Title :
Dual-band filters for WLAN applications on liquid crystal polymer technology
Author :
Bairavasubramanian, Ramanan ; Pinel, Stephane ; Papapolymerou, John ; Laskar, Joy ; Quendo, Cedric ; Rius, Eric ; Manchec, Alexandre ; Person, Christian
Author_Institution :
Georgia Inst. of Technol., Atlanta, GA, USA
Abstract :
This paper presents the development and performance of several dual-band filters for wireless local area network (WLAN) applications. Three dual-band filters meeting the specifications of 802.11 bg (2.412-2.484 GHz) for the lower band and the specifications of 802.11 a-L (5.180-5.320 GHz), 802.11 a-H (5.745-5.805 GHz) and 802.11 a-L&H (5.180-5.805 GHz) for the upper band are presented. These filters are developed based on dual behavior resonator (DBR) topology in combination with a new stepped impedance approach and are implemented for the first time on liquid crystal polymer (LCP) technology. LCP has been chosen because of its low cost, good RF performance and its ability to act both as a substrate and a package. Measurements show a very low insertion loss of -1.25 dB for the lower band and an insertion loss of -2.4 dB and -1.1 dB for the narrow and broad upper bands respectively. This work demonstrates that the proposed design methodology is simple, efficient and allows easy tuning of the filter parameters to suit different specifications.
Keywords :
IEEE standards; UHF filters; liquid crystal polymers; microwave filters; network topology; resonator filters; wireless LAN; -1.1 dB; -1.25 dB; -2.4 dB; 2.412 to 2.484 GHz; 5.180 to 5.320 GHz; 5.180 to 5.805 GHz; IEEE 802.11 a-H specification; IEEE 802.11 a-L specification; IEEE 802.11 a-L&H specification; IEEE 802.11 bg specification; dual behavior resonator topology; dual-band filters; filter parameter tuning; liquid crystal polymer technology; low insertion loss; stepped impedance approach; wireless local area networks; Costs; Distributed Bragg reflectors; Dual band; Impedance; Insertion loss; Liquid crystal polymers; Radio frequency; Resonator filters; Topology; Wireless LAN;
Conference_Titel :
Microwave Symposium Digest, 2005 IEEE MTT-S International
Print_ISBN :
0-7803-8845-3
DOI :
10.1109/MWSYM.2005.1516650