IP Library › Granted Patent US 12,375,826
Granted Patent B2
US 12,375,826 · App. 17/576,637 · Granted Jul 29, 2025

Imaging apparatus and control method thereof for image capturing according to change in subject image

Inventor: Koji Oshima (Kanagawa, JP)
Assignee: CANON KABUSHIKI KAISHA
H04N25/50H04N25/40H04N25/42H04N25/44H04N25/79
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Quick Facts
Patent No.
US 12,375,826
App. No.
17/576,637
Granted
Jul 29, 2025
Kind
B2
Abstract

An imaging apparatus acquires pixel signals for each region of a plurality of regions obtained by dividing an imaging plane having a plurality of pixels arranged in a two-dimensional pattern and detects a region among the plurality of regions in which a subject image has changed. The imaging apparatus determines an image capturing mode and controls to perform image capturing in the determined image capturing mode in response to the region in which the subject image has changed being detected and to output a captured image. The imaging apparatus determines the image capturing mode by selecting a first image capturing mode or a second image capturing mode based on the region in which the subject image has changed.

Claims (22)

1. An imaging apparatus comprising:

a detecting unit that acquires pixel signals for each of a plurality of regions obtained by dividing an imaging plane having a plurality of pixels arranged in a two-dimensional pattern, and detects a region among the plurality of regions in which a subject image has changed; and

a controller that controls to perform image capturing in either a first image capturing mode for outputting an image signal with a first resolution from an entire imaging area on the imaging plane or a second image capturing mode for outputting an image signal with a second resolution lower than the first resolution from the entire imaging area on the imaging plane, in response to selection of one of the first and second image capturing modes based on (i) detection of a number of regions in which the subject image has changed, and (ii) determining that the number of regions in which the subject image has changed is greater than a non-zero predetermined count threshold,

wherein when, among the plurality of regions, the number of regions in which the subject image has changed is less than or equal to the non-zero predetermined count threshold, the controller controls to perform image capturing in the first image capturing mode, and when, among the plurality of regions, the number of regions in which the subject image has changed is more than the non-zero predetermined count threshold, the controller controls to perform image capturing in the second image capturing mode, and

wherein when the number of regions in which the subject image has changed is more than the non-zero predetermined count threshold, the controller determines whether any of the regions among the regions in which the subject image has changed is a non-adjacent region, and when a non-adjacent region exists among the regions in which the subject image has changed, the controller controls to perform image capturing in the first image capturing mode.

2. The imaging apparatus according to claim 1 , wherein the first image capturing mode is an image capturing mode that outputs an image constituted by pixel signals that have not been subjected to addition or thinning, and the second image capturing mode is an image capturing mode that outputs an image constituted by pixel signals of a reduced number of pixels due to addition or thinning of pixel signals.

3. The imaging apparatus according to claim 1 , wherein the detecting unit detects the region in which the subject image has changed among the plurality of regions by extracting pixel signals for each of the plurality of regions at a predetermined cycle and determining whether a change in the pixel signals between cycles exceeds a predetermined threshold value for change.

4. The imaging apparatus according to claim 3 , wherein the predetermined threshold count value for change is variable in accordance with an instruction from a unit external to the imaging apparatus.

5. The imaging apparatus according to claim 1 , wherein for each of the plurality of regions obtained by dividing the imaging plane, the detecting unit acquires a number of pixel signals less than the number of pixels in the region, and detects a region in which the subject image has changed among the plurality of regions.

6. The imaging apparatus according to claim 1 , wherein a number of pixel signals less than the number of pixels in each of the plurality of regions is obtained by adding the pixel signals from the pixels in the region or thinning the pixel signals of a predetermined pixel column or a predetermined pixel row from the pixel signals of the pixels of the region.

7. The imaging apparatus according to claim 1 , further comprising:

an imaging device formed by a stacked structure including a first semiconductor substrate and a second semiconductor substrate.

8. The imaging apparatus according to claim 7 , wherein the first semiconductor substrate includes pixels arranged in the two-dimensional pattern, and the second semiconductor substrate includes the detecting unit and the controller.

9. The imaging apparatus according to claim 1 , further comprising:

a recording unit that records the captured image.

10. A control method of an imaging apparatus comprising:

acquiring pixel signals for each of a plurality of regions obtained by dividing an imaging plane having a plurality of pixels arranged in a two-dimensional pattern, and detecting a region among the plurality of regions in which a subject image has changed; and

performing control to perform image capturing in either a first image capturing mode for outputting an image signal with a first resolution from an entire imaging area on the imaging plane or a second image capturing mode for outputting an image signal with a second resolution lower than the first resolution from the entire imaging area on the imaging plane, in response to selection of one of the first and second image capturing modes based on (i) detection of a number of regions in which the subject image has changed, and (ii) determining that the number of regions in which the subject image has changed is greater than a non-zero predetermined count threshold,

wherein the performing control includes:

when, among the plurality of regions, the number of regions in which the subject image has changed is less than or equal to the non-zero predetermined count threshold, performing control to perform image capturing in the first image capturing mode, and

when, among the plurality of regions, the number of regions in which the subject image has changed is more than the non-zero predetermined count threshold, performing control to perform image capturing in the second image capturing mode, and

wherein when the number of regions in which the subject image has changed is more than the non-zero predetermined count threshold, the performing control includes determining whether any of the regions among the regions in which the subject image has changed is a non-adjacent region, and when a non-adjacent region exists among the regions in which the subject image has changed, performing control to perform image capturing in the first image capturing mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2022
From: OSHIMA, KOJI
To: CANON KABUSHIKI KAISHA
Reel/Frame 058823/0049 →
Priority Claims (1)
JP 2019-134013 · Jul 19, 2019 · national
Continuity (2)
Continuation PCTJP2020024701 · Jun 24, 2020
Related Publication 20220141402A1 · May 5, 2022
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