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International Journal of Advanced Computer Science and Applications(IJACSA), Volume 2 Issue 4, 2011.
Abstract: In this Paper Presents the result for different standard thickness values, and the result is performed by thickness of 31 mile, Ku- band frequency 12GHz are gives the best result. The antenna has become a necessity for many applications in recent wireless communications, such as Radar, Microwave and space communication. The proposed antenna design on different thickness and analyzed result of all thickness between 1GHz to 15GHz frequency, When the proposed antenna design on a 31 mil RT DUROID 5880 substrate from Rogers-Corp with dielectric constant of 2.2 and loss tangent of 0.0004. At 12GHz the verify and tested result on IE3D SIMULATOR are Return loss = -23.08dB, VSWR = 1.151, Directivity = 11dBi, Gain = 4dBi, 3 dB beam width = 35.5575 degrees, Mismatch loss= -0.0289842dB is very low, Efficiency= 65.3547%, All results shown in Simulation results. The Return losses and VSWR results shown in Table 1, Table2 respectively.
Neenansha Jain, Anubhuti Khare and Rajesh Nema, “E-Shape Micro strip Patch Antenna on Different Thickness for pervasive Wireless Communication” International Journal of Advanced Computer Science and Applications(IJACSA), 2(4), 2011. http://dx.doi.org/10.14569/IJACSA.2011.020418
@article{Jain2011,
title = {E-Shape Micro strip Patch Antenna on Different Thickness for pervasive Wireless Communication},
journal = {International Journal of Advanced Computer Science and Applications},
doi = {10.14569/IJACSA.2011.020418},
url = {http://dx.doi.org/10.14569/IJACSA.2011.020418},
year = {2011},
publisher = {The Science and Information Organization},
volume = {2},
number = {4},
author = {Neenansha Jain and Anubhuti Khare and Rajesh Nema}
}
Copyright Statement: This is an open access article licensed under a Creative Commons Attribution 4.0 International License, which permits unrestricted use, distribution, and reproduction in any medium, even commercially as long as the original work is properly cited.