DocumentCode
1133580
Title
Dual-in-line laser diode module for fiber-optic transmission up to 4 Gbit/s
Author
Nakano, Hiroyuki ; Sasaki, Shinya ; Maeda, Minoru ; Aiki, Kunio
Author_Institution
Hitachi, Ltd., Takasaki, Japan
Volume
5
Issue
10
fYear
1987
fDate
10/1/1987 12:00:00 AM
Firstpage
1403
Lastpage
1411
Abstract
A very high-speed laser diode (LD) module, having a "butterfly" type dual-in-line structure is developed. This LD module consists of a laser diode, a p-i-n-photodiode for monitoring the laser power, a thermoelectric cooler, and a thermistor. The power emitted from the LD is coupled into a single-mode fiber using a hemispherical tapered fiber technique. The microwave design of the LD module employing high frequency equivalent circuit and scattering (
) parameters is shown. Parasitic inductances and capacitances in the LD module degrade the high frequency characteristics. This is a very serious problem in gigabit fiber-optic transmission systems. The microwave impedance, small signal high frequency characteristics, and high-speed pulse response of the fabricated module with low parasitics are also shown. Electrical resonance frequency is 4.8 GHz and well opened eye patterns up to 4 Gbit/s are obtained in the experiments.
) parameters is shown. Parasitic inductances and capacitances in the LD module degrade the high frequency characteristics. This is a very serious problem in gigabit fiber-optic transmission systems. The microwave impedance, small signal high frequency characteristics, and high-speed pulse response of the fabricated module with low parasitics are also shown. Electrical resonance frequency is 4.8 GHz and well opened eye patterns up to 4 Gbit/s are obtained in the experiments.Keywords
Optical fiber transmitters, lasers; Coupling circuits; Diode lasers; Equivalent circuits; Fiber lasers; Frequency; Masers; Monitoring; Power lasers; Thermistors; Thermoelectricity;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.1987.1075417
Filename
1075417
Link To Document