IP Library Granted Patent US 10,952,707
Granted Patent B2
US 10,952,707 · App. 15/959,238 · Granted Mar 23, 2021

Optical fiber couplers and components for use in optical fiber couplers

Inventor: Austin R. Ritter (Spring Lake, MI)
A61B13/00A61B1/24A61B1/32A61C1/088A61C17/08A61B1/06A61B90/16
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Quick Facts
Patent No.
US 10,952,707
App. No.
15/959,238
Granted
Mar 23, 2021
Kind
B2
Abstract

An optical fiber coupling system may include a first coupler half fixed to a first fiber optic element. The first coupler half may include a first magnetically energetic material. The first magnetically energetic material may include a first aperture extending through the first magnetically energetic material. The first fiber optic element may extend within the first aperture. The optical fiber coupling system may include a second coupler half fixed to a second fiber optic element. The second coupler half may include a second magnetically energetic material. The second magnetically energetic material may include a second aperture extending through the second magnetically energetic material. The second fiber optic element may extend within the second aperture. When the first magnetically energetic material is proximate the second magnetically energetic material, the first fiber optic element may be longitudinally aligned with the second fiber optic element. An optical fiber coupler may include a coupler half fixed to a fiber optic element. The coupler half may include a magnetically energetic material. The magnetically energetic material includes an aperture extending through the magnetically energetic material. The fiber optic element may extend within the aperture. The optical fiber coupler may include a circumferentially extending material, at least partially around a perimeter of the magnetically energetic material. The circumferentially extending material may define a receptacle.

Claims (14)

1. An optical fiber coupler, comprising:

a coupler half fixed to a fiber optic element, wherein the coupler half includes a magnetically energetic material, wherein, the magnetically energetic material includes an aperture extending through the magnetically energetic material, wherein the fiber optic element extends within the aperture, and wherein an abutting face of the coupler half fully encapsulates an end of the fiber optic element.

2. The optical fiber coupler of claim 1 , wherein the magnetically energetic material and an end of the fiber optic element is encased in a clear plastic.

3. The optical fiber coupler of claim 1 , wherein the coupler half includes a circumferentially extending material around the magnetically energetic material that defines a receptacle, and wherein the circumferentially extending material fully encapsulates the optical fiber coupler.

4. The optical fiber coupler of claim 1 , wherein the magnetically energetic material includes sintered neodymium (NdFeB), and wherein the optical fiber coupler is sterizable in an autoclave machine without degraded performance.

5. The optical fiber coupler of claim 1 , wherein the magnetically energetic material is axially magnetized, and wherein a decoupling force is between 1 or 2 pounds force.

6. An optical fiber coupler, comprising:

a coupler half fixed to a fiber optic element, wherein the coupler half includes a magnetically energetic material, wherein, the magnetically energetic material includes an aperture extending through the magnetically energetic material, wherein the fiber optic element extends within the aperture; and

a circumferentially extending material, at least partially around a perimeter of the magnetically energetic material, that defines a receptacle, and wherein an abutting face of the fiber optic element is encapsulated.

7. The optical fiber coupler of claim 6 , wherein the magnetically energetic material is a permanent magnet, and wherein the optical fiber coupler is sterizable in an autoclave machine without degraded performance.

8. The optical fiber coupler of claim 6 , wherein the magnetically energetic material and an end of the fiber optic element is encased in a clear plastic.

9. The optical fiber coupler of claim 6 , wherein the circumferentially extending material is polycarbonate, and wherein a crimp ring is disposed about and mechanically crimped against an outer cladding of the fiber optic element and embedded within an optical fiber coupler encapsulant.

10. The optical fiber coupler of claim 6 , wherein the magnetically energetic material includes a sintered material, and wherein the optical fiber coupler is sterizable in an autoclave machine without degraded performance.

11. The optical fiber coupler of claim 6 , wherein the magnetically energetic material is axially magnetized, and wherein a decoupling force is between 1 or 2 pounds force.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 15, 2023
From: RITTER, AUSTIN; ASCENTCARE DENTAL LABS, LLC
To: ASCENTCARE DENTAL PRODUCTS, INC.
Reel/Frame 063962/0839 →
Continuity (3)
Continuation 15133555 · Apr 20, 2016
Continuation In Part 15807465 · Nov 8, 2017
Related Publication 20180235586A1 · Aug 23, 2018