2000 IEEE.
Personal use of this material is
permitted. However, permission to reprint/republish this
material for advertising or promotional purposes or for
creating new collective works for resale or redistribution
to servers or lists, or to reuse any copyrighted component
of this work in other works must be obtained from the
IEEE.
IEEE Microwave and Guided Wave Letters
Volume 10 Number 4, April 2000
Table of Contents for this issue
Complete paper in PDF format
A Novel 1-D Periodic Defected
Ground Structure for Planar Circuits
Chul-Soo Kim, Student Member, IEEE Jun-Seok Park, Associate Memeber, IEEE Dal Ahn, Member, IEEE and Jae-Bong Lim Member, IEEE
Page 131.
Abstract:
A new one-dimensional (1-D) defected ground unit lattice is proposed
in order to improve the effective inductance. Increasing the effective inductance
makes it easy to control the cutoff frequency characteristics. The proposed
periodic defected ground structure (DGS) provides the excellent cutoff and
stopband characteristics. In order to show the improved the effective inductance,three DGS circuits were fabricated with identical periodic and different dimensions.
Measurements on the fabricated DGS circuits show that the cutoff and stopband
center frequency characteristics depend on the physical dimension of the proposed
DGS unit lattice.
References
-
T. J. Ellis and G. M. Rebeiz, "MM-wave tapered slot antennas on micromashined photonic bandgap dielectrics", IEEE MTT-S Int. Microwave Symp. Dig.
, pp. 1157-1160, June 1996.
-
V. Radisic, Y. Qian and T. Itoh, "Broadband power amplifier using dielectric photonic bandgap structure", IEEE Microwave Guide Wave Lett., vol. 8, pp. 13-14, Jan.
1998.
-
M. P. Kesler, J. G. Maloney and B. L. Shirley, "Antenna design with the use of photonic bandgap material as all dielectric planar reflectors", Microw. Opt. Tech.
Lett., vol. 11, no. 4, pp. 169-174, Mar. 1996.
-
V. Radisic, Y. Qian, R. Coccioli and T. Itoh, "Novel 2-D photonic bandgap structure for microstrip lines", IEEE Microwave Guided Wave Lett., vol. 8, no. 2, pp.
69-71, Feb. 1998.
-
Y. Qian, V. Radisic and T. Itoh, "Simulation and experiment of photonic bandgap structures for microstrip circuits", Proc. APMC'97, pp. 585-588, Dec. 1997.
-
D. Maystre, "Electromagnetic study of photonic band gaps", Pure Appl. Opt., vol. 3, no. 6, pp. 975-993, Nov. 1994.
-
J. L. Park, C. S. Kim, J. Kim, J. S. Park, Y. Qian, D. Ahn and T. Itoh, "Modeling of a photonic bandgap and its application for the low-pass filter design", Proc. APMC'99, pp. 331-334, Dec. 1999.