IEEE International Solid - State Circuits Conference ISSCC 2013 / SESSION 7 / OPTICAL TRANSCEIVERS AND SILICON PHOTONICS / 7 . 4 7 . 4 A Blind Baud - Rate ADC - Based CDR
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چکیده
ADC-based receivers process the received data in the digital domain, eliminating the need for much of the analog front end. In addition, a feed-forward blind architecture [1,2] eliminates the feedback loop between digital and analog domains so that the ADC and digital CDR can be designed and simulated independently. Previous works [1,2] sampled the incoming data at 2 samples per UI and at 1.45 samples per UI to achieve 5Gb/s and 6.875Gb/s, respectively. To further increase the data rate to 10Gb/s, we sample at baud rate (1 sample per UI). Existing baud-rate architectures [3] rely on a phase-tracking clock to sample at the middle of the data eye. This paper presents a blind baud-rate CDR, fabricated in 65nm CMOS. At 10Gb/s, the CDR demonstrates a high-frequency jitter tolerance of 0.19UI with ±300ppm of frequency offset. Also, the CDR demonstrates successful operation with 1000ppm offset, which amounts to sub-baud-rate sampling.
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ISSCC 2013 / SESSION 7 / OPTICAL TRANSCEIVERS AND SILICON PHOTONICS / 7 . 4 7 . 4 A Blind Baud - Rate ADC - Based CDR
ADC-based receivers process the received data in the digital domain, eliminating the need for much of the analog front end. In addition, a feed-forward blind architecture [1,2] eliminates the feedback loop between digital and analog domains so that the ADC and digital CDR can be designed and simulated independently. Previous works [1,2] sampled the incoming data at 2 samples per UI and at 1.45 ...
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تاریخ انتشار 2013