On the Performance of Rectangular Microstrip Patch Antenna using Rogers RT/Duriod 5880
Gnanamurugan.S1, Sivakumar.P2, K. Ramash Kumar3, S. Balakumar4

1Gnanamurugan.S, Research Scholar, Anna University, Chennai, India.

2Sivakumar.P, Professor, Department of Electronics and Communications Engineering Karpagam College of Engineering, Coimbatore, India.

3K. Ramash Kumar, Professor, Department of Electrical and Electronics Engineering, Karpagam College of Engineering, Coimbatore, India.

4S. Balakumar, Department of Electrical and Computer Engineering, Institute of Technology, Arba Minch University, Etothipa. Karpagam College of Engineering, Coimbatore, India.

Manuscript received on 05 March 2019 | Revised Manuscript received on 17 March 2019 | Manuscript Published on 22 March 2019 | PP: 353-357 | Volume-8 Issue-5S April 2019 | Retrieval Number: ES3442018319/19©BEIESP

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Abstract: He widely researched area in communication systems is wireless technology. The study of communication systems is incomplete without understanding the operation of the antennas. In the recent years of development in communication systems the important needs are lightweight, compact and costeffective antennas that are capable of maintaining high performance over a wide spectrum of frequencies. This technological trend has focused much effort into the design of a Micro strip patch antenna, because they will provide high frequency and less bandwidth. This paper presents a design and simulation of rectangular micro strip patch antenna at 2.5 GHz frequency range for wireless communication that provides a radiation pattern along a wide angle of beam. The designing process uses the Rogers RT/duriod 5880 material is used as the substrate and coaxial probe feed method is used to gives the excitation value of the antenna compare with FR4 Epoxy. This antenna has many practical applications like WLAN, WI-FI, etc. so the HFSS software is used to design and implement the antenna.

Keywords: Micro Strip Patch Antenna, Radiation Pattern, Ansoft HFSS (High Frequency Structural Simulator).
Scope of the Article: Communication