IP Library › Granted Patent US 12,012,223
Granted Patent B2
US 12,012,223 · App. 17/738,102 · Granted Jun 18, 2024

Lightweight high resolution camera payload for small aerial vehicles

Inventors: Trent Lukaczyk (Santa Monica, CA); Daniel Levy (Santa Monica, CA); Michael Colonno (Santa Monica, CA)
Assignee: Flightwave Aerospace Systems
B64D47/08B64C39/024G03B17/55H04N23/51B64U2101/30
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Quick Facts
Patent No.
US 12,012,223
App. No.
17/738,102
Granted
Jun 18, 2024
Kind
B2
Abstract

A camera payload configured for attachment to an unmanned aerial system with a payload interface. The camera payload includes a payload interface that includes a configuration that is structured and arranged to provide tool-free mechanical retention, electrical connections for power, and electrical connections for data; at least one camera mounted in the camera payload; at least one composite skin and at least one internal structure; at least one sealable and removable camera window retained on an outside of the camera payload; and at least one computer arranged within the camera payload.

Claims (54)

1. A camera payload configured for attachment to an unmanned aerial system with a payload interface, the camera payload comprising:

a payload interface comprising a configuration that is structured and arranged to provide tool-free mechanical retention, electrical connections for power, and electrical connections for data;

at least one camera mounted in the camera payload;

at least one composite skin and at least one internal structure;

at least one sealable and removable camera window retained on an outside of the camera payload;

a bonded composite structure; and

at least one computer arranged within the camera payload,

wherein the bonded composite structure comprises the at least one composite skin;

wherein the at least one composite skin comprises one or more thin-wall composite skins constructed of bonded fabric, metal or synthetic material;

wherein the bonded composite structure further comprises the at least one internal structure configured to hold the one or more thin-wall composite skins; and

wherein excess heat generated by the at least one computer is disposed of through a heat transfer surface integrated into the composite skins of the camera payload.

2. A camera payload configured for attachment to an unmanned aerial system with a payload interface, the camera payload comprising:

a payload interface comprising a configuration that is structured and arranged to provide tool-free mechanical retention, electrical connections for power, and electrical connections for data;

at least one camera mounted in the camera payload;

at least one composite skin and at least one internal structure;

at least one sealable and removable camera window retained on an outside of the camera payload;

at least one computer arranged within the camera payload; and

a removable data storage arranged in a payload wall interface,

wherein excess heat generated by the at least one computer is disposed of through a heat transfer surface integrated into the composite skins of the camera payload.

3. The camera payload of claim 1 , wherein the camera payload attaches to an unmanned aerial system at a front of an aircraft by the payload interface.

4. The camera payload of claim 1 , wherein the camera payload is configured and/or constructed to reduce penetration by water and/or small particles.

5. The camera payload of claim 2 , further comprising a bonded composite structure,

wherein the bonded composite structure comprises the at least one composite skin;

wherein the at least one composite skin comprises one or more thin-wall composite skins constructed of bonded fabric, metal or synthetic material; and

wherein the bonded composite structure further comprises the at least one internal structure configured to hold the one or more thin-wall composite skins.

6. The camera payload of claim 1 , further comprising a heat pipe,

wherein heat from the at least one computer is transported to a payload wall through the heat pipe.

7. The camera payload of claim 6 , wherein the heat pipe is mounted to the at least one computer with a heat-transfer component.

8. The camera payload of claim 1 , further comprising a compliant mounting supporting the at least one camera,

wherein the compliant mounting is configured to isolate the at least one camera and reduce vibration of the at least one camera.

9. The camera payload of claim 1 , further comprising at least one sealing window holding structure, wherein the at least one sealing window holding structure is integrated and/or attached to an outside of a payload skin and/or the at least one composite skin.

10. The camera payload of claim 1 ,

wherein the at least one sealable and removable camera window is retained by at least one compliant sealing ring; and

wherein the at least one compliant sealing ring comprises at least one O-ring.

11. The camera payload of claim 1 , wherein the at least one camera comprises at least one color camera.

12. The camera payload of claim 1 , wherein the at least one camera comprises at least one color camera of fixed focal length and at least one thermal camera of fixed focal length.

13. The camera payload of claim 1 , wherein the at least one camera is fitted with at least one filter comprising at least one of the following: a polarization filter and/or a light wavelength filter.

14. The camera payload of claim 1 , wherein the at least one sealable and removable camera window comprises a coating configured to implement at least one of the following: a polarization filter and/or a light wavelength filter.

15. A process of implementing a camera payload configured for attachment to an unmanned aerial system with a payload interface, the process of implementing a camera payload comprising:

configuring and arranging a payload interface to provide tool-free mechanical retention, electrical connections for power, and electrical connections for data;

providing at least one camera mounted in the camera payload;

implementing at least one composite skin and at least one internal structure;

implementing at least one sealable and removable camera window retained on an outside of the camera payload;

providing a bonded composite structure; and

implementing at least one computer arranged within the camera payload,

wherein excess heat generated by the at least one computer is disposed of through a heat transfer surface integrated into the composite skins of the camera payload;

wherein the bonded composite structure comprises the at least one composite skin;

wherein the at least one composite skin comprises one or more thin-wall composite skins constructed of bonded fabric, metal or synthetic material; and

wherein the bonded composite structure further comprises the at least one internal structure configured to hold the one or more thin-wall composite skins.

16. The process of implementing a camera payload of claim 15 , further comprising a removable data storage arranged in a payload wall interface.

17. The process of implementing a camera payload of claim 15 , wherein the camera payload attaches to an unmanned aerial system at a front of an aircraft by the payload interface.

18. The process of implementing a camera payload of claim 15 , wherein the camera payload is configured and/or constructed to reduce penetration by water and/or small particles.

19. The process of implementing a camera payload of claim 15 , further comprising a heat pipe,

wherein heat from the at least one computer is transported to a payload wall through the heat pipe.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 20, 2024
From: FW ACQUISITION, INC.
To: UAVPATENT CORP.
Reel/Frame 069337/0745 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2024
From: FLIGHTWAVE AEROSPACE SYSTEMS CORP.
To: FW ACQUISITION, INC.
Reel/Frame 069284/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 12, 2022
From: LUKACZYK, TRENT; LEVY, DANIEL; COLONNO, MICHAEL
To: FLIGHTWAVE AEROSPACE SYSTEMS
Reel/Frame 059969/0648 →
Continuity (2)
Provisional Application 63185578 · May 7, 2021
Related Publication 20220355951A1 · Nov 10, 2022