Design of Dual band slot loaded Microstrip Patch Antenna for Wireless Applications
This work shows a dual band rectangular patch antenna with micro strip line. The suggested antenna has a dimension of size 33 x 27 mm 2 and is constructed on a FR4 substrate. A dual band printed antenna is created by introducing wing shape slots and rectangular slots in the radiating element of the...
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Published in | 2024 International Conference on Power, Energy, Control and Transmission Systems (ICPECTS) pp. 1 - 5 |
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Main Authors | , , , , |
Format | Conference Proceeding |
Language | English |
Published |
IEEE
08.10.2024
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Subjects | |
Online Access | Get full text |
DOI | 10.1109/ICPECTS62210.2024.10780109 |
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Abstract | This work shows a dual band rectangular patch antenna with micro strip line. The suggested antenna has a dimension of size 33 x 27 mm 2 and is constructed on a FR4 substrate. A dual band printed antenna is created by introducing wing shape slots and rectangular slots in the radiating element of the patch .The antenna is designed to operate at dual band of frequencies at 1.6/2.2 GHz bands for C band and Wi-Fi/WiMax applications. The results obtained for return loss is -11.88dB at 1.6 GHz with 3.5% bandwidth and - 13.12 dB at 2.2 GHz with 3.6% bandwidth. The suggested antenna also exhibits strong radiation properties and steady gains across the entire operating band spectrum. |
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AbstractList | This work shows a dual band rectangular patch antenna with micro strip line. The suggested antenna has a dimension of size 33 x 27 mm 2 and is constructed on a FR4 substrate. A dual band printed antenna is created by introducing wing shape slots and rectangular slots in the radiating element of the patch .The antenna is designed to operate at dual band of frequencies at 1.6/2.2 GHz bands for C band and Wi-Fi/WiMax applications. The results obtained for return loss is -11.88dB at 1.6 GHz with 3.5% bandwidth and - 13.12 dB at 2.2 GHz with 3.6% bandwidth. The suggested antenna also exhibits strong radiation properties and steady gains across the entire operating band spectrum. |
Author | Prasanna, R. Priya, P. Banu J, Sandhya Jenath, M. Nivethika, S. Deepa |
Author_xml | – sequence: 1 givenname: M. surname: Jenath fullname: Jenath, M. email: jenathm@srmist.edu.in organization: SRM Institute of Science and Technology,Department of ECE,Chennai – sequence: 2 givenname: R. surname: Prasanna fullname: Prasanna, R. email: prasannr3@srmist.edu.in organization: SRM Institute of Science and Technology,Department of ECE,Chennai – sequence: 3 givenname: Sandhya surname: J fullname: J, Sandhya email: sandhya.ece@sairam.edu.in organization: Sri SaiRam Engineering College,Department of ECE,Chennai,India – sequence: 4 givenname: P. Banu surname: Priya fullname: Priya, P. Banu email: banupriyaprathaban@gmail.com organization: SRM Institute of Science and Technology,Department of Networking and Communication,Chennai – sequence: 5 givenname: S. Deepa surname: Nivethika fullname: Nivethika, S. Deepa email: deepanivethika.s@vit.ac.in organization: Vellore Institute of Science and Technology,School of Computer Science and Engineering,Chennai |
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Snippet | This work shows a dual band rectangular patch antenna with micro strip line. The suggested antenna has a dimension of size 33 x 27 mm 2 and is constructed on a... |
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SubjectTerms | Bandwidth C band Dual band Gain Microstrip Microstrip antennas Microstrip patch antenna Patch antennas Slot antennas Transmitting antennas WiMAX |
Title | Design of Dual band slot loaded Microstrip Patch Antenna for Wireless Applications |
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