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Rhombus-Shaped Cross-Slot and Notched Loaded Microstrip Patch Antenna
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Author(s): Gaurav Varma (Bundelkhand Institute of Engineering and Technology Jhansi, India)and Rishabh Kumar Baudh (Bundelkhand Institute of Engineering and Technology Jhansi, India)
Copyright: 2020
Pages: 10
Source title:
Design and Optimization of Sensors and Antennas for Wearable Devices: Emerging Research and Opportunities
Source Author(s)/Editor(s): Vinod Kumar Singh (S. R. Group of Institutions Jhansi, India), Ratnesh Tiwari (Bhilai Institute of Technology, India), Vikas Dubey (Bhilai Institute of Technology, India), Zakir Ali (IET Bundelkhand University, India)and Ashutosh Kumar Singh (Indian Institute of Information Technology, India)
DOI: 10.4018/978-1-5225-9683-7.ch009
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Abstract
The aim is to design a Rhombus microstrip patch antenna. The antenna operates at FL=1.447 GHz to FH=2.382 GHz frequency for wireless local area network (WLAN). This antenna operates at f=1.914 GHz resonant frequency. In microstrip patch antenna, many types of shapes like circular, triangular, rectangular, square, ring shape, etc. are used, but in this design a rectangular shape is used. In proposed antenna, the accuracy and efficiency are increased. Integral equation three-dimensional (3D) software (IE3D) is used for the optimize of the rhombus cross-slotted antenna design. The IE3D uses a full wave method of moment simulator. This antenna fabricated on FR4 glass epoxy double-sided copper dielectric material with relative permittivity of ∈ =4.4, thickness h= 1.60mm, and loss tangent is 0.013.
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