IP Library › Granted Patent US 12,489,998
Granted Patent B2
US 12,489,998 · App. 18/640,233 · Granted Dec 2, 2025

Photoelectric conversion apparatus, control method thereof, image capturing apparatus, and storage medium

Inventor: Shigeharu Aoki (Kanagawa, JP)
Assignee: CANON KABUSHIKI KAISHA
H04N25/771H04N25/59H04N25/7795H04N25/78
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Quick Facts
Patent No.
US 12,489,998
App. No.
18/640,233
Granted
Dec 2, 2025
Kind
B2
Abstract

A photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element and a plurality of first holding portions, comprises a control unit that controls a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period, and a setting unit that sets a charge accumulation period in one frame period. The control unit controls to transfer charges from the photoelectric conversion elements to the first holding portions in turn a plurality of times during each frame period, and controls the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period.

Claims (50)

1 . A photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element that converts incident light into charges and accumulates the charges, and a plurality of first holding portions, the apparatus comprising:

a control unit that controls a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period; and

a setting unit that sets a charge accumulation period in one frame period,

wherein the control unit

controls to transfer charges from the photoelectric conversion elements to the plurality of first holding portions in turn a plurality of times during each frame period, and

controls the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods each for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period, and

wherein the control unit and the setting unit are implemented by one or more processors and/or circuitry.

2 . The photoelectric conversion apparatus according to claim 1 , wherein the control unit controls at least one of the number of times the charges are transferred and the divided charge accumulation period.

3 . The photoelectric conversion apparatus according to claim 1 , wherein the control unit controls the distribution of the divided charge accumulation periods for accumulating the charges to be transferred to each of the plurality of first holding portions in the each frame period such that the distribution of the divided charge accumulation periods are symmetrical about a midpoint between the start and the end of the charge accumulation period in the photoelectric conversion elements.

4 . The photoelectric conversion apparatus according to claim 1 , wherein the control unit uses two different lengths of periods for the divided charge accumulation periods for accumulating charges to be transferred to at least one of the plurality of first holding portions.

5 . The photoelectric conversion apparatus according to claim 1 , wherein each pixel further includes a plurality of second holding portions,

wherein, in the next frame after transferring charges to the plurality of first holding portions, the control unit performs the same charge transfer control to the plurality of second holding portions as to the plurality of first holding portions.

6 . The photoelectric conversion apparatus according to claim 5 further comprising a readout unit that reads out charges accumulated in the plurality of first holding portions and the plurality of second holding portions,

wherein the readout unit

reads out charges accumulated in the plurality of second holding portions in a frame in which charges are transferred to the plurality of first holding portions, and

reads out charges accumulated in the plurality of first holding portions in a frame in which charges are transferred to the plurality of second holding portions.

7 . The photoelectric conversion apparatus according to claim 1 , wherein the control unit controls sums of the divided charge accumulation periods for accumulating charges to be transferred to the plurality of first holding portions, respectively, to be different from each other.

8 . An image capturing apparatus comprising:

a photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element that converts incident light into charges and accumulates the charges, and a plurality of first holding portions, that comprises:

a control unit that controls a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period; and

a setting unit that sets a charge accumulation period in one frame period; and

a lens unit that forms an optical image of a subject on the photoelectric conversion elements,

wherein the control unit

controls to transfer charges from the photoelectric conversion elements to the plurality of first holding portions in turn a plurality of times during each frame period, and

controls the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods each for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period, and

wherein the control unit and the setting unit are implemented by one or more processors and/or circuitry.

9 . An image capturing apparatus comprising:

a photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element that converts incident light into charges and accumulates the charges, and a plurality of first holding portions, that comprises:

a control unit that controls a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period; and

a setting unit that sets a charge accumulation period in one frame period; and

a processing unit that processes signals corresponding to charges read out from the photoelectric conversion apparatus,

wherein the control unit

controls to transfer charges from the photoelectric conversion elements to the plurality of first holding portions in turn a plurality of times during each frame period,

controls the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods each for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period, and

controls sums of the divided charge accumulation periods for accumulating charges to be transferred to the plurality of first holding portions, respectively, to be different from each other,

wherein the processing unit performs processing to expand a dynamic range for each pixel based on the signals, and

wherein the control unit, the setting unit and the processing unit are implemented by one or more processors and/or circuitry.

10 . The image capturing apparatus according to claim 9 , wherein the processing unit expands the dynamic range based on a ratio of charge accumulation periods corresponding to the signals.

11 . A control method of a photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element that converts incident light into charges and accumulates the charges, and a plurality of first holding portions, the method comprising:

setting a charge accumulation period in one frame period; and

controlling a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period,

wherein in the controlling of the charge accumulation period,

controlling to transfer charges from the photoelectric conversion elements to the plurality of first holding portions in turn a plurality of times during each frame period, and

controlling the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods each for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period.

12 . A non-transitory computer-readable storage medium, the storage medium storing a program that is executable by the computer, wherein the program includes program code for causing the computer to perform a control method of a photoelectric conversion apparatus having a plurality of pixels each including a photoelectric conversion element that converts incident light into charges and accumulates the charges, and a plurality of first holding portions, the method comprising:

setting a charge accumulation period in one frame period; and

controlling a charge accumulation period in the photoelectric conversion elements in units of predetermined minimum controllable period,

wherein in the controlling of the charge accumulation period,

controlling to transfer charges from the photoelectric conversion elements to the plurality of first holding portions in turn a plurality of times during each frame period, and

controlling the charge accumulation period in the photoelectric conversion elements such that a difference between the set charge accumulation period and a total of divided charge accumulation periods each for accumulating charges to be transferred the plurality of times in each frame period becomes shorter than the minimum controllable period.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 3, 2024
From: AOKI, SHIGEHARU
To: CANON KABUSHIKI KAISHA
Reel/Frame 067589/0112 →
Priority Claims (1)
JP 2023-076313 · May 2, 2023 · national
Continuity (1)
Related Publication 20240373144A1 · Nov 7, 2024
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