IP Library Patent Application 18808660
Patent Application
App. No. 18/808,660

OPTICAL COMMUNICATIONS SYSTEM WITH SEMICONDUCTOR OPTICAL AMPLIFIER FOR LINK LOSS CORRECTION

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Quick Facts
Patent No.
US None
App. No.
18/808,660
Abstract

Aspects of the disclosure provide a system comprising a first optical communications terminal having a sensor arranged in a receive path of the first terminal as well as an optical phased array architecture in a receive path of the first terminal. The first terminal also includes a first semiconductor optical amplifier (SOA) arranged in a transmit path of the first terminal and configured to adjust an outgoing optical communications signal according to power of a first incoming optical communications signal at the sensor. The first terminal also includes a second SOA arranged in the receive path of the first terminal and configured to adjust a second incoming optical communications signal according to the power of the first incoming optical communications signal at the sensor. In some instances, the second SOA is configured to adjust an outgoing optical communications signal according to information included in the first incoming optical communications signal.

Claims (32)

1 . A system comprising a first optical communications terminal having:

a sensor arranged in a receive path of the first optical communications terminal;

an optical phased array architecture in a receive path of the first optical communications terminal;

a first semiconductor optical amplifier (SOA) arranged in a transmit path of the first optical communications terminal and configured to adjust an outgoing optical communications signal according to power of a first incoming optical communications signal at the sensor; and

a second SOA arranged in the receive path of the first optical communications terminal and configured to adjust a second incoming optical communications signal according to the power of the first incoming optical communications signal at the sensor.

2 . The system of claim 1 , wherein the second SOA is further configured to adjust the second incoming optical communications signal according to power of the first incoming optical communications signal at the optical phased array architecture.

3 . The system of claim 1 , further comprising, a state machine configured to control the second SOA based on the power of the first incoming optical communications signal at the sensor.

4 . The system of claim 3 , wherein the state machine is further configured to control the second SOA based on power of the first incoming optical communications signal at the optical phased array architecture.

5 . The system of claim 1 , further comprising, a state machine configured to control the first SOA based on the power of the first incoming optical communications signal at the sensor.

6 . The system of claim 1 , further comprising a second optical communications terminal, wherein the second optical communications terminal is configured to transmit the first incoming optical communications signal and the second incoming optical communications signal.

7 . A system comprising a first optical communications terminal having:

a sensor arranged in a receive path of the first optical communications terminal;

an optical phased array architecture in a receive path of the first optical communications terminal;

a first semiconductor optical amplifier (SOA) arranged in a transmit path of the first optical communications terminal and configured to adjust an outgoing optical communications signal according to information included in a first incoming optical communications signal; and

a second SOA arranged in the receive path of the first optical communications terminal and configured to adjust a second incoming optical communications signal according to power of the first incoming optical communications signal at the sensor.

8 . The system of claim 7 , wherein the second SOA is further configured to adjust the second incoming optical communication signal according to power of the first incoming optical communications signal at the optical phased array architecture.

9 . The system of claim 7 , further comprising, a state machine configured to control the second SOA based on the power of the first incoming optical communications signal at the sensor.

10 . The system of claim 9 , wherein the state machine is further configured to control the second SOA based on power of the first incoming optical communications signal at the optical phased array architecture.

11 . The system of claim 7 , further comprising, a state machine configured to control the first SOA based on the information.

12 . The system of claim 7 , wherein the information identifies power of a second outgoing optical communications signal received at a sensor of a second optical communications terminal, wherein the second outgoing optical communications signal was transmitted by the first optical communications terminal to the second optical communications terminal.

13 . The system of claim 7 , further comprising a second optical communications terminal, wherein the second optical communications terminal is configured to transmit the first incoming optical communications signal and the second incoming optical communications signal.

14 . A method comprising:

receiving a first incoming optical communications signal at a sensor via a receive path of a first optical communications terminal;

adjusting an outgoing optical communications signal using a first semiconductor optical amplifier (SOA) arranged in a transmit path of the first optical communications terminal, wherein the adjusting is according to power of the first incoming optical communications signal at the sensor; and

adjusting a second incoming optical communications signal using a second SOA arranged in the receive path of the first optical communications terminal, wherein the adjusting is according to power of the first incoming optical communications signal at the sensor.

15 . The method of claim 14 , further comprising, adjusting the second incoming optical communications signal further according to the power of the first incoming optical communications signal at an optical phased array architecture of the first optical communications terminal.

16 . A method comprising:

receiving a first incoming optical communications signal at a sensor via a receive path of a first optical communications terminal;

adjusting an outgoing optical communications signal using a first semi-conductor optical amplifier (SOA) arranged in a transmit path of the first optical communications terminal, wherein the adjusting is according to information included in the first incoming optical communications signal; and

adjusting a second incoming optical communications signal using a second SOA arranged in the receive path of the first optical communications terminal, wherein the adjusting is according to power of the first incoming optical communications signal at the sensor.

17 . The method of claim 16 , further comprising, adjusting the second incoming optical communications signal further according to the power of the first incoming optical communications signal at an optical phased array architecture of the first optical communications terminal.

18 . The method of claim 16 , wherein the information identifies power of a second outgoing optical communications signal received at a sensor of a second optical communications terminal, and the method further comprises transmitting the second outgoing optical communications signal by the first optical communications terminal to the second optical communications terminal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2025
From: X DEVELOPMENT LLC
To: TAARA CONNECT, INC.
Reel/Frame 070631/0734 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2024
From: LANTZ, TRAVIS
To: X DEVELOPMENT LLC
Reel/Frame 068394/0686 →