Javascript must be enabled to continue!
Multiband Planar Inverted-F Antenna with Independent Operating Bands Control for Mobile Handset Applications
View through CrossRef
A new compact multiband PIFA (Planar Inverted-F Antenna) for mobile handset is proposed in this article. The proposed PIFA has a simple geometry with four slots integrated in the radiating patch and ground plane. The PIFA occupies a small volume of 51 × 14 × 7.2 mm3and is placed on the top portion of mobile phone. The optimized PIFA is worked in the 790 MHz band (737–831 MHz), the 1870 MHz band (1794–1977 MHz), the 2550 MHz band (2507–2615 MHz), and the 3400 MHz band (3341–3545 MHz), to cover LTE700, LTE800, DCS1800, PCS1900, LTE1800, LTE1900, LTE2500, and WIMAX3400 bands. Each of the four operating bands can be controlled independently by the variation of a single parameter of the proposed design, with a wide control range. An omnidirectional radiation pattern to each resonant frequency is obtained with a maximum gain of 2.15 dBi at 790 MHz, 3.99 dBi at 1870 MHz, 4.57 dBi at 2550 MHz, and 6.43 dBi at 3400 MHz. The proposed PIFA is studied in the free space and in the presence of other mobile phone components such as the battery, LCD (liquid crystal display), camera, microphone, speaker, buttons, and a plastic housing. The distribution of specific absorption rate for both European and American standards for each operating band and at various distances between the antenna and the human head is also studied.
Title: Multiband Planar Inverted-F Antenna with Independent Operating Bands Control for Mobile Handset Applications
Description:
A new compact multiband PIFA (Planar Inverted-F Antenna) for mobile handset is proposed in this article.
The proposed PIFA has a simple geometry with four slots integrated in the radiating patch and ground plane.
The PIFA occupies a small volume of 51 × 14 × 7.
2 mm3and is placed on the top portion of mobile phone.
The optimized PIFA is worked in the 790 MHz band (737–831 MHz), the 1870 MHz band (1794–1977 MHz), the 2550 MHz band (2507–2615 MHz), and the 3400 MHz band (3341–3545 MHz), to cover LTE700, LTE800, DCS1800, PCS1900, LTE1800, LTE1900, LTE2500, and WIMAX3400 bands.
Each of the four operating bands can be controlled independently by the variation of a single parameter of the proposed design, with a wide control range.
An omnidirectional radiation pattern to each resonant frequency is obtained with a maximum gain of 2.
15 dBi at 790 MHz, 3.
99 dBi at 1870 MHz, 4.
57 dBi at 2550 MHz, and 6.
43 dBi at 3400 MHz.
The proposed PIFA is studied in the free space and in the presence of other mobile phone components such as the battery, LCD (liquid crystal display), camera, microphone, speaker, buttons, and a plastic housing.
The distribution of specific absorption rate for both European and American standards for each operating band and at various distances between the antenna and the human head is also studied.
Related Results
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Using coil antennae as transmitter and receiver to develop a geosteering tool, one has to increase the spacing between the transmitter and receiver to detect formation boundaries f...
Television and
FM
Broadcasting Antennas
Television and
FM
Broadcasting Antennas
Abstract
Television broadcast services are located within four bands: the lower very‐high‐frequency (VHF) bands of 54–72 and 76–88 MHz, the upper VHF band of 174–216 MHz,...
Design and Analysis of Tri-bandsTriangular Shape Fractal Antenna for Wireless Applications
Design and Analysis of Tri-bandsTriangular Shape Fractal Antenna for Wireless Applications
Abstract
In this paper fractal antenna is proposed for wide band applications. Proposed Antenna is having resonance frequency of 5 GHz and it has triangular patch with 36mm...
ACM SIGCOMM computer communication review
ACM SIGCOMM computer communication review
At some point in the future, how far out we do not exactly know, wireless access to the Internet will outstrip all other forms of access bringing the freedom of mobility to the way...
A Miniaturized Enhanced Gain Wideband Metamaterial Loaded Planar Inverted F-L Implant Antenna
A Miniaturized Enhanced Gain Wideband Metamaterial Loaded Planar Inverted F-L Implant Antenna
Abstract
The antenna presented in this work is a planar inverted F-L (PIFLIA) implant antenna. The PIFLIA characteristics are improved by loading it with a metamaterial. A ...
Multiple superposed inverted landforms on Mars
Multiple superposed inverted landforms on Mars
<p><strong>Introduction:</strong> Inverted landforms are positive relief and well-preserved features; typically, their formation instigate...
Mobile phone usage for m‐learning: comparing heavy and light mobile phone users
Mobile phone usage for m‐learning: comparing heavy and light mobile phone users
PurposeMobile technologies offer the opportunity to embed learning in a natural environment. The objective of the study is to examine how the usage of mobile phones for m‐learning ...
A Compact-Size Multiple-Band Planar Inverted L-C Implantable Antenna Used for Biomedical Applications
A Compact-Size Multiple-Band Planar Inverted L-C Implantable Antenna Used for Biomedical Applications
In this paper, a compact-size multiple-band planar inverted L-C implantable antenna is proposed. The compact antenna has a size of 20 mm × 12 mm × 2.2 mm and consists of planar inv...

