DocumentCode :
829126
Title :
A 10-Gb/s 5-Tap DFE/4-Tap FFE Transceiver in 90-nm CMOS Technology
Author :
Bulzacchelli, John F. ; Meghelli, Mounir ; Rylov, Sergey V. ; Rhee, Woogeun ; Rylyakov, Alexander V. ; Ainspan, Herschel A. ; Parker, Benjamin D. ; Beakes, Michael P. ; Chung, Aichin ; Beukema, Troy J. ; Pepeljugoski, Petar K. ; Shan, Lei ; Kwark, Young H
Author_Institution :
Div. of Res., IBM Thomas J. Watson Res. Center, Yorktown Heights, NY
Volume :
41
Issue :
12
fYear :
2006
Firstpage :
2885
Lastpage :
2900
Abstract :
This paper presents a 90-nm CMOS 10-Gb/s transceiver for chip-to-chip communications. To mitigate the effects of channel loss and other impairments, a 5-tap decision feedback equalizer (DFE) is included in the receiver and a 4-tap baud-spaced feed-forward equalizer (FFE) in the transmitter. This combination of DFE and FFE permits error-free NRZ signaling over channels with losses exceeding 30 dB. Low jitter clocks for the transmitter and receiver are supplied by a PLL with LC VCO. Operation at 10-Gb/s with good power efficiency is achieved by using half-rate architectures in both transmitter and receiver. With the transmitter producing an output signal of 1200mVppd, one transmitter/receiver pair and one PLL consume 300mW. Design enhancements of a half-rate DFE employing one tap of speculative feedback and four taps of dynamic feedback allow its loop timing requirements to be met. Serial link experiments with a variety of test channels demonstrate the effectiveness of the FFE/DFE equalization
Keywords :
CMOS integrated circuits; adaptive equalisers; decision feedback equalisers; phase locked loops; transceivers; 300 mW; 4-tap FFE transceiver; 5-tap DFE transceiver; 90 nm; CMOS technology; LC VCO; PLL; adaptive equalizer; chip-to-chip communications; decision feedback equalizer; error-free NRZ signaling; feed-forward equalizer; low jitter clocks; serial link; CMOS technology; Decision feedback equalizers; Feedback loop; Feedforward systems; Jitter; Optical signal processing; Phase locked loops; Propagation losses; Transceivers; Transmitters; Adaptive equalizer; decision-feedback equalizer; feed-forward equalizer; serial link; transceiver;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2006.884342
Filename :
4014602
Link To Document :
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