DocumentCode :
1463080
Title :
High-Q TE01 mode DR filters for PCS wireless base stations
Author :
Liang, Ji-Fuh ; Blair, William D.
Author_Institution :
Conductus Inc., Sunnyvale, CA, USA
Volume :
46
Issue :
12
fYear :
1998
fDate :
12/1/1998 12:00:00 AM
Firstpage :
2493
Lastpage :
2500
Abstract :
This paper presents the state of the art of high-Q TE01 mode DR cavity filters for PCS wireless base station applications. In order to have TE01 mode filter to be competitive with other high-Q cavity technologies, employment of nonadjacent coupling to implement advanced filter features and easy filter machining and integration are essential. The quadruplet and trisections are regarded as basic blocks to implement symmetric and asymmetric transmission zeros in filter stop band. The relative alignment of the magnetic mode field across the coupled adjacent cavities is analyzed to identify the sign of nonadjacent coupling. A direct cascading of a wide band combine filter to a TE01 mode dielectric resonator (DR) filter is proposed to suppress the spurious response of the DR cavity filter. This approach simplifies the integration between the DR filter and the spurious suppression device and has been proved to be very cost effective. Experimental eight- and six-pole quasi-elliptic function filters show the typical performances. To take advantage of the special property of magnetic mode field alignment across the adjacent cavities, a five-pole canonical asymmetric filter with three transmission zeros in low side is implemented. We believe this filter is a new design for high-Q cavity filter, while a three-pole elliptic function filter is new for DR filter technology
Keywords :
Q-factor; UHF filters; cavity resonator filters; dielectric resonator filters; land mobile radio; microwave filters; passive filters; personal communication networks; poles and zeros; DR cavity filters; PCS wireless base stations; coupled adjacent cavities; five-pole canonical asymmetric filter; high-Q TE01 mode DR filters; magnetic mode field; nonadjacent coupling; quasi-elliptic function filters; spurious response; spurious suppression; Base stations; Coupled mode analysis; Couplings; Employment; Filtering theory; Machining; Magnetic analysis; Magnetic separation; Personal communication networks; Resonator filters;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.739239
Filename :
739239
Link To Document :
بازگشت