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An Antenna Like Form “Hand” of the Man on Five Bands Wlan/Wimax/Hiper LAN2/C-Band Applications
Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
Institute National of Scientific Research INRS, Energy, Materials and Telecommunications EMT, University of Quebec, Montreal, Canada
- 1 Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
- 2 Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
- 3 Lab. CSEHF, Faculty of Sciences of Tunis, Tunis EL Manar University, Tunisia
- 4 Institute National of Scientific Research INRS, Energy, Materials and Telecommunications EMT, University of Quebec, Montreal, Canada
Journal of Electromagnetic Analysis and Applications·Volume 06 (2014)·Pages 391–396·Published 18 November 2014·DOI10.4236/jemaa.2014.613040
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Abstract
In this paper, a new form of printed antenna for a five-band C-band applications is presented. The proposed antenna consists of six simple rectangles, whose geometry resembles all the “hand” of man. By varying the geometries and dimensions of these six rectangles, five different resonance modes can be effectively created for five distinct frequency bands, respectively. The overall dimension of the proposed antenna can reach 45 × 50 × 2.54 mm 3 . The simulated results show that the presented antenna is adapted to 4.6/5.24/5.6/6.7/7.3 GHz five bands which are applied to C-band.
KeywordsPatch AntennaA Five-BandWIMAXWLANHiper LAN2C-Band
- Chaimool, S. and Chung, K.L. (2008) CPW-Fed Mirrored-L Monopole Antenna with Distinct Triple Bands for WiFi and WiMAX Applications. IET. Electron. Lett, 45, 928-929. http://dx.doi.org/10.1049/el.2009.1390
- Liou, C.-Y., Wu, M.-S., Yeh, J.-C., Chueh, Y.-Z. and Mao, S.-G. (2009) A Novel Triple-Band Microstrip Branch-Line Coupler with Arbitrary Operating Frequencies. IEEE Antennas and Wireless Propagation Letters, 9, 683-685.
- Wu, J.W., Hsiao, H.M., Luu, J.H. and Chang, S.H. (2004) Dual Broadband Design of Rectangular Slot Antenna for 2.4 and 5 GHz Wireless Communication. IET. Electron. Lett, 40, 1461-1464. http://dx.doi.org/10.1049/el:20046873
- Thomas, K.G. and Sreenivasan, M. (2010) Compact CPW-Fed Dual-Band Antenna. IET. Electron. Lett, 46, 13-14. http://dx.doi.org/10.1049/el.2010.1729
- Naser Moghadasi, M., Sadeghzadeh, R.A., Fakher, M., Aribi, T., Sedghi, T. and Virdee, B.S. (2013) Miniature Hook-Shaped Multiband Antenna for Mobile Applications. IEEE Antennas and Wireless Propagation Letters, 11, 1096-1099. http://dx.doi.org/10.1109/LAWP.2012.2214199
- Zhai, H.Q., Ma, Z.H., Han, Y. and Liang, C.H. (2013) A Compact Printed Antenna for Triple-Band WLAN/WiMAX Applications. IEEE Antennas and Wireless Propagation Letters, 12, 65-68. http://dx.doi.org/10.1109/LAWP.2013.2238881
- Chen, G., Yang, X.-L. and Wang, Y. (2012) Dual-Band Frequency-Reconfigurable Folded Slot Antenna for Wireless Communications. IEEE Antennas and Wireless Propagation Letters, 11, 1386-1389. http://dx.doi.org/10.1109/LAWP.2012.2227293
- CST Microwave Studio Simulator, 2011.
- Resley, L.M. and Song, H.H. (2013) Multi-Band Rectangular Patch End-Fire Antenna Array. Journal of Electromagnetic Analysis and Applications, 5, 63-66. http://dx.doi.org/10.4236/jemaa.2013.52010