IP Library Granted Patent US 10,274,683
Granted Patent B2
US 10,274,683 · App. 15/849,441 · Granted Apr 30, 2019

Axial preload for demountable connectors

Inventors: Shuhe Li (Pasadena, CA); Gregory L. Klotz (La Verne, CA); Michael K. Barnoski (Pacific Palisades, CA); Robert Ryan Vallance (Newbury Park, CA)
Assignee: NANOPRECISION PRODUCTS, INC.
G02B6/3821G02B6/3869G02B6/3887G02B6/4292G02B6/3885G02B6/3897G02B6/4248Y10T29/49
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Quick Facts
Patent No.
US 10,274,683
App. No.
15/849,441
Granted
Apr 30, 2019
Kind
B2
Abstract

The present invention provides a spring bias that is particularly suited for use to preload a low profile ferrule of an optical connector. In accordance with the present invention, an axial preload is applied to a connector ferrule by a spring structure provided external of the connector. In one embodiment, spring structure is provided outside a plurality of optical fiber connectors, which provides axial preload of multiple ferrules. Each ferrule could be of the type that supports a plurality of optical fibers of a fiber cable. In one embodiment, the spring bias is effected by a planar flexure external of the connector. The ferrule is coupled to the planar flexure with its longitudinal axis through the center of the planar flexure. The planar flexure is structured with flexure members in a plane that are configured to not create any torque load on the ferrule, or if torque loading is present, insignificant torque load to cause misalignment of the ferrule, when the flexure flexes out of its nominal plane to create an axial preload on the ferrule. In another embodiment, a common yoke is applied to bias planar flexures against a plurality of ferrules, wherein a planar flexure is coupled to each ferrule connector. In a further embodiment of the present invention, instead of using planar flexures, a yoke is provided to apply an axial preload to all ferrule connectors coupled to the yoke, by means of a coil spring applied to center of the yoke, external of the ferrule connectors.

Claims (15)

1. An axial preload structure for providing an axial preload to at least a ferrule connector for a demountable connection, comprising a biasing structure external of the ferrule connector, wherein the ferrule connector comprises a ferrule supporting at least one optical fiber, wherein the biasing structure comprises a coil spring provided outside of the ferrule connector to apply an axial preload to the ferrule connector, and wherein the axial preload structure further comprises a yoke coupled to the ferrule connector; and the coil spring is applied to bias a center of the yoke, external of the ferrule connector.

2. The axial preload structure as in claim 1 , wherein the ferrule connector comprises a boot coupled to the ferrule, and wherein the yoke biases on the boot.

3. The axial preload structure as in claim 2 , wherein there are a plurality of ferrule connectors, wherein the yoke is common to the plurality of ferrule connectors, with the coil spring biased against the center of the yoke.

4. The axial preload structure as in claim 3 , further comprising a guide pin, wherein the yoke floats with respect to the guide pin to move along the guide pin, wherein the coil spring biases on the center of yoke to move the yoke along the guide pin to bias against the boot of the respective one of the plurality of ferrule connectors.

5. The axial preload structure as in claim 4 , wherein the coil spring is coaxial around the guide pin and biases against the center of the yoke.

6. The axial preload structure as in claim 5 , wherein the yoke is configured to not create any torque load on the ferrule in the respective one of the plurality of ferrule connectors, or if torque loading is present, insignificant torque load to cause misalignment of the ferrule, when the coil spring biases the axial preload on the plurality of ferrule connectors.

7. The axial preload structure as in claim 3 , wherein the yoke is configured to not create any torque load on the ferrule in the respective one of the plurality of ferrule connectors, or if torque loading is present, insignificant torque load to cause misalignment of the ferrule, when the coil spring biases the axial preload on the plurality of ferrule connectors.

8. The axial preload structure as in claim 3 , further comprising a guide pin, wherein the yoke floats with respect to the guide pin to move along the guide pin, wherein the coil spring biases on the center of yoke to move the yoke along the guide pin to bias against the boot of the respective one of the plurality of ferrule connectors.

9. The axial preload structure as in claim 1 , wherein the yoke is configured to not create any torque load on the ferrule in the ferrule connector, or if torque loading is present, insignificant torque load to cause misalignment of the ferrule, when the coil spring biases the axial preload on the ferrule connector.

10. An optical connector, comprising the axial preload structure as in claim 1 .

11. An axial preload structure for providing an axial preload to a plurality of ferrule connectors for a demountable connection, wherein the plurality of ferrule connectors each comprises a ferrule supporting at least one optical fiber, wherein the axial preload structure comprises a biasing structure external of the plurality of ferrule connectors; and a yoke coupled to the plurality of ferrule connectors, wherein the biasing structure comprises a coil spring external of the plurality of ferrule connectors applied to a center of the yoke, to apply an axial preload to the plurality of ferrule connectors coupled to the yoke.

12. The axial preload structure as in claim 11 , wherein the ferrule connectors each comprises a boot coupled to the ferrule, and wherein the yoke biases on the boot.

13. The axial preload structure as in claim 12 , wherein the yoke is common to the plurality of ferrule connectors, with the coil spring biased against the center of the yoke.

14. The axial preload structure as in claim 13 , further comprising a guide pin, wherein the yoke floats with respect to the guide pin to move along the guide pin, wherein the coil spring is coaxial around the guide pin and biases on the center of yoke to move the yoke along the guide pin to bias against the boot of the respective one of the plurality of ferrule connectors.

15. The axial preload structure as in claim 11 , wherein the yoke is configured to not create any torque load on the ferrule in the respective one of the plurality of ferrule connectors, or if torque loading is present, insignificant torque load to cause misalignment of the ferrule, when the coil spring biases the axial preload on the plurality of ferrule connectors.

Assignments (8)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2022
From: CUDOQUANTA FLORIDA, INC.
To: SENKO ADVANCED COMPONENTS, INC.
Reel/Frame 060654/0531 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: CUDOQUANTA AG
To: CUDOQUANTA FLORIDA, INC.
Reel/Frame 051468/0277 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2020
From: LAKE VIEW AG
To: CUDOQUANTA AG
Reel/Frame 051465/0919 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2019
From: NANOPRECISION PRODUCTS, INC.; NANOPRECISION HOLDING COMPANY, INC.
To: LAKE VIEW AG
Reel/Frame 051396/0559 →
SECURITY INTEREST Recorded Nov 19, 2019
From: NANOPRECISION HOLDING COMPANY, INC.; NANOPRECISION PRODUCTS, INC.
To: LAKE VIEW AG
Reel/Frame 051059/0547 →
SECURITY INTEREST Recorded Jan 4, 2019
From: NANOPRECISION HOLDING COMPANY, INC.; NANOPRECISION PRODUCTS, INC.
To: LAKE VIEW AG
Reel/Frame 048012/0315 →
SECURITY INTEREST Recorded Oct 16, 2018
From: NANOPRECISION HOLDING COMPANY, INC.; NANOPRECISION PRODUCTS, INC.
To: LAKE VIEW AG
Reel/Frame 047242/0582 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2017
From: LI, SHUHE; KLOTZ, GREGORY L.; BARNOSKI, MICHAEL K.; VALLANCE, ROBERT RYAN
To: NANOPRECISION PRODUCTS, INC.
Reel/Frame 044454/0194 →
Continuity (8)
Division 15077902 · Mar 22, 2016
Continuation In Part 13861273 · Apr 11, 2013
Continuation In Part 13786448 · Mar 5, 2013
Provisional Application 62136599 · Mar 22, 2015
Provisional Application 61623027 · Apr 11, 2012
Provisional Application 61699125 · Sep 10, 2012
Provisional Application 61606885 · Mar 5, 2012
Related Publication 20180136411A1 · May 17, 2018