EP0264119A2

An optical wavelength-division switching system.

Abstract

An optical wavelength-division switching system comprises means for reproducing an electric signal for each channel from a wavelength division multiplexed optical signal (110), and means for converting the electric signal to a modulated optical signal (20). The means for reproducing the electric signal can be composed of an optical heterodyne or homodyne detection system (151-154), while the means for converting the electric signal can be composed of a distributed feedback laser diode (151-164), having an optical frequency modulating characteristic so that the number of channels is much increased with the decrease of crosstalk.

EP0264119A2, drawing sheet 1
Sheet 1 of 6

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Term ended

Projected expiry passed 14 October 2007, 18.9 years ago.

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2 claims: 1 independent, 1 dependent

  1. 1
    An optical wavelength-division switching system comprising,       means for dividing a wavelength divison multiplexed optional signal into a predetermined number of wavelength division multiplexed optical signals, said predetermined number corresponding to the number of channels of an optical communication system,       means for reproducing a predetermined number of electric signals from said predetermined number of wavelength division multiplexed optical signals, said electric signals being separated from each other to correspond to said channels,       means for converting said predetermined number of electric signals to a predetermined number of optical signals, said predetermined number of optical signals being controlled to have individual frequencies in accordance with a specified switching condition of said optical communication system, and       means for combining said predetermined number of optical signals to provide a wavelength division multiplexed optical signal,       wherein said means for reproducing is composed of a predetermined number of electric signal detectors, each of said electric signal detectors including a light source for producing a predetermined frequency of a local oscillation light, an optical combiner for combining one of said predetermined number of wavelength division multiplexed signals with said local oscillation light to produce an intermediate frequency of an optical signal, an optical-electrical converter for converting said intermediate frequency of an optical signal to said intermediate frequency of an electric signal, and a demodulator for demodulating said intermediate frequency of an electric signal to produce one of a predetermined number of electric signals.