Title :
Front-end design of W-band integrated photonic transmitter with wide optical-to-electrical bandwidth for wireless-over-fiber applications
Author :
Hsuan-Ju Tsai ; Chen, Nan-Wei ; Fon-Ming Kuo ; Jin-Wei Shi
Author_Institution :
Dept. of Electr. Eng., Nat. Central Univ., Jhongli, Taiwan
Abstract :
A broadband, integrated photonic transmitter front-end is demonstrated. The front-end essentially comprises a dipole-based structure fed horn antenna and a broadband slotline to coplanar-waveguide transition. The proposed dipole-based antenna feeding structure does not call for any modifications on the waveguide and bond wires on the structure for insertion loss reduction, which is critical for an easy and low-cost transmitter implementation in the milliliter-wave regime. For experimental demonstration, the proposed front-end is integrated with a near-ballistic uni-travelling-carrier photodiode (NBUTC-PD) through flip-chip bonding for realization of a W-band integrated photonic transmitter poised for high-speed wireless data transmission. Owing to wide optical-to-electrical bandwidth of the NBUTC-PD integrated with the proposed front-end, the demonstrated photonic transmitter is of a high data rate up to 12.5 Gb/s and expected to find applications in the broadband wireless-over-fiber systems.
Keywords :
antenna feeds; broadband antennas; coplanar waveguides; data communication; horn antennas; millimetre wave antennas; photodiodes; radio-over-fibre; W-band integrated photonic transmitter front-end design; broadband slotline; broadband wireless-over-fiber application; coplanar waveguide transition; dipole based antenna feeding structure; flip chip bonding; high speed wireless data transmission; horn antenna; insertion loss reduction; millimeterwave regime; near ballistic unitravelling carrier photodiode; wide optical-to-electrical bandwidth; Bandwidth; Bonding; Broadband antennas; Dipole antennas; High speed optical techniques; Horn antennas; Integrated optics; Optical design; Optical transmitters; Optical waveguides; front-end; photonic transmitter; uni-travelling-carrier photodiode; wireless-over-fiber;
Conference_Titel :
Microwave Symposium Digest (MTT), 2010 IEEE MTT-S International
Conference_Location :
Anaheim, CA
Print_ISBN :
978-1-4244-6056-4
Electronic_ISBN :
0149-645X
DOI :
10.1109/MWSYM.2010.5518048