2015Unpublished venueRequires access

Penta-band PIFA for SAR reduction for mobile and WLAN applications using R-Card

M. Abdel-Mageed, Chiara Pelleti, R. Mittra

Open publisher page 5 citations

Abstract

Mobile handsets have seen major design improvement in recent years, but mitigating the hazardous effects of radiation still remains a challenging issue. In this study, a technique for reducing the Specified Absorption Rate (SAR) for mobile applications has been investigated for a PIFA designed to cover the GSM 850MHz, GSM 900 MHz, DCS 1800 MHz, PCS 1900 MHz, UMTS 2100 MHz, as well as most of the LTE bands.

About this research paper

What this paper is about

Mobile handsets have seen major design improvement in recent years, but mitigating the hazardous effects of radiation still remains a challenging issue. In this study, a technique for reducing the Specified Absorption Rate (SAR) for mobile applications has been investigated for a PIFA designed to cover the GSM 850MHz, GSM 900 MHz, DCS 1800 MHz, PCS 1900 MHz, UMTS 2100 MHz, as well as most of the LTE bands.

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OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Mobile handsets have seen major design improvement in recent years, but mitigating the hazardous effects of radiation still remains a challenging issue. In this study, a technique for reducing the Specified Absorption Rate (SAR) for mobile applications has been investigated for a PIFA designed to cover the GSM 850MHz, GSM 900 MHz, DCS 1800 MHz, PCS 1900 MHz, UMTS 2100 MHz, as well as most of the LTE bands.

Key concepts: Specific absorption rate, UMTS frequency bands, GSM, Reduction (mathematics), Computer science, Mobile telephony, Cover (algebra), Embedded system

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