IP Library Granted Patent US 12,624,594
Granted Patent B2
US 12,624,594 · App. 18/461,502 · Granted May 12, 2026

Adjustable hinge for a multi-position ladder

Inventors: Joseph P. Foley (St. Paul, MN); Dennis D. Simpson (Plymouth, MN); Benjamin P. Williams (Chaska, MN)
Assignee: Tricam Industries, LLC
E06C7/50E06C1/32F16C11/10
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Quick Facts
Patent No.
US 12,624,594
App. No.
18/461,502
Granted
May 12, 2026
Kind
B2
Abstract

An improved adjustable hinge for a multi-position ladder that is positionable in a variety of configurations while being ergonomic to adjust and which is structurally sound, rigid, and easy to adjust, light in weight, and has a long service life. The mating surfaces of the outer hinge plates, inner hinge plates, and inner hinge center spacer are large, contributing to overall hinge rigidity and stability. The size of the lock button and lock bracket are each relatively large, making them ergonomic to operate, while also being large enough to be operable by a gloved human hand. A method of assembling an improved adjustable hinge for a multi-position ladder that is positionable in a variety of configurations.

Claims (46)

1 . An adjustable hinge for a multi-position ladder, comprising:

two outer hinge plates, each outer hinge plate having an outer hinge plate mating surface;

two inner hinge plates, each inner hinge plate having an inner hinge plate mating surface, the inner hinge mating surface having an inner hinge mating surface diameter;

a center lock pin;

a lock sleeve;

a lock button having a locked position and an unlocked position and a diameter;

a lock bracket having a locked position and an unlocked position, said lock bracket having a pair of locking pins, each locking pin having an equal locking pin radius;

two outer hinge outside spacers, each outer hinge outside spacer disposed opposite each outer hinge plate mating surface;

two inner hinge outside spacers;

an outer hinge center spacer;

a lock spring coaxial to and surrounding the lock sleeve and between the lock button and one of the outer hinge plates biasing the lock bracket in the locked position, the lock spring being visible when the lock button is in the locked position; and

wherein said outer hinge outside spacers, said outer hinge plates, and said outer hinge center spacer form an outer hinge extension having a width;

wherein said inner hinge outside spacers and said inner hinge plates form an inner hinge extension having a width, the inner hinge extension width defined by a perpendicular distance between parallel opposite edges of the inner hinge plates;

wherein the inner hinge plate mating surface diameter is a length within a range defined between 170-200% of the inner hinge extension width;

wherein the lock button diameter is greater than the inner hinge extension width and the lock button diameter is generally equal to two times the locking pin radius.

2 . The adjustable hinge of claim 1 wherein the diameter of the lock button is at least 110% of the inner hinge extension width.

3 . The adjustable hinge of claim 1 , wherein the radius of the lock bracket is at least 75% of the inner hinge extension width.

4 . The adjustable hinge of claim 1 wherein the outer hinge plates and inner hinge plate are manufactured from an alloy of aluminum.

5 . The adjustable hinge of claim 1 wherein the outer hinge plates and inner hinge plates are manufactured from an alloy of steel.

6 . The adjustable hinge of claim 1 further comprising an inner hinge center spacer, wherein the inner hinge center spacer is manufactured from a synthetic polymer.

7 . The adjustable hinge of claim 6 wherein the inner hinge center spacer is manufactured from polyoxymethylene.

8 . The adjustable hinge of claim 1 wherein the outer hinge outside spacers and inner hinge outside spacers are manufactured from a synthetic polymer.

9 . The adjustable hinge of claim 1 wherein the outer hinge outside spacers and inner hinge outside spacers are manufactured from polyoxymethylene.

10 . The adjustable hinge of claim 1 wherein the outer hinge outside spacers and inner hinge outside spacers are manufactured from an alloy of aluminum.

11 . The adjustable hinge of claim 1 wherein the outer hinge outside spacers and inner hinge outside spacers are manufactured from an alloy of steel.

12 . A multi-position ladder, comprising:

two adjustable hinges, each of two said hinges comprising:

two outer hinge plates, each outer hinge plate having an outer hinge plate mating surface;

two inner hinge plates, each said inner hinge plate having an inner hinge plate mating surface, the inner hinge plate mating surface having an inner hinge plate mating surface diameter;

a center lock pin;

a lock sleeve;

a lock button having a locked position and an unlocked position and having a lock button diameter;

a lock bracket having a locked position and an unlocked position, said lock bracket having a locking pin, the locking pin having a locking pin radius;

two outer hinge outside spacers, each outer hinge outside spacer disposed opposite each of said two outer hinge plate mating surfaces;

an inner hinge center spacer;

two inner hinge outside spacers;

an outer hinge center spacer;

a lock spring coaxial to and surrounding the lock sleeve and between the lock button and one of the outer hinge plates biasing the lock bracket in the locked position, the lock spring being visible when the lock button is in the locked position; and

wherein said outer hinge outside spacers, said outer hinge plates, and said outer hinge center spacer form an outer hinge extension having a width; and

wherein said inner hinge outside spacers and said inner hinge plates form an inner hinge extension having a width, the inner hinge extension width defined by a perpendicular distance between parallel opposite edges of the inner hinge plates;

wherein each inner hinge plate mating surface diameter is a length of 170-200% of the inner hinge extension width;

wherein the lock button diameter is greater than the inner hinge extension width and the lock button diameter is generally equal to two times the locking pin radius; and

a multi-position ladder rail matably attached to each inner hinge extension; and

a multi-position ladder rail matably attached to each outer hinge extension.

13 . The multi-position ladder of claim 12 wherein the multi-position ladder is primarily manufactured from aluminum.

14 . The multi-position ladder of claim 12 wherein the multi-position ladder is primarily manufactured from fiberglass.

Assignments (3)
CERTIFICATE OF CONVERSION Recorded Feb 6, 2025
From: TRICAM INDUSTRIES, INC.
To: TRICAM INDUSTRIES, LLC
Reel/Frame 070144/0480 →
SECURITY INTEREST Recorded Feb 2, 2025
From: TRICAM INDUSTRIES, LLC
To: JPMORGAN CHASE BANK, N.A.
Reel/Frame 070082/0930 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2024
From: FOLEY, JOSEPH P.; SIMPSON, DENNIS D.; WILLIAMS, BENJAMIN P.
To: TRICAM INDUSTRIES, INC.
Reel/Frame 067206/0098 →
Continuity (3)
Continuation 15464807 · Mar 21, 2017
Continuation 29589674 · Jan 4, 2017
Related Publication 20240035339A1 · Feb 1, 2024
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