DocumentCode
1526171
Title
CMOS Active Quasi-Circulator With Dual Transmission Gains Incorporating Feedforward Technique at
-Band
Author
Wu, Hsien-Shun ; Wang, Chao-Wei ; Tzuang, Ching-Kuang Clive
Author_Institution
Grad. Inst. of Commun. Eng., Nat. Taiwan Univ., Taipei, Taiwan
Volume
58
Issue
8
fYear
2010
Firstpage
2084
Lastpage
2091
Abstract
This paper presents an innovative architecture for the active quasi-circulator to break the structural limitation on the leakage suppression. A practical prototype is implemented at K -band and fabricated by using standard 0.18- μm 1P6M CMOS technology. The comparisons between simulations and on-wafer measurements are reported in detail to confirm the feasibility and capability of the proposed active quasi-circulator. At 24 GHz, the prototype has dual transmission gains of 22.4 and 12.3 dB in the transmitting and receiving paths, respectively. The measured isolation, which is defined by the ratio of the forward transmission to reverse transmission coefficient in the same path, is higher than 50.0 dB at 24.0 GHz. By comparing the leakage phenomena between the prototype with and without feedforward cancellations, the leakage suppression can be improved with a maximum value of 44.7 dB at 23.63 GHz.
Keywords
CMOS integrated circuits; leakage currents; microwave circulators; CMOS active quasicirculator; CMOS technology; K-band; dual transmission gains; feedforward cancellation; feedforward technique; forward transmission coefficient; frequency 23.63 GHz; frequency 24 GHz; gain 12.3 dB; gain 22.4 dB; innovative architecture; leakage suppression; on-wafer measurement; receiving path; reverse transmission coefficient; size 0.18 mum; transmitting path; CMOS technology; Chaos; Helium; Isolation technology; Load flow; Power combiners; Power dividers; Propagation losses; Prototypes; Radio frequency; CMOS; quasi-circulator;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2010.2052405
Filename
5497168
Link To Document