DocumentCode :
1462885
Title :
A flip-chip MMIC design with coplanar waveguide transmission line in the W-band
Author :
Hirose, Tatsuya ; Makiyama, Kozo ; Ono, Katsuji ; Shimura, Tadayuki Miyata ; Aoki, Shigenori ; Ohashi, Yoji ; Yokokawa, Sigeru ; Watanabe, Yuu
Author_Institution :
Fujitsu Labs. Ltd., Kanagawa, Japan
Volume :
46
Issue :
12
fYear :
1998
fDate :
12/1/1998 12:00:00 AM
Firstpage :
2276
Lastpage :
2282
Abstract :
This paper describes a design method for flip-chip monolithic millimeter-wave integrated circuits (MMICs) with a coplanar waveguide (CPW) transmission line for W-band applications. We proposed a test structure for obtaining accurate flip-chip CPW line models. We examined the transmission line characteristics of the CPW line using the test structure in the millimeter-wave range and modeled them. Using the CPW line models, we designed and fabricated both two- and three-stage amplifiers using 0.15-μm InGaP/InGaAs high electron-mobility transistor technology. The maximum power gain of the two-stage amplifier is 12 dB at 79 GHz. The three-stage amplifier has a maximum power gain of 16 dB at 77 GHz. The agreement of measured S-parameters with calculated results demonstrates that the proposed test structure is suitable for characterizing flip-chip CPW lines and provides very accurate models
Keywords :
HEMT integrated circuits; III-V semiconductors; MMIC amplifiers; S-parameters; coplanar waveguide components; field effect MIMIC; flip-chip devices; gallium arsenide; gallium compounds; indium compounds; integrated circuit design; 0.15 micron; 12 to 16 dB; 77 to 79 GHz; InGaP-InGaAs; InGaP/InGaAs HEMT; S-parameters; W-band; coplanar waveguide transmission line; flip-chip MMIC design; maximum power gain; monolithic millimeter wave integrated circuit; three-stage amplifier; two-stage amplifier; Circuit testing; Coplanar transmission lines; Coplanar waveguides; Design methodology; Distributed parameter circuits; MMICs; Millimeter wave integrated circuits; Millimeter wave technology; Power amplifiers; Power transmission lines;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.739211
Filename :
739211
Link To Document :
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