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Theoretical analysis of highly linear tunable filters using switched-resistor techniques

Author(s)
Jiraseree-Amornkun, Amorn
Worapishet, Apisak
Klumperink, Eric A.M.
Nauta, Bram
Surakampontorn, Wanlop
Date Issued
January 1, 2008
Type
Article
DOI
10.1109/TCSI.2008.925815
Abstract
In this paper, an in-depth analysis of switched-resistor (S-R) techniques for implementing low-voltage low-distortion tunable active-RC filters is presented. The S-R techniques make use of switch(es) with duty-cycle-controlled clock(s) to achieve tunability of the effective resistance and, hence, the RC time constant. The characteristics of two S-R networks utilizing one set (S-1R) and two sets (S-2R) of switch and resistor combinations are analyzed. It will be shown that the S-2R network outperforms the S-1R counterpart in terms of finite-slew-rate-induced distortion, frequency translation, and noise performance. In order to extend the tuning range, an S-R bank scheme is also described. The theoretical analysis was verified by an experiment on a 100-kHz first-order S-R filter prototype, implemented using discrete elements, where several advantages of the S-2R over the S-1R networks are demonstrated. Simulations of 10-MHz low-pass filters based on the S-1R and S-2R techniques in a standard 0.18-μm CMOS process are also included for performance comparison in practical on-chip filter implementations. © 2008 IEEE.
Citation
IEEE Transactions on Circuits and Systems I Regular Papers, 55(11), 3641-3654, 2008
Subjects

Cyclostationary noise...

Duty cycle control

Finite-slew-rate-indu...

Frequency translation...

High linearity

Linear time varying

Low voltage

Sampled-data filters

Switched-resistor (S-...

Tunable filters

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