DocumentCode :
1496236
Title :
An adaptive SC line equalizer system for four-wire full-duplex and multirate digital transmission
Author :
Nakayama, Kenji ; Takahashi, Yutaka ; Sato, Yayoi ; Nukada, Yasuaki
Author_Institution :
NEC Corp., Kawasaki, Japan
Volume :
35
Issue :
9
fYear :
1988
fDate :
9/1/1988 12:00:00 AM
Firstpage :
1073
Lastpage :
1081
Abstract :
An adaptive switched capacitor (SC) line equalizer system that can be applied to four-wire full-duplex and multirate digital transmission is described. Several kinds of noises can exist in programmable high-gain SC equalizers, such as switching noise, DC offset jump, and transient response. To avoid their effects, an adaptive SC filter is proposed. Two identical SC circuits are used in parallel. An input signal is fed into both SC circuits, and output signals from both circuits are alternately sent after the above noises are eliminated. Furthermore, many different data rates can be handled by slightly modifying an equalizer circuit. A bridged-tap echo canceller and a DC offset canceller are modified so as to be applied to the proposed adaptive SC filter. A line equalizer system, that handles data rates ranging from 3.2 to 64 kb/s was designed. An LSI was fabricated using a 3-μn CMOS process. Experimental results show that noise effects are mostly eliminated, and frequency responses and eye openings are close to the designed values
Keywords :
CMOS integrated circuits; adaptive systems; digital communication systems; equalisers; interference suppression; large scale integration; switched capacitor networks; 3 micron; 3.2 to 64 kbit/s; CMOS process; DC offset canceller; DC offset jump; LSI; adaptive SC line equalizer; bridged-tap echo canceller; eye openings; four-wire full-duplex; frequency responses; multirate digital transmission; noise elimination; parallel configuration; switched capacitor; switching noise; transient response; Adaptive filters; CMOS process; Capacitors; Circuit noise; Echo cancellers; Equalizers; Frequency; Large scale integration; Noise cancellation; Transient response;
fLanguage :
English
Journal_Title :
Circuits and Systems, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-4094
Type :
jour
DOI :
10.1109/31.7566
Filename :
7566
Link To Document :
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