IP Library › Granted Patent US 12,528,606
Granted Patent B2
US 12,528,606 · App. 18/552,351 · Granted Jan 20, 2026

Combat aircraft with electrical weapon system with optimized power management

Inventors: Quentin Vincenzotto (Moissy-Cramayel, FR); Fabien Mercier-Calvairac (Moissy-Cramayel, FR); Jean-Baptiste Jarin (Moissy-Cramayel, FR)
Assignee: SAFRAN HELICOPTER ENGINES
B64U20/83B64U10/25B64U50/34B64U2101/15
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Quick Facts
Patent No.
US 12,528,606
App. No.
18/552,351
Granted
Jan 20, 2026
Kind
B2
Abstract

A fixed-wing combat aircraft including an electrical power source, a propulsion system, a low-power non-propulsion assembly including a flight control system, a high-power non-propulsion assembly including an electrical weapon system, and a management unit configured to selectively establish on command multiple operating modes including: a flight mode, in which the management unit distributes the electrical power supplied by the electrical power source to the propulsion system and to the low-power non-propulsion assembly, and an attack mode, in which the management unit limits the electrical power supplied by the electrical power source to the propulsion system and to the low-power non-propulsion assembly to the power required to allow the aircraft to glide, and reserves a majority of the available electrical power for the high-power non-propulsion assembly.

Claims (21)

1 . A fixed-wing combat aircraft comprising:

an electrical power source,

a propulsion system,

a low-power non-propulsion assembly comprising a flight control system,

a high-power non-propulsion assembly comprising an electrical weapon system, and

a management unit,

wherein the management unit is configured to selectively establish on command multiple operating modes comprising:

a flight mode, in which the management unit distributes electrical power supplied by the electrical power source depending on the needs to the propulsion system and to the low-power non-propulsion assembly, and

an attack mode, in which the management unit limits the electrical power supplied by the electrical power source to the propulsion system and to the low-power non-propulsion assembly, to a power required to allow the aircraft to glide, and reserves a majority of the electrical power for the high-power non-propulsion assembly.

2 . The aircraft according to claim 1 , wherein the electrical power source comprises a turbogenerator and an electrical storage unit.

3 . The aircraft according to claim 2 , wherein the attack mode comprises a standby mode in which the electrical weapon system is off, and a fire mode in which the electrical weapon system is in operation.

4 . The aircraft according to claim 3 , wherein the management unit is configured to set the turbogenerator in a pseudo-idle state and distribute all the electrical power generated by the turbogenerator to the low-power non-propulsion assembly, in the standby mode.

5 . The aircraft according to claim 3 , wherein the management unit is configured to set the turbogenerator in a pseudo-idle state in which a portion of the electrical power generated by the turbogenerator is delivered to the low-power non-propulsion assembly while the rest of the electrical power generated by the turbogenerator is used to recharge the electrical storage unit, in the standby mode.

6 . The aircraft according to claim 3 , wherein the management unit is configured to set the turbogenerator in a full power state and distribute at least a majority of the electrical power generated by the turbogenerator to the electrical weapon system, in the fire mode.

7 . The aircraft according to claim 3 , wherein the management unit is configured to distribute a maximum power deliverable by the electrical storage unit to the electrical weapon system, in the fire mode.

8 . The aircraft according to claim 1 , wherein the electrical weapon system comprises at least one of an electronic weapon system and a directed energy weapon.

9 . A method for implementing the aircraft according to claim 1 , successively comprises the steps of:

A) take-off, climb, and start of cruise, in which the management unit is maintained in flight mode, then

B) attack, after switching the management unit to the attack mode, then

C) end of cruise and descent, after switching the management unit to the flight mode.

10 . The method according to claim 9 , wherein step B) comprises switching the management unit into a standby mode, then switching the management unit into fire mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2023
From: VINCENZOTTO, QUENTIN; MERCIER-CALVAIRAC, FABIEN; JARIN, JEAN-BAPTISTE
To: SAFRAN HELICOPTER ENGINES
Reel/Frame 065013/0395 →
Priority Claims (1)
FR 2102946 · Mar 26, 2021 · national
Continuity (1)
Related Publication 20240158109A1 · May 16, 2024
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