IP Library Granted Patent US 12,206,939
Granted Patent B2
US 12,206,939 · App. 18/185,878 · Granted Jan 21, 2025

Methods and apparatus for an embedded appliance

Inventors: John J. Smith (Manassas, VA); Stephen R. Titus (Herndon, VA); Douglas E. Rogers (Sterling, VA); David Henry Boyle (McLean, VA); Keira Kaitlyn Johnson (Clifton, VA); Jonathan D. Bell (Hamilton, VA)
Assignee: Echo360, Inc
H04N21/440218G09G5/005G09G5/008H04N5/04H04N5/06H04N7/01H04N7/0127H04N9/8042H04N9/8205H04N21/262H04N21/4223H04N21/432G09G2340/02G09G2340/0407G09G2340/0435G09G2340/06G09G2370/042G09G2370/12G09G2370/22H04N21/42203H04N21/4334H04N21/4402H04N21/4788
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Quick Facts
Patent No.
US 12,206,939
App. No.
18/185,878
Granted
Jan 21, 2025
Kind
B2
Abstract

In some embodiments, an apparatus comprises a media module and a modification module included in an embedded appliance. The media module is configured to receive a first media signal associated with a first input port of the embedded appliance and a second media signal associated with a second input port of the embedded appliance. The media module is configured to identify a first set of media signal parameters based on the first media signal. The modification module is configured to receive a modification instruction associated with a session format having a second set of media signal parameters different from the first set of media signal parameters. The modification module is configured to modify the first media signal based on the first set of media signal parameters and the modification instruction to produce a first modified media signal in the session format and having the second set of media signal parameters.

Claims (70)

1. A non-transitory processor-readable medium storing code representing instructions to be executed by a processor, the code comprising code to cause the processor to:

receive a plurality of media signals having a first frame rate;

receive a modification instruction associated with a second frame rate;

determine a first adjustment number based on the first frame rate;

determine a second adjustment number based on the second frame rate; and

adjust the plurality of media signals from the first frame rate to the second frame rate by repeatedly:

counting by the second adjustment number for each media signal from the plurality of media signals that is received to produce a count, and

when the count is at least equal to the first adjustment number:

sending a media signal from the plurality of media signals, and

resetting the count after sending the media signal.

2. The non-transitory processor-readable medium of claim 1 , wherein resetting the count includes resetting the count by subtracting the first adjustment number repeatedly from the count until the count is less than the first adjustment number.

3. The non-transitory processor-readable medium of claim 1 , wherein the plurality of media signals include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals.

4. The non-transitory processor-readable medium of claim 1 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the code includes codes to cause the processor to:

receive a plurality of audio signals within the capture time window.

5. The non-transitory processor-readable medium of claim 1 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the code further comprises codes to cause the processor to:

receive, within the capture time window, a plurality of audio signals having a time base,

the code to adjust including code to adjust the plurality of media signal relative to the time base.

6. The non-transitory processor-readable medium of claim 1 , wherein the plurality of media signals are received within a capture time window, the code further comprising code to cause the processor to:

receive a plurality of audio signals within the capture time window; and

send the plurality of media signals and the plurality of audio signals such that the plurality of media signals and the plurality of audio signals are synchronized.

7. The non-transitory processor-readable medium of claim 1 , wherein the plurality of media signals are received within a capture time window, the code further comprising code to cause the processor to:

receive, within the capture time window, a plurality of audio signals having a time base; and

send the plurality of media signals and the plurality of audio signals such that the plurality of media signals and the plurality of audio signals are synchronized,

the code to adjust including code to adjust the plurality of media signal relative to the time base.

8. A method, comprising:

receiving a plurality of media signals having a first frame rate;

receiving a modification instruction associated with a second frame rate;

determining a first adjustment number based on the first frame rate;

determining a second adjustment number based on the second frame rate; and

adjusting the plurality of media signals from the first frame rate to the second frame rate by repeatedly:

counting by the second adjustment number for each media signal from the plurality of media signals that is received to produce a count, and

when the count is at least equal to the first adjustment number:

sending a media signal from the plurality of media signals, and

resetting the count after sending the media signal.

9. The method of claim 8 , wherein resetting the count includes resetting the count by subtracting the first adjustment number repeatedly from the count until the count is less than the first adjustment number.

10. The method of claim 8 , wherein the plurality of media signals include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals.

11. The method of claim 8 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the method further comprising:

receiving a plurality of audio signals within the capture time window.

12. The method of claim 8 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the method further comprises:

receiving, within the capture time window, a plurality of audio signals having a time base,

the adjusting including adjusting the plurality of media signal relative to the time base.

13. The method of claim 8 , wherein the plurality of media signals are received within a capture time window, the method further comprising:

receiving a plurality of audio signals within the capture time window; and

sending the plurality of media signals and the plurality of audio signals such that the plurality of media signals and the plurality of audio signals are synchronized.

14. The method of claim 8 , wherein the plurality of media signals are received within a capture time window, the method further comprising:

receiving, within the capture time window, a plurality of audio signals having a time base; and

sending the plurality of media signals and the plurality of audio signals such that the plurality of media signals and the plurality of audio signals are synchronized,

the adjusting including adjusting the plurality of media signal relative to the time base.

15. An apparatus, comprising:

a processor; and

a memory coupled to the processor, the memory storing instructions that, when executed by the processor, cause the processor to:

receive a plurality of media signals having a first frame rate;

receive a modification instruction associated with a second frame rate;

determine a first adjustment number based on the first frame rate;

determine a second adjustment number based on the second frame rate; and

adjust the plurality of media signals from the first frame rate to the second frame rate by repeatedly:

counting by the second adjustment number for each media signal from the plurality of media signals that is received to produce a count, and

when the count is at least equal to the first adjustment number:

sending a media signal from the plurality of media signals, and

resetting the count after sending the media signal.

16. The apparatus of claim 15 , wherein resetting the count includes resetting the count by subtracting the first adjustment number repeatedly from the count until the count is less than the first adjustment number.

17. The apparatus of claim 15 , wherein the plurality of media signals include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals.

18. The apparatus of claim 15 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the instructions further includes instructions to cause the processor to:

receive a plurality of audio signals within the capture time window.

19. The method of claim 15 , wherein the plurality of media signals are received within a capture time window and include at least one of (1) visual-capture media signals, (2) video media signals, or (3) digital-image media signals, the instructions further includes instructions to cause the processor to:

receive, within the capture time window, a plurality of audio signals having a time base,

the instructions to adjust including instructions to adjust the plurality of media signal relative to the time base.

20. The apparatus of claim 15 , wherein the plurality of media signals are received within a capture time window, the instructions further including instructions to cause the processor to:

receive a plurality of audio signals within the capture time window; and

send the plurality of media signals and the plurality of audio signals such that the plurality of media signals and the plurality of audio signals are synchronized.

Assignments (2)
SECURITY INTEREST Recorded May 12, 2025
From: TURNING TECH INTERMEDIATE, INC.; TURNING ACQUISITION, INC.; ECHO 360, INC.; ECHO 360 HOLDINGS, INC.; ECHO 360 CONTINUING EDUCATION, LLC; TURNING TECH LLC; TURNING TECH HOLDINGS, LLC; TURNING TECHNOLOGIES, LLC; RESPONSE TOOLS, LLC; INKLING SYSTEMS, INC.; SPEAKWORKS, INC.; RESPONSIVE INNOVATIONS, LLC
To: ADVANTAGE CAPITAL MANAGEMENT LLC
Reel/Frame 071276/0781 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2023
From: SMITH, JOHN J.; TITUS, STEPHEN R.; ROGERS, DOUGLAS E.; BOYLE, DAVID HENRY; JOHNSON, KEIRA KAITLYN; BELL, JONATHAN D.
To: ECHO360, INC.
Reel/Frame 063034/0691 →
Continuity (6)
Division 17352582 · Jun 21, 2021
Division 15355581 · Nov 18, 2016
Continuation 14679625 · Apr 6, 2015
Continuation 13538033 · Jun 29, 2012
Provisional Application 61503472 · Jun 30, 2011
Related Publication 20230232069A1 · Jul 20, 2023
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