IP Library Granted Patent US 11,226,461
Granted Patent B2
US 11,226,461 · App. 17/032,460 · Granted Jan 18, 2022

Telecommunications distribution elements

Inventors: Pieter Vermeulen (Westerlo, BE); Johan Geens (Bunsbeek, BE); Peter Claes (Berlaar, BE)
Assignee: CommScope Connectivity Belgium BVBA
G02B6/4446G02B6/4452G02B6/4453G02B6/4455
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Quick Facts
Patent No.
US 11,226,461
App. No.
17/032,460
Granted
Jan 18, 2022
Kind
B2
Abstract

A hinge structure ( 2202 ) for pivotally mounting a first telecommunications element ( 2256 ) to a second telecommunications element ( 2224/2210 ) includes a hinge pin ( 2203 ) provided on the first element ( 2256 ) and a hinge pin receiver ( 2204 ) provided on the second element ( 2224/2210 ). The hinge pin ( 2203 ) defines a notch ( 2206 ) separating the pin ( 2203 ) into two pin halves ( 2205 ). The hinge pin receiver ( 2204 ) defines two sets of opposing surfaces ( 2214 ), the two sets ( 2214 ) separated by a divider ( 2212 ), the divider ( 2212 ) configured to be accommodated by the notch ( 2206 ) when the hinge pin ( 2203 ) is inserted into the hinge pin receiver ( 2204 ), wherein each opposing surface set ( 2214 ) defines a slot ( 2213 ) for receiving each pin half ( 2205 ).

Claims (12)

1. A hinge structure for pivotally mounting a first telecommunications element to a second telecommunications element, the hinge structure comprising:

a hinge pin provided on the first telecommunications element;

a hinge pin receiver provided on the second telecommunications element;

wherein the hinge pin defines a notch separating the pin into two pin halves, the notch configured to accommodate and receive a divider structure defined by the hinge pin receiver of the second telecommunications element when the first telecommunications element is mounted on the second telecommunications element, wherein the divider structure divides the hinge pin receiver into two separate receiver halves, each receiver half configured to receive a pin half;

wherein the hinge structure further comprises a retention element that is configured to keep the first telecommunications element in an open position, the retention element comprising an elastically flexible cantilever arm configured to provide a biasing force against the first telecommunications element to keep the first telecommunications element in the open position.

2. A hinge structure according to claim 1 , wherein the hinge pin receiver further comprises generally circular pin pockets for pivotally guiding the pin halves.

3. A hinge structure according to claim 1 , wherein both the hinge pin and the hinge pin receiver define abutting surfaces to act as positive stops for limiting the pivotal movement of the first telecommunications element to a 90-degree travel path.

4. A hinge structure according to claim 1 , wherein the retention element is provided on the second telecommunications element.

5. A hinge structure according to claim 1 , wherein the flexible cantilever arm includes a tab at a free end thereof that defines a ramped surface for abutting a portion of the first telecommunications element to keep the first telecommunications element in the open position.

6. A hinge structure according to claim 1 , further comprising a pair of the hinge pins provided on the first telecommunications element and a pair of the hinge pin receivers provided on the second telecommunications element.

7. A hinge structure according to claim 1 , wherein each hinge pin receiver half defines a set of opposing surfaces such that two sets of opposing surfaces are formed by the divider structure that divides the hinge pin receiver into two separate receiver halves, wherein each set of opposing surfaces defines a slot for receiving each pin half.

8. A hinge structure according to claim 7 , wherein the opposing surfaces are angled surfaces for guiding a pin half into the slot.

Continuity (5)
Continuation 16811850 · Mar 6, 2020
Division 16062060
Provisional Application 62268292 · Dec 16, 2015
Provisional Application 62343473 · May 31, 2016
Related Publication 20210080668A1 · Mar 18, 2021