IP Library Granted Patent US 10,279,890
Granted Patent B2
US 10,279,890 · App. 15/179,580 · Granted May 7, 2019

Configurable control panel for an aircraft cockpit and method of configuration for such a panel

Inventors: Romain De Bossoreille (Paris, FR); Michael Nahmiyace (Nogent sur Marne, FR)
Assignee: Zodiac Aero Electric
B64C13/06B64D43/00G01C23/00G06F3/041G06F3/1423
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Quick Facts
Patent No.
US 10,279,890
App. No.
15/179,580
Granted
May 7, 2019
Kind
B2
Abstract

A configurable control panel for an aircraft cockpit includes a set of universal control modules each comprising at least one screen including at least one manually manipulable control key. Each of the control modules further includes at least one master control module, and at least one universal slave module associated with the master module, and including a screen and at least one control key. The at least one master module is configured to control the screen and the at least one control key of the at least one universal slave module.

Claims (34)

1. A configurable control panel for an aircraft cockpit, comprising:

a master interface comprising a master controller, a screen, and one or more mechanical or electro-mechanical controls for receiving user input; and

two or more slave interfaces, including first and second slave interfaces, electrically coupled with the master interface, each slave interface comprising: a screen, one or more mechanical or electro-mechanical controls for receiving user input, and a slave controller to configure the screen and the one or more mechanical or electro-mechanical controls of the slave interface based on a control signal from the master controller,

wherein:

the master controller is configured to, in response to receiving a user input for display of a first functional system of an aircraft:

display first information for the first functional system of the aircraft; and

send a control signal to the respective slave controllers of the first and second slave interfaces to display the first functional system of the aircraft; and

the control signal causes the respective slave controllers of the first and second slave interfaces to configure the respective screens of the first and second slave interfaces for displaying second information for the first functional system of the aircraft, wherein the second information displayed by the first and second slave interfaces details the first information displayed by the master interface for the first functional system of the aircraft, the second information including additional functionalities relating to the first functional system not included in the first information.

2. The control panel of claim 1 , wherein:

the first information for the first functional system of the aircraft indicates an overall state of the first functional system; and

the second information for the first functional system of the aircraft includes information for first and second distinct components of the first functional system.

3. The control panel of claim 2 , wherein the control signal further causes the respective slave controllers of the first and second slave interfaces to configure behavior of the one or more mechanical or electro-mechanical controls of the first and second slave interfaces for the displayed second information.

4. The control panel of claim 3 , wherein the one or more mechanical or electro-mechanical controls of the first and second slave interfaces are used to control the first and second distinct components of the first functional system, respectively.

5. The control panel of claim 1 , further comprising another interface to control a second functional system of the aircraft.

6. The control panel of claim 1 , wherein the screen of the master interface and the screen of each slave interface are touch-sensitive.

7. The control panel of claim 1 , wherein the first functional system of the aircraft is selected from the group consisting of: a system for supplying the aircraft with fuel, and a system for supplying the aircraft with electricity.

8. A method comprising:

at a control system for an aircraft, the control system including: (i) a master interface comprising a master controller, a screen, and one or more mechanical or electro-mechanical controls for receiving user input, and (ii) two or more slave interfaces, including first and second slave interfaces, electrically coupled with the master interface, each slave interface comprising: a screen, one or more mechanical or electro-mechanical controls for receiving user input, and a slave controller to configure the screen and the one or more mechanical or electro-mechanical controls of the slave interface based on a control signal from the master controller:

receiving, at the master interface, a user input for display of a first functional system of the aircraft;

in response to receiving the user input:

displaying, on the screen of the master interface, first information for the first functional system of the aircraft; and

sending, by the master controller, a control signal to the respective slave controllers of the first and second slave interfaces to display the first functional system of the aircraft; and

in response to sending the control signal:

configuring, by the respective slave controllers of the first and second slave interfaces, the respective screens of the first and second slave interfaces for displaying second information for the first functional system of the aircraft, wherein the second information displayed by the first and second slave interfaces details the first information displayed by the master interface for the first functional system of the aircraft, the second information including additional functionalities relating to the first functional system not included in the first information.

9. The method of claim 8 , wherein:

the first information for the first functional system of the aircraft indicates an overall state of the first functional system; and

the second information for the first functional system of the aircraft includes information for first and second distinct components of the first functional system.

10. The method of claim 9 , further comprising:

in response to sending the control signal:

configuring, by the respective slave controllers of the first and second slave interfaces, behavior of the one or more mechanical or electro-mechanical controls of the first and second slave interfaces for the displayed second information.

11. The method of claim 10 , wherein the one or more mechanical or electro-mechanical controls of the first and second slave interfaces are used to control the first and second distinct components of the first functional system, respectively.

12. The method of claim 8 , wherein the control system further comprises another interface to control a second functional system of the aircraft.

13. The method of claim 8 , wherein the screen of the master interface and the screen of each slave interface are touch-sensitive.

14. The method of claim 8 , wherein the first functional system of the aircraft is selected from the group consisting of: a system for supplying the aircraft with fuel, and a system for supplying the aircraft with electricity.

Assignments (2)
CHANGE OF NAME Recorded Jan 29, 2021
From: ZODIAC AERO ELECTRIC
To: SAFRAN ELECTRONICS & DEFENSE COCKPIT SOLUTIONS
Reel/Frame 055177/0037 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2016
From: DE BOSSOREILLE, ROMAIN; NAHMIYACE, MICHAEL
To: ZODIAC AERO ELECTRIC
Reel/Frame 039884/0122 →
Priority Claims (1)
FR 15 55327 · Jun 11, 2015 · national
Continuity (1)
Related Publication 20160362175A1 · Dec 15, 2016