DocumentCode
776781
Title
Dual-Band Microstrip Bandpass Filter Using Stepped-Impedance Resonators With New Coupling Schemes
Author
Zhang, Yue Ping ; Sun, Mei
Author_Institution
Integrated Syst. Res. Lab., Nanyang Technol. Univ., Singapore
Volume
54
Issue
10
fYear
2006
Firstpage
3779
Lastpage
3785
Abstract
A microstrip bandpass filter using stepped-impedance resonators is designed in low-temperature co-fired ceramic technology for dual-band applications at 2.4 and 5.2 GHz. New coupling schemes are proposed to replace the normal counterparts. It is found that the new coupling scheme for the interstages can enhance the layout compactness of the bandpass filter; while the new coupling scheme at the input and output can improve the performance of the bandpass filter. To validate the design and analysis, a prototype of the bandpass filter was fabricated and measured. It is shown that the measured and simulated performances are in good agreement. The prototype of the bandpass filter achieved insertion loss of 1.25 and 1.87 dB, S11 of -29 and -40 dB, and bandwidth of 21% and 12.7% at 2.4 and 5.2 GHz, respectively. The bandpass filter is further studied for a single-package solution of dual-band radio transceivers. The bandpass filter is, therefore, integrated into a ceramic ball grid array package. The integration is analyzed with an emphasis on the connection of the bandpass filter to the antenna and to the transceiver die
Keywords
UHF filters; ball grid arrays; band-pass filters; crystal filters; microstrip filters; resonator filters; transceivers; 1.25 dB; 1.87 dB; 2.4 GHz; 5.2 GHz; UHF; ball grid array package; coupling schemes; dual band filter; low temperature co fired ceramic; microstrip bandpass filter; radio transceivers; stepped impedance resonators; Band pass filters; Bandwidth; Ceramics; Dual band; Insertion loss; Microstrip filters; Microstrip resonators; Performance evaluation; Prototypes; Radio transceivers; Dual-band filter; low-temperature co-fired ceramic (LTCC); microstrip; stepped-impedance resonator;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2006.882895
Filename
1705699
Link To Document