DocumentCode
1133737
Title
Long-distance gigabit-range optical fiber transmission experiments employing DFB-LD´s and InGaAs-APD´s
Author
Shikada, M. ; Fujita, S. ; Henmi, N. ; Takano, I. ; Mito, I. ; Taguchi, K. ; Minemura, K.
Author_Institution
NEC Corporation, Kawasaki, Japan
Volume
5
Issue
10
fYear
1987
fDate
10/1/1987 12:00:00 AM
Firstpage
1488
Lastpage
1497
Abstract
High-speed and long-distance transmission characteristics have been examined at 1.2, 2, and 4 Gbit/s, employing mesa structure DFB-DC-PBH LD transmitters and planar InGaAs APD receivers. High receiver sensitivities, -40 dBm at 1.2 Gbit/s, -37.4 dBm at 2 Gbit/s and -32.4 dBm at 4 Gbit/s, have been obtained employing high-speed and low noise InGaAs APD/FET receiver circuits. Long-span transmissions, 1.2-Gbit/s 170-km, 2-Gbit/s 141-km, and 4- Gbit/s 120-km at 1.55 μm, and 4-Gbit/s 74-km at 1.3 μm, have been performed. Power penalties caused by the LD wavelength chirping in the 1.5- μm wavelength region and error rate flooring caused by the LD side-mode oscillation in the 1.3- μm wavelength region are discussed. The transmission length is limited not only by the DFB LD wavelength chirping but also by the two-mode oscillation, which was observed at the pulse leading edge when LD bias current was near the threshold current. From the 1.3 μm wavelength 4-Gbit/s experiment, it was found that the pattern effect of the side-mode oscillation caused the error rate floor, when the LD bias current is set near the threshold current, and that the error rate floor disappeared when the bias current is set slightly above the threshold.
Keywords
Distributed feedback (DFB) lasers; Optical fiber receivers; Optical fiber transmitters, lasers; Chirp; Circuits; Diode lasers; Error analysis; Frequency response; Indium gallium arsenide; National electric code; Optical fibers; Optical receivers; Threshold current;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.1987.1075433
Filename
1075433
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