Nova Patents
EP1832017A2

Optical receiver

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 22 December 2025, 0.8 years ago.

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89 claims: 14 independent, 75 dependent

  1. 1
    Claims of equivalent WO 2006074020 A2 What is claimed is:1. An apparatus comprising: a demodulator for demodulating an optical input signal having data modulated thereon according to a DPSK modulation format, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs;first and second photodetectors, said first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, said second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon;an integrated clock and data recovery circuit coupled to first and second electrical outputs, said integrated clock and data recovery circuit being configured to provide a signal level output representative of a signal level of at least one of said first and second electrical outputs;and a controller configured for providing a demodulator setting signal in response to said signal level output for controlling an optical path length of one of said first and second arms.
  2. 15
    A method of stabilizing a demodulator configured to split a DPSK formatted optical input signal onto first and second arms and provide first and second optical outputs, said method comprising:coupling an output of said demodulator to an integrated clock and data recovery circuit, said integrated clock and data recovery circuit being configured to provide a signal level output representative of a signal level of at least one of said first and second outputs;and providing a demodulator setting signal in response to said signal level output for controlling an optical path length of one of said first and second arms.
  3. 24
    An apparatus comprising:a demodulator for demodulating an optical input signal, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs;a first dither circuit for establishing a demodulator dither signal;a controller configured for providing a demodulator setting signal;a combiner for combining said demodulator dither signal and said demodulator setting signal as a demodulator control signal for controlling an optical path length of one of said first and second arms;a second dither circuit for establishing a demodulator dither reference signal;and an error detection circuit for providing an error signal in response to a feedback signal representative of a signal level of at least one of said first and second optical outputs and said demodulator dither reference signal, said controller being configured for providing said demodulator setting signal in response to said demodulator error signal.
  4. 31
    A method of stabilizing an demodulator configured to split an optical input signal onto first and second arms and provide first and second optical outputs, said method comprising:providing a first dither circuit for establishing a demodulator dither signal;controlling an optical path length of one of said first and second arms in response to said demodulator dither signal and a demodulator setting signal;providing a second dither circuit for establishing a demodulator dither reference signal;and generating said demodulator setting signal in response to a feedback signal representative of a signal level of at least one of said first and second optical outputs and said demodulator dither reference signal.
  5. 36
    An apparatus comprising:a tunable optical band pass filter for receiving an optical input signal having data modulated thereon according to a DPSK modulation format;a demodulator coupled to an output of said band pass filter for demodulating said optical input signal, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs;first and second photo detectors, said first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, said second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon;and a controller for providing a band pass filter setting signal in response to a feedback signal representative of signal power in said first and second electrical outputs for controlling a center wavelength of said band pass filter.
  6. 48
    A method of controlling the center wavelength of an optical band pass filter in a receiver for receiving a DPSK formatted optical signal, said method comprising:coupling an output of said filter to a demodulator configured to split said optical signal onto first and second arms and provide first and second optical outputs;providing first and second photo detectors, said first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, said second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon;and providing a band pass filter setting signal in response to a feedback signal representative of said first and second electrical outputs for controlling said center wavelength.
  7. 54
    An apparatus comprising:an optical amplifier for amplifying an optical signal having data modulated thereon according to a DPSK modulation format;an optical band pass filter coupled to said optical amplifier for receiving said optical signal;a demodulator coupled to said amplifier filter for demodulating said optical signal, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs;and a controller for providing an amplifier setting signal in response to a feedback signal representative of signal power in said first and second optical outputs for controlling a gain of said amplifier.
  8. 60
    A method of controlling the gain of a optical pre-amplifϊer in a receiver for receiving a DPSK formatted optical signal, said method comprising:coupling an output of said amplifier to an optical band pass filter;coupling the output of said filter to a DPSK demodulator configured to split said optical signal onto first and second arms and provide first and second optical outputs;and providing an amplifier setting signal in response to a feedback signal representative of signal power in said first and second optical outputs for controlling said gain.
  9. 63
    An apparatus comprising:an optical amplifier for amplifying an optical input signal;a demodulator coupled to said amplifier for demodulating data from said optical input signal;an FEC decoder circuit configured to decode said data and to provide a fault indicator upon occurrence of a fault in decoding said data;and a controller configured for disabling said amplifier when a power level of said optical input signal is below a predetermined threshold and said fault indicator is provided by said FEC decoder.
  10. 68
    A method of protecting against transients in an input signal applied to an optical amplifier of an optical signal receiver, said method comprising:monitoring a power level of said input signal;monitoring a fault condition of an FEC decoder for decoding data modulated on said optical signal;and disabling said optical amplifier when said power level is below a predetermined threshold and said fault condition of said FEC decoder is indicated.
  11. 72
    An apparatus comprising:a demodulator for demodulating an optical input signal having data modulated thereon according to a DPSK modulation format, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs;first and second photo detectors, said first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, said second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon;a clock and data recovery circuit coupled to first and second electrical outputs, said clock and data recovery circuit being configured to provide an output representative of said data;and a electrical delay circuit coupled between said first electrical output and said clock and data recovery circuit, said electrical delay circuit being configured to provide an electrical delay of said first electrical output relative to said second electrical output.
  12. 73
    A method of compensating for a differential delay between first and second electrical outputs of associated first and second photodetectors in a receiver for an optical signal having data modulated thereon according to a DPSK modulation format, said method comprising:tuning a value of an electrical delay line to compensate for said differential delay;and coupling said electrical delay line to one of said first and second outputs.
  13. 76
    An apparatus comprising:a data path comprising: a demodulator for demodulating an optical input signal having data modulated thereon according to a RZ-DPSK modulation format, said demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs, and first and second photo detectors, said first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, said second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon;a circuit coupled to said first and second electrical outputs, said circuit being configured to provide an electrical output data stream representative of said data in response to a clock input representative of a clock associated with said data;and a clock path coupling a portion of a signal on said data path to said circuit as said clock input.
  14. 84
    A method of recovering data in an optical receiver having a data path including a demodulator for demodulating an optical input signal having said data modulated thereon according to a RZ-DPSK modulation format, the demodulator being configured to split said optical input signal onto first and second arms and provide first and second optical outputs, and first and second photo detectors, the first photodetector being configured for providing a first electrical output in response to said first optical output being imparted thereon, the second photodetector being configured for providing a second electrical output in response to said second optical output being imparted thereon, said method comprising:providing a circuit coupled to the first and second electrical outputs, said circuit being configured to provide an electrical output data stream representative of said data in response to a clock input representative of a clock associated with said data;and coupling a portion of a signal on said data path to said circuit as said clock input.