Biomedical Engineering Reference
In-Depth Information
23. Z. Ying, P.-S. Kildal, Study of different realizations and calculation models for soft-surfaces
by using vertical monopole on soft disk as test bed. IEEE. Trans. Antennas Propag. 44 (11),
1474-1481 (Nov. 1996)
24. R. Li, G. DeJean, M.M. Tentzeris, J. Papapolymerou, J. Laskar, Radiation-pattern improve-
ment of patch antenna on a large-size substrate using a compact soft-surface structure and Its
realization on LTCC multilayer technology. IEEE. Trans. Antennas Propag. 53 (1), 200-208
(Jan. 2005)
25. Y.-X. Guo, K.M. Luk, K.F. Lee, Broadband dual polarization patch element for cellular-phone
base stations. IEEE. Trans. Antennas Propag. 50 (2), 251-253 (Feb 2002)
26. L. Bian, Y.-X. Guo, L.C. Ong, X.Q. Shi, Wideband circularly-polarized patch antenna. IEEE.
Trans. Antennas Propag. 54 (9), 2682-2686 (Sep. 2006)
27. H. Wong, K.-L. Lau, K.-M. Luk, Design of dual-polarized L-probe patch antenna arrays with
high isolation. IEEE. Trans. Antennas Propag. 52 (1), 45-52 (Jan. 2004)
28. Y.-X, Guo, K.-W. Khoo, L.C. Ong, Wideband dual-polarized patch antenna with broadband
baluns. IEEE. Trans. Antennas Propag. 55 (1), 78-83 (Jan. 2004)
29. K.L. Lau, K.M. Luk, A. wideband dual-polarized L-Probe stacked patch antenna array. IEEE.
Lett. 6 , 529-532 (2007)
30. J. Heyen, A. Gordiyenko, P. Heide, A.F. Jacob, Vertical feedthroughs for millimeter-wave
LTCC modules. In IEEE Eur. Microw. Conf., Munich, Germany, pp. 411-414 (Oct. 2003)
31. C.-C. Tsai, T.-S. Chen, T.-Y. Huang, Y.A. Hsu, R.-B. Wu, Design of microstrip-to-microstrip
via transition in multilayered LTCC for frequencies up to 67 GHz. IEEE Trans. Compon.
Packag. Manufactur. Tech. 1 (4), 595-600 (April. 2011)
Search WWH ::




Custom Search