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International Journal of Innovation and Applied Studies
ISSN: 2028-9324     CODEN: IJIABO     OCLC Number: 828807274     ZDB-ID: 2703985-7
 
 
Tuesday 03 December 2024

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Design of CPW-fed Printed Rectangular Monopole Antenna for Wideband Dual-Frequency Applications


Volume 3, Issue 3, July 2013, Pages 758–764

 Design of CPW-fed Printed Rectangular Monopole Antenna for Wideband  Dual-Frequency Applications

Anshul Agarwal1, P. K. Singhal2, Shailendra Singh Ojha3, and Akhilesh Kumar Gupta4

1 Department of Electronics, Madhav Institute of Technology and Science, Gwalior, India
2 Department of Electronics, Madhav Institute of Technology and Science, Gwalior, India
3 Department of Electronics, Madhav Institute of Technology and Science, Gwalior, India
4 Department of Electronics, Madhav Institute of Technology and Science, Gwalior, India

Original language: English

Copyright © 2013 ISSR Journals. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

Abstract


A printed rectangular monopole antenna (PRMA) with coplanar waveguide (CPW)-fed is designed for wideband dual frequency application. A proposed monopole antenna which has a size of 31.9 x 33 mm2, is fabricated to work on a substrate (FR4 lossy) that has the relative permittivity of 4.4 and a thickness of 1.6 mm with CPW-fed in the frequency range of 6 - 16 GHz. Simulation results such as impedance bandwidth are presented and discussed. Simulation results have been verified with good agreement. The parameters which affect the performance of the antenna characteristics are investigated in this paper.

Author Keywords: Printed rectangular monopole antenna, Wideband antenna, Coplanar waveguide fed, Impedance bandwidth, Return Loss.


How to Cite this Article


Anshul Agarwal, P. K. Singhal, Shailendra Singh Ojha, and Akhilesh Kumar Gupta, “Design of CPW-fed Printed Rectangular Monopole Antenna for Wideband Dual-Frequency Applications,” International Journal of Innovation and Applied Studies, vol. 3, no. 3, pp. 758–764, July 2013.