DocumentCode :
60513
Title :
A 25-to-28 Gb/s High-Sensitivity ( - 9.7 dBm) 65 nm CMOS Optical Receiver for Board-to-Board Interconnects
Author :
Takemoto, T. ; Yamashita, Hiromasa ; Yazaki, Takahiro ; Chujo, Norio ; Yong Lee ; Matsuoka, Yasutaka
Author_Institution :
Central Res. Lab., Tokyo, Japan
Volume :
49
Issue :
10
fYear :
2014
fDate :
Oct. 2014
Firstpage :
2259
Lastpage :
2276
Abstract :
To address the two main challenges concerning the design of a transimpedance amplifier (TIA), namely, improving the sensitivity of the TIA without sacrificing bandwidth and suppressing inter-symbol interference (ISI) due to insertion loss, a 25 Gb/s optical receiver (RX) based on 65 nm CMOS technology, including a TIA and a PD operating at 1.3 μm wavelength, was developed. The key components of the TIA are a two-stage offset-cancelation scheme and a low-voltage output driver with peaking gain of 7.7 dB at 12.5 GHz. This driver performance is achieved by separating the equalizer function and output buffer of the driver. The TIA attains a sensitivity of -9.7 dBm (86- μApp) OMA and an eye opening of 65% at data rate of 25 Gb/s. The optical RX operates at 28 Gb/s with sensitivity of -8.2 dBm (121- μApp) OMA. Utilizing the CMOS TIA, an implemented VCSEL-based optical link operating at 850 nm wavelength achieves sensitivity of -7.3 dBm (98- μApp) OMA. Power consumption and power efficiency of the optical RX at data rate of 28 Gb/s are respectively 137.5 mW and 4.9 mW/Gb/s.
Keywords :
CMOS integrated circuits; operational amplifiers; optical interconnections; optical receivers; CMOS technology; ISI suppression; TIA; VCSEL-based optical link; bit rate 25 Gbit/s; bit rate 28 Gbit/s; board-to-board interconnects; equalizer function; frequency 12.5 GHz; gain 7.7 dB; insertion loss; intersymbol interference suppression; low-voltage output driver; optical RX; optical receiver; output buffer; power 137.5 mW; size 65 nm; transimpedance amplifier; two-stage offset-cancelation scheme; wavelength 1.3 mum; wavelength 850 nm; CMOS integrated circuits; Integrated optics; Noise; Optical fiber communication; Optical receivers; Optical sensors; Sensitivity; Board-to-board interconnect; CMOS; TIA; high sensitivity; low-voltage output driver; offset cancelation; optical receiver;
fLanguage :
English
Journal_Title :
Solid-State Circuits, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9200
Type :
jour
DOI :
10.1109/JSSC.2014.2349976
Filename :
6894242
Link To Document :
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