Title :
A 10 Gb/s, 6 V p-p , Digitally Controlled, Differential Distributed Amplifier MZM Driver
Author :
Yi Zhao ; Vera, L. ; Long, J.R.
Author_Institution :
DIMES, Delft Univ. of Technol., Delft, Netherlands
Abstract :
A 10 Gb/s, digitally controlled, differential distributed amplifier (DA) optical modulator driver is implemented in 0.18 μm SiGe-BiCMOS technology. The 2.87 mm2 prototype integrates clock phase shifters, digital latches, limiting amplifiers, broadband n+/n-well back termination resistors and a substrate-shielded output line on chip. It produces 6 Vp-p differential output swing across 50 Ω loads. The output edge speed is trimmable, with 20-80% rise/fall times ranging from <; 15 ps to 50 ps at 10 Gb/s. Minimum sensitivity of the ECL-compatible inputs is 65 mVp-p at 10 Gb/s single-ended, with negligible additive jitter. Measured output return loss is better than 10 dB below 35 GHz, sufficient to drive an external push-pull Mach-Zehnder optical modulator. Total power consumption is 2.13 W operating from -5.2 V and 5 V supplies. The fully-digital input interface supports scalability in the number of DA stages, output swing and to multiple output channels.
Keywords :
BiCMOS integrated circuits; Ge-Si alloys; Mach-Zehnder interferometers; differential amplifiers; distributed amplifiers; modulators; optical modulation; ECL-compatible inputs; MZM driver; SiGe; SiGe-BiCMOS technology; bit rate 10 Gbit/s; broadband n+-n-well back termination resistors; clock phase shifters; digital latches; digitally controlled differential distributed amplifier optical modulator driver; external push-pull Mach-Zehnder optical modulator; fully-digital input interface; limiting amplifiers; power 2.13 W; resistance 50 ohm; substrate-shielded output line on chip; voltage -5.2 V to 5 V; voltage 6 V; Attenuation; Bandwidth; Capacitance; Modulation; Power transmission lines; Prototypes; Resistors; Digitally controlled input line; Mach-Zehnder modulator driver; distributed amplifier; limiting amplifier; on-chip back termination; optical communication; vector-sum phase shifter;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2014.2327036