IP Library Granted Patent US 12713159
Granted Patent B2
US 12713159 · App. 18/824,205 · Granted Aug 18, 2026

Photoelectric conversion apparatus, device, and signal processing method

Inventors: Atsushi Shimada (Kanagawa, JP); Noriyuki Shikina (Tokyo, JP); Yoshiko Shigiya (Tokyo, JP); Shinya Igarashi (Kanagawa, JP)
Assignee: Canon Kabushiki Kaisha
H04N25/779H04N25/40
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 12713159
App. No.
18/824,205
Granted
Aug 18, 2026
Kind
B2
Abstract

A photoelectric conversion apparatus includes a plurality of pixels, a plurality of signal lines, and a scanning unit configured to scan the plurality of pixels. The scanning unit performs scanning to connect two or more pixels arranged in a predetermined number of pixel rows, the predetermined number of which is two or more, to one of the plurality of signal lines during a scanning period. The scanning unit performs reading a first pixel row group having a first number of rows during a first period. The scanning unit performs reading a second pixel row group having a second number of rows less than the first number of rows and reading a third pixel row group having a third number of rows less than the first number of rows during a second period in which a first or last scan is performed in the scanning period.

Claims (44)

1 . A photoelectric conversion apparatus comprising:

a plurality of pixels arranged in an array and having a scanning area to be sequentially scanned in a predetermined direction, the array including a plurality of pixel columns and a plurality of pixel rows in which the plurality of pixels are arranged;

a plurality of signal lines each configured to extend in a column direction in which the plurality of pixel columns is arranged, wherein each of the plurality of pixel columns is provided with any of the plurality of signal lines; and

a scanning circuit configured to scan the plurality of pixels,

wherein the scanning circuit performs scanning to connect two or more pixels arranged in a predetermined number of pixel rows, the predetermined number of which is two or more, among the plurality of pixels rows to one of the plurality of signal lines in parallel during a scanning period in which the scanning area is scanned,

wherein the scanning circuit performs reading a first pixel row group having a first number of pixel rows among the plurality of pixel rows in the scanning area during a first period included in the scanning period, and

wherein the scanning circuit performs reading a second pixel row group having a second number of rows, which is less than the first number of pixel rows, among the plurality of pixel rows and a third pixel row group having a third number of rows, which is less than the first number of rows, among the plurality of pixel rows in parallel in the scanning area during a second period in which a first or last scan is performed in the scanning period.

2 . The photoelectric conversion apparatus according to claim 1 , wherein the plurality of pixels includes a first pixel region including a first pixel that includes a photoelectric conversion element and outputs a signal corresponding to incident light and a second pixel region including a second pixel that outputs a signal indicating a predetermined value.

3 . The photoelectric conversion apparatus according to claim 2 , wherein the scanning area is included in the first pixel region.

4 . The photoelectric conversion apparatus according to claim 2 , wherein the third pixel row group is included in the first pixel region.

5 . The photoelectric conversion apparatus according to claim 2 , wherein the third pixel row group is included in the second pixel region.

6 . The photoelectric conversion apparatus according to claim 2 ,

wherein the first pixel further includes a floating diffusion, and

wherein the floating diffusion is connected to a plurality of the photoelectric conversion elements.

7 . The photoelectric conversion apparatus according to claim 1 , wherein a pixel row is present between the second pixel row group and the third pixel row group.

8 . The photoelectric conversion apparatus according to claim 1 , wherein a number of pixels connected to one of the plurality of signal lines is equal to a number of pixels connected to any other one of the plurality of signal lines.

9 . The photoelectric conversion apparatus according to claim 1 , wherein the scanning by the scanning circuit is scanning for connecting all of the signal lines which are, among the plurality of signal lines, provided in one pixel column to the two or more pixels in parallel.

10 . The photoelectric conversion apparatus according to claim 1 ,

wherein each of the plurality of pixels includes a selection transistor, and

wherein the scanning by the scanning circuit is scanning for connecting the selection transistors of the two or more pixels arranged in the plurality of pixel rows as the predetermined number of pixel rows to one of the plurality of signal lines in parallel.

11 . The photoelectric conversion apparatus according to claim 10 , wherein the scanning by the scanning circuit is scanning for connecting each of all signal lines which are, among the plurality of signal lines, provided in one pixel column to any of the selection transistors of the two or more pixels in parallel.

12 . A device provided with the photoelectric conversion apparatus according to claim 1 , the device comprising at least any one of:

an optical apparatus used for the photoelectric conversion apparatus;

a control apparatus configured to control the photoelectric conversion apparatus;

a processing apparatus configured to process a signal output from the photoelectric conversion apparatus;

a display apparatus configured to display information acquired by the photoelectric conversion apparatus;

a storage apparatus configured to store information acquired by the photoelectric conversion apparatus; and

a mechanical apparatus configured to operate based on information acquired by the photoelectric conversion apparatus.

13 . A method for processing a signal in a photoelectric conversion apparatus that includes

a plurality of pixels arranged in an array and having a scanning area to be sequentially scanned in a predetermined direction, the array including a plurality of pixel columns and a plurality of pixel rows in which the plurality of pixels are arranged;

a plurality of signal lines each configure to extend in a column direction in which the plurality of pixel columns is arranged, wherein each of the plurality of pixel columns is provided with any of the plurality of signal lines and a scanning circuit configured to scan the plurality of pixels, and for scanning to connect two or more pixels arranged in a predetermined number of pixel rows, the predetermined number of which is two or more, among the plurality of pixel rows to one of the plurality of signal lines in parallel during a scanning period in which the scanning area is scanned, the method comprising:

performing reading a first pixel row group having a first number of rows among the plurality of pixel rows in the scanning area during a first period for scanning the scanning area; and

performing reading a second pixel row group having a second number of pixel rows, which is less than the first number of pixel rows, among the plurality of pixel rows and a third pixel row group having a third number of pixel rows, which is less than the first number of pixel rows in parallel in the scanning area during a second period in which a first or last scan is performed in the scanning period.

14 . The method according to claim 13 , wherein the scanning by the scanning circuit is scanning for connecting all signal lines which are, among the plurality of signal lines, provided in one pixel column to the two or more pixels in parallel.

15 . The method according to claim 14 , wherein the plurality of pixels includes a first pixel region including a first pixel that includes a photoelectric conversion element and outputs a signal corresponding to incident light and a second pixel region including a second pixel that outputs a signal indicating a predetermined value.

16 . The method according to claim 15 , wherein the third pixel row group is included in the first pixel region or in the second pixel region.

17 . The method according to claim 15 ,

wherein the first pixel further includes a floating diffusion, and

wherein the floating diffusion is connected to a plurality of the photoelectric conversion elements.

18 . The method according to claim 14 , wherein a pixel row is present between the second pixel row group and the third pixel row group.

19 . The method according to claim 14 , wherein a number of pixels connected to one of the plurality of signal lines is equal to a number of pixels connected to any other one of the plurality of signal lines.

20 . The method according to claim 14 ,

wherein each of the plurality of pixels includes a selection transistor, and

wherein the scanning by the scanning circuit is scanning for connecting the selection transistors of the two or more pixels arranged in the plurality of pixel rows as the predetermined number of rows to one of the plurality of signal lines in parallel.