IP Library Granted Patent US 7,636,501
Granted Patent B2
US 7,636,501 · App. 12/006,194 · Granted Dec 22, 2009

QAM optical modulators

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Quick Facts
Patent No.
US 7,636,501
App. No.
12/006,194
Granted
Dec 22, 2009
Kind
B2
Abstract

An exemplary optical modulator includes an interferometer. The interferometer includes an input optical coupler, an output optical coupler, and two or more controllable optical waveguides. Each controllable optical waveguide connects the input optical coupler to the output optical coupler and has an electro-absorption modulator along a segment thereof. Two of the controllable optical waveguides are connected to transmit to an output of the output optical coupler light of substantially different maximum amplitude.

Claims (30)

1. An optical modulator, comprising:

an interferometer including an input optical coupler, an output optical coupler, and two or more controllable optical waveguides, each controllable optical waveguide connecting the input optical coupler to the output optical coupler and having an electro-absorption modulator along a segment thereof; and

wherein two of the controllable optical waveguides are connected to transmit to an output of the output optical coupler substantially different maximum light amplitudes when the electro-absorption modulators of the two of the controllable optical waveguides are in ON states.

2. The optical modulator of claim 1 , wherein one of the controllable optical waveguides is connected to transmit a maximum light amplitude to the output of the output optical coupler that is between 1.5 and 2.5 times a maximum light amplitude that another of the controllable optical waveguides is connected to transmit thereto when the electro-absorption modulators of the one and the another of the controllable optical waveguides are in ON states.

3. The optical modulator of claim 2 , wherein the output optical coupler is configured to interfere at the output light from two of the controllable optical waveguides with a relative phase whose magnitude is less than 20 degrees.

4. The optical modulator of claim 2 , wherein the input and output optical couplers are optical star couplers.

5. The optical modulator of claim 1 , wherein the output optical coupler is configured to interfere at the output light from a first of the controllable optical waveguides with light from a second of the controllable optical waveguides with a relative phase of between 160 degrees and 200 degrees.

6. The optical modulator of claim 5 , wherein the first of the controllable optical waveguides is configured to transmit a maximum light amplitude to the output of the output optical coupler that is between 1.5 and 2.5 times a maximum light amplitude that the second of the optical waveguides is configured to transmit to the output of the output optical coupler when the electro-absorption modulators of the first and the second of the controllable optical waveguides are in ON states.

7. The optical modulator of claim 5 , wherein the output optical coupler is configured to interfere at the output light from a third of the controllable optical waveguides with light from a fourth of the controllable optical waveguides with a relative phase of between 160 degrees and 200 degrees.

8. The optical modulator of claim 1 , wherein one of the controllable optical waveguides is connected to transmit a maximum light amplitude to the output of the output optical coupler that is between 1.8 and 2.2 times a maximum light amplitude that another of the controllable optical waveguides is connected to transmit thereto when the electro-absorption modulators of the one and the another of the controllable optical waveguides are in ON states.

9. The optical modulator of claim 1 , further comprising:

an electronic controller configured to cause each electro-absorption modulator to be in either an ON state or an OFF state, each electro-absorption modulator substantially blocking incident light in the OFF state and substantially transmitting incident light in the ON state.

10. The optical modulator of claim 9 , wherein the electronic controller is configured to operate one of the electro-absorption modulators to transmit a light intensity that is, at least, five times lower when the one of the electro-absorption modulators is in the OFF state than when the one of the electro-absorption modulators is in the ON state.

11. An optical modulator, comprising:

an interferometer including an input optical coupler, an output optical coupler, and two or more controllable optical waveguides, each controllable optical waveguide connecting the input optical coupler to the output optical coupler and having an electro-absorption modulator along a segment thereof; and

wherein two of the controllable optical waveguides are connected to transmit to an output of the output optical coupler light of substantially different maximum amplitude, and

wherein the interferometer includes another optical waveguide without an optical switch or controllable optical modulator there along, the another optical waveguide connecting the input optical coupler to the output optical coupler.

12. An optical modulator, comprising:

an interferometer including an optical coupler, controllable optical waveguides, and reflectors, each reflector corresponding to one of the controllable optical waveguides; and

wherein each controllable optical waveguide is configured to receive light from and deliver light to the optical coupler and has an electro-absorption modulator along a segment thereof;

wherein each reflector is located to reflect light back into the corresponding one of the controllable optical waveguides in response to receiving light there from; and

wherein two of the controllable optical waveguides are configured to transmit to an output of the optical coupler substantially different maximum light amplitudes when the electro-absorption modulators of the two of the controllable optical waveguides are in ON states.

13. The optical modulator of claim 12 , wherein one of the controllable optical waveguides is connected to transmit a maximum light amplitude to the output of the optical coupler that is between 1.5 and 2.5 times a maximum light amplitude that another of the controllable optical waveguides is connected to transmit thereto when the electro-absorption modulators of the one and the another of the controllable optical waveguides are in ON states.

14. The optical modulator of claim 13 , wherein the optical coupler is configured to interfere at its output light from two of the controllable optical waveguides with a relative phase whose magnitude is less than 20 degrees.

15. The optical modulator of claim 12 , wherein one of the controllable optical waveguides is connected to transmit a maximum light amplitude to the output of the optical coupler that is between 1.8 and 2.2 times a maximum light amplitude that another of the controllable optical waveguides is connected to transmit thereto when the electro-absorption modulators of the one and the another of the controllable optical waveguides are in ON states.

16. The optical modulator of claim 12 , wherein the optical coupler is configured to interfere at its output light from a first of the controllable optical waveguides with light from a second of the controllable optical waveguides with a relative phase of between 160 degrees and 200 degrees.

17. The optical modulator of claim 12 , wherein the optical coupler is configured to interfere at its output light from a first of the controllable optical waveguides with light from a second of the controllable optical waveguides with a relative phase of between 170 degrees and 190 degrees; and

wherein the first of the controllable optical waveguides is configured to transmit a maximum light amplitude to the output of the optical coupler that is between 1.5 and 2.5 times a maximum light amplitude that the second of the controllable optical waveguides is configured to transmit thereto when the electro-absorption modulators of the first and second of the controllable optical waveguides are in ON states.

18. The optical modulator of claim 12 , further comprising:

an electronic controller configured to cause each electro-absorption modulator to be in either an ON state or an OFF state, each electro-absorption modulator substantially blocking incident light in the OFF state and substantially transmitting incident light in the ON state.

Assignments (14)
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 →
RELEASE OF SECURITY INTEREST Recorded Oct 9, 2014
From: CREDIT SUISSE AG
To: ALCATEL-LUCENT USA INC.
Reel/Frame 033950/0001 →
SECURITY INTEREST Recorded Mar 7, 2013
From: ALCATEL-LUCENT USA INC.
To: CREDIT SUISSE AG
Reel/Frame 030510/0627 →
MERGER Recorded Oct 28, 2009
From: LUCENT TECHNOLOGIES INC.
To: ALCATEL-LUCENT USA INC.
Reel/Frame 023434/0184 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2008
From: DOERR, CHRISTOPHER RICHARD; WINZER, PETER J.
To: LUCENT TECHNOLOGIES INC.
Reel/Frame 020675/0183 →