DocumentCode :
846221
Title :
A short stub-matching 77-GHz-band driver amplifier with an attenuator compensating temperature dependence of a gain
Author :
Chaki, Shin ; Ishida, Takao ; Mizukoshi, Takeo ; Yumoto, Hiroyuki ; Sasaki, Yoshinobu ; Komaru, Makio ; Matsuda, Yoshio
Author_Institution :
Mitsubishi Electr. Corp., Hyogo, Japan
Volume :
53
Issue :
6
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
2073
Lastpage :
2081
Abstract :
This paper describes a 77-GHz three-stage driver amplifier integrated with a very compact 4-dB digital attenuator. The attenuator can provide successful suppression in the gain variation of the amplifier according to ambient temperature in practical use. In addition, the amplifier matching fashion using short stubs and series transmission lines helps suppress unwanted transducer gain and return gain in the out-of band of lower than 77 GHz. The amplifier fabricated in pseudomorphic high electron-mobility technology can deliver a gain of 17.9 dB with an input return loss of 21.0 dB and an output return loss of 22.7 dB in the 77-GHz band, while keeping lower than -16.5dB of gain in the out-of band. Over the temperature range from -20°C to 100°C, the measured results show that a gain variation of less than 2.0 dB is achieved by using the attenuator, while the gain variation without the attenuator is as large as 6.0 dB. The die size is as small as 2.3×1.4 mm2 due to the very compact attenuator of a 0.2×0.6 mm2 occupied area.
Keywords :
attenuators; millimetre wave amplifiers; -20 to 100 C; 17.9 dB; 21 dB; 22.7 dB; 77 GHz; amplifier matching fashion; digital attenuator; gain variation; millimeter-wave amplifiers; minimization methods; pseudomorphic high electron-mobility technology; radar applications; series transmission lines; stub-matching driver amplifier; three-stage driver amplifier; transducer gain; Attenuators; Driver circuits; Gain; HEMTs; MMICs; Optical amplifiers; PHEMTs; Radar applications; Temperature dependence; Temperature distribution; Amplifiers; attenuators; millimeter-wave amplifiers; minimization methods; radar applications; temperature;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2005.848810
Filename :
1440725
Link To Document :
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