An InP-based photoreceiver OEIC for /spl lambda/=1.55 /spl mu/m with a bandwidth of 27 GHz is reported. The receiver design, fabrication and characterization is presented. The device consists of an optical waveguide-fed pin-photodiode and a coplanar traveling-wave amplifier being composed of four GaInAs-AlInAs-InP-HEMT's. The photodiode exhibits an external quantum efficiency of 30% and a 3-dB power bandwidth of 35 GHz. HEMT's with 0.7-/spl mu/m gate length, integrated on semi-insulating optical waveguide layers show cutoff frequencies f/sub T//f/sub max/ of 37/100 GHz at zero gate bias. Traveling-wave amplifiers with 0.5-/spl mu/m gate HEMT's have 28-GHz bandwidth. The receiver OEIC is packaged into a module with fiber pigtail and operates successfully within an SDH based 20-Gb/s transmission system. An overall system sensitivity of -30.5 dBm was achieved at a BER=10/sup -9/ after signal transmission over 198-km dispersion shifted fiber.
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Bach et al. (1996) studied this question.
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