IP Library Granted Patent US 8,708,776
Granted Patent B1
US 8,708,776 · App. 12/630,483 · Granted Apr 29, 2014

Optical fiber polishing machines, fixtures and methods

Inventor: James T. Frazer (Big Lake, MN)
Assignee: Domaille Engineering, LLC
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,708,776
App. No.
12/630,483
Granted
Apr 29, 2014
Kind
B1
Abstract

Polishing machines, fixtures and methods for polishing one or more optical fibers upon distinct wear paths are provided. For example, in some embodiments a polishing fixture is provided with a number of ports for fixing optical fibers. The ports may be positioned within the fixture to follow a number of distinct wear paths when the fixture is moved relative to a platen retaining an abrasive film. In some embodiments, the ports may have an angular separation or be positioned at one or more radial distances in order to provide distinct wear paths on the abrasive film.

Claims (33)

1. An optical fiber polishing fixture for use with an optical fiber polishing machine, the fixture comprising:

a base having a bottom surface and a plurality of ports;

wherein the ports are positioned about a center of the base and extend through the bottom surface of the base;

wherein each port is configured to align an optical fiber above a platen of the optical fiber polishing machine for polishing an end of the optical fiber as the platen and the fixture undergo a relative motion, the relative motion comprising a rotational motion in which the platen rotates about an axis of the platen and a revolving motion in which the platen revolves a first amount of revolution about the center of the base for every rotation of the platen; and

wherein an angular separation between at least a first port and a second port with respect to the center of the fixture base is a sum of a multiple of the first amount of revolution and the first amount of revolution divided by the quantity of the plurality of ports, such that the first port and the second port follow distinct wear paths upon an abrasive surface on the platen as the platen and the fixture undergo the relative motion.

2. The fixture of claim 1 , wherein the angular separation is different from a multiple of the first amount of revolution.

3. The fixture of claim 1 , wherein angular separations between adjacent ports of the plurality of ports with respect to the center of the fixture base are based on the relative motion of the platen and the fixture such that the plurality of ports follow distinct wear paths upon the abrasive surface on the platen as the platen and the fixture undergo the relative motion.

4. The fixture of claim 3 , wherein the angular separations between adjacent ports are different from a multiple of the first amount of revolution of the platen.

5. The fixture of claim 3 , wherein the angular separations between adjacent ports are the same.

6. The fixture of claim 1 , wherein the plurality of ports are substantially positioned along one or more circular paths about the center of the base.

7. An optical fiber polishing fixture for use with an optical fiber polishing machine, the fixture comprising:

a base having a bottom surface and a plurality of ports;

wherein the ports are positioned about a center of the base and extend through the bottom surface of the base;

wherein each port is configured to align an optical fiber above a platen of the optical fiber polishing machine for polishing an end of the optical fiber as the platen and the fixture undergo a relative motion;

wherein an angular separation between at least a first port and a second port with respect to the center of the fixture base is based on the relative motion of the platen and the fixture such that the first port and the second port follow distinct wear paths upon an abrasive surface on the platen as the platen and the fixture undergo the relative motion; and

wherein the first port and the second port are positioned from the center of the base at respective radial distances varying by at least about a width of an optical fiber, but by no more than about the width of the optical fiber times the quantity of the plurality of ports, wherein the varying radial distances of the first port and the second port produce distinct wear paths upon the abrasive surface on the platen for the first port and the second port as the platen and the fixture undergo the relative motion.

8. A system for polishing optical fibers, comprising:

the optical fiber polishing fixture of claim 1 ; and

an optical fiber polishing machine having a platen configured to retain an abrasive film, a mounting mechanism coupled to the fixture, and a drive mechanism, the drive mechanism causing the fixture and the platen to undergo the relative motion.

9. An optical fiber polishing fixture for use with an optical fiber polishing machine, the fixture comprising:

a base having a bottom surface and a plurality of ports;

wherein the ports are positioned about a center of the base and extend through the bottom surface of the base;

wherein each port is configured to align an optical fiber above a platen of the optical fiber polishing machine for polishing an end of the optical fiber as the platen and the fixture undergo a relative motion;

wherein at least a first group of the plurality of ports are substantially positioned along a first circular path about the center of the base;

wherein a first port and a second port in the first group of ports are positioned from the center of the base at respective radial distances varying by at least about a width of an optical fiber, but by no more than about the width of the optical fiber times the quantity of ports in the first group; and

wherein the varying radial distances of the first port and the second port produce distinct wear paths upon an abrasive surface on the platen for the first port and the second port as the platen and the fixture undergo the relative motion.

10. The fixture of claim 9 , wherein the first group of ports are positioned from the center of the base at respective radial distances varying by at least about the width of an optical fiber, but by no more than about the width of the optical fiber times the quantity of ports in the first group, thereby producing distinct wear paths upon the abrasive surface on the platen for each port in the first group of ports as the platen and the fixture undergo the relative motion.

11. The fixture of claim 10 , wherein the radial distance of each port in the first group of ports is different than the radial distances of other ports in the first group of ports.

12. The fixture of claim 9 , wherein at least a second group of the plurality of ports are substantially positioned along a second circular path between the center of the base and the first circular path, wherein a third port and a fourth port in the second group of ports are positioned from the center of the base at radial distances varying by at least about the width of an optical fiber, but by no more than about the width of the optical fiber times the quantity of ports in the second group, wherein the varying radial distances of the third port and the fourth port produce distinct wear paths upon the abrasive surface on the platen for the third port and the fourth port as the platen and the fixture undergo the relative motion.

13. The fixture of claim 9 , wherein an angular separation between at least the first port and the second port with respect to the center of the fixture base is based on the relative motion of the platen and the fixture such that the first port and the second port follow distinct wear paths upon the abrasive surface on the platen as the platen and the fixture undergo the relative motion.

14. A system for polishing optical fibers, comprising:

the optical fiber polishing fixture of claim 9 ; and

an optical fiber polishing machine having a platen configured to retain an abrasive film, a mounting mechanism coupled to the fixture, and a drive mechanism, the drive mechanism causing the fixture and the platen to undergo the relative motion.

Assignments (14)
RELEASE OF SECURITY INTEREST Recorded Sep 24, 2025
From: ALLY BANK, AS COLLATERAL AGENT
To: DOMAILLE ENGINEERING, LLC
Reel/Frame 072355/0130 →
SECURITY INTEREST Recorded Sep 23, 2025
From: DOMAILLE ENGINEERING, LLC
To: STELLUS CAPITAL INVESTMENT CORPORATION, AS ADMINISTRATIVE AGENT
Reel/Frame 072342/0612 →
SECURITY AGREEMENT Recorded Dec 1, 2021
From: DOMAILLE ENGINEERING, LLC; TECH MANUFACTURING, LLC; ADDMAN ENGINEERING, LLC
To: ALLY BANK, AS COLLATERAL AGENT
Reel/Frame 058293/0252 →
RELEASE OF SECURITY INTEREST Recorded Nov 30, 2021
From: BMO HARRIS BANK N.A., AS AGENT
To: DOMAILLE ENGINEERING, LLC; TECH MANUFACTURING, LLC
Reel/Frame 058247/0482 →
PATENT SECURITY AGREEMENT Recorded Feb 4, 2019
From: DOMAILLE ENGINEERING, LLC
To: BMO HARRIS BANK N.A., AS AGENT
Reel/Frame 048247/0778 →
RELEASE OF SECURITY INTEREST Recorded Feb 1, 2019
From: ORIX CORPORATE CAPITAL INC.
To: DOMAILLE ENGINEERING, LLC; TECH MANUFACTURING, LLC
Reel/Frame 048223/0210 →
PATENT SECURITY AGREEMENT Recorded Feb 1, 2019
From: DOMAILLE ENGINEERING, LLC
To: BMO HARRIS BANK N.A., AS AGENT
Reel/Frame 048226/0368 →
RELEASE OF SECURITY INTEREST Recorded Feb 1, 2019
From: BYLINE BANK, AS AGENT
To: DOMAILLE ENGINEERING, LLC; TECH MANUFACTURING, LLC
Reel/Frame 048223/0323 →
SECURITY INTEREST Recorded Feb 1, 2018
From: DOMAILLE ENGINEERING, LLC; TECH MANUFACTURING, LLC
To: BYLINE BANK, AS AGENT
Reel/Frame 044796/0533 →
SECURITY INTEREST Recorded Dec 6, 2016
From: DOMAILLE ENGINEERING, LLC
To: ORIX CORPORATE CAPITAL INC., AS AGENT
Reel/Frame 040536/0745 →
SECURITY INTEREST Recorded Dec 2, 2016
From: DOMAILLE ENGINEERING, LLC
To: BYLINE BANK, AS AGENT
Reel/Frame 040492/0937 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 20, 2014
From: DOMAILLE ENGINEERING, LLC
To: DOMAILLE ENGINEERING, LLC
Reel/Frame 032004/0621 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2013
From: DOMAILLE ENGINEERING, LLC
To: DOMAILLE ENGINEERING, LLC
Reel/Frame 029767/0419 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2010
From: FRAZER, JAMES T.
To: DOMAILLE ENGINEERING, LLC
Reel/Frame 024502/0250 →
Continuity (1)
Provisional Application 61119880 · Dec 4, 2008