IP Library Granted Patent US 12,492,575
Granted Patent B2
US 12,492,575 · App. 18/480,251 · Granted Dec 9, 2025

Locking system for an aircraft door

Inventor: Miha Premrl (Vipava, SI)
Assignee: Pipistrel d.o.o.
E05B13/002B64C1/1407E05B77/22E05B83/36E05B85/12
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Quick Facts
Patent No.
US 12,492,575
App. No.
18/480,251
Granted
Dec 9, 2025
Kind
B2
Abstract

A locking system for an aircraft door having a door handle housing to mount to the aircraft door; a locking mechanism supported by the door handle housing; an exterior handle and an interior handle each to manipulate the locking mechanism. The locking mechanism having a door gear axis to rotate via operation of the interior handle and the exterior handle to lock and unlock the locking mechanism; and a locking pin extending from the door gear axis and into a chamber of the door handle housing, the locking pin having a first position and a second position, the first position of the locking pin blocks rotation of the door gear axis and the second position of the locking pin allows rotation of the door gear axis. The locking pin is moveable from the first position to the second position via operation of the interior handle and the exterior handle.

Claims (51)

1 . A locking system for an aircraft door as part of an aircraft, the locking system comprising:

a door handle housing configured to mount to the aircraft door;

a locking mechanism supported by the door handle housing;

an exterior handle configured to open the aircraft door by manipulating the locking mechanism from an exterior of the aircraft; and

an interior handle configured to open the aircraft door by manipulating the locking mechanism from an interior of the aircraft;

the locking mechanism having:

a door gear axis configured to rotate via operation of the interior handle and the exterior handle to lock and unlock the locking mechanism;

a locking pin extending from the door gear axis and into a chamber as part of the door handle housing, the locking pin having a first position and a second position; and

a handle lock button positioned within the chamber created by the door handle housing, the handle lock button configured to pivot about a pivot point such that the handle lock button engages with the locking pin to depress the locking pin to the second position;

wherein in the first position the locking pin blocks rotation of the door gear axis; and

wherein in the second position the locking pin allows rotation of the door gear axis;

wherein the locking pin is moveable from the first position to the second position via operation of the interior handle and the exterior handle such that the interior handle and the exterior handle can independently move the locking pin into the second position to operate rotation of the door gear axis.

2 . The locking system of claim 1 , wherein the locking mechanism further comprises a door handle knob extending through the door handle housing and coupling the exterior handle to the door gear axis.

3 . The locking system of claim 1 , wherein the interior handle is configured to operate the handle lock button to depress the locking pin.

4 . The locking system of claim 3 , further comprising a door lock pin moveable via the interior handle and extending at least partially through the door gear axis, wherein moving the door lock pin via the interior handle pivots the handle lock button to depress the locking pin.

5 . The locking system of claim 1 , wherein the exterior handle is configured to operate the handle lock button to depress the locking pin.

6 . The locking system of claim 5 , wherein the exterior handle pivots about a pivot point to apply force to the handle lock button to depress the locking pin.

7 . The locking system of claim 1 , further comprising a keyed lock supported by the door handle housing, the keyed lock having a keyed lock latch for locking the aircraft door in a closed position.

8 . The locking system of claim 1 , wherein the exterior handle is mounted substantially flush with the door handle housing.

9 . The locking system of claim 1 , wherein the locking pin is spring loaded.

10 . The locking system of claim 1 , wherein the interior handle is configured to pivot between a first position and a second position.

11 . The locking system of claim 1 , further comprising a flanged bushing extending around a portion of the door gear axis.

12 . The locking system of claim 11 , wherein the flanged bushing provides a stop for the locking pin as the locking pin is depressed into the second position.

13 . The locking system of claim 1 , wherein the door gear axis comprises:

a body supporting a first connector and a second connector;

a recess for receiving a portion of a door handle knob to couple the door gear axis and the door handle knob together;

a connection for connecting the door gear axis to the interior handle; and

a channel extending through the body;

wherein the locking pin is positioned within the channel and extends into the chamber from the channel.

14 . A locking mechanism as part of an aircraft door locking system, the locking mechanism comprising:

a housing forming a chamber, the housing being a stationary component of the aircraft door locking mechanism;

a door gear axis coupled to the housing, the door gear axis forming a rotating component of the locking mechanism;

a locking pin extending from the door gear axis and into the chamber, the locking pin having a first position and a second position; and

a handle lock button positioned within the chamber created by the housing, the handle lock button configured to pivot about a pivot point such that the handle lock button engages with the locking pin to depress the locking pin to the second position;

wherein in the first position the locking pin blocks rotation of the door gear axis; and

wherein in the second position the locking pin allows rotation of the door gear axis.

15 . The locking mechanism of claim 14 , further comprising a door handle knob extending through the housing and coupling the housing to the door gear axis.

16 . The locking mechanism of claim 14 , wherein the locking pin is spring loaded.

17 . The locking mechanism of claim 14 , wherein the door gear axis further comprises:

a body supporting a first connector and a second connector;

a recess for receiving a portion of a door handle knob to couple the door gear axis and the door handle knob together;

a connection for connecting the door gear axis to a handle; and

a channel extending through the body;

wherein the locking pin is positioned within the channel and extends into the chamber from the channel.

18 . A locking mechanism as part of an aircraft door locking system, the locking mechanism comprising:

a housing forming a chamber, the housing being a stationary component of the aircraft door locking mechanism;

a door gear axis coupled to the housing, the door gear axis forming a rotating component of the locking mechanism;

a locking pin extending from the door gear axis and into the chamber, the locking pin having a first position and a second position; and

a handle lock button positioned within the chamber created by the housing, the handle lock button configured to depress the locking pin to the second position;

wherein in the first position the locking pin blocks rotation of the door gear axis; and

wherein in the second position the locking pin allows rotation of the door gear axis.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2023
From: PREMRL, MIHA
To: PIPISTREL D.O.O.
Reel/Frame 065110/0740 →
Continuity (1)
Related Publication 20250109610A1 · Apr 3, 2025
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