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A Multiband Patch Antenna for WiMAX and S Band RADAR Applications
Allin Joe D1, Umamaheswari S2, Karthi Kumar R3
1Allin Joe D, Department of Electronics and Communication Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
2Umamaheswari S, Department of Electronics and Communication Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
3Karthi Kumar R, Department of Electronics and Communication Engineering, Kumaraguru College of Technology, Coimbatore (Tamil Nadu), India.
Manuscript received on 30 September 2019 | Revised Manuscript received on 12 November 2019 | Manuscript Published on 22 November 2019 | PP: 1548-1550 | Volume-8 Issue-6S3 September 2019 | Retrieval Number: F12790986S319/19©BEIESP | DOI: 10.35940/ijeat.F1279.0986S319
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Microstrip patch antenna (MPA) have a valuable position in the communication commerce as it complete the dimension of antenna to shrivel and the outlay of the communication diplomacy is abridged due to its multiband possessions. The projected antenna intends is done by using Flame Retardant (FR4) substrate. The antenna is energized using a coaxial probe feed. The reproduction of the projected antenna intends is done by means of the High Frequency Structural Simulator (HFSS) software. The intended rectangular MPA has reverberating frequencies at 2.92 GHz, which is appropriate for S-Band Radio Detection and Ranging (RADAR), and at 3.45 GHz which is appropriate for the applications that uses Worldwide Interoperability for Microwave Access (WiMAX) standard. The antenna intends that is proposed is uncomplicated and cost efficient.
Keywords: Microstrip Patch Antenna (MPA), Multiband, S Band RADAR, Wimax, HFSS, Coaxial Probe Feed.
Scope of the Article: Micro Strip Antenna