Title :
Simple assembly scheme of a corner-illuminated PD on a hybridly integrated planar lightwave circuit (PLC) platform
Author :
Nakagawa, G. ; Yamamoto, T. ; Sasaki, S. ; Yamamoto, N. ; Tanaka, K. ; Norimatsu, M. ; Kobayashi, M. ; Miura, K. ; Yano, M.
Author_Institution :
Fujitsu Labs. Ltd., Atsugi, Japan
Abstract :
We report a planar integration scheme for a corner-illuminated photodiode (PD) on a planar lightwave circuit (PLC) platform for highly uniform optical coupling for receiver-PDs and monitor-PDs. We adjusted the marker on the PD to the waveguide on the PLC and the marker on the platform, and deviations from the center position are small, to within /spl plusmn/10 /spl mu/m. The corner-illuminated PD has large lateral tolerance of 65 /spl mu/m for the receiver-PD and 160 /spl mu/m for the monitor-PD. These result in high monitor current uniformity. High average coupling efficiency was obtained for the receiver-PD, with a loss of 0.7/spl plusmn/0.3 dB. As for the monitor-PD, uniform currents of 312/spl plusmn/45 /spl mu/A (/spl plusmn/0.7 dB in optical power) at -2 dBm optical power was obtained. The deviation of optical coupling between the LD and monitor-PD is estimated to be almost 0 dB, judging from deviation of the optical coupling between the LD and the PLC waveguide which is evaluated to be /spl plusmn/0.7 dB. We have confirmed that the corner-illuminated PD and its alignment method are promising for highly uniform characteristics with a surface mounting configuration.
Keywords :
integrated optoelectronics; monitoring; optical couplers; optical planar waveguides; optical receivers; semiconductor lasers; 0.4 to 1 dB; 267 to 357 muA; LD-PLC waveguide coupling; PD marker; PLC waveguide; assembly scheme; average coupling efficiency; center position deviations; corner-illuminated PD; corner-illuminated PD alignment method; corner-illuminated PD lateral tolerance; corner-illuminated photodiode; hybridly integrated planar lightwave circuit; monitor current uniformity; monitor-PDs; optical coupling; optical coupling deviation; optical power; planar integration scheme; planar lightwave circuit; receiver-PD loss; receiver-PDs; surface mounting configuration; uniform optical coupling; Assembly; Circuits; Monitoring; Optical coupling; Optical losses; Optical receivers; Optical surface waves; Optical waveguides; Photodiodes; Programmable control;
Conference_Titel :
IEMT/IMC Symposium, 2nd 1998
Conference_Location :
Tokyo, Japan
Print_ISBN :
0-7803-5090-1
DOI :
10.1109/IEMTIM.1998.704536