DocumentCode :
109794
Title :
High-Bandwidth Density and Low-Power Optical MCM Using Waveguide-Integrated Organic Substrate
Author :
Tokunari, Masao ; Hsiang-Han Hsu ; Toriyama, Kazushige ; Noma, Haruo ; Nakagawa, Sachiko
Author_Institution :
IBM Res. - Tokyo, Kawasaki, Japan
Volume :
32
Issue :
6
fYear :
2014
fDate :
15-Mar-14
Firstpage :
1207
Lastpage :
1212
Abstract :
A high-bandwidth density and low-power optical multichip module (MCM) is developed and demonstrated. The module includes bare optical and driver chips and an application specific integrated circuit bonded on an optical waveguide-integrated organic carrier. Characterization results show that the optical I/O operates up to 20 Gb/s. The high-speed performance is not limited by the electrical characteristics of the carrier but by the optical chip bandwidth. The space between the VCSEL/PD surface and the waveguide is minimized to less than 5 μm by using an assembly technology with chip height control, which results in an average insertion loss of 2.7 dB. Alignment tolerances for a 0.5 dB insertion loss increase are ±5 and 7 μm for the transmitter, and ±6 and 7 μm for the receiver in the parallel and perpendicular directions respectively. This type of organic optical MCM promises to integrate high-bandwidth density and low-power optical I/Os with CMOS ICs on first level packages for next generation high performance computers and servers.
Keywords :
integrated optics; multichip modules; optical waveguides; application specific integrated circuit; electrical characteristics; first level packages; high-bandwidth density; high-speed performance; low-power optical MCM; low-power optical multichip module; next generation high performance computers; next generation high performance servers; waveguide-integrated organic substrate; High-speed optical techniques; Integrated optics; Optical coupling; Optical device fabrication; Optical fibers; Flip-chip; multichip modules; optical interconnections; optoelectronic devices;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/JLT.2013.2292703
Filename :
6674976
Link To Document :
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