DocumentCode
922003
Title
A CMOS transconductance-C filter technique for very high frequencies
Author
Nauta, Bram
Author_Institution
Philips Res. Lab., Eindhoven, Netherlands
Volume
27
Issue
2
fYear
1992
fDate
2/1/1992 12:00:00 AM
Firstpage
142
Lastpage
153
Abstract
CMOS circuits for integrated analog filters at very high frequencies, based on transconductance-C integrators, are presented. First a differential transconductance element based on CMOS inverters is described. With this circuit a linear, tunable integrator for very-high-frequency integrated filters can be made. This integrator has good linearity properties and nondominant poles in the gigahertz range owing to the absence of internal nodes. The integrator has a tunable DC gain, resulting in a controllable integrator quality factor. Experimental results of a VHF CMOS transconductance-C low-pass filter realized in a 3-μm CMOS process are given. Both the cutoff frequency and the quality factors can be tuned. The cutoff frequency was tuned from 22 to 98 MHz and the measured filter response is very close to the ideal response of the passive prototype filter. Furthermore, a novel circuit for automatically tuning the quality factors of integrated filters built with these transconductors is described
Keywords
CMOS integrated circuits; Q-factor; active filters; linear integrated circuits; low-pass filters; radiofrequency filters; tuning; 22 to 98 MHz; 3 micron; CMOS inverters; VHF; automatic tuning; controllable integrator quality factor; cutoff frequency; differential transconductance element; filter response; high frequencies; integrated analog filters; linear tunable integrator; low-pass filter; transconductance-C filter; tunable DC gain; CMOS analog integrated circuits; CMOS process; CMOS technology; Cutoff frequency; Low pass filters; Passive filters; Q factor; Transconductance; Tunable circuits and devices; VHF circuits;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/4.127337
Filename
127337
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