IP Library Granted Patent US 11,073,664
Granted Patent B2
US 11,073,664 · App. 16/539,854 · Granted Jul 27, 2021

Cable boot assembly for releasing fiber optic connector from a receptacle

Inventors: Jimmy Jun-Fu Chang (Worcester, MA); Kazuyoshi Takano (Tokyo, JP)
Assignee: Senko Advanced Components, Inc.
G02B6/3893G02B6/3881G02B6/3887
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Quick Facts
Patent No.
US 11,073,664
App. No.
16/539,854
Granted
Jul 27, 2021
Kind
B2
Abstract

A fiber optic connector with a pair resilient actuators positioned on an outer portion of an upper body portion of a cable boot assembly, when depressed allow a user to remove the cable boot assembly from a housing, rotate, and change polarity of the ferrules located within a front body secured to the cable boot assembly.

Claims (22)

1. A fiber optic connector configured to terminate a fiber optic cable, comprising:

an outer connector housing comprising a wall defining a cut-out;

a cable boot assembly configured to be received in the outer connector housing, the cable boot assembly having a longitudinal axis and comprising a cable boot member movable relative to the outer housing, the cable boot member including a housing connection portion configured to connect the cable boot assembly to the outer connector housing, the housing connection portion comprising a flexible actuator received in the cut-out and thereby latching the cable boot assembly to the outer connector housing, the cable boot assembly further comprising at least first and second optical fibers, the first and second optical fibers being secured to the cable boot member for movement with the cable boot member relative to the outer connector housing;

wherein the at least one flexible actuator is configured to be depressed inward and out of the cut-out to disconnect the cable boot assembly from the outer housing;

wherein a cavity is formed in the cable boot member for accepting a portion of the flexible actuator in the cavity;

wherein the fiber optic connector is configured to be selectively plugged into and removed from a receptacle as a unit when the flexible actuator is received in the cut-out and wherein depressing the at least one actuator while the fiber optic connector is plugged into the receptacle can release the cable boot assembly from the outer housing without releasing the outer housing from the receptacle such that the cable boot assembly can be withdrawn from the outer housing without withdrawing the outer housing from the receptacle when the cable boot assembly is pulled in a distal direction; and

wherein after the cable boot assembly is withdrawn from the outer housing, the cable boot assembly is configured to rotate 180° about the longitudinal axis to an inverted orientation and be reinserted into the outer housing in the inverted orientation to reverse a polarity of the fiber optic connector.

2. The fiber optic connector according to claim 1 , wherein the cable boot assembly is secured to a front body, and the front body is secured to the receptacle by the at least one actuator.

3. The fiber optic connector according to claim 2 , wherein the actuator is formed as a protrusion on the cable boot member.

4. A method of changing polarity of a fiber optic connector, comprising:

providing a fiber optic connector according to claim 1 ;

depressing one or more actuators formed from an upper body of a cable boot assembly;

removing the cable boot assembly from the connector housing;

rotating the cable boot assembly 180-degrees changing the fiber optic connector from a first polarity to a second polarity; and wherein inserting the cable boot assembly after rotating 180-degrees into the connector housing results in fiber optic connector in the second polarity.

5. A cable boot assembly configured to be received in an outer connector housing to form a fiber optic connector that can be inserted into a fiber optic receptacle as a unit, the cable boot assembly having a longitudinal axis, the cable boot assembly comprising:

a cable boot member configured to be partially received in the outer connector housing, the cable boot member including an upper body portion and a lower body portion; the upper body portion has at least one actuator configured to engage the outer connector housing when the cable boot assembly is received in the outer connector housing to couple the cable boot assembly to the outer connector housing; the upper body portion has at least one opening formed with the upper body portion and underneath the actuator; and

at least first and second optical fibers, the first and second optical fibers being secured to the cable boot member for movement with the cable boot member relative to the outer connector housing;

wherein depressing the at least one actuator moves the actuator inward into the opening; thereby, allowing the cable boot assembly to be removed from the outer connector housing;

wherein when the cable boot assembly is separated from the outer connector housing, the cable boot assembly is configured to rotate 180° about the longitudinal axis to an inverted orientation and be reinserted into the outer connector housing in the inverted orientation to reverse a polarity of the fiber optic connector.

6. The cable boot assembly according to claim 5 , wherein

the upper body portion is configured to be secured at a proximal end to a distal end of a front body of the outer connector housing, and the at least one actuator is configured to secure the cable boot assembly and front body within the outer connector housing; thereby, forming a fiber optic connector.

7. The cable boot assembly according to claim 6 , wherein the front body contains at least two ferrules.

Continuity (2)
Provisional Application 62718179 · Aug 13, 2018
Related Publication 20200049904A1 · Feb 13, 2020
Cited By (15)
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