IP Library › Granted Patent US 11,441,355
Granted Patent B2
US 11,441,355 · App. 16/931,317 · Granted Sep 13, 2022

Ladder stabilization and lighting system

Inventor: Steven Lawson (Surprise, AZ)
E06C7/46F21V33/0004F21Y2115/10
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Quick Facts
Patent No.
US 11,441,355
App. No.
16/931,317
Granted
Sep 13, 2022
Kind
B2
Abstract

A ladder stabilization and lighting system comprising a ladder stabilizing boot, comprising a base pad and a plurality of vertical walls extending upwardly from the base pad, where the plurality of vertical walls extending upward from the base pad form a rectangular recess configured to provide a friction fit on a ladder rail end, and where the base pad is configured to be a flat planar surface larger in area than the ladder rail end. The ladder stabilizing boot further comprises a light positioned on at least one outer surface of the plurality of vertical walls, where the light is powered by a power source in electrical connection with the light and a switch.

Claims (20)

1. A ladder stabilization and lighting system comprising:

a ladder stabilizing boot, comprising a base pad and a plurality of vertical walls extending upwardly from the base pad, wherein the plurality of vertical walls extending upward from the base pad form a rectangular recess configured to provide a friction fit on a ladder rail end; and

comprising a light positioned on at least one outer surface of the plurality of vertical walls, wherein the light is powered by a power source in electrical connection with the light and a switch;

wherein the base pad is configured to be a flat planar surface larger in area than the ladder rail end; and

wherein the base pad further comprises a textured bottom surface configured to prevent a ladder from moving.

2. The ladder stabilization and lighting system of claim 1 , wherein the light and power source are recessed in the at least one outer surface of the plurality of vertical walls.

3. The ladder stabilization and lighting system of claim 1 , wherein the light is configured to be activated by a touch button.

4. The ladder stabilization and lighting system of claim 1 , wherein the ladder stabilization boot is formed as a solid one-piece unit.

5. The ladder stabilization and lighting system of claim 4 , wherein the solid one-piece unit is formed of a rubber compound.

6. A ladder stabilization and lighting system comprising:

a ladder stabilizing boot comprising a base pad and a plurality of vertical walls extending upwardly from the base pad, wherein the plurality of vertical walls form a rectangular recess configured to friction fit a ladder rail end;

a light disposed on at least one outer surface of the plurality of vertical walls; and a power source configured to provide power to the light through a switch;

wherein the base pad is configured to be a flat planar surface larger in area than the ladder rail end.

7. The ladder stabilization and lighting system of claim 6 , wherein the light is a LED strip light wrapping around an outer surface of the plurality of vertical walls, wherein the LED light is configured to be activated by a touch button.

8. The ladder stabilization and lighting system of claim 7 , wherein the LED strip light is recessed in a horizontal channel recessed in the plurality of vertical walls.

9. The ladder stabilization and lighting system of claim 6 , wherein the ladder stabilizing boot is formed as a solid one-piece unit.

10. The ladder stabilization and lighting system of claim 9 , wherein the solid one-piece unit is formed of a rubber type material.

11. The ladder stabilization and lighting system of claim 6 , wherein the base pad further comprises a textured bottom surface configured to prevent a ladder from moving.

12. The ladder stabilization and lighting system of claim 6 , wherein the power source is a solar cell electrically coupled to the light through the switch.

13. The ladder stabilization and lighting system of claim 12 , wherein the power source is electrically coupled to a battery configured to store electrical energy when the light is turned off.

Continuity (2)
Provisional Application 62895851 · Sep 4, 2019
Related Publication 20210062582A1 · Mar 4, 2021
Cited By (2)
US 12,631,068 US 12,687,070