DESIGN OF A PRACTICALLY FABRICATED MINIATURE SIZE PATCH ANTENNA

Author:

Ahmad Gulzar1,Sultan Asif2,Babar Muhammad Inayatullah Khan1,Khattak Muhammad Irfan1

Affiliation:

1. University of Engineering and Technology, Peshawar, Pakistan

2. Pakistan Telecom Company Ltd, Pakistan

Abstract

This paper presents the results of simulation and experimental investigations on a locally fabricated patch antenna using a high dielectric ceramic (alumina) substrate. The antenna was designed for a centre frequency of 6.32 GHz within C-Band which was excited using micro-strip line feed. The bandwidth of the simulated antenna was achieved as 66.1 MHz with a return loss of 21.7 dB at the centre resonant frequency. The observed resonance frequency at the centre was found to be 6.32 GHz with a return loss of 37.55 dB for the locally fabricated antenna. The -10 dB bandwidth of the fabricated design was determined as 251 MHz. Impedance presented at central frequency was 51.2 ohm that indicates an outstanding impedance-matching between antenna and feed line. The obtained results indicate that the fabricated antenna is suitable for its applications in C-band.

Publisher

NED University of Engineering and Technology

Subject

General Medicine

Reference32 articles.

1. Balanis CA. Antenna theory-analysis and design. John Wiley & Sons, New Jersey, USA, 2016. p. 1-4.

2. Ara SR, Mulgi SN. Effect of Ground Plane for Enhancing the Bandwidth and Virtual Size Reduction of Modified Rectangular Microstrip Antenna. Int J Advance Res Elec Electron Instrument Eng ;3(11):13135-13143.

3. Fujimoto K, Morishita H. Modern small antennas. Cambridge University Press, New York, USA, 2013. p. 1-4.

4. Manoj KG. Partial Ground Microstrip Patch Antenna for Ultra-wideband Applications. AKGEC Int J Tech 2014;6(2):23-26.

5. Bisht SO, Shweta SA, Prakash VE, Nautiyal BH. Study the Various Feeding Techniques of Microstrip Antenna Using Design and Simulation Using CST Microwave Studio. Int J Emerg Tech Advance Eng J 2014;4(9):318-324.

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