IP Library Granted Patent US 10,656,360
Granted Patent B2
US 10,656,360 · App. 16/245,441 · Granted May 19, 2020

Epoxy transitions for optical fiber modules

Inventors: Thomas M. Sedor (Orland Park, IL); Mark T. Sargis (Frankfort, IL)
Assignee: Panduit Corp.
G02B6/4471G02B6/245G02B6/3897G02B6/4453G02B6/4479G02B6/3823G02B6/3887G02B6/4472
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Quick Facts
Patent No.
US 10,656,360
App. No.
16/245,441
Granted
May 19, 2020
Kind
B2
Abstract

Various implementations of epoxy transitions for fiber optic modules are disclosed. As disclosed herein, a fiber optic module system may include a fiber optic module holding a plurality of multi-fiber adapters at a front of the fiber optic module, a multi-fiber cable, and an epoxy transition to transition the multi-fiber cable to a plurality of individual optical fibers inside the fiber optic module. The epoxy transition may be filled with an epoxy to secure the individual optical fibers inside the epoxy transition.

Claims (14)

1. A fiber optic module system, comprising:

a fiber optic module holding a plurality of optical adapters at a front of the fiber optic module;

a multi-fiber cable comprising a plurality of individual optical fibers; and

an epoxy transition comprising a first opening at a first end and a cone-shaped component including a second opening at a second end, wherein the first opening is configured to receive the multi-fiber cable and the second opening is configured to output the plurality of individual optical fibers, wherein the epoxy transition is filled, at least in part, with an epoxy to secure the plurality of individual optical fibers as the multi-fiber cable transitions to the plurality of individual optical fibers within the epoxy transition.

2. The fiber optic module system of claim 1 , wherein the cone-shaped component is included as part of an epoxy transition piece, and the epoxy transition further comprises a boot.

3. The fiber optic module system of claim 2 , wherein the epoxy transition piece is filled with the epoxy through a fill hole on the epoxy transition piece.

4. The fiber optic module system of claim 3 , wherein the epoxy transition piece is filled with the epoxy such that a portion of the epoxy exits the second opening included in the cone-shaped component.

5. The fiber optic module system of claim 2 , wherein the boot includes a cable size identifier.

6. The fiber optic module system of claim 5 , wherein the cable size identifier denotes the fiber count that the boot is designed to be used with.

7. The fiber optic module system of claim 6 , wherein the cable size identifier is twelve.

8. The fiber optic module system of claim 6 , wherein the cable size identifier is twenty-four.

9. The fiber optic module system of claim 1 , wherein at least one individual optical fiber of the plurality of individual optical fibers is connected at a free end to a single fiber optical connector.

10. The method of claim 1 , wherein the multi-fiber cable is sheathed with a sheathing material outside the epoxy transition; and

wherein the sheathing material is removed for the plurality of individual optical fibers within the epoxy transition.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 17, 2019
From: SEDOR, THOMAS M.; SARGIS, MARK T.
To: PANDUIT CORP.
Reel/Frame 049206/0371 →
Continuity (2)
Provisional Application 62620753 · Jan 23, 2018
Related Publication 20190265428A1 · Aug 29, 2019
Cited By (3)
US 12,276,848 US 12,429,654 US 12,704,692