IP Library Granted Patent US 11,022,762
Granted Patent B2
US 11,022,762 · App. 16/710,463 · Granted Jun 1, 2021

Optical fiber connectors for rotational alignment

Inventors: Jonathan Singer (New Hope, PA); Victor Il'ich Kopp (Fair Lawn, NJ); Christopher W. Draper (Allendale, NJ); Zhou Shi (Pine Brook, NJ); Norman Chao (Brooklyn, NY)
Assignee: Chiral Photonics, Inc.
G02B6/3874G02B6/383G02B6/3851G02B6/3853G02B6/3885
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Quick Facts
Patent No.
US 11,022,762
App. No.
16/710,463
Granted
Jun 1, 2021
Kind
B2
Abstract

An optical fiber connector configured to rotationally align a first optical fiber with a second optical fiber is provided. The connector can include at least two rotational alignment features. At least one of the two rotational alignment features can include at least one ferrule configured to hold at least the first optical fiber.

Claims (27)

1. An optical fiber connector system configured to rotationally align a first optical fiber with a second optical fiber, the system comprising:

at least one connector pair comprising:

a first connector comprising:

a first connector insert comprising at least two rotational alignment features on independent separate axes of rotation, the at least two rotational alignment features comprising a first and second rotational alignment feature, the first rotational alignment feature comprising a first ferrule configured to hold the first optical fiber, the first rotational alignment feature configured to rotationally align the second rotational alignment feature;

a second connector comprising:

a second connector insert comprising:

a third rotational alignment feature comprising a second ferrule configured to hold the second optical fiber; and

a fourth rotational alignment feature,

an adapter comprising:

fifth and sixth rotational alignment features configured to mate with the first rotational alignment feature of the first connector and with the third rotational alignment feature of the second connector, respectively; and

seventh and eighth rotational alignment features configured to mate with the second rotational alignment feature of the first connector and with the fourth rotational alignment feature of the second connector, respectively.

2. The optical fiber connector system of claim 1 , wherein the adapter is attached to the first or second connector.

3. The optical fiber connector system of claim 1 , wherein when the first and second connectors are connected, the first and second optical fibers are optically and physically coupled to each other within the adapter.

4. The optical fiber connector system of claim 1 , wherein when the first and second connectors are connected, the first and second optical fibers are optically coupled and spaced apart from each other within the adapter.

5. The optical fiber connector system of claim 1 , wherein the first and second rotational alignment features and/or the third and fourth rotational alignment features are spaced apart by a distance in a range from 1 mm to 20 mm.

6. The optical fiber connector system of claim 1 , wherein the second rotational alignment feature of the first connector and/or the fourth rotational alignment feature of the second connector comprises at least one protrusion.

7. The optical fiber connector system of claim 6 , wherein the at least one protrusion has a transverse cross-sectional size in a range from 0.5 mm to 5 mm.

8. The optical fiber connector system of claim 6 , wherein the at least one protrusion is cylindrically shaped.

9. The optical fiber connector system of claim 1 , wherein the first and/or second ferrule comprises a ceramic, glass, or stainless steel fiber ferrule.

10. The optical fiber connector system of claim 1 , wherein the first ferrule and/or the second ferrule is cylindrically shaped.

11. The optical fiber connector system of claim 1 , wherein the second rotational alignment feature of the first connector comprises a ferrule and/or the fourth rotational alignment feature of the second connector comprises a ferrule.

12. The optical fiber connector system of claim 1 , wherein the first and/or second optical fiber comprises a polarization maintaining fiber.

13. The optical fiber connector system of claim 1 , wherein the first and/or second optical fiber comprises a multicore fiber.

14. The optical fiber connector system of claim 1 , wherein the at least one connector pair comprises two connector pairs.

15. The optical fiber connector system of claim 1 , wherein individual ones of the at least two rotational alignment features are cylindrically shaped and rotationally symmetric.

16. The optical fiber connector system of claim 1 , wherein individual ones of the at least two rotational alignment features are configured to not move independently with one another.

17. The optical fiber connector system of claim 1 , wherein the fifth and sixth rotational alignment features are configured to be a single alignment feature configured to mate with the first rotational alignment feature of the first connector and with the third rotational alignment feature of the second connector, and wherein the seventh and eighth rotational alignment features are configured to be a single alignment feature configured to mate with the second rotational alignment feature of the first connector and with the fourth rotational alignment feature of the second connector.

Assignments (2)
CONFIRMATORY LICENSE Recorded Nov 18, 2020
From: CHIRAL PHOTONICS INC
To: DEPARTMENT OF THE NAVY
Reel/Frame 054409/0220 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2019
From: SINGER, JONATHAN; KOPP, VICTOR IL'ICH; DRAPER, CHRISTOPHER W.; SHI, ZHOU; CHAO, NORMAN
To: CHIRAL PHOTONICS, INC.
Reel/Frame 051278/0739 →
Continuity (2)
Provisional Application 62883004 · Aug 5, 2019
Related Publication 20210041640A1 · Feb 11, 2021
Cited By (2)
US 12,210,185 US 12,487,418