DocumentCode :
1463168
Title :
Micromachined electro-mechanically tunable capacitors and their applications to RF IC´s
Author :
Dec, Aleksander ; Suyama, Ken
Author_Institution :
Dept. of Electr. Eng., Columbia Univ., New York, NY, USA
Volume :
46
Issue :
12
fYear :
1998
fDate :
12/1/1998 12:00:00 AM
Firstpage :
2587
Lastpage :
2596
Abstract :
Micromachined electro-mechanically tunable capacitors with two and three parallel plates are presented. Experimental devices have been fabricated using a standard polysilicon surface micromachining process. The two-plate tunable capacitor has a measured nominal capacitance of 2.05 pF, a Q-factor of 20 at 1 GHz, and achieves a tuning range of 1.5:1, The three-plate version has a nominal capacitance of 4.0 pF, a Q-factor of 15.4 at 1 GHz, and a tuning range of 1.87:1. The tuning ranges achieved here are near theoretical limits. Effects due to various physical phenomena such as temperature, gravity, and shock are examined in detail. An RF voltage-controlled oscillator with an integrated inductor and a micromachined tunable capacitor is also demonstrated. The active circuit and the inductor have been fabricated in a 0.5 μm CMOS process. The voltage-controlled oscillator has been assembled by bonding together the CMOS and the micromachined parts. The 1.35 GHz voltage-controlled oscillator has a phase noise of -98.5 dBc/Hz at a 100 kHz offset from the carrier
Keywords :
Q-factor; UHF integrated circuits; UHF oscillators; capacitors; micromechanical devices; silicon; tuning; voltage-controlled oscillators; 0.5 micron; 1 GHz; 1.35 GHz; 2.05 pF; 4 pF; CMOS process; Q-factor; RF IC applications; RF VCO; RFIC; Si; electro-mechanically tunable capacitors; gravity effects; micromachined tunable capacitors; parallel plates; polysilicon surface micromachining process; shock effects; temperature effects; three-plate version; tuning ranges; two-plate version; voltage-controlled oscillator; Active inductors; Capacitance measurement; Capacitors; Circuit optimization; Micromachining; Q factor; Temperature; Tunable circuits and devices; Tuning; Voltage-controlled oscillators;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/22.739251
Filename :
739251
Link To Document :
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