IP Library Granted Patent US 10,036,859
Granted Patent B2
US 10,036,859 · App. 15/487,678 · Granted Jul 31, 2018

Cable termination assembly and method for connectors

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 10,036,859
App. No.
15/487,678
Granted
Jul 31, 2018
Kind
B2
Abstract

The present disclosure relates to a fiber optic connector assembly having a fiber optic connector including a main connector body and a rear insert secured within a rear cable termination end of the main connector body. The fiber optic connector assembly has a fiber optic cable that includes an optical fiber, a strength layer and an outer jacket. The optical fiber has a ferrule-less end portion accessible at a front mating end of the main connector body. A first shape recoverable sleeve secures the optical fiber to a substrate anchored to the rear insert. An axial gap exists between the forward end of the outer jacket and the rearward end of the rear insert. A second shape recoverable sleeve secures the outer jacket to the rear insert. An adhesive material at least partially fills the axial gap.

Claims (17)

1. A fiber optic connector assembly comprising:

a fiber optic cable including an optical fiber, an outer jacket surrounding the optical fiber, and a strength layer between the optical fiber and the outer jacket;

a connector body defining a front end and a rear end, wherein the connector body defines a plastic front housing and a metallic rear insert coupled to the front housing, wherein the strength layer of the fiber optic cable is anchored to the metallic rear insert with a strength member clamp, wherein a first portion of the strength layer of the fiber optic cable is captured between the strength member clamp and the metallic rear insert and a second portion of the strength layer is folded rearwardly over an exterior of the strength member clamp;

a fiber securement substrate mounted within the metallic rear insert;

a shape recoverable article that secures the optical fiber the fiber securement substrate; and

the optical fiber extending forwardly from the fiber securement substrate through the connector body to the front end of the connector body, wherein a ferrule-less end portion of the optical fiber is accessible at the forward end of the connector body.

2. A fiber optic connector assembly according to claim 1 , wherein the strength member clamp defines a projection extending transversely toward a longitudinal axis of the strength member clamp, the projection configured to be inserted within a notch defined by the metallic rear insert for coupling the strength member clamp to the connector body.

3. A fiber optic connector assembly according to claim 1 , further comprising a heat-recoverable tube placed over the strength member clamp and fixing the strength member clamp relative to the connector body, the heat-recoverable tube covering the first portion of the strength layer that is captured between the strength member clamp and the metallic rear insert and at least partially covering the second portion of the strength layer that is folded rearwardly over the exterior of the strength member clamp.

4. A fiber optic connector assembly according to claim 1 , wherein the connector body defines a fiber buckling region between the front end of the connector body and the metallic rear insert.

5. A fiber optic connector assembly according to claim 4 , wherein the fiber buckling region is configured to take-up at least 0.5 millimeters of excess fiber length without violating minimum bend radius requirements of the optical fiber and without causing unacceptable levels of attenuation.

6. A fiber optic connector assembly according to claim 1 , wherein the shape recoverable article is a heat shrink sleeve that can change from an expanded configuration to a compressed configuration by application of heat to the metallic rear insert.

7. A fiber optic connector assembly according to claim 2 , wherein the metallic rear insert of the connector body includes a plurality of the notches and the strength member clamp defines a plurality of the projections configured to fit within the notches.

8. A fiber optic connector assembly according to claim 7 , wherein the strength member clamp defines a complete circular ring with a plurality of fingers extending forwardly, the plurality of fingers defining the projections and configured to flex radially.

9. A fiber optic connector assembly according to claim 7 , wherein the strength member clamp is a split ring.

10. A fiber optic connector assembly according to claim 3 , further comprising a strain relief boot covering the heat-recoverable tube.

11. A fiber optic connector assembly according to claim 3 , wherein the heat-recoverable tube defines a dual-wall construction including a heat-recoverable layer surrounding an adhesive layer.

12. A fiber optic connector assembly according to claim 1 , wherein the strength layer includes aramid yarns.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2022
From: COMMSCOPE CONNECTIVITY BELGIUM BVBA
To: BISON PATENT LICENSING, LLC
Reel/Frame 060494/0555 →
Cited By (19)
US 12,271,040 US 12,276,846 US 12,298,568 US 12,345,927 US 12,353,024 US 12,353,025 US 12,372,727 US 12,379,551 US 12,379,552 US 12,429,655 US 12,487,423 US 12,517,306 US 12,523,824 US 12,546,955 US 12,554,075 US 12,571,977 US 12,638,641 US 12,693,485 US 12,699,231