IP Library Granted Patent US 9,002,170
Granted Patent B2
US 9,002,170 · App. 13/567,677 · Granted Apr 7, 2015

Dust cap for fiber optic cable or adapter

Inventors: Dan J. Neitge (Excelsior, MN); Brad S. Morrow (Big Lake, MN)
G02B6/443
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Quick Facts
Patent No.
US 9,002,170
App. No.
13/567,677
Granted
Apr 7, 2015
Kind
B2
Abstract

A dust cap adapted to fit over a fiber optic adapter. The dust cap includes a dust cap body having a light-entering end and an opposite indicating end. The dust cap body is shaped such that the light-entering end has an interference fit with the fiber optic adapter. A first gap-creating projection extends from the light-entering end, and a second gap-creating projection extends from the light-entering end. The dust cap also includes a light pipe running along a longitudinal axis of the dust cap body from just beyond the light-entering end to just beyond the indicating end.

Claims (32)

1. A dust cap adapted to fit over a fiber optic adapter, the dust cap comprising:

an elongate dust cap body having a light-entering end and an opposite indicating end, wherein the dust cap body is shaped such that the light-entering end is adapted to create an interference fit with the fiber optic adapter;

at least one gap-creating projection extending from the light-entering end; and

a light pipe running from about the light-entering end to about the indicating end, the light pipe comprising:

a receiving extension located proximate the light-entering end;

a displaying extension located proximate the indicating end; and

a light pipe body running from the receiving extension to the displaying extension.

2. The dust cap of claim 1 , wherein the at least one gap-creating projection creates an air gap between the end of the fiber optic adapter and a light pipe.

3. The dust cap of claim 2 , further comprising:

at least one gap-creating projection projecting from the dust cap body and adapted to prevent light from transmitting beyond the air gap; and

at least one blocking projection adapted to prevent contaminants from contacting the fiber optic.

4. The dust cap of claim 1 , wherein the receiving extension projects beyond the light-entering end.

5. The dust cap of claim 1 , wherein the displaying extension projects beyond the indicating end.

6. The dust cap of claim 1 , wherein the displaying extension projects flush with the indicating end.

7. The dust cap of claim 1 , wherein the displaying extension runs slightly inside the indicating end.

8. The dust cap of claim 1 , further comprising a light pipe, wherein the light pipe comprises at least one of glass or plastic.

9. The dust cap of claim 1 , further comprising an interference ridge projecting from the dust cap body and adapted to make contact with the fiber optic adapter.

10. The dust cap of claim 1 , wherein the dust cap body is made of at least one of thermoplastic elastomer, thermoplastic rubber, or plastic polymer.

11. The dust cap of claim 10 , wherein the plastic polymer comprises one of low-density polyethylene, high-density polyethylene, low-linear polyethylene, polypropylene, polystyrene, polyvinyl chloride, or polyester.

12. A method of identifying optical fibers along a fiber optic run, the fiber optic run including a first fiber optic cable operably coupled to a second fiber optic cable, the method comprising:

fitting a dust cap over an optical fiber adapter of the first fiber optic cable, the dust cap comprising an illuminable indicating end and a light pipe running from about the light-entering end to about the indicating end, the light pipe comprising a receiving extension located proximate the light-entering end, a displaying extension located proximate the indicating end, and a light pipe body running from the receiving extension to the displaying extension; and

emitting a beam of laser light into a terminus of the second fiber optic cable, thereby illuminating the indicating end of the dust cap at the first fiber optic cable so as to associate the first fiber optic cable with the second fiber optic cable.

13. The method of claim 12 , further comprising associating the operably coupled port of the first fiber optic cable with the operably coupled port of the second fiber optic cable.

14. The method of claim 12 , wherein the fiber optic run comprises a third fiber optic cable operably coupled to the first fiber optic cable, and the method further comprises: fitting a second dust cap over an optical fiber adapter of the third fiber optic cable, the second dust cap comprising an illuminable indicating end; and

illuminating the indicating end of the second dust cap at the third fiber optic cable to associate the third fiber optic cable with the second fiber optic cable.

15. The method of claim 12 , wherein the illuminated indicating end comprises an end of a light pipe, and viewing the illuminated indicating end of the dust cap includes viewing a diameter of light that appears larger than the diameter of the light pipe.

16. A dust cap adapted to fit over a fiber optic adapter, the dust cap comprising:

an elongate dust cap body having a light-entering end and an opposite indicating end, wherein the dust cap body is shaped such that the light-entering end is adapted to create an interference fit with the fiber optic adapter;

at least one gap-creating projection extending from the light-entering end; and

a light pipe running from about the light-entering end to about the indicating end, the light pipe comprising:

a displaying extension located proximate the indicating end; and

a light pipe body running from the light-entering end to the displaying extension.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2019
From: NEITGE, DAN J; MORROW, BRAD S
To: ENKAP, LLC
Reel/Frame 048823/0152 →
Continuity (2)
Provisional Application 61514944 · Aug 4, 2011
Related Publication 20130034349A1 · Feb 7, 2013