IP Library › Granted Patent US 11,445,123
Granted Patent B2
US 11,445,123 · App. 17/486,412 · Granted Sep 13, 2022

System and method for PWM control of a video display screen

Inventor: Christopher Deighton (Chislehurst, GB)
Assignee: Brompton Technology Ltd.
H04N5/2353G09G3/32G09G5/10G09G2320/064
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Quick Facts
Patent No.
US 11,445,123
App. No.
17/486,412
Granted
Sep 13, 2022
Kind
B2
Abstract

A PWM control system includes a memory and a processor. The processor obtains camera characteristics relating to a camera that is configured to capture an image displayed by a video display. The camera characteristics include a duration of a period when a shutter of the camera is open. The processor also calculates a PWM timing control for the video display. The PWM timing control specifies a PWM cycle duration that is based on the period when the shutter of the camera is open. The processor further sends a signal to the video display. The signal includes the PWM timing control and is configured to cause the video display to control a brightness of the video display according to the PWM timing control during the period when the shutter of the camera is open.

Claims (41)

1. A pulse width modulation (PWM) control system comprising:

a memory configured to store instructions; and

a processor coupled to the memory and configured to execute instructions stored in the memory to:

obtain camera characteristics relating to a camera that is configured to capture an image displayed by a video display, the camera characteristics comprising a duration of a period when a shutter of the camera is open;

calculate a PWM timing control for the video display, the PWM timing control specifying a PWM cycle duration based on the period when the shutter of the camera is open; and

send a signal to the video display, the signal including the PWM timing control and configured to cause the video display to control a brightness of the video display according to the PWM timing control during the period when the shutter of the camera is open.

2. The PWM control system of claim 1 , wherein

the PWM timing control is a first PWM timing control and the PWM cycle duration is a first PWM cycle duration,

the processor is configured to execute the instructions stored in the memory to calculate a second PWM timing control specifying a second PWM cycle duration based on the period when the shutter of the camera is closed, and

the signal further includes the second PWM timing control and is further configured to cause the video display to control the brightness of the video display according to the second PWM timing control during the period when the shutter of the camera is closed.

3. The PWM control system of claim 1 , wherein the signal includes an indication of a time of initiation of the PWM cycle.

4. The PWM control system of claim 1 , wherein the PWM cycle duration specified by the PWM timing control is less than the duration of the period when the shutter of the camera is open.

5. The PWM control system of claim 1 , wherein the signal further includes a PWM adjustment.

6. The PWM control system of claim 5 , wherein the PWM adjustment is configured to cause the video display to lengthen or shorten the PWM cycle duration by one of adjusting a PWM clock rate, adjusting a PWM bit depth, extending or shortening one or more periods where the video display is off in the PWM cycle, and truncating the PWM cycle before it has completed.

7. The PWM control system of claim 1 , wherein the PWM timing control is a first PWM timing control, the PWM cycle duration is a first PWM cycle duration, the signal is a first signal, the period when the shutter of the camera is open is a first period, and the processor is configured to execute the instructions stored in the memory to:

calculate a second PWM timing control for the video display, the second PWM timing control specifying a second PWM cycle duration, where an average value of the first PWM cycle duration and the second PWM cycle duration more closely matches the duration of the first period when the shutter of the camera is open than does the first PWM cycle duration; and

send a second signal to the video display, the second signal including the second PWM timing control and configured to cause the video display to control the brightness of the video display according to the second PWM timing control during a second period when the shutter of the camera is open.

8. The PWM control system of claim 1 , wherein the camera characteristics further comprise a camera shutter type, and the processor is configured to execute the instructions stored in the memory to calculate the PWM timing control further based on the camera shutter type.

9. The PWM control system of claim 1 , wherein the processor is configured to execute the instructions stored in the memory to send to a user of the PWM control system a PWM matching signal configured to indicate how closely the PWM cycle duration matches the period when the shutter of the camera is open.

10. The PWM control system of claim 1 , wherein the camera characteristics is a first camera characteristics relating to a first camera, comprising a first duration of a first period when the shutter of the first camera is open, and the processor is configured to execute the instructions stored in the memory to:

obtain a second camera characteristics relating to a second camera configured to capture the image displayed by the video display, the second camera characteristics comprising a second duration of a second period when a shutter of the second camera is open; and

calculate the PWM timing control based on both the first camera characteristics and the second camera characteristics.

11. A method of controlling pulse width modulation (PWM) in a video display, the method comprising:

obtaining, by a control system, camera characteristics relating to a camera that is configured to capture an image displayed by the video display, the camera characteristics comprising a duration of a period when a shutter of the camera is open;

calculating, by the control system, a PWM timing control for the video display, the PWM timing control specifying a PWM cycle duration based on the period when the shutter of the camera is open; and

sending, by the control system, a signal to the video display, the signal configured to cause the video display to control a brightness of the video display according to the PWM timing control during the period when the shutter of the camera is open.

12. The method of claim 11 , wherein the PWM timing control is a first PWM timing control and the PWM cycle duration is a first PWM cycle duration, the method further comprising:

calculating by the control system a second PWM timing control specifying a second PWM cycle duration based on the period when the shutter of the camera is closed,

wherein the signal further includes the second PWM timing control and is further configured to cause the video display to control the brightness of the video display according to the second PWM timing control during the period when the shutter of the camera is closed.

13. The method of claim 11 , wherein the signal includes an indication of a time of initiation of the PWM cycle.

14. The method of claim 11 , wherein the PWM cycle duration specified by the PWM timing control is less than the duration of the period when the shutter of the camera is open.

15. The method of claim 11 , wherein the signal further includes a PWM adjustment.

16. The method of claim 15 , wherein the PWM adjustment is configured to cause the video display to lengthen or shorten the PWM cycle duration by one of adjusting a PWM clock rate, adjusting a PWM bit depth, extending or shortening one or more periods where the video display is off in the PWM cycle, and truncating the PWM cycle before it has completed.

17. The method of claim 11 , wherein the PWM timing control is a first PWM timing control, the PWM cycle duration is a first PWM cycle duration, the signal is a first signal, the period when the shutter of the camera is open is a first period, the method further comprising:

calculating by the control system a second PWM timing control for the video display, the second PWM timing control specifying a second PWM cycle duration, where an average value of the first PWM cycle duration and the second PWM cycle duration more closely matches the duration of the first period when the shutter of the camera is open than does the first PWM cycle duration; and

sending by the control system a second signal to the video display, the second signal including the second PWM timing control and configured to cause the video display to control the brightness of the video display according to the second PWM timing control during a second period when the shutter of the camera is open.

18. The method of claim 11 , wherein the camera characteristics further comprise a camera shutter type, the method further comprising calculating the PWM timing control further based on the camera shutter type.

19. The method of claim 11 , the method further comprising sending by the control system to a user of the control system a PWM matching signal configured to indicate how closely the PWM cycle duration matches the period when the shutter of the camera is open.

20. The method of claim 11 , wherein the camera characteristics is a first camera characteristics relating to a first camera, comprising a first duration of a first period when the shutter of the first camera is open, the method further comprising:

obtaining by the control system a second camera characteristics relating to a second camera configured to capture the image displayed by the video display, the second camera characteristics comprising a second duration of a second period when a shutter of the second camera is open; and

calculating by the control system the PWM timing control based on both the first camera characteristics and the second camera characteristics.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 13, 2021
From: DEIGHTON, CHRISTOPHER
To: BROMPTON TECHNOLOGY LTD.
Reel/Frame 057780/0059 →
Continuity (2)
Provisional Application 63084354 · Sep 28, 2020
Related Publication 20220103738A1 · Mar 31, 2022
Cited By (11)
US 12,199,079 US 12,425,538 US 12,443,384 US 12,455,056 US 12,494,165 US 12,499,820 US 12,505,785 US 12,506,923 US 12,647,689 US 12,656,992 US 12,658,112