DocumentCode :
3493623
Title :
Integrated photonic 71–76 GHz transmitter module employing high linearity double mushroom-type 1.55 μm waveguide photodiodes
Author :
Rymanov, Vitaly ; Palandoken, M. ; Lutzmann, S. ; Bouhlal, B. ; Tekin, Tolga ; Stohr, Andreas
Author_Institution :
ZHO/Optoelektron., Univ. Duisburg-Essen, Duisburg, Germany
fYear :
2012
fDate :
11-14 Sept. 2012
Firstpage :
253
Lastpage :
256
Abstract :
Here, we present novel high-power partially p-doped, partly non-intentionally doped absorbing double mushroom-type 1.55 μm waveguide photodiodes for integration in compact photonic transmitter modules employed in E-band (60-90 GHz) radio-over-fiber systems. Besides the high-output power levels approaching 0 dBm and a high linearity in the 70 GHz band, the developed photodiodes also exhibit an excellent frequency flatness and a return loss of ±0.5 dB and ~24 dB, respectively. For low-cost packaging, the photodiodes are hybrid integrated with 71-76 GHz high-electron-mobility-transistor amplifiers followed by a low-loss radio frequency laminate-based grounded-coplanar-waveguide-to-WR-12 transition in order to enable broadband wireless communications over longer medium-range distances.
Keywords :
amplifiers; broadband networks; coplanar waveguides; photodiodes; transistors; transmitters; E-band radio-over-fiber systems; broadband wireless communications; compact photonic transmitter modules; frequency 60 GHz to 90 GHz; frequency 71 GHz to 76 GHz; frequency flatness; high linearity double mushroom-type waveguide photodiodes; high-electron-mobility-transistor amplifiers; high-power partially p-doped; integrated photonic transmitter module; low-cost packaging; low-loss radio frequency laminate-based grounded-coplanar-waveguide-to-WR-12 transition; partly nonintentionally doped absorbing double mushroom-type waveguide photodiodes; return loss; size 1.55 mum; Optical waveguides; Photoconductivity; Photodiodes; Photonics; Radio frequency; Radio transmitters; Wireless communication; millimeter wave devices; photodiodes; photonic transmitters; photoreceivers; radio-over-fiber; wireless communications;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Microwave Photonics (MWP), 2012 International Topical Meeting on
Conference_Location :
Noordwijk
Print_ISBN :
978-1-4673-2863-0
Type :
conf
DOI :
10.1109/MWP.2012.6474105
Filename :
6474105
Link To Document :
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