An InP-based photoreceiver comprising a waveguide-integrated photodiode and a traveling-wave amplifier is presented, which allows dc-coupled interfacing to subsequent electronics without a bias-T. Getting rid of the bias-T provides cost savings of the receiver operations and improves the available bandwidth, gain and gain flatness. The redesigned receiver optoelectronic integrated circuit was fully packaged into a pigtailed module with a coaxial 1.85-mm connector. Its optoelectronic conversion capability for nonreturn-to-zero modulated data rates up to 66 Gb/s is shown
Monolithic photoreceivers for 40/43 Gbit/s fibre-based communication systems are reviewed. A versati...
A monolithic InP-based photoreceiver for lambda =1.55 mu m is presented. Its optoelectronic conversi...
Monolithically integrated InP-based photoreceivers, either comprising pin-diodes with travelling-wav...
The photonic-based telecommunication systems are continuously upgraded to a bit rate of 40 Gbit/s. T...
An InP-based photoreceiver OEIC for lambda =1.55 mu m with a bandwidth of 27 GHz is reported. The re...
A monolithic integrated photoreceiver for 1.55-μm wavelength has been designed for operation in a 20...
A photoreceiver optoelectronic integrated circuit based on InP with a bandwidth of 37 GHz is present...
An InP-based monolithic integrated photoreceiver with a bandwidth of 27 GHz is presented. The device...
A novel monolithically integrated photoreceiver for 10Gbit/s long-haul optoelectronic transmission s...
Photoreceivers based on InP are becoming increasingly important for 40 Gbit/s telecommunication syst...
For future long-haul communication systems operating at bitrates of 40 Gbit/s and for broad-band mob...
Optical front-ends are considered to play a major role in future communication systems operating at ...
Optical front-ends are considered to play a major role in future communication systems operating at ...
Abstract: The development in InP-based optoelectronic monolithically integrated circuits of both the...
A novel balanced photoreceiver with integrated amplifier, based on InP, is presented. The device exh...
Monolithic photoreceivers for 40/43 Gbit/s fibre-based communication systems are reviewed. A versati...
A monolithic InP-based photoreceiver for lambda =1.55 mu m is presented. Its optoelectronic conversi...
Monolithically integrated InP-based photoreceivers, either comprising pin-diodes with travelling-wav...
The photonic-based telecommunication systems are continuously upgraded to a bit rate of 40 Gbit/s. T...
An InP-based photoreceiver OEIC for lambda =1.55 mu m with a bandwidth of 27 GHz is reported. The re...
A monolithic integrated photoreceiver for 1.55-μm wavelength has been designed for operation in a 20...
A photoreceiver optoelectronic integrated circuit based on InP with a bandwidth of 37 GHz is present...
An InP-based monolithic integrated photoreceiver with a bandwidth of 27 GHz is presented. The device...
A novel monolithically integrated photoreceiver for 10Gbit/s long-haul optoelectronic transmission s...
Photoreceivers based on InP are becoming increasingly important for 40 Gbit/s telecommunication syst...
For future long-haul communication systems operating at bitrates of 40 Gbit/s and for broad-band mob...
Optical front-ends are considered to play a major role in future communication systems operating at ...
Optical front-ends are considered to play a major role in future communication systems operating at ...
Abstract: The development in InP-based optoelectronic monolithically integrated circuits of both the...
A novel balanced photoreceiver with integrated amplifier, based on InP, is presented. The device exh...
Monolithic photoreceivers for 40/43 Gbit/s fibre-based communication systems are reviewed. A versati...
A monolithic InP-based photoreceiver for lambda =1.55 mu m is presented. Its optoelectronic conversi...
Monolithically integrated InP-based photoreceivers, either comprising pin-diodes with travelling-wav...