DocumentCode :
1892910
Title :
40 Gbit/s photoreceiver with DC-coupled output and operation without bias-T
Author :
Mekonnen, G.G. ; Bach, H.-G. ; Schlaak, W. ; Steingruber, R. ; Seeger, A. ; Passenberg, W. ; Ebert, W. ; Jacumeit, G. ; Eckhardt, Th. ; Ziegler, R. ; Beling, A.
Author_Institution :
Heinrich-Hertz-Inst. fur Nachrichtentech. Berlin GmbH, Germany
fYear :
2002
fDate :
2002
Firstpage :
669
Lastpage :
672
Abstract :
The photonic-based telecommunication systems are continuously upgraded to a bit rate of 40 Gbit/s. The demand for faster transmission and the requirement of forward error correction (FEC) in data traffic makes it necessary to further extend the bit rate per channel. One of the key elements to fulfil these demands are high-speed photoreceivers in present and in future optical communication systems. Additional functionalities and cost effective packaging, obtained by a high degree of integration, as well as an increased efficiency and ease of use of the components are mandatory. The InP-based integrated photoreceiver concept with an additional integration of a spot size converter and a redesigned amplifier circuit was developed with these considerations in mind. This new generation of pinTWA Rx-OEICs comprise waveguide-integrated photodiodes with monolithically integrated taper and travelling wave amplifiers with a negative bias-configuration, avoiding an external bias network, and enables the cost effective packaging in a single-chip photoreceiver module with 47 GHz bandwidth.
Keywords :
forward error correction; integrated circuit packaging; integrated optoelectronics; optical receivers; travelling wave amplifiers; 40 Gbit/s; 47 GHz; DC-coupled output; InP; bit rate; cost effective packaging; data traffic; efficiency; external bias network; forward error correction; high-speed photoreceivers; monolithically integrated taper; negative bias-configuration; optical communication systems; photonic-based telecommunication systems; photoreceiver; pinTWA Rx-OEICs; single-chip photoreceiver; spot size converter; travelling wave amplifiers; Bit rate; Circuits; Cost function; Forward error correction; Optical amplifiers; Optical fiber communication; Optical waveguides; Packaging; Photodiodes; Telecommunication traffic;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Indium Phosphide and Related Materials Conference, 2002. IPRM. 14th
ISSN :
1092-8669
Print_ISBN :
0-7803-7320-0
Type :
conf
DOI :
10.1109/ICIPRM.2002.1014605
Filename :
1014605
Link To Document :
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