IP Library Granted Patent US 11,412,134
Granted Patent B2
US 11,412,134 · App. 15/826,582 · Granted Aug 9, 2022

Underwater digital camera systems

Inventors: Dorian T. G. Tolman (Salt Lake City, UT); Skyler Alan Baird (Murray, UT)
Assignee: LADUMA, INC.
H04N5/23238G03B17/08G03B17/561G03B37/04H04N5/2252H04N5/2253H04N5/22521H04N13/243H04N5/247H04N2213/001
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Quick Facts
Patent No.
US 11,412,134
App. No.
15/826,582
Granted
Aug 9, 2022
Kind
B2
Abstract

Video recording system assemblies are adapted to facilitate capture of 360° images. According to one example, a video recording system assembly may include a frame, including a first vertical mount located at a first vertical end, a second vertical mount located at a second vertical end opposite from the first vertical end, and a horizontal mount located between the first vertical mount and the second vertical mount. At least one digital video camera and/or camera enclosure may be coupled to the first vertical mount. Similarly, at least one digital video camera and/or camera enclosure may be coupled to the second vertical mount. Six digital video cameras and/or camera enclosures may be coupled to the horizontal mount in a triangular configuration, with two digital video cameras and/or camera enclosures on each side. Other aspects, embodiments, and features are also included.

Claims (58)

1. A video recording system assembly, comprising:

a frame, including a first vertical mount located at a first vertical end and forming a first vertical plane, a second vertical mount located at a second vertical end opposite from the first vertical end and forming a second vertical plane that is parallel with the first vertical plane, a horizontal mount located between the first vertical mount and the second vertical mount and forming a horizontal plane that is orthogonal to the first vertical plane and the second vertical plane, and a handle attachment feature positioned between the first vertical mount and the horizontal mount, the handle attachment feature comprising an aperture positioned at a fixed angle between 20° and 40° from vertical, wherein vertical extends between the first vertical end and the second vertical end;

at least one digital video camera coupled to the first vertical mount;

at least one digital video camera coupled to the second vertical mount; and

six digital video cameras coupled to the horizontal mount in a triangular configuration, with two digital video cameras on each side.

2. The video recording system assembly of claim 1 , wherein:

each of the plurality of digital video cameras coupled to the horizontal mount are positioned at a first interaxial distance from adjacent digital cameras on both the right and left sides.

3. The video recording system assembly of claim 2 , wherein an interaxial distance between the at least one digital video camera coupled to the first vertical mount and at least one digital video camera coupled to the horizontal mount is at least substantially equal to the first interaxial distance.

4. The video recording system assembly of claim 2 , wherein:

two digital video cameras are coupled to the first vertical mount positioned at the first interaxial distance from each other; and

two digital video cameras are coupled to the second vertical mount positioned at the first interaxial distance from each other.

5. The video recording system assembly of claim 1 , further comprising a handle assembly coupled to the handle attachment feature of the frame, the handle assembly comprising:

a rod including a first longitudinal end and an opposing second longitudinal end, wherein the first longitudinal end is coupled to the frame;

an arm band coupled to the rod near the second longitudinal end; and

a hand grip coupled to the rod between the first longitudinal end and the arm band.

6. A method of capturing 360° digital images, comprising:

coupling at least one digital video camera to a first vertical mount of a frame, wherein the at least one video camera coupled to the first vertical mount is directed upward in a first vertical plane;

coupling at least one digital video camera to a second vertical mount of the frame, wherein the at least one digital video camera coupled to the second vertical mount is directed downward in a second vertical plane that is parallel to the first vertical plane;

coupling six digital video cameras to a horizontal mount of the frame in a triangular configuration with two digital video cameras on each side, wherein two digital video cameras are directed in a horizontal plane that is orthogonal to the first vertical plane and the second vertical plane;

coupling a handle assembly to a handle attachment feature of the frame, the handle attachment feature positioned between the first vertical mount and the horizontal mount and including an aperture positioned at a fixed angle between 20° and 40° from vertical, wherein vertical extends between the first vertical mount and the second vertical mount; and

simultaneously capturing images on each digital video camera.

7. The method of claim 6 , further comprising:

utilizing the handle assembly to maneuver the frame under water with each of the digital video cameras coupled thereto.

8. The method of claim 6 , wherein coupling the six digital video cameras to the horizontal mount comprises:

coupling the six digital video cameras with a first interaxial distance between 62 millimeters and 100 millimeters from adjacent digital video cameras.

9. The method of claim 6 , simultaneously capturing images on each digital video camera comprises simultaneously capturing images on each digital video camera employing an ultra-wide-angle lens of at least 220°.

10. The method of claim 6 , wherein:

coupling at least one digital video camera to a first vertical mount of a frame comprises coupling two digital video cameras to the first vertical mount of the frame, the two video cameras coupled to the first vertical mount being directed upward;

coupling at least one digital video camera to a second vertical mount of the frame comprises coupling two digital video cameras to the second vertical mount of the frame, the two digital video cameras coupled to the second vertical mount being directed downward.

11. A method of making a video recording system, comprising:

forming a first vertical mount positioned at a first vertical end of a frame in a first vertical plane;

forming a second vertical mount positioned at a second vertical end opposite from the first vertical end of the frame in a second vertical plane that is parallel with the first vertical plane;

forming a horizontal mount with a triangular configuration, the horizontal mount positioned between the first vertical mount and the second vertical mount and forming a horizontal plane that is orthogonal to the first vertical plane and the second vertical plane; and

forming a handle attachment feature positioned between the first vertical mount and the horizontal mount, the handle attachment feature including an aperture formed with a secured angle between 20° and 40° from vertical, wherein vertical extends between the first vertical end of the frame and the second vertical end of the frame.

12. The method of claim 11 , further comprising:

coupling at least one digital video camera to the first vertical mount of the frame, the at least one digital video camera coupled to the first vertical mount being directed upward;

coupling at least one digital video camera to the second vertical mount of the frame, the at least one digital video camera coupled to the second vertical mount being directed downward; and

coupling six digital video cameras to the horizontal mount with two digital video cameras on each side of the triangular configuration.

13. The method of claim 12 , wherein coupling the six digital video cameras to the horizontal mount comprises:

coupling each of the six digital video cameras to the horizontal mount oriented upside- down compared to an immediately adjacent digital video camera with which each digital video camera is paired as a stereo camera pair.

14. The method of claim 11 , further comprising:

coupling at least one camera enclosure to the first vertical mount of the frame;

coupling at least one camera enclosure to the second vertical mount of the frame; and

coupling six camera enclosures to the horizontal mount with two camera enclosures on each side of the triangular configuration.

15. The method of claim 11 , wherein forming the first vertical mount, forming the second vertical mount, and forming the horizontal mount comprises:

forming the first vertical mount, forming the second vertical mount, and forming the horizontal mount from a material selected to provide a specific buoyancy in a particular water environment.

16. A video recording system assembly, comprising:

a frame, including a first vertical mount located at a first vertical end and forming a first vertical plane, a second vertical mount located at a second vertical end opposite from the first vertical end and forming a second vertical plane that is parallel with the first vertical plane, a horizontal mount positioned between the first vertical mount and the second vertical mount and forming a horizontal plane that is orthogonal to the first vertical plane and the second vertical plane; and a handle attachment feature positioned between the first vertical mount and the horizontal mount, the handle attachment feature including an aperture positioned at a secured angle between 20° and 40° from vertical, wherein vertical extends between the first vertical end and the second vertical end;

at least one waterproof camera enclosure coupled to the first vertical mount;

at least one waterproof camera enclosure coupled to the second vertical mount; and

six waterproof cameras enclosures coupled to the horizontal mount in a triangular configuration, with two camera enclosures on each side.

17. The video recording system assembly of claim 16 , further comprising a respective digital video camera disposed within each waterproof camera enclosure.

18. The video recording system assembly of claim 16 , further comprising a heat-conductive material within a portion of each camera enclosure and positioned between a portion of the digital video camera and the camera enclosure.

19. The video recording system assembly of claim 16 , further comprising a desiccant material disposed within each camera enclosure.

20. The video recording system assembly of claim 16 , further comprising a handle assembly coupled to the handle attachment feature of the frame, the handle assembly comprising:

a rod including a first longitudinal end and an opposing second longitudinal end, wherein the first longitudinal end is coupled to the frame;

an arm band coupled to the rod near the second longitudinal end; and

a hand grip coupled to the rod between the first longitudinal end and the arm band.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2025
From: LADUMA INC.
To: 3 BARREL BURN INC.
Reel/Frame 071667/0074 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2017
From: TOLMAN, DORIAN T.G.; BAIRD, SKYLER ALAN
To: LADUMA, INC.
Reel/Frame 044279/0499 →
Continuity (2)
Provisional Application 62427941 · Nov 30, 2016
Related Publication 20180152637A1 · May 31, 2018