Nova Patents
EP0808045B1

ATM switch

Abstract

This record has no abstract on file.

EP0808045B1, drawing sheet 1
Sheet 1 of 20

Term

Term ended

Expired 6 May 2017, 9.4 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

8 claims: 2 independent, 6 dependent

  1. 1
    An ATM switch for distributing cells arriving from a plurality of input lines to a plurality of output lines, comprising:a plurality of input line corresponding units (2-1,..., 2-8) each connected to said plurality of input lines;a plurality of output line corresponding units (4-1,..., 4-8) each connected to said plurality of output lines;and wavelength shifting means (3), arranged between said input line corresponding units (2-1,..., 2-8) and said output line corresponding units (4-1,...,4-8), for shifting optical signals having different wavelengths included in a plurality of wavelength-multiplexed optical signals arriving from said input line corresponding units (2-1,..., 2-8) and outputting the wavelength-multiplexed optical signals,    wherein each of said input line corresponding units (2-1,..., 2-8) includes an input-side basic switch (6) for distributing N (N is a positive integer) cells which are respectively input to a plurality of input ports to N lines, electro-optic conversion means (7-1,..., 7-8) for converting the cells distributed to the N lines into optical signals having different wavelengths in units of lines, and a multiplexer (8) for multiplexing the optical signals converted in units of lines into one wavelength-multiplexed optical signal, and    each of said output line corresponding units (4-1,..., 4-8) includes a demultiplexer (9) for demultiplexing in units of wavelengths the wavelength-multiplexed optical signal obtained by wavelength-multiplexing the optical signals having N wavelengths, opto-electric conversion means (10-1,..., 10-8) for converting outputs from said demultiplexer into electrical signals, respectively, and an output-side basic switch (11) for distributing the cells converted into the electrical signals to a plurality of output ports;wherein said wavelength shifting means (3) is constituted by a barrel shifter (3) which distributes an optical signal having a pth (p = 0, 1, 2,..., (N - 1)) wavelength in an nth (n = 0, 1, 2,..., (the number of input line corresponding units - 1)) wavelength-multiplexed optical signal to an (n + p)th output and distributes the optical signal to an output of an ordinal number obtained by subtracting the number of output line corresponding units from (n + p) when n + p is not less than the number of output line corresponding units.
  2. 8
    A large-scale ATM switch comprising multiple-connected ATM switches,    wherein an ATM switch at a first stage comprises a plurality of input line corresponding units each connected to a plurality of input lines, a plurality of output line corresponding units each connected to a plurality of output lines, and wavelength shifting means, arranged between said input line corresponding units and said output line corresponding units, for shifting optical signals having different wavelengths included in a plurality of wavelength-multiplexed optical signals arriving from said input line corresponding units and outputting the wavelength-multiplexed optical signals,    each of said input line corresponding units including an input-side basic switch for distributing N (N is a positive integer) cells which are respectively input to a plurality of input ports to N lines, electro-optic conversion means for converting the cells distributed to the N lines into optical signals having different wavelengths in units of lines, and a multiplexer for multiplexing the optical signals converted in units of lines into one wavelength-multiplexed optical signal, and    each of said output line corresponding units including a demultiplexer for demultiplexing in units of wavelengths the wavelength-multiplexed optical signal obtained by wavelength-multiplexing the optical signals having N wavelengths, opto-electric conversion means for converting outputs from said demultiplexer into electrical signals, respectively, and an output-side basic switch for distributing the cells converted into the electrical signals to a plurality of output ports, and    each of ATM switches at subsequent stages comprises a plurality of input line corresponding units each connected to a plurality of input lines, a plurality of output line corresponding units each connected to a plurality of output lines, and wavelength shifting means, arranged between said input line corresponding units and said output line corresponding units, for shifting optical signals having different wavelengths included in a plurality of wavelength-multiplexed optical signals arriving from said input line corresponding units and outputting the wavelength-multiplexed optical signals,    each of said input line corresponding units of each ATM switch at the subsequent stages including electro-optic conversion means for converting outputs from said output line corresponding units of said ATM switch at the previous stage into optical signals having different wavelength in units of lines, and a multiplexer for multiplexing the optical signals converted in units of lines into one wavelength-multiplexed optical signal, and    each of said output line corresponding units of each ATM switch at the subsequent stages including a demultiplexer for demultiplexing in units of wavelengths the wavelength-multiplexed optical signal obtained by wavelength-multiplexing the optical signals having N wavelength    opto-electric conversion means for converting outputs from said demultiplexer into electrical signals, respectively, and an output-side basic switch for distributing cells converted into the electrical signals to a plurality of output ports;wherein said wavelength shifting means (3) is constituted by a barrel shifter (3) which distributes an optical signal having a pth (p = 0,1, 2,..., (N -1)) wavelength in an nth (n = 0,1, 2,..., (the number of input line corresponding urtits - 1)) wavelength-multiplexed optical signal to an (n + p)th output and distributes the optical signal to an output of an ordinal number obtained by subtracting the number of output line corresponding units from (n + p) when n + p is not less than the number of output line corresponding units.