IP Library Granted Patent US 11,317,062
Granted Patent B2
US 11,317,062 · App. 16/884,344 · Granted Apr 26, 2022

Cameras for autonomous picture production

Inventors: Douglas J. DeAngelis (Newbury, MA); Kirk Sigel (Ithaca, NY); Edward G. Evansen (Walpole, MA)
Assignee: Isolynx, LLC
H04N7/181A63B24/0021G01S3/7865H04N5/222H04N5/23206H04N5/23299H04N5/232939H04N5/247H04N5/262A63B43/00A63B69/0028A63B2024/0025A63B2220/836A63B2225/50A63B2243/0025A63B2244/18A63B2244/24
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Quick Facts
Patent No.
US 11,317,062
App. No.
16/884,344
Granted
Apr 26, 2022
Kind
B2
Abstract

A camera for facilitating autonomous picture production includes an imager for capturing an image stream, a signal processor for processing the image stream into a plurality of image data paths, at least one image stream output, and a memory for cyclically buffering images of at least two of the plurality of image data paths, into separate circular buffers, respectively, and for buffering one or more output image streams of the camera. A camera for facilitating autonomous picture production produces a standard resolution and rate image stream and a slow-motion image stream of an action of interest.

Claims (33)

1. A camera for autonomous picture production, comprising:

an imager configured to generate an image stream;

a memory; and

a signal processor communicably coupled with the memory and configured to:

process the image stream into a plurality of image data paths, each of the plurality of image data paths having a different combination of resolution and frame rate,

cyclically buffer, in the memory, images of two or more of the plurality of image data paths, and

output, from the memory and in response to a notification indicating that an event of interest has occurred, at least one of the cyclically-buffered images captured during a period of the event of interest.

2. The camera of claim 1 , the signal processor being further configured to implement at least one resolution down-sampler that reduces the resolution of at least one of the plurality of image data paths.

3. The camera of claim 1 , the signal processor being further configured to implement at least one rate down-sampler that reduces the frame rate of at least one of the plurality of image data paths.

4. The camera of claim 1 , the signal processor being further configured to implement at least one rate-and-resolution down-sampler that reduces the frame rate and the resolution of at least one of the plurality of image data paths.

5. The camera of claim 1 , wherein:

at least one of the plurality of image data paths is a slow-motion image stream whose images are cyclically buffered in the memory; and

at least one of the plurality of image data paths is a still-image image stream whose images are cyclically buffered in the memory.

6. The camera of claim 5 , the signal processor being further configured to:

transfer cyclically-buffered images of the slow-motion image stream to a slow-motion buffer;

output the cyclically-buffered images of the slow-motion image stream from the slow-motion buffer;

transfer at least one cyclically-buffered image of the still-image image stream to a still-image buffer; and

output the at least one cyclically-buffered image of the still-image image stream from the still-image buffer.

7. The camera of claim 1 , further comprising a time stamp unit that attaches a time stamp to at least some of the images of the image stream.

8. The camera of claim 7 , the signal processor being further configured to determine which of the cyclically-buffered images to output by comparing the period to the time stamp of at least one of the cyclically-buffered images.

9. The camera of claim 7 , wherein the time stamp unit attaches a time stamp to each frame of the image stream.

10. The camera of claim 7 , wherein the time stamp unit periodically attaches a time stamp to the images of the image stream.

11. The camera of claim 1 , wherein:

the notification is one of a plurality of notifications, each of the plurality of notifications including one of a corresponding plurality of periods; and

the signal processor is further configured to process the plurality of notifications in a chronological order of the plurality of periods.

12. The camera of claim 1 , the memory being sized to store at least sixty seconds of cyclically-buffered images for each of said two or more of the plurality of image data paths.

13. The camera of claim 1 , the signal processor being further configured to output the plurality of image data paths as a single digital feed.

14. The camera of claim 1 , the signal processor being further configured to:

transfer said at least one of the cyclically-buffered images to a buffer; and

output said at least one of the cyclically-buffered images from the buffer.

15. The camera of claim 1 , at least one of the plurality of image data paths being a live feed.

16. The camera of claim 15 , the live feed having (i) a resolution less than that of the image stream and (ii) a frame rate less than that of the image stream.

17. The camera of claim 1 , the notification specifying the period.

Assignments (4)
SECURITY INTEREST Recorded Aug 7, 2026
From: CATAPULT SPORTS LTD
To: WESTERN ALLIANCE BANK
Reel/Frame 075572/0438 →
LICENSE Recorded Dec 17, 2025
From: ISOLYNX, LLC
To: CATAPULT SPORTS LTD
Reel/Frame 073249/0066 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2022
From: DEANGELIS, DOUGLAS J.; SIGEL, KIRK; EVANSEN, EDWARD G.
To: LYNX SYSTEM DEVELOPERS, INC.
Reel/Frame 060497/0758 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2022
From: LYNX SYSTEM DEVELOPERS, INC.
To: ISOLYNX, LLC
Reel/Frame 060497/0797 →
Continuity (4)
Continuation 15811466 · Nov 13, 2017
Division 11950346 · Dec 4, 2007
Provisional Application 60872639 · Dec 4, 2006
Related Publication 20200288088A1 · Sep 10, 2020