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IEEE Guide for the Definition of Incident Power Density to Correlate Surface Temperature Elevation

IEEE Std 2889-2021

Organization:
IEEE - The Institute of Electrical and Electronics Engineers, Inc.
Year: 2021

Abstract: Guidance on the definition of the incident power density in correlation with surface temperature elevation in the frequency range from 6 GHz to 300 GHz is provided. Using numerical simulations or measurement, this guide is also applicable to compliance assessment of wireless products operating in millimeter wave frequencies.
URI: http://yse.yabesh.ir/std;query=autho47037D83FCDCAC4261598F1EFDEC014A/handle/yse/312811
Subject: electromagnetic safety
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    IEEE Guide for the Definition of Incident Power Density to Correlate Surface Temperature Elevation

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contributor authorIEEE - The Institute of Electrical and Electronics Engineers, Inc.
date accessioned2022-07-04T20:40:59Z
date available2022-07-04T20:40:59Z
date copyright17 Dec. 2021
date issued2021
identifier other9650810.pdf
identifier urihttp://yse.yabesh.ir/std;query=autho47037D83FCDCAC4261598F1EFDEC014A/handle/yse/312811
description abstractGuidance on the definition of the incident power density in correlation with surface temperature elevation in the frequency range from 6 GHz to 300 GHz is provided. Using numerical simulations or measurement, this guide is also applicable to compliance assessment of wireless products operating in millimeter wave frequencies.
languageEnglish
titleIEEE Guide for the Definition of Incident Power Density to Correlate Surface Temperature Elevationen
titleIEEE Std 2889-2021num
typeStandard
page152
treeIEEE - The Institute of Electrical and Electronics Engineers, Inc.:;2021
contenttypeFulltext
subject keywordselectromagnetic safety
subject keywordsdosimetry modeling
subject keywordsIEEE 2889
subject keywordsnumerical dosimetry
subject keywordsmillimeter wave exposure
subject keywordselectromagnetic dosimetry
subject keywordsstandardization
subject keywordsincident power density definition
subject keywordsthermal dosimetry
subject keywordstemperature rise
identifier DOI10.1109/IEEESTD.2021.9650810
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