createdAt: DateTime @1751039070 {#121759 : 2025-06-27 17:44:30.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754607611 {#121794 : 2025-08-08 01:00:11.0 Europe/Paris (+02:00) } #enabled: true #translations: Doctrine\ORM\PersistentCollection {#121781 …} #translationsCache: [ "en_US" => App\Entity\Product\ProductTranslation {#121887 #locale: "en_US" #translatable: App\Entity\Product\Product {#121765} #id: 36813 #name: "IEEE 1528:2013" #slug: "ieee-1528-2013-ieee00004418-242103" #description: """ Revision Standard - Superseded.<br />\n Protocols and test procedures are specified for the measurement of the peak spatial-average SAR induced inside a simplified model of the head of users of certain handheld radio transceivers. These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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| ProductState | App\Twig\Components\ProductState | 94.0 MiB | 0.25 ms | |
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| Input props | [ "product" => App\Entity\Product\Product {#121765 #id: 10451 #code: "IEEE00004418" #attributes: Doctrine\ORM\PersistentCollection {#121770 …} #variants: Doctrine\ORM\PersistentCollection {#121768 …} #options: Doctrine\ORM\PersistentCollection {#121763 …} #associations: Doctrine\ORM\PersistentCollection {#121766 …} #createdAt: DateTime @1751039070 {#121759 : 2025-06-27 17:44:30.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754607611 {#121794 : 2025-08-08 01:00:11.0 Europe/Paris (+02:00) } #enabled: true #translations: Doctrine\ORM\PersistentCollection {#121781 …} #translationsCache: [ "en_US" => App\Entity\Product\ProductTranslation {#121887 #locale: "en_US" #translatable: App\Entity\Product\Product {#121765} #id: 36813 #name: "IEEE 1528:2013" #slug: "ieee-1528-2013-ieee00004418-242103" #description: """ Revision Standard - Superseded.<br />\n Protocols and test procedures are specified for the measurement of the peak spatial-average SAR induced inside a simplified model of the head of users of certain handheld radio transceivers. These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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| Input props | [ "product" => App\Entity\Product\Product {#121765 #id: 10451 #code: "IEEE00004418" #attributes: Doctrine\ORM\PersistentCollection {#121770 …} #variants: Doctrine\ORM\PersistentCollection {#121768 …} #options: Doctrine\ORM\PersistentCollection {#121763 …} #associations: Doctrine\ORM\PersistentCollection {#121766 …} #createdAt: DateTime @1751039070 {#121759 : 2025-06-27 17:44:30.0 Europe/Paris (+02:00) } #updatedAt: DateTime @1754607611 {#121794 : 2025-08-08 01:00:11.0 Europe/Paris (+02:00) } #enabled: true #translations: Doctrine\ORM\PersistentCollection {#121781 …} #translationsCache: [ "en_US" => App\Entity\Product\ProductTranslation {#121887 #locale: "en_US" #translatable: App\Entity\Product\Product {#121765} #id: 36813 #name: "IEEE 1528:2013" #slug: "ieee-1528-2013-ieee00004418-242103" #description: """ Revision Standard - Superseded.<br />\n Protocols and test procedures are specified for the measurement of the peak spatial-average SAR induced inside a simplified model of the head of users of certain handheld radio transceivers. These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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These transceivers are intended to be used for personal wireless communications services, operate in the 300 MHz to 6 GHz frequency range, and are intended to be operated while held against the ear. The results obtained by following the protocols specified in this recommended practice represent a conservative estimate of the peak spatial-average SAR induced in the head of a significant majority of persons, subject to measurement and other uncertainties that are defined in this recommended practice. The results are representative of those expected during conditions of intended use of a handheld wireless device. It is not the intent of this recommended practice to provide a result representative of the absolute maximum SAR value possible under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head. The measurement of SAR induced in the external tissues of the head, e.g., the external ear (pinna), is not addressed in this document. This recommended practice also does not address the body SAR measurements typically required for wireless handsets. The following items are described in detail: measurement concepts, measurement techniques, instruments, calibration techniques, simulated-tissue (phantom) models, including homogeneous anatomically equivalent models of the human head and simple phantoms for validation of the SAR measurement system, and the limitations of these systems when used for measuring the spatial-peak mass-averaged SAR. Procedures for calibrating electric field (E-field) probes used for SAR measurements and assessing the SAR measurement<br />\n and system uncertainties are provided in the annexes. This recommended practice is intended primarily for use by engineers and other specialists who are familiar with electromagnetic (EM) theory and SAR measurement techniques; it does not recommend specific SAR limit values since these are found in other documents. The benefits to the users include standardized and accepted protocols, validation techniques, and means for estimating the overall measurement uncertainty in order to produce valid and repeatable data.<br />\n \t\t\t\t<br />\n To specify protocols for the measurement of the peak spatial-average SAR in a simplified model of the head of users of handheld radio transceivers used for personal wireless communications services and intended to be operated while held next to the ear. It applies to contemporary and future devices with the same operational characteristics as contemporary devices that operate in the 300 MHz to 6 GHz frequency range and provides a conservative estimate1 of the peak spatial-average SAR representative of that which would be expected to occur in the heads of a significant majority of persons during normal use2 of these devices, but which may not be the absolute maximum value that could possibly occur under every conceivable combination of head size, head shape, handset orientation, and spacing relative to the head.<br />\n The purpose of this recommended practice is to provide a protocol for the measurement of the peak spatial-average SAR in an anatomical model of the human head of users of wireless handsets intended to be operated while held next to the ear. It provides the users with standardized and accepted protocols, measurement and validation techniques, and the means for estimating the overall uncertainty in order to produce valid and repeatable data. Specific SAR limit values are not included since these are found in other documents, e.g., the latest published versions of IEEE Std C95.1™ and the International Commission on Non-Ionizing Radiation Protection (ICNIRP) Guidelines. 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