DocumentCode :
3602869
Title :
Modeling of LTCC-Ferrite Tunable Inductors and Development of an boldsymbol {L} -Band Phase Shifter
Author :
Kagita, Srujana ; Basu, Ananjan ; Koul, Shiban K.
Author_Institution :
Delhielhi, Delhi, India
Volume :
51
Issue :
10
fYear :
2015
Firstpage :
1
Lastpage :
9
Abstract :
This paper presents the modeling of a tunable inductor using a low-temperature co-fired ceramic (LTCC)-ferrite tape and subsequent development of a loaded transmission line phase shifter using these inductors. The inductors are initially realized in the form of circular disks fabricated from commercially available ferrite tape (ESL 40011) wound with a copper wire. A complete model of this inductor is obtained between 0.3 and 4 GHz and validated by measurements. The phase shifter comprises these inductors in shunt, thus minimizing the effect of low-field magnetic losses in L-band. The magnetic material is operated below the resonance region in a partially magnetized state with the help of a bias current that configures the phase shifter electronically. The phase shifter exhibits an insertion loss of 2 ± 0.5 dB and a differential phase shift varying between 35° and 10° in the above band. Finally, to demonstrate the feasibility of integration with other RF components, a working prototype of the same phase shifter that is fully integrated in LTCC is also presented with measurements.
Keywords :
UHF phase shifters; ceramic packaging; copper; ferrite phase shifters; inductors; magnetic materials; transmission lines; wires (electric); Cu; ESL 40011 ferrite tape; L-band phase shifter; LTCC ferrite tunable inductors; RF components; circular disks; copper wire; differential phase shift; frequency 0.3 GHz to 4 GHz; loaded transmission line phase shifter; low-field magnetic loss; low-temperature co-fired ceramic; magnetic material; partially magnetized state; resonance region; Ferrites; Inductors; Mathematical model; Phase shifters; Radio frequency; Scattering parameters; Transmission line measurements; Ferrite disk; ferrite Inductor; ferrite disk; ferrite inductor; ferrite low temperature co-fired ceramic; ferrite low-temperature co-fired ceramic (LTCC); loaded line phase shifter; modeling;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2442222
Filename :
7118727
Link To Document :
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