IP Library Granted Patent US 12,461,318
Granted Patent B2
US 12,461,318 · App. 17/627,519 · Granted Nov 4, 2025

Fiber optic connector with overmold lead-in tube

Inventors: Marlon E. Holmquist (St. Peter, MN); David Donald Erdman (Hummelstown, PA); Steven Conrad Zimmel (Minneapolis, MN)
Assignee: CommScope Technologies LLC
G02B6/3865G02B6/3825G02B6/3843G02B6/3869
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 12,461,318
App. No.
17/627,519
Granted
Nov 4, 2025
Kind
B2
Abstract

The present disclosure relates to a fiber optic connector designed to improve the insertion of an optical fiber within the fiber optic connector. The fiber optic connector may include a lead-in tube that makes the insertion of an optical fiber easier. That is, the lead-in tube may be molded over a ferrule hub to fully encapsulate a rear end thereof such that the optical fiber does not snag or hang up during insertion.

Claims (20)

1 . A fiber optic connector, comprising:

a ferrule assembly including a ferrule and a hub, the ferrule having a first end and an opposite second end, the ferrule defining a fiber passage that extends between the first and second ends of the ferrule, the fiber passage being concentric with a central axis of the ferrule;

the hub mounted around the second end of the ferrule, the hub including an axial passage, the hub having an inner surface portion and an outer surface portion, the hub including a retention member circumferentially extending around the hub about the outer surface, and the hub extending along the central axis, wherein the inner surface portion of the hub defines a first taper toward the central axis along a stem portion of the hub as the inner surface portion extends from a termination end of the stem portion toward the ferrule and a second taper that is also toward the central axis adjacent a fiber entry area defined at the second end of the ferrule, wherein the inner surface portion of the hub defines a non-tapered straight portion that is in between and separates the portion defining the first taper and the portion defining the second taper; and

an over-molded lead-in tube being molded over the outer surface portion of the hub such that the over-molded lead-in tube fully encapsulates the retention member of the hub, and the over-molded lead-in tube also being molded over at least a portion of the inner surface portion of the hub defining the first taper such that the portion of the over-molded lead-in tube that is molded over at least a portion of the inner surface portion of the hub extends along a majority of the inner surface portion of the hub defining the first taper and extends past the retention member in the axial direction toward the ferrule, wherein the over-molded lead-in tube tapers to zero along the inner surface portion of the hub.

2 . The fiber optic connector of claim 1 , wherein the retention member defines a circumferentially extending barb.

3 . The fiber optic connector of claim 1 , wherein the ferrule is a ceramic ferrule.

4 . The fiber optic connector of claim 1 , wherein the over-molded lead-in tube is constructed of a flexible plastic material more flexible than the hub.

5 . The fiber optic connector of claim 1 , wherein the fiber optic connector is an SC-type fiber optic connector.

6 . The fiber optic connector of claim 1 , wherein the fiber optic connector is a LC-type fiber optic connector.

7 . A fiber optic connector, comprising:

a ferrule assembly including a ferrule and a hub, the ferrule having a first end and an opposite second end, the ferrule defining a fiber passage that extends between the first and second ends of the ferrule, the fiber passage being concentric with a central axis of the ferrule, the fiber passage of the ferrule including:

a first portion adjacent the first end of the ferrule and exposed to open at the first end of the ferrule, the first portion defining a first internal passage having a constant first cross sectional area along an entire length of the first internal passage;

a second portion positioned adjacent the first internal passage of the first portion and between the first portion and the second end of the ferrule, the second portion defining a second internal passage adjacent the first internal passage of the first portion and having a constant second cross sectional area along an entire length of the second internal passage; and

a transition area extending between a first end and an opposite second end, the first end abutting with the second portion and the second end abutting with the second end of the ferrule, the transition area having an inner diameter that continuously changes between the first end and the second end, wherein the transition area has a diameter increasing in a direction from the first portion to the second portion of the fiber passage of the ferrule; the hub mounted around the second end of the ferrule, the hub including an axial passage, the hub having an inner surface portion and an outer surface portion, and the hub extending along the central axis;

a retention member defined on the outer surface portion of the hub at a rear end thereof; and

an over-molded lead-in tube being molded over the outer surface portion of the hub such that the over-molded lead-in tube fully encapsulates the retention member of the hub, and the over-molded lead-in tube also being molded over at least a portion of the inner surface portion of the hub, wherein the over-molded lead-in tube tapers to zero along at least a portion of the inner surface portion of the hub that defines a first taper toward the central axis along a stem portion of the hub as the inner surface portion extends from a termination end of the stem portion toward the ferrule, wherein the inner surface portion of the ferrule hub also defines a second taper that is also toward the central axis adjacent a fiber entry area defined at the second end of the ferrule, wherein the inner surface portion of the hub defines a non-tapered straight portion that is in between and separates the portion defining the first taper and the portion defining the second taper, wherein the portion of the over-molded lead-in tube that is molded over at least a portion of the inner surface portion of the hub extends along a majority of the inner surface portion of the hub defining the first taper and extends past the retention member in the axial direction toward the ferrule.

8 . The fiber optic connector of claim 7 , wherein the over-molded lead-in tube is constructed of a flexible plastic material more flexible than the hub.

9 . The fiber optic connector of claim 7 , wherein the retention member defines a circumferentially extending barb.

10 . The fiber optic connector of claim 1 , wherein the inner surface portion of the hub defines the first taper toward the central axis along a majority of the length of the stem portion of the hub as the inner surface portion extends from the termination end of the stem portion toward the ferrule.

11 . The fiber optic connector of claim 7 , wherein the first taper is toward the central axis along a majority of the length of the stem portion of the hub as the inner surface portion extends from the termination end of the stem portion toward the ferrule.

Assignments (8)
RELEASE OF SECURITY INTEREST AT REEL/FRAME 059350/0743 Recorded Jan 12, 2026
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE NORTH CAROLINA, LLC (F/K/A COMMSCOPE, INC. OF NORTH CAROLINA)
Reel/Frame 074594/0156 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENTS AT REEL/FRAME NO. 59710/0506 Recorded Jan 9, 2026
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE NORTH CAROLINA, LLC (F/K/A COMMSCOPE, INC. OF NORTH CAROLINA)
Reel/Frame 074282/0522 →
RELEASE OF SECURITY INTEREST AT REEL/FRAME 059350/0921 Recorded Dec 19, 2024
From: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
To: ARRIS ENTERPRISES LLC (F/K/A ARRIS ENTERPRISES, INC.); COMMSCOPE, INC. OF NORTH CAROLINA; COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 069743/0704 →
SECURITY INTEREST Recorded Dec 17, 2024
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE INC., OF NORTH CAROLINA; OUTDOOR WIRELESS NETWORKS LLC; RUCKUS IP HOLDINGS LLC
To: APOLLO ADMINISTRATIVE AGENCY LLC
Reel/Frame 069889/0114 →
SECURITY INTEREST Recorded Mar 9, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: WILMINGTON TRUST
Reel/Frame 059710/0506 →
TERM LOAN SECURITY AGREEMENT Recorded Mar 8, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 059350/0921 →
ABL SECURITY AGREEMENT Recorded Mar 8, 2022
From: ARRIS ENTERPRISES LLC; COMMSCOPE TECHNOLOGIES LLC; COMMSCOPE, INC. OF NORTH CAROLINA
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 059350/0743 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 14, 2022
From: HOLMQUIST, MARLON E.; ERDMAN, DAVID DONALD; ZIMMEL, STEVEN CONRAD
To: COMMSCOPE TECHNOLOGIES LLC
Reel/Frame 058663/0198 →
Continuity (2)
Provisional Application 62875332 · Jul 17, 2019
Related Publication 20220269014A1 · Aug 25, 2022
References Cited (51)
US 5058984A · Bulman et al. · 1991 [cited by applicant]
US 5096276A · Gerace et al. · 1992 [cited by applicant]
US 5181267A · Gerace et al. · 1993 [cited by applicant]
US 5317663A · Beard et al. · 1994 [cited by applicant]
US 5375183A · Edwards et al. · 1994 [cited by applicant]
US 5428703A · Lee · 1995 [cited by applicant]
US 5611012A · Kuchenbecker · 1997 [cited by applicant]
US 5682451A · Lee et al. · 1997 [cited by applicant]
US 5778126A · Saitoh · 1998 [cited by applicant]
US 6142676A · Lu · 2000 [cited by applicant]
US 6155146A · Andrews et al. · 2000 [cited by applicant]
US 6629782B2 · McPhee et al. · 2003 [cited by applicant]
US 7281859B2 · Mudd et al. · 2007 [cited by applicant]
US 7997806B2 · Nakagawa · 2011 [cited by applicant]
US 8496386B2 · Kerr et al. · 2013 [cited by applicant]
US 8858090B2 · Henke et al. · 2014 [cited by applicant]
US 9057849B2 · Park et al. · 2015 [cited by applicant]
US 9684138B2 · Lu · 2017 [cited by applicant]
US 11150412B2 · Zimmel et al. · 2021 [cited by applicant]
US 11187859B2 · Rosson et al. · 2021 [cited by applicant]
US 20020081077A1 · Nault · 2002 [cited by applicant]
US 20030147598A1 · McPhee et al. · 2003 [cited by applicant]
US 20040151437A1 · Marrs et al. · 2004 [cited by applicant]
US 20050232553A1 · Holmquist · 2005 [cited by applicant]
US 20050232554A1 · Zimmel et al. · 2005 [cited by applicant]
US 20060115219A1 · Mudd et al. · 2006 [cited by applicant]
US 20070183721A1 · Holmquist et al. · 2007 [cited by applicant]
US 20090214164A1 · Nakagawa · 2009 [cited by applicant]
US 20110008003A1 · Tamekuni et al. · 2011 [cited by applicant]
US 20110075972A1 · Parkman, III · 2011 [cited by applicant]
US 20130089294A1 · Zimmel · 2013 [cited by applicant]
US 20130315541A1 · Nhep et al. · 2013 [cited by applicant]
US 20130322826A1 · Henke et al. · 2013 [cited by applicant]
US 20170212313A1 · Elenabaas · 2017 [cited by examiner]
US 20180059334A1 · Lu et al. · 2018 [cited by applicant]
US 20180224608A1 · Liu et al. · 2018 [cited by applicant]
US 20220260788A1 · Zimmel et al. · 2022 [cited by applicant]
US 20220276451A1 · Zimmel et al. · 2022 [cited by applicant]
US 20220357523A1 · Zimmel et al. · 2022 [cited by applicant]
CN 101091131A · 2007 [cited by applicant]
CN 104169764A · 2014 [cited by applicant]
CN 109716194A · 2019 [cited by applicant]
JP 2010256703A · 2010 [cited by examiner]
WO 2014031556A1 · 2014 [cited by applicant]
Extended European Search Report for Application No. 20841353.4 mailed Jul. 14, 2023. [cited by applicant]
Partial Supplementary European Search Report for Application No. 20840593.6 mailed Jul. 4, 2023. [cited by applicant]
International Search Report and Written Opinion of the International Searching Authority for International Patent Application No. PCT/US2020/041955 mailed Nov. 5, 2020, 14 pages. [cited by applicant]
International International Search Report and Written Opinion of the International Searching Authority for International Patent Application No. PCT/US2020/042135 mailed Nov. 5, 2020, 9 pages. [cited by applicant]
International International Search Report and Written Opinion of the International Searching Authority for International Patent Application No. PCT/US2020/42152 mailed Nov. 6, 2020, 9 pages. [cited by applicant]
International International Search Report and Written Opinion of the International Searching Authority for International Patent Application No. PCT/US2020/042368 mailed Nov. 5, 2020, 10 pages. [cited by applicant]
Extended European Search Report for Application No. 20840593.6 mailed Oct. 9, 2023. [cited by applicant]