USRE39331E

Reconfigurable optical add-drop multiplexers with servo control and dynamic spectral power management capabilities

Claim Score by NHIP

Read claim 32, the broadest

Abstract

This invention provides a novel wavelength-separating-routing (WSR) apparatus that uses a diffraction grating to separate a multi-wavelength optical signal by wavelength into multiple spectral channels, which are then focused onto an array of corresponding channel micromirrors. The channel micromirrors are individually controllable and continuously pivotable to reflect the spectral channels into selected output ports. As such, the inventive WSR apparatus is capable of routing the spectral channels on a channel-by-channel basis and coupling any spectral channel into any one of the output ports. The WSR apparatus of the present invention may be further equipped with servo-control and spectral power-management capabilities, thereby maintaining the coupling efficiencies of the spectral channels into the output ports at desired values. The WSR apparatus of the present invention can be used to construct a novel class of dynamically reconfigurable optical add-drop multiplexers (OADMs) for WDM optical networking applications.

Term

Term ended

Expired 23 August 2021, 5.1 years ago.

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

36 claims: 3 independent, 33 dependent

  1. 1
    An optical add-drop apparatus, comprising:a) multiple fiber collimators, providing an input port for a multi-wavelength optical signal and a plurality of output ports including a pass-through port and one or more drop ports;b) a wavelength-separator, for separating said multi-wavelength optical signal from said input port into multiple spectral channels;c) a beam-focuser, for focusing said spectral channels into corresponding spectral spots;d) a spatial array of channel micromirrors positioned such that each channel micromirror receives a unique one of said spectral channels, said channel micromirrors being individually and continuously controllable to reflect said spectral channels into selected ones of said output ports, whereby a subset of said spectral channels is directed into said pass-through port to provide pass-through spectral channels;and e) an optical combiner, for combining said pass-through spectral channels with one or more add spectral channels.
  2. 19
    An optical apparatus comprising:a) an array of fiber collimators, providing an input port for a multi-wavelength optical signal and a plurality of output ports including a pass-through port and drop ports;b) a wavelength-separator, for separating said multi-wavelength optical signal from said input port into multiple spectral channels;c) a beam-focuser, for focusing said spectral channels into corresponding spectral spots;d) an array of channel micromirrors positioned such that each channel micromirror receives a unique one of said spectral channels, said channel micromirrors being individually and continuously controllable to reflect said spectral channels into selected ones of said output ports, whereby a subset of said spectral channels is directed to said pass-through port to provide pass-through spectral channels;e) an array of collimator-alignment mirrors, for adjusting an alignment of said multi-wavelength optical signal from said input port and directing said reflected spectral channels into said output ports;and an optical combiner, for combining said pass-through spectral channels with one or more add spectral channels.
  3. 32
    Broadest claimClaim Score 56, average(NHIP)A method of performing dynamic add and drop functions in a WDM optical network, comprising:a) receiving a multi-wavelength optical signal from an input port;b) separating said multi-wavelength optical signal into multiple spectral channels;c) focusing said spectral channels onto an array of corresponding beam-deflecting elements, whereby each beam-deflecting element receives a unique one of said spectral channels;d) dynamically and continuously controlling said beam-deflecting elements so to direct said spectral channels into a pass-through port and one or more drop ports, whereby a subset of said spectral channels are directed into said pass-through port to provide pass-through spectral channels;and e) combining said pass-through spectral channels with one or more add spectral channels.