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2018 | OriginalPaper | Chapter

2. Dual-Band Planar Inverted F-L Antenna Structure for Bluetooth and ZigBee Applications

Authors : Chan H. See, George A. Oguntala, Wafa Shuaieb, J. M. Noras, Peter S. Excell

Published in: Antenna Fundamentals for Legacy Mobile Applications and Beyond

Publisher: Springer International Publishing

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Abstract

This chapter will present and analyse a compact and dual frequency inverted L-F antennas for the operating frequency bands to meet the requirement for IEEE 802.11a/b/g, Bluetooth and ZigBee standards; the optimal design providing a compromise between size reduction and attainable bandwidth. The antenna consists of an F-shaped radiator and L-shaped parasitic element with the optimum (minimized) volume of 30 × 30 × 8 mm3, thus making it feasible to be adopted within the portable wireless electronic devices. By controlling the geometry parameters of the radiator, the lower resonant operating band can be tuned to achieve 8% bandwidth. Likewise, by optimising the geometry parameters of the parasitic element, the upper operating frequency band can reach the required 12.2% bandwidth. Both the computed and measured features of the present antenna are in good agreement.

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Literature
1.
go back to reference L.O. Soo, B.P. Koh, P. Song, L. Lau, From a simple IFA to a dual band PIFA. International Workshop on on Antenna Technology, Chiba University, Japan, Mar 2008, pp. 386–389 L.O. Soo, B.P. Koh, P. Song, L. Lau, From a simple IFA to a dual band PIFA. International Workshop on on Antenna Technology, Chiba University, Japan, Mar 2008, pp. 386–389
2.
go back to reference Y.-B. Kwon, J.-I. Moon, S.-O. Park, An internal triple-band planar inverted-F antenna. IEEE Antennas Wireless Propag. Lett. 2, 341–344 (2003)CrossRef Y.-B. Kwon, J.-I. Moon, S.-O. Park, An internal triple-band planar inverted-F antenna. IEEE Antennas Wireless Propag. Lett. 2, 341–344 (2003)CrossRef
3.
go back to reference C.-T. Lee, K.-L. Wong, Uniplanar printed coupled-fed PIFA with a band-notching slit for WLAN/WiMAX operation in the laptop computer. IEEE Trans. Antennas Propag. 57, 1252–1258 (2009)CrossRef C.-T. Lee, K.-L. Wong, Uniplanar printed coupled-fed PIFA with a band-notching slit for WLAN/WiMAX operation in the laptop computer. IEEE Trans. Antennas Propag. 57, 1252–1258 (2009)CrossRef
4.
go back to reference D. Liu, B. Gaucher, A new multiband antenna for WLAN/cellular applications, IEEE Vehicular Technology Society Conference, Milan, vol. 1, Sept 2004, pp. 243–246 D. Liu, B. Gaucher, A new multiband antenna for WLAN/cellular applications, IEEE Vehicular Technology Society Conference, Milan, vol. 1, Sept 2004, pp. 243–246
5.
go back to reference H.-C. Tung, S.-T. Fang, K.-L. Wong, Printed dual-band monopole antenna for 2.4/5.2GHz WLAN access point. Microw. Opt. Technol. Lett. 35(4), 286–288 (2002)CrossRef H.-C. Tung, S.-T. Fang, K.-L. Wong, Printed dual-band monopole antenna for 2.4/5.2GHz WLAN access point. Microw. Opt. Technol. Lett. 35(4), 286–288 (2002)CrossRef
6.
go back to reference D.D. Krishna, M. Gopikrishna, C.K. Anandan, P. Mohanan, K. Vasudevan, CPW-fed Koch fractal slot antenna for WLAN/WiMAX applications. IEEE Antennas Wireless Propag. Lett. 7, 389–392 (2008)CrossRef D.D. Krishna, M. Gopikrishna, C.K. Anandan, P. Mohanan, K. Vasudevan, CPW-fed Koch fractal slot antenna for WLAN/WiMAX applications. IEEE Antennas Wireless Propag. Lett. 7, 389–392 (2008)CrossRef
7.
go back to reference A.K. Skrivervik, J.-F. Zurcher, O. Staub, J.R. Mosig, PCS antenna design: The challenge of miniaturization. IEEE Antennas Propag. Mag. 43, 12–27 (2001)CrossRef A.K. Skrivervik, J.-F. Zurcher, O. Staub, J.R. Mosig, PCS antenna design: The challenge of miniaturization. IEEE Antennas Propag. Mag. 43, 12–27 (2001)CrossRef
8.
go back to reference C.S. Lee, K.-H. Tseng, Size reduction of microstrip antennas. Electron. Lett. 37, 1274–1275 (2001)CrossRef C.S. Lee, K.-H. Tseng, Size reduction of microstrip antennas. Electron. Lett. 37, 1274–1275 (2001)CrossRef
9.
go back to reference A.K. Shackelford, K.F. Lee, K.M. Luk, Design of small-size wide bandwidth microstrip-patch antennas. IEEE Antennas Propag. Mag. 45(1), 75–83 (2003)CrossRef A.K. Shackelford, K.F. Lee, K.M. Luk, Design of small-size wide bandwidth microstrip-patch antennas. IEEE Antennas Propag. Mag. 45(1), 75–83 (2003)CrossRef
10.
go back to reference A.A. Deshmukh, G. Kumar, Half U-slot loaded rectangular microstrip antenna, in IEEE Antennas and Propagation Soc. Intl. Symp., Columbus, vol. 2, 2003, pp. 876–879 A.A. Deshmukh, G. Kumar, Half U-slot loaded rectangular microstrip antenna, in IEEE Antennas and Propagation Soc. Intl. Symp., Columbus, vol. 2, 2003, pp. 876–879
11.
go back to reference R. Chair, C.-L. Mak, K.-F. Lee, K.-M. Luk, A.A. Kishk, Miniature wide-band half U-slot and half E-shaped patch antennas. IEEE Trans. Antennas Propag. 53(8), 2645–2651 (2008)CrossRef R. Chair, C.-L. Mak, K.-F. Lee, K.-M. Luk, A.A. Kishk, Miniature wide-band half U-slot and half E-shaped patch antennas. IEEE Trans. Antennas Propag. 53(8), 2645–2651 (2008)CrossRef
12.
go back to reference L. Guo, S. Wang, X. Chen, C. Parini, Miniaturised antennas for UWB communications, Proc.European Conf. on Antennas and Propagation, Berlin, Germany, Mar 2009, pp. 3774–3778 L. Guo, S. Wang, X. Chen, C. Parini, Miniaturised antennas for UWB communications, Proc.European Conf. on Antennas and Propagation, Berlin, Germany, Mar 2009, pp. 3774–3778
13.
go back to reference C.H. See, R.A. Abd-Alhameed, D. Zhou, P.S. Excell, Dual-frequency planar inverted F-L-antenna (PIFLA) for WLAN and short range communication systems. IEEE Trans. Antennas Propag. 56, 3318–3320 (2008)CrossRef C.H. See, R.A. Abd-Alhameed, D. Zhou, P.S. Excell, Dual-frequency planar inverted F-L-antenna (PIFLA) for WLAN and short range communication systems. IEEE Trans. Antennas Propag. 56, 3318–3320 (2008)CrossRef
14.
go back to reference C.H. See, R.A.Abd-Alhameed, D. Zhou, E.A. Elkhazmi, M.M. Abusitta, K.N. Ramli, P.S. Excell, Miniature dual-frequency half planar inverted F-L-antenna for WLAN/cellular applications, in the proceeding of Microwave Conference, 2009. APMC 2009, Asia Pacific, 7–10 Dec 2009, pp. 2802–2804 C.H. See, R.A.Abd-Alhameed, D. Zhou, E.A. Elkhazmi, M.M. Abusitta, K.N. Ramli, P.S. Excell, Miniature dual-frequency half planar inverted F-L-antenna for WLAN/cellular applications, in the proceeding of Microwave Conference, 2009. APMC 2009, Asia Pacific, 7–10 Dec 2009, pp. 2802–2804
15.
go back to reference C.H. See, R.A. Abd-Alhameed, D. Zhou, P.S. Excell, A planar inverted F-L antenna (PIFLA) with a rectangular feeding plate for lower-band UWB applications. IEEE Antenna Wireless Propag. Lett. 9, 149–151 (2010)CrossRef C.H. See, R.A. Abd-Alhameed, D. Zhou, P.S. Excell, A planar inverted F-L antenna (PIFLA) with a rectangular feeding plate for lower-band UWB applications. IEEE Antenna Wireless Propag. Lett. 9, 149–151 (2010)CrossRef
16.
go back to reference High Frequency Structure Simulator (HFSS), version 11, Ansoft LLC, Pittsburgh High Frequency Structure Simulator (HFSS), version 11, Ansoft LLC, Pittsburgh
17.
go back to reference SEMCAD X, version 14, Schmid & Partner Engineering AG, Zurich SEMCAD X, version 14, Schmid & Partner Engineering AG, Zurich
18.
go back to reference R. Feick, H. Carrasco, M. Olmos, H.D. Hristov, PIFA input bandwidth enhancement by changing feed plate silhouette. Electron. Lett. 40, 921–922 (2004)CrossRef R. Feick, H. Carrasco, M. Olmos, H.D. Hristov, PIFA input bandwidth enhancement by changing feed plate silhouette. Electron. Lett. 40, 921–922 (2004)CrossRef
19.
go back to reference H. Nakano, N. Ikeda, Y.-Y. Wu, R. Suzuki, H. Mimaka, J. Yamauchi, Realization of dual-frequency and wide-band VSWR performances using normal-mode helical and inverted-F antenna. IEEE Trans. Antennas Propag. 46, 788–793 (1998)CrossRef H. Nakano, N. Ikeda, Y.-Y. Wu, R. Suzuki, H. Mimaka, J. Yamauchi, Realization of dual-frequency and wide-band VSWR performances using normal-mode helical and inverted-F antenna. IEEE Trans. Antennas Propag. 46, 788–793 (1998)CrossRef
20.
go back to reference R.W. Johnston, J.G. McRory, An improved small antenna radiation-efficiency measurement. IEEE Antenna Propag. Soc. Mag. 40(5), 40–48 (1998)CrossRef R.W. Johnston, J.G. McRory, An improved small antenna radiation-efficiency measurement. IEEE Antenna Propag. Soc. Mag. 40(5), 40–48 (1998)CrossRef
21.
go back to reference H. Choo, R. Rogers, H. Ling, On the wheeler cap measurement of the efficiency of microstrip antennas. IEEE Trans. Antennas Propag. 53(7), 2328–2332 (2005)CrossRef H. Choo, R. Rogers, H. Ling, On the wheeler cap measurement of the efficiency of microstrip antennas. IEEE Trans. Antennas Propag. 53(7), 2328–2332 (2005)CrossRef
22.
go back to reference M.-C. Huynh, W. Stutzman, Ground plane effects on planar inverted-F antenna (PIFA) performance. IEE Proc.-Microw. Antennas Propag. 150(4), 209–213 (2003)CrossRef M.-C. Huynh, W. Stutzman, Ground plane effects on planar inverted-F antenna (PIFA) performance. IEE Proc.-Microw. Antennas Propag. 150(4), 209–213 (2003)CrossRef
Metadata
Title
Dual-Band Planar Inverted F-L Antenna Structure for Bluetooth and ZigBee Applications
Authors
Chan H. See
George A. Oguntala
Wafa Shuaieb
J. M. Noras
Peter S. Excell
Copyright Year
2018
DOI
https://doi.org/10.1007/978-3-319-63967-3_2