IEEE Journal of Solid-State Circuits · 2002 · 53 citations · 17 references
Device SpeedPhotonicsElectrical EngineeringEngineeringHigh-frequency DeviceMixed-signal Integrated CircuitInp D-hbt TechnologyInp D-hbt IcsComputer EngineeringOptical Wireless CommunicationPhotonic Integrated CircuitOptical CommunicationOptical NetworkingMicroelectronicsOptoelectronicsBreakdown VoltageAnalog-to-digital ConverterElectronic Circuit
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.
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M.J.W. Rodwell, Miguel Urteaga, T. Mathew et al. · IEEE Transactions on Electron Devices · 2001 · 176 citations
Submicron Scaling, Wide-bandgap Semiconductor, Engineering +17