A CMOS multichannel 10-Gb/s transceiver

We describe a CMOS multichannel transceiver that transmits and receives 10 Gb/s per channel over balanced copper media. The transceiver consists of two identical 10-Gb/s modules. Each module operates off a single 1.2-V supply and has a single 5-GHz phase-locked loop to supply a reference clock to tw...

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Veröffentlicht in:IEEE journal of solid-state circuits 2003-12, Vol.38 (12), p.2094-2100
Hauptverfasser: Takauchi, H., Tamura, H., Matsubara, S., Kibune, M., Doi, Y., Chiba, T., Anbutsu, H., Yamaguchi, H., Mori, T., Takatsu, M., Gotoh, K., Sakai, T., Yamamura, T.
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Sprache:eng
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Zusammenfassung:We describe a CMOS multichannel transceiver that transmits and receives 10 Gb/s per channel over balanced copper media. The transceiver consists of two identical 10-Gb/s modules. Each module operates off a single 1.2-V supply and has a single 5-GHz phase-locked loop to supply a reference clock to two transmitter (Tx) channels and two receiver (Rx) channels. To track the input-signal phase, the Rx channel has a clock recovery unit (CRU), which uses a phase-interpolator-based timing generator and digital loop filter. The CRU can adjust the recovered clock phase with a resolution of 1.56 ps. Two sets of two-channel transceiver units were fabricated in 0.11-/spl mu/m CMOS on a single test chip. The transceiver unit size was 1.6 mm /spl times/ 2.6 mm. The Rx sensitivity was 120-mVp-p differential with a 70-ps phase margin for a common-mode voltage ranging from 0.6 to 1.0 V. The evaluated jitter tolerance curve met the OC-192 specification.
ISSN:0018-9200
1558-173X
DOI:10.1109/JSSC.2003.818577