Title :
Multichannel 25 Gb/s Low-Power Driver and Transimpedance Amplifier Integrated Circuits for 100 Gb/s Optical Links
Author :
Verbrugghe, J. ; Vaernewyck, R. ; Moeneclaey, B. ; Xin Yin ; Maxwell, G. ; Cronin, R. ; Torfs, G. ; Xing-Zhi Qiu ; Lai, C.P. ; Townsend, Paul ; Bauwelinck, J.
Author_Institution :
INTEC, Ghent Univ., Ghent, Belgium
Abstract :
Highly integrated electronic driver and receiver ICs with low-power consumption are essential for the development of cost-effective multichannel fiber-optic transceivers with small form factor. This paper presents the latest results of a two-channel 28 Gb/s driver array for optical duobinary modulation and a four-channel 25 Gb/s TIA array suited for both NRZ and optical duobinary detection. This paper demonstrated that 28 Gb/s duobinary signals can be efficiently generated on chip with a delay-and-add digital filter and that the driver power consumption can be significantly reduced by optimizing the drive impedance well above 50 Ω, without degrading the signal quality. To the best of our knowledge, this is the fastest modulator driver with on-chip duobinary encoding and precoding, consuming only 652 mW per channel at a differential output swing of 6 Vpp. The 4 × 25 Gb/s TIA shows a good sensitivity of -10.3 dBm average optical input power at 25 Gb/s for PRBS 231-1 and low power consumption of 77 mW per channel. Both ICs were developed in a 130 nm SiGe BiCMOS process.
Keywords :
digital filters; integrated circuits; operational amplifiers; optical fibre networks; optical links; optical transceivers; bit rate 100 Gbit/s; bit rate 25 Gbit/s; delay-and-add digital filter; driver power consumption; highly integrated electronic driver IC; highly integrated electronic receiver IC; low power consumption; low power driver; multichannel fiber optic transceivers; optical duobinary detection; optical duobinary modulation; optical links; transimpedance amplifier integrated circuits; Arrays; Integrated optics; Optical receivers; Optical sensors; Optical transmitters; Power demand; Driver; SiGe BiCMOS; driver array; transimpedance amplifier; transimpedance amplifier array;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2014.2319112