DocumentCode :
1277001
Title :
Low-temperature cofired ceramic (LTCC) ridge waveguide bandpass chip filters
Author :
Rong, Yu ; Zaki, Kawthar A. ; Hageman, Michael ; Stevens, Daniel ; Gipprich, John
Author_Institution :
Dept. of Electr. Eng., Maryland Univ., College Park, MD, USA
Volume :
47
Issue :
12
fYear :
1999
fDate :
12/1/1999 12:00:00 AM
Firstpage :
2317
Lastpage :
2324
Abstract :
Full-wave mode-matching-based design of generalized ridge waveguide evanescent mode bandpass filters and their transitions for low-temperature cofired ceramic (LTCC) application is described. A modification factor is introduced in the prototype filter design to effectively overcome the filter bandwidth distortion. Design examples are given to demonstrate the validity. An S-band single-ridge waveguide filter and its transitions are simulated and successfully built in LTCC packages. Good agreement between the theory and experiment is obtained, which demonstrates the feasibility of the three-dimensional ridge waveguide filter embedding in LTCC packages. As compared with an LTCC inductive windows waveguide filter realization, the ridge waveguide filter realization shows significant advantages of smaller size and comparable loss. Design consideration and LTCC realization of the low-loss ridge waveguide filter are also provided
Keywords :
band-pass filters; ceramic packaging; mode matching; ridge waveguides; waveguide filters; S-band; bandpass chip filters; evanescent mode bandpass filters; filter bandwidth distortion; full-wave mode-matching-based design; loss; low-temperature cofired ceramic; modification factor; ridge waveguide; size; Band pass filters; Bandwidth; Ceramics; Microwave filters; Packaging; Prototypes; Radio frequency; Resonator filters; Waveguide theory; Waveguide transitions;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.808977
Filename :
808977
Link To Document :
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