IP Library Granted Patent US 7,466,926
Granted Patent B2
US 7,466,926 · App. 10/856,729 · Granted Dec 16, 2008

Method and apparatus for RZ-DPSK optical signal generation

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Quick Facts
Patent No.
US 7,466,926
App. No.
10/856,729
Granted
Dec 16, 2008
Kind
B2
Abstract

An apparatus and method for generating chirp-free return-to-zero differential phase-shift keyed optical signals using a modulator driven by at least one 3-level return-to-zero drive signals.

Claims (61)

1. A method of generating a return-to-zero (RZ) differential phase-shift-keyed (DPSK) optical signal comprising the steps of:

generating a 3-level RZ drive signal; and

driving a modulator with the 3-level RZ drive signal to generate the RZ-DPSK optical signal, wherein the step of generating the 3-level RZ drive signal includes the steps of:

performing a logic AND operation on a differentially encoded data signal and a clock signal to generate a first 2-level drive signal, wherein the differentially encoded data signal is a binary signal having first and second binary states;

performing a logic AND operation on an inverse of the differentially encoded data signal and the clock signal to generate a second 2-level drive signal; and

differentially amplifying the first and second 2-level drive signals to generate the 3-level RZ drive signal, wherein each occurrence of a binary state in the differentially encoded data signal is represented in the 3-level RZ drive signal by a positive pulse or a negative pulse relative to a reference level.

2. The method of claim 1 wherein the modulator is a single Mach-Zehnder modulator.

3. The method of claim 1 wherein driving the modulator with the RZ drive signal provides simultaneous RZ pulse formatting and DPSK modulation.

4. The method of claim 1 wherein the generated RZ-DPSK signal is chirp-free.

5. The method of claim 1 further comprising amplifying the 3-level RZ drive signal.

6. The method of claim 1 , wherein the modulator is a Z-cut LiNbO 3 Mach-Zehnder modulator.

7. The method of claim 1 , wherein said reference level is a level of the RZ drive signal at which the modulator outputs substantially no light.

8. A method for generating return-to-zero (RZ) differential phase-shift-keyed (DPSK) optical signals comprising the steps of:

performing a logic AND operation on a differentially encoded data signal and a clock signal to generate a first 2-level drive signal, wherein the differentially encoded data signal is a binary signal having first and second binary states,

performing a logic AND operation on an inverse of the differentially encoded data signal and the clock signal to generate a second 2-level drive signal,

differentially amplifying the first 2-level drive signal with the second 2-level drive signal to generate a first 3-level RZ drive signal;

differentially amplifying the inverse of the first 2-level RZ drive signals to generate the RZ-DPSK optical signals, wherein, for at least one of the first and second 3-level RZ drive signals each occurrence of a binary state in the differentially encoded data signal is represented in the 3level RZ drive signal by a positive pulse or a negative pulse relative to a reference level.

9. The method of claim 8 , wherein said reference level is a level of the RZ drive signal at which the modulator outputs substantially no light.

10. A method of generating a return-to-zero (RZ) M-ary differential-phase amplitude-shift-keyed (DP-ASK) optical signal, comprising the steps of:

generating an M-level RZ drive signal, wherein M is an integer greater than three; and

driving a modulator with the M-level RZ drive signal, wherein the modulator modulates both intensity and phase of an optical beam to generate the RZ M-ary DP-ASK optical signal, wherein the step of generating the M-level RZ drive signal includes the steps of:

performing a logic AND operation on a plurality of differentially encoded data signals and a clock signal to generate a plurality of first 2-level drive signals,

performing a logic AND operation on an inverse of the plurality of differentially encoded data signals and the clock signal to generate a plurality of second 2-level drive signals,

power combining each first 2-level drive signal with an inverse of the corresponding second 2-level drive signal to generate each of a plurality of 3-level RZ drive signals; and

power combining the plurality of 3-level RZ drive signals to generate the M-level RZ drive signal.

11. The method of claim 10 wherein the modulator is a single Mach-Zehnder modulator.

12. An apparatus for generating an RZ-DPSK optical signal, comprising:

drive circuitry adapted to generate at least one 3-level RZ drive signal; and

a modulator coupled to the drive circuitry such that the at least one 3-level RZ drive signal drives the modulator to generate the RZ-DPSK optical signal, wherein the drive circuitry comprises:

a first logic AND gate adapted to perform a logic AND operation on a differentially encoded data signal and a clock signal to generate a first 2-level drive signal, wherein the differentially encoded data signal is a binary signal having first and second binary states;

a second logic AND gate adapted to perform a logic AND operation on an inverse of the differentially encoded data signal and the clock signal to generate a second 2-level drive signal, and

a differential amplifier adapted to differentially amplify the first and second 2-level drive signals to generate the 3-level RZ drive signal, wherein each occurrence of a binary state in the differentially encoded data signal is represented in the 3-level RZ drive signal by a positive pulse or a negative pulse relative to a reference level.

13. The apparatus of claim 12 wherein the modulator is a single single-drive Mach-Zehnder modulator.

14. The apparatus of claim 13 wherein the single-drive Mach-Zehnder modulator is an X-cut LiNbO 3 modulator.

15. The apparatus of claim 13 wherein the single-drive Mach-Zehnder modulator is a semiconductor-based modulator.

16. The apparatus of claim 12 wherein the modulator is a single dual-drive Mach-Zehnder modulator.

17. The apparatus of claim 16 wherein the modulator is coupled to the drive circuitry such that two complementary 3-level RZ drive signals drive the modulator to generate the RZ-DPSK optical signals.

18. The apparatus of claim 16 wherein the dual-drive Mach-Zehnder modulator is a Z-cut LiNbO 3 modulator.

19. The apparatus of claim 16 wherein the dual-drive Mach-Zehnder modulator is a semiconductor-based modulator.

20. The apparatus of claim 12 , wherein said reference level is a level of the RZ drive signal at which the modulator outputs substantially no light.

21. An apparatus for generating RZ-DPSK optical signals comprising:

a first differential amplifier adapted to receive a differentially encoded data signal and a clock signal and generate a first 2-level drive signal, wherein the differentially encoded data signal is a binary signal having first and second binary states;

a second differential amplifier adapted to receive an inverse of the differentially encoded data signal and the clock signal and generate a second 2-level drive signal;

an inverter for inverting the second 2-level drive signal;

a third differential amplifier adapted to receive the first 2-level drive signal and the inverted second 2-level drive signal to generate a 3-level RZ drive signal, wherein each occurrence of a binary state in the differentially encoded data signal is represented in the 3-level RZ drive signal by a positive pulse or a negative pulse relative to a reference level; and

a modulator coupled to the third differential amplifier such that the 3-level RZ drive signal drives the modulator to generate RZ-DPSK optical signals.

22. The apparatus of claim 21 , wherein said reference level is a level of the RZ drive signal at which the modulator outputs substantially no light.

23. An apparatus for generating a return-to-zero (RZ) M-ary differential-phase-amplitude-shift-keyed (M-ary DP-ASK) optical signal, comprising:

means for generating an M-level RZ drive signal and for driving a single modulator with the drive signal, wherein M is an integer greater than three and the modulator is adapted to modulate both intensity and phase of an optical beam to generate the RZ M-ary DP-ASK optical signal, wherein the means for generating comprises:

a first plurality of logic AND gates, each adapted to perform a logic AND operation on a respective signal of a plurality of differentially encoded data signals and a clock signal to generate a plurality of first 2-level drive signals,

a second plurality of logic AND gates, each adapted to perform a logic AND operation on an inverse of the plurality of differentially encoded data signals and the clock signal to generate a plurality of second 2-level drive signals,

a plurality of power combiners, each adapted to power combine a corresponding one of the first 2-level drive signals with an inverse of the corresponding second 2-level drive signal to generate a corresponding one of a plurality of 3-level RZ drive signals; and

an additional power combiner adapted to power combine the plurality of 3-level RZ drive signals to generate the M-level RZ drive signal.

24. The apparatus of claim 23 , further comprising the modulator, wherein the modulator is a Mach-Zehnder modulator.

25. A method of generating a return-to-zero (RZ) M-ary differential-phase amplitude-shift-keyed (DP-ASK) optical signal, comprising the steps of:

generating a multi-level RZ drive signal; and

driving a modulator with the drive signal to generate the RZ M-ary DP-ASK optical signal, wherein the step of generating the multi-level RZ drive signal further includes the steps of:

performing a logic AND operation on a plurality of differentially encoded data signals and a clock signal to generate a plurality of first 2-level drive signals,

performing a logic AND operation on each of an inverse of the plurality of differentially encoded data signals, and the clock signal to generate a plurality of respective second 2-level drive signal,

power combining each of the plurality of first 2-level drive signals with a respective inverse of the plurality of respective second 2-level drive signals to generate a plurality of 3-level RZ drive signals; and

power combining the plurality of 3-level RZ drive signals to generate the multi-level RZ drive signal.

Assignments (12)
PATENT SECURITY AGREEMENT Recorded Aug 6, 2024
From: RPX CORPORATION; RPX CLEARINGHOUSE LLC
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 068328/0674 →
RELEASE OF LIEN ON PATENTS Recorded Aug 5, 2024
From: BARINGS FINANCE LLC
To: RPX CORPORATION
Reel/Frame 068328/0278 →
PATENT SECURITY AGREEMENT Recorded Apr 22, 2023
From: RPX CORPORATION
To: BARINGS FINANCE LLC, AS COLLATERAL AGENT
Reel/Frame 063429/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2021
From: PROVENANCE ASSET GROUP LLC
To: RPX CORPORATION
Reel/Frame 059352/0001 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2021
From: NOKIA US HOLDINGS INC.
To: PROVENANCE ASSET GROUP HOLDINGS LLC; PROVENANCE ASSET GROUP LLC
Reel/Frame 058363/0723 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2021
From: CORTLAND CAPITAL MARKETS SERVICES LLC
To: PROVENANCE ASSET GROUP HOLDINGS LLC; PROVENANCE ASSET GROUP LLC
Reel/Frame 058983/0104 →
ASSIGNMENT AND ASSUMPTION AGREEMENT Recorded Feb 14, 2019
From: NOKIA USA INC.
To: NOKIA US HOLDINGS INC.
Reel/Frame 048370/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 13, 2017
From: NOKIA TECHNOLOGIES OY; NOKIA SOLUTIONS AND NETWORKS BV; ALCATEL LUCENT SAS
To: PROVENANCE ASSET GROUP LLC
Reel/Frame 043877/0001 →
SECURITY INTEREST Recorded Sep 13, 2017
From: PROVENANCE ASSET GROUP HOLDINGS, LLC; PROVENANCE ASSET GROUP LLC
To: NOKIA USA INC.
Reel/Frame 043879/0001 →
SECURITY INTEREST Recorded Sep 13, 2017
From: PROVENANCE ASSET GROUP HOLDINGS, LLC; PROVENANCE ASSET GROUP, LLC
To: CORTLAND CAPITAL MARKET SERVICES, LLC
Reel/Frame 043967/0001 →
MERGER Recorded Nov 6, 2008
From: LUCENT TECHNOLOGIES INC.
To: ALCATEL-LUCENT USA INC.
Reel/Frame 021792/0937 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 28, 2004
From: KAO, YUAN-HUA; LIU, XIANG
To: LUCENT TECHNOLOGIES INC.
Reel/Frame 015405/0138 →