DocumentCode :
1311126
Title :
A 1 GHz Equiripple Low-Pass Filter With a High-Speed Automatic Tuning Scheme
Author :
Lo, Tien-Yu ; Hung, Chung-Chih
Author_Institution :
Analog Circuit Design Div., MediaTek Inc., Hsinchu, Taiwan
Volume :
19
Issue :
2
fYear :
2011
Firstpage :
175
Lastpage :
181
Abstract :
A continuous-time fourth-order equiripple linear phase Gm-C filter with an automatic tuning circuit is presented. A high speed OTA based on the inverter structure is realized. The combined common-mode feedforward and common-mode feedback circuit ensures the input and output common-mode stability. The gain performance could be maintained by combining an equivalent negative resistor circuit at the output nodes. Transconductance tuning can be achieved by adjusting the bulk voltage by using the deep-NWELL technology. The modified automatic tuning circuit relaxes the speed requirement of the tuning blocks. Through the use of the operational transconductance amplifier as a building block with the automatic tuning scheme, the filter - 3 dB cutoff frequency is 1 GHz with the group delay less than 4% variation up to 1.5 fc frequency. The - 43 dB of IM3 at filter cutoff frequency is obtained with -4 dbm two-tone signals. Implemented in 0.18-μ m CMOS process, the chip occupies 1 mm2 and consumes 175 mW at a 1.5-V supply voltage.
Keywords :
CMOS integrated circuits; UHF filters; circuit tuning; continuous time filters; equiripple filters; invertors; linear phase filters; low-pass filters; operational amplifiers; CMOS process; bulk voltage; common-mode feedback circuit; common-mode feedforward circuit; common-mode stability; continuous-time fourth-order equiripple linear phase filter; deep-NWELL technology; equiripple low-pass filter; equivalent negative resistor circuit; frequency 1 GHz; high-speed OTA; high-speed automatic tuning scheme; inverter structure; modified automatic tuning circuit; operational transconductance amplifier; power 175 mW; size 0.18 mum; transconductance tuning; voltage 1.5 V; Automatic tuning circuit; deep N-WELL technology; equiripple linear-phase; operational transconductance amplifier (OTA);
fLanguage :
English
Journal_Title :
Very Large Scale Integration (VLSI) Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-8210
Type :
jour
DOI :
10.1109/TVLSI.2009.2034527
Filename :
5325666
Link To Document :
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