IP Library Granted Patent US 6,870,968
Granted Patent B2
US 6,870,968 · App. 10/221,575 · Granted Mar 22, 2005

Optical signal time-scaling arrangement

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Quick Facts
Patent No.
US 6,870,968
App. No.
10/221,575
Granted
Mar 22, 2005
Kind
B2
Abstract

A signal time-scaling arrangement utilises a known configuration comprising the use of a laser which has its wavelength varied over time, a modulator coupled to the laser and to a modulating analogue electrical source and a dispersion means coupled to the output of the modulator and providing at its output a signal which is a stretched version of the analogue modulating signal, but provides for the modulator to be a single-sideband modulator instead of double-sideband. The effect of this is to enable the use of a much simple laser-control system involving a CW laser output which is wavelength-ramped continuously between quite narrow wavelength limits, while allowing the use of a dispersion means having a wide dispersion characteristic in order to provide the required degree of time-scaling. The invention is application to an ADC system or to a Doppler system.

Claims (22)

1. Signal time-scaling arrangement comprising: an optical source for delivering radiation at a wavelength which is variable with time over a given wavelength range; a single-sideband modulating means having a first input coupled to the optical source, a second input coupled to a modulating source, and an output; and a signal-dispersion means coupled to the output of the modulating means, the signal-dispersion means being operative to impose different delays on different wavelength components of the radiation, an output of the signal-dispersion means forming the output of the signal time-scaling arrangement.

2. Signal time-scaling arrangement as claimed in claim 1 , wherein the optical source is a continuous-wave optical source.

3. Signal time-scaling arrangement as claimed in claim 2 , wherein the variation of the radiation wavelength is a continuous variation over a given time period.

4. Signal time-scaling arrangement as claimed in claim 3 , wherein the variation of the radiation wavelength is a substantially linear ramp.

5. Signal time-scaling arrangement as claimed in claim 1 , wherein the modulating means is fed, in use, with the modulating signal and a Hilbert transformed version of the modulating signal.

6. Signal time-scaling arrangement as claimed in claim 5 , wherein the modulating means comprises a double-sideband modulator having an input connected to the modulating source and an output connected to the signal-dispersion means through a phase modulator, a modulating input of the phase modulator receiving, in use, the Hilbert-transformed modulating signal.

7. Signal time-scaling arrangement as claimed in claim 5 , wherein the modulating means is a Mach-Zehnder modulator, the electrodes associated with the two limbs of the modulator's “Y” waveguide arrangement being fed respectively, in use, by the modulating signal and the Hilbert-transformed version of the modulating signal.

8. Signal time-scaling arrangement as claimed in claim 1 , wherein the signal-dispersion means comprises an optical fibre having intrinsic dispersion properties.

9. Signal time-scaling arrangement as claimed in claim 1 , wherein the signal-dispersion means comprises a fibre Bragg-grating device.

10. Signal time-scaling arrangement as claimed in claim 1 , wherein the optical source is a laser.

11. Signal time-scaling arrangement as claimed in claim 1 , coupled wherein the output of the signal-dispersion means is coupled to an opto-electrical converter for converting the optical signal at the output of the signal-dispersion means into an electrical signal, and an output of the opto-electrical converter is coupled to an electrical analogue-to-digital conversion means.

12. Signal time-scaling arrangement as claimed in claim 1 , wherein the opto-electrical convertor is a photodiode.

13. Signal time-scaling arrangement comprising a signal time-scaling arrangement as claimed claim 1 , in any one of the preceding claims, wherein spectral components of the modulating signal appear shifted in frequency at the output of the dispersion means.

14. Signal time-scaling arrangement as claimed in claim 1 , wherein the frequency shifter arrangement is a Doppler generator arrangement in which the modulating source is a source of continuous sinewaves.

15. Signal time-scaling arrangement as claimed in claim 1 , wherein the sinewaves are of a predetermined frequency or are within a predetermined range of frequencies.

16. Method for time-scaling a signal, comprising: providing a source of optical radiation of a wavelength which is varied with time over a given wavelength range; intensity-modulating said radiation with an analogue signal which is to be time-scaled, the intensity-modulation taking place in a single-sideband modulator, and subjecting the modulated radiation to a dispersion process whereby different wavelength components of the radiation are delayed by different amounts, the thereby dispersion-processed modulated radiation constituting the time-scaled signal.

17. Method for time-scaling a signal as claimed in claim 16 , wherein the radiation is continuous-wave radiation whose wavelength is varied in a continuous manner.

18. Method for time-scaling a signal as claimed in claim 17 , wherein the wavelength is varied in a substantially linear manner.

19. Method for time-scaling a signal as claimed in claim 18 , wherein the signal is time-stretched by arranging for the wavelength to be varied in a direction of increasing frequency and for the dispersion means to subject the higher-frequency components of the radiation to a longer delay than the lower-frequency components thereof.

20. Method for time-scaling a signal as claimed in claim 18 , wherein the signal is time-stretched by arranging for the wavelength to be varied in a direction of decreasing frequency and for the dispersion means to subject the lower-frequency components of the radiation to a longer delay than the higher-frequency components thereof.

21. Method for time-scaling a signal as claimed in claim 18 , wherein the signal is time-compressed by arranging for the wavelength to be varied in a direction of decreasing frequency and for the dispersion means to subject the higher-frequency components of the radiation to a longer delay than the lower-frequency components thereof.

22. Method for time-scaling a signal as claimed in claim 18 , wherein the signal is time-compressed by arranging for the wavelength to be varied in a direction of increasing frequency and for the dispersion means to subject the lower-frequency components of the radiation to a longer delay than the higher frequency components thereof.

Assignments (8)
CHANGE OF NAME Recorded Jul 17, 2019
From: OCLARO TECHNOLOGY LIMITED
To: LUMENTUM TECHNOLOGY UK LIMITED
Reel/Frame 049783/0871 →
RELEASE OF SECURITY INTEREST Recorded May 9, 2017
From: SILICON VALLEY BANK
To: OCLARO, INC.; OCLARO TECHNOLOGY, INC.; OCLARO (NORTH AMERICA), INC.; MINTERA CORPORATION; OPNEXT, INC.; PINE PHOTONICS COMMUNICATIONS, INC.; OPNEXT SUBSYSTEMS INC.; BOOKHAM NOMINEES LIMITED; OCLARO TECHNOLOGY LIMITED; OCLARO INNOVATIONS LLP
Reel/Frame 042430/0235 →
CHANGE OF NAME Recorded May 5, 2014
From: BOOKHAM TECHNOLOGY LIMITED; BOOKHAM TECHNOLOGY PLC; OCLARO TECHNOLOGY PLC
To: OCLARO TECHNOLOGY LIMITED
Reel/Frame 032825/0872 →
RELEASE OF SECURITY INTEREST Recorded Apr 9, 2014
From: WELLS FARGO CAPITAL FINANCE, LLC
To: OCLARO TECHNOLOGY LIMITED
Reel/Frame 032642/0911 →
SECURITY INTEREST Recorded Apr 2, 2014
From: OCLARO, INC.; OCLARO TECHNOLOGY, INC.; OCLARO (NORTH AMERICA), INC.; MINTERA CORPORATION; OPNEXT, INC.; PINE PHOTONICS COMMUNICATIONS, INC.; OPNEXT SUBSYSTEMS INC.; BOOKHAM NOMINEES LIMITED; OCLARO TECHNOLOGY LIMITED; OCLARO INNOVATIONS LLP
To: SILICON VALLEY BANK
Reel/Frame 032589/0948 →
SECURITY AGREEMENT Recorded Nov 15, 2006
From: BOOKHAM TECHNOLOGY, PLC
To: WELLS FARGO FOOTHILL, INC.
Reel/Frame 018524/0089 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2003
From: GRIFFIN, ROBERT ANTHONY
To: BOOKHAM TECHNOLOGY PLC
Reel/Frame 013635/0851 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2002
From: MARCONI OPTICAL COMPONENTS LIMITED
To: BOOKHAM TECHNOLOGY PLC
Reel/Frame 013498/0148 →