InP D-HBT ICs for 40-Gb/s and higher bitrate lightwave transceivers

Y. Baeyens, George Georgiou, J. S. Weiner, A. Leven, Vincent Houtsma, P. Paschke, Q. Lee, R. F. Kopf, Yang Yang, Lye Heng Chua,

IEEE Journal of Solid-State Circuits · 2002 · 53 citations · 17 references

Concepts

Abstract

The combination of device speed (f/sub T/, f/sub max/ > 150 GHz) and breakdown voltage (V/sub bceo/ > 8 V) makes the double heterojunction bipolar InP-based transistor (D-HBT) an attractive technology to implement the most demanding analog functions of 40-Gb/s transceivers. This is illustrated by the performance of a number of analog circuits realized in an InP D-HBT technology with an 1.2- or 1.6-/spl mu/m-wide emitter finger: a low phase noise push-push voltage-controlled oscillator with -7-dBm output power at 146 GHz, a 40-GHz bandwidth and low-jitter 40-Gb/s limiting amplifier, a lumped 40-Gb/s limiting driver amplifier with 4.5-V/sub pp/ differential output swing, a distributed 40-Gb/s driver amplifier with 6-V/sub pp/ differential output swing, and a number of distributed preamplifiers with up to 1.3-THz gain-bandwidth product.

References

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