IP Library Granted Patent US 9,753,240
Granted Patent B2
US 9,753,240 · App. 15/199,155 · Granted Sep 5, 2017

Splitter modules and optical component module mounting assemblies

Inventors: Randy Reagan (Morristown, NJ); Jiju Koratten (Cochin, IN); Biji Mathew Arakkakudy (Cochin, IN); Benoy Sarasan (Cochin, IN); Kizhakkekuttu Parameswaran Chandran (Cochin, IN); Basheer A. Alikunju (Cochin, IN)
Assignee: Opterna Technology Limited
G02B6/4471G02B6/36G02B6/3616G02B6/444G02B6/4452G02B6/4478G02B6/4444
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Quick Facts
Patent No.
US 9,753,240
App. No.
15/199,155
Granted
Sep 5, 2017
Kind
B2
Abstract

A fiber optic module mounting assembly can include a surface defining an opening and a module holder. The module holder includes a body defining a channel. The body has a cross-sectional shape closely corresponding to a cross-sectional shape of the opening defined by the surface. The module holder creates a snap or friction fit with the surface when the module holder is received within the opening of the surface, thereby coupling the module holder to the surface. The mounting assembly also includes a module comprising a housing having a cross-sectional shape closely corresponding to a cross-sectional shape of the channel of the module holder, and an optical component within the housing. The module is configured to be received within the channel defined by the body of the module holder.

Claims (22)

1. A fiber optic module mounting assembly comprising:

a surface defining an opening;

a module holder comprising a mounting flange and a body defining a channel, the body having a cross-sectional shape closely corresponding to a cross-sectional shape of the opening defined by the surface, wherein the mounting flange contacts the surface; and

a module comprising a housing and an optical component within the housing, at least a portion of the housing having first and second opposing sides and a flange-free cross-sectional shape closely corresponding to a cross-sectional shape of the channel of the module holder, wherein the module is configured to be received within the channel defined by the body of the module holder, wherein each of the first and second opposing sides of the portion of the housing slidably contact the channel;

wherein rotation of the module relative to the surface is substantially prevented when the housing of the module is received within the channel defined by the body of the module holder.

2. The fiber optic module mounting assembly of claim 1 , wherein the channel is configured to receive a single module.

3. The fiber optic module mounting assembly of claim 1 , wherein the module holder has a first length, and wherein the module has a second length greater than the first length.

4. The fiber optic module mounting assembly of claim 3 , wherein the first length is at least about 20 percent of the second length.

5. The fiber optic module mounting assembly of claim 1 , wherein the mounting flange extends from the body.

6. The fiber optic module mounting assembly of claim 5 wherein the mounting flange extends around an entire periphery of the body of the module holder.

7. The fiber optic module mounting assembly of claim 5 , wherein the module further comprises a flange extending from the housing and configured to contact the mounting flange of the module holder when the housing of the module is received within the channel defined by the body of the module holder.

8. The fiber optic module mounting assembly of claim 7 , wherein the flange of the module extends around an entire periphery of the module.

9. The fiber optic module mounting assembly of claim 1 , wherein the optical component comprises at least one of a monitor, a splitter, and a wavelength digital multiplexer.

10. The fiber optic module mounting assembly of claim 1 , wherein the surface comprises a panel of a rack-mountable chassis.

11. The fiber optic module mounting assembly of claim 1 , wherein the surface comprises a panel of a fiber distribution hub.

12. The fiber optic module mounting assembly of claim 1 , wherein the module holder further comprises a latch configured to selectively engage the module such that movement of the module relative to the module holder is prevented.

13. The fiber optic module mounting assembly of claim 12 , wherein the latch is a spring arm.

14. The fiber optic module mounting assembly of claim 13 , wherein the spring arm extends beyond the mounting flange.

15. The fiber optic module mounting assembly of claim 1 , wherein the mounting flange defines an opening configured to receive a fastener.

16. The fiber optic module mounting assembly of claim 1 , wherein the portion of the housing further comprises third and fourth opposing sides between the first and second opposing sides, wherein each of the third and fourth opposing sides of the portion of the housing slidably contact the channel.

17. The fiber optic module mounting assembly of claim 1 , wherein the optical component is between the first and second opposing sides.

18. The fiber optic module mounting assembly of claim 1 , wherein the module holder further comprises a second mounting flange disposed relative to the mounting flange so as to provide a gap configured to receive an edge of the surface defining the opening of the surface.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 9, 2020
From: OPTERNA TECHNOLOGY LIMITED
To: OPTERNA AM, INC.
Reel/Frame 052121/0742 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2017
From: REAGAN, RANDY; KORATTEN, JIJU; ARAKKAKUDY, BIJI MATHEW; SARASAN, BENOY; CHANDRAN, KIZHAKKEKUTTU PARAMESWARAN; ALIKUNJU, BASHEER A.
To: OPTERNA TECHNOLOGY LIMITED
Reel/Frame 042481/0261 →
Continuity (4)
Continuation 14372349
Provisional Application 61704957 · Sep 24, 2012
Provisional Application 61588018 · Jan 18, 2012
Related Publication 20160313528A1 · Oct 27, 2016