Title :
A Generalized Dual-Band Wilkinson Power Divider With Parallel
and
Components
Author :
Wang, Xiaolong ; Sakagami, Iwata ; Takahashi, Kensaku ; Okamura, Shingo
Author_Institution :
Grad. Sch. of Sci. & Eng., Univ. of Toyama, Toyama, Japan
fDate :
4/1/2012 12:00:00 AM
Abstract :
A generalized model of a two-way dual-band Wilkinson power divider (WPD) with a parallel LC circuit at midpoints of two-segment transformers is proposed and compared with that of a conventional two-way dual-band WPD with a parallel LC circuit at the ends of two-segment transformers. The sum of power reflected at an output port and power transmitted to an isolation port from another isolation port in the proposed divider is smaller than that in the conventional divider. Therefore, wide bandwidths for S22, S33, and S32 can be expected for proposed dividers. In the case of equal power division, frequency characteristics of return loss at output ports and isolation of the proposed divider are wider than those of the convention one. The resonant frequencies of LC circuits in the proposed divider and a conventional divider are equal; however, the inductance L used in the proposed divider is always smaller than that in the conventional divider. Design charts and calculated bandwidths as a function of frequency ratio from 1 to 7 are presented. In experiments, two symmetrical and two asymmetrical circuits were fabricated. The experimental results showed good agreement with theoretical results.
Keywords :
LC circuits; power dividers; transformers; asymmetrical circuit fabrication; generalized two-way dual-band WPD; generalized two-way dual-band Wilkinson power divider; isolation port; output port; parallel LCR circuit component; power reflection; power transmission; resonant frequency; return loss frequency characteristic; symmetrical circuit fabrication; two-segment transformer; Bandwidth; Dual band; Equivalent circuits; Frequency conversion; Power dividers; RLC circuits; Resonant frequency; Arbitrary power division; Wilkinson; dual band; parallel LC;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.2012.2184298