International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


Downloads: 121

Research Paper | Electronics & Communication Engineering | India | Volume 3 Issue 10, October 2014


Planar Monopole Rectangular Antenna With Fractal Stub For Dual Band Applications

Amrita Mardikar | Ravi Mohan | Mahima Arrawatia | Girish Kumar [5]


Abstract: In this paper, a low cost dual band planar monopole rectangular antenna with fractal stub is presented. Rectangular antenna with fractal stub is designed and fabricated on 1.6mm thick FR4 substrate. The bandwidth of the antenna is from (0.80-0.96) and (1.74-2.92) GHz for return loss < -10dB. This antenna covers CDMA, GSM900, GSM1800, 3G, 4G and Wi-Fi bands. An acceptable radiation pattern is obtained at all these bands. The maximum gain of the designed antenna is 2.7dBi.


Keywords: Planar monopole antenna, Dualband antenna, fractal stub, radiation pattern


Edition: Volume 3 Issue 10, October 2014,


Pages: 137 - 141


How to Download this Article?

You Need to Register Your Email Address Before You Can Download the Article PDF


How to Cite this Article?

Amrita Mardikar, Ravi Mohan, Mahima Arrawatia, Girish Kumar, "Planar Monopole Rectangular Antenna With Fractal Stub For Dual Band Applications", International Journal of Science and Research (IJSR), Volume 3 Issue 10, October 2014, pp. 137-141, https://www.ijsr.net/get_abstract.php?paper_id=OCT14105

Similar Articles with Keyword 'radiation pattern'

Downloads: 2 | Weekly Hits: ⮙1 | Monthly Hits: ⮙1

Research Paper, Electronics & Communication Engineering, India, Volume 10 Issue 11, November 2021

Pages: 931 - 933

Design and Development of Integrated Patch Microstrip Antenna for Wideband Operation

Premavani | C. Kalpana | S. N. Mulgi

Share this Article

Downloads: 2 | Weekly Hits: ⮙1 | Monthly Hits: ⮙1

Research Paper, Electronics & Communication Engineering, India, Volume 10 Issue 11, November 2021

Pages: 819 - 824

The Design of an Inset Fed Wide Band Antenna Operating from 23 to 30 GHz for Wearable Smart Watch Applications

N. Sheshaprasad | S. B. Bhanu Prashanth

Share this Article
Top