IP Library › Granted Patent US 10,014,949
Granted Patent B1
US 10,014,949 · App. 15/346,985 · Granted Jul 3, 2018

Optical communication circuits

Inventors: Stephen M. Trimberger (Incline Village, NV); Austin H. Lesea (Los Gatos, CA)
Assignee: XILINX, INC.
H04B10/503H04B10/5161
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Quick Facts
Patent No.
US 10,014,949
App. No.
15/346,985
Granted
Jul 3, 2018
Kind
B1
Abstract

Various apparatuses, circuits, systems, and methods for optical communication are disclosed. In some implementations an optical communication device includes an optical data port configured to support an optical fiber in a fixed position. The optical communication device may further include a plurality of optical communication circuits, each oriented to communicate optical signals at a respective position of a cross section of the optical fiber connected to the optical data port and a control circuit, responsive to optical signals communicated on the optical fiber connected to the optical data port and configured to determine ones of the plurality of optical communication circuits that are misaligned with the optical fiber and disable the determined ones of the plurality of optical communication circuits.

Claims (17)

1. An optical communication device, comprising:

an optical data port configured to support an optical fiber in a fixed position;

a plurality of optical communication circuits, each oriented to communicate optical signals at a respective position of a cross section of the optical fiber connected to the optical data port; and

a control circuit configured to enable one or more of the plurality of optical communication circuits that are aligned with the optical fiber and disable ones of the plurality of optical communication circuits that are misaligned with the optical fiber;

wherein:

the optical fiber has a jacket with a non-circular cross section

the optical data port has a non-circular cross section; and

the optical data port is further configured to engage the non-circular cross section of the jacket only when it is aligned with the non-circular cross section of the optical data port.

2. The optical communication device of claim 1 , wherein the plurality of optical communication circuits includes a plurality of lasers, each oriented to transmit optical signals at a respective position of the cross section of the optical fiber in a direction that is normal to the cross section of the optical fiber.

3. The optical communication device of claim 1 , wherein the non-circular cross section of the optical fiber includes at least one notch, and the non-circular cross section of the optical data port includes a portion for engaging the notch.

4. A method of operating an optical communication device, comprising:

inserting an optical fiber having a jacket with a non-circular cross section into an optical data port having a non-circular cross section, wherein:

the optical data port is configured to support the optical fiber in a fixed position;

the optical data port is further configured to engage the non-circular cross section of the jacket only when it is aligned with the non-circular cross section of the optical data port;

enabling one or more of the plurality of optical communication circuits that are aligned with the optical fiber; and

disabling one or more of the plurality of optical communication circuits that are not aligned with the optical fiber.

5. The method of claim 4 , wherein the inserting includes inserting the optical fiber having at least one notch in the non-circular cross section of the jacket into the optical data port having a portion for engaging the notch in the non-circular cross section of the optical data port.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2016
From: TRIMBERGER, STEPHEN M.; LESEA, AUSTIN H.
To: XILINX, INC.
Reel/Frame 040267/0886 →
Continuity (1)
Continuation 14297535 · Jun 5, 2014