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    • 67. 发明授权
    • Optical cross connect unit, optical add-drop multiplexer, light source unit, and adding unit
    • US06285479B1
    • 2001-09-04
    • US09050105
    • 1998-03-30
    • Kazue OkazakiHiroshi OnakaHideyuki MiyataYutaka KaiTerumi Chikama
    • Kazue OkazakiHiroshi OnakaHideyuki MiyataYutaka KaiTerumi Chikama
    • H04J1402
    • H04Q11/0005H04J14/0204H04J14/0205H04J14/021H04J14/0212H04J14/0213H04J14/0217H04J14/0221H04M1/274558H04M1/274583H04M2250/60H04Q2011/0016H04Q2011/0018H04Q2011/0024H04Q2011/0045H04Q2011/0049
    • The present invention relates to an optical cross connect unit comprising M wavelength separating sections for receiving multiplexed optical signals each having N kinds of wavelengths different from each other through M optical fibers, respectively, and for wavelength-separating each of the multiplexed optical signals into N optical signals, M optical reproduction relay sections each for conducting an optical reproduction and relay in a manner of making a conversion of each of the N optical signals, wavelength-separated in each of the wavelength separating sections, into an electric signal and then modulating it with a desired optical wavelength, a refill section for mutually refilling M sets of optical signals optically reproduced and relayed in the optical reproduction relay sections, a focusing section for focusing the M sets of optical signals refilled in the refill section, and a light source unit for supplying input lights having desired wavelengths to be modulated in the M optical reproduction relay sections. The light source unit includes N light sources for outputting lights having the N kinds of optical wavelengths, a multiplexing and branching section for multiplexing the lights from the N light sources to produce a multiplexed light having N kinds of optical wavelength components and further for branching the multiplexed light into M×N lights to output them as multiplexed and distributed lights, M wavelength filter sections for distributively receiving N multiplexed and distributed lights of the M×N multiplexed and distributed lights branched in the multiplexing and branching section to output N lights due to the passage of only arbitrary wavelengths of the N kinds of optical wavelengths, and a wavelength setting control section for setting optical wavelengths, which pass through the wavelength filter sections, so that they differ from each other. The N lights from each of the M wavelength filter sections are supplied as the input lights. In the case that many light sources are necessary for the modulation processing by modulators or the like, this optical cross connect unit is also suitable because of using given wavelengths from a small number of light sources for a lot of modulation processing.