A 1.22mW/Gb/s 9.6Gb/s Data Jitter Mixing Forwarded-Clock Receiver Robust against Power Noise with 1.92ns Latency Mismatch between Data and Clock in 65nm CMOS

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This paper presents a data jitter mixing forwarded-clock receiver which is robust against power supply induced jitter (PSIJ) and overcomes 1.92ns latency mismatch between data and clock. The forwarded-clock architecture has a tradeoff between the number of clock channels and the achievable data rate due to the lack of the jitter correlation between data and clock. Moreover, PSIJ due to a long clock distribution network and an injection-locked oscillator reduces the jitter correlation further. The proposed receiver eases this tradeoff, and also increases the jitter correlation reduced by PSIJ. The test chip achieves 9.6Gb/s with 1.22mW/Gb/s and occupies only 0.017mm2 in 65nm CMOS.
Publisher
IEEE
Issue Date
2012-06-15
Language
English
Citation

2012 IEEE Symposium on VLSI Circuits

URI
http://hdl.handle.net/10203/169137
Appears in Collection
EE-Conference Papers(학술회의논문)
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