Title :
High Performance Polynorbornene Optical Waveguide for Opto-Electric Interconnections
Author :
Fujiwara, M. ; Shirato, Y. ; Owari, H. ; Watanabe, K. ; Matsuyama, M. ; Takahama, K. ; Mori, T. ; Miyao, K. ; Choki, Koji ; Fukushima, T. ; Tanaka, T. ; Koyanagi, M.
Author_Institution :
Sumitomo Bakelite Co. Ltd., Yokohama
fDate :
Jan. 16 2007-Yearly 18 2007
Abstract :
We have newly developed a multi-mode polymer optical waveguide with polynorbornene (PNB). The PNB waveguide has extremely low optical loss of 0.03 dB/cm at wavelength of 830-nm and high glass transition temperature (Tg) of 270degC. The PNB waveguide can be formed by only UV irradiation step without both etching and developing processes. By using this method, the waveguide can be easily patterned with various shapes such as Y-branch, bend, taper, and so on. In addition, we can fabricate the minimum waveguide pitch less than 75 mum with the 50-mum-width core. We can also easily fabricate a stacked waveguide because the core layer with flat surface can be formed without an etching and a developing process. In the PNB waveguide, 45deg mirror was formed by an excimer laser. This method provides a small mirror (100 mum times 200 mum) with smooth surface in respective waveguides. From the result of insertion loss measurements, total optical loss was less than 2 dB in an 8-cm-length waveguide with two 45deg mirrors. Furthermore, new opto-electric (O-E) interconnection with PNB optical waveguide was proposed. This PNB waveguide has high flexibility and high adaptability to reflow soldering process because of its high Tg. Therefore, the PNB waveguide can be formed in flexible printed circuit boards (PCBs) without particular process, as compared to the conventional PCB fabrication process, which leads to low cost O-E interconnection.
Keywords :
optical interconnections; optical polymers; optical waveguides; UV irradiation step; excimer laser; flexible printed circuit boards; high glass transition temperature; high performance polynorbornene optical waveguide; low optical loss; multimode polymer optical waveguide; optoelectric interconnections; reflow soldering process; stacked waveguide; temperature 270 degC; wavelength 830 nm; Etching; Integrated circuit interconnections; Mirrors; Optical interconnections; Optical losses; Optical polymers; Optical surface waves; Optical waveguide components; Optical waveguides; Surface waves; 45° mirrors; Optical waveguide; Opto-Electric (O-E) interconnection; Polynorbornene (PNB);
Conference_Titel :
Polymers and Adhesives in Microelectronics and Photonics, 2007. Polytronic 2007. 6th International Conference on
Conference_Location :
Odaiba, Tokyo
Print_ISBN :
978-1-4244-1186-3
Electronic_ISBN :
978-1-4244-1186-3
DOI :
10.1109/POLYTR.2007.4339166