DocumentCode
1535733
Title
Design and Analysis of Down-Conversion Gate/Base-Pumped Harmonic Mixers Using Novel Reduced-Size 180
Hybrid With Different Input Frequencies
Author
Kuo, Jhe-Jia ; Lien, Chun-Hsien ; Tsai, Zuo-Min ; Lin, Kun-You ; Chmalz, Klaus ; Scheytt, J. Christoph ; Wang, Huei
Volume
60
Issue
8
fYear
2012
Firstpage
2473
Lastpage
2485
Abstract
In this paper, a novel 180°hybrid with different input frequencies is proposed to combine RF and local oscillator (LO) signals with different frequencies in a gate/base-pumped harmonic mixer. The detailed analysis and design procedures are presented in this paper. To further reduce the chip size, the multilayer metallization above the lossy silicon substrate is employed to implement the hybrid. A V-band down-converted 2× harmonic mixer in 90-nm CMOS process and a D-band down-converted 4× harmonic mixer in the 130-nm SiGe process are designed, fabricated, and measured to verify the concept. The 2× harmonic mixer possesses 0-dB conversion gain at 60 GHz with 0-dBm LO power with merely 2.4-mW dc power. The 4× harmonic mixer achieves 0.5-dB conversion gain at 120 GHz with 2-dBm LO power and 27.3-mW dc power. With the proposed reduced-size 180° hybrid, gate/base-pumped harmonic mixers are very attractive in transceivers demanding low LO frequency and power.
Keywords
CMOS integrated circuits; MMIC mixers; metallisation; microwave mixers; silicon compounds; transceivers; CMOS process; SiGe; chip size; downconversion gate/base-pumped harmonic mixers; frequency 120 GHz; frequency 60 GHz; gain 0 dB; gain 0.5 dB; input frequencies; local oscillator signals; lossy silicon substrate; multilayer metallization; power 2.4 mW; transceivers; Couplings; Harmonic analysis; Impedance matching; Insertion loss; Logic gates; Mixers; Power dividers; Baluns; monolithic microwave integrated circuit (MMIC) mixers;
fLanguage
English
Journal_Title
Microwave Theory and Techniques, IEEE Transactions on
Publisher
ieee
ISSN
0018-9480
Type
jour
DOI
10.1109/TMTT.2012.2202039
Filename
6214582
Link To Document