IP Library Granted Patent US 12,108,178
Granted Patent B2
US 12,108,178 · App. 17/690,255 · Granted Oct 1, 2024

Photoelectric conversion device, electronic device, and substrate

Inventor: Hideo Kobayashi (Tokyo, JP)
Assignee: Canon Kabushiki Kaisha
H04N25/75H04N25/766H04N25/772H04N25/79
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Quick Facts
Patent No.
US 12,108,178
App. No.
17/690,255
Granted
Oct 1, 2024
Kind
B2
Abstract

A photoelectric conversion device comprising a pixel array that includes pixels each generates a signal via photoelectric conversion arranged in rows and columns, is disclosed. The device also comprises a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines. The device further comprises a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device.

Claims (62)

1. A photoelectric conversion device, comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines; and

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device,

wherein after a result of the determination is output from one determination circuit of the plurality of determination circuits to the shared signal line, a result of the determination is output from another determination circuit of the plurality of determination circuits to the shared signal line.

2. The photoelectric conversion device according to claim 1 , wherein the plurality of determination circuits are respectively connected to the vertical signal lines provided for different pixel columns.

3. The photoelectric conversion device according to claim 1 , wherein the plurality of determination circuits are respectively connected to the different vertical signal lines provided for a same pixel column.

4. The photoelectric conversion device according to claim 1 , wherein

the plurality of determination circuits are controlled to output a result of the determination in different periods.

5. The photoelectric conversion device according to claim 1 , wherein in a case where a plurality of the vertical signal lines are provided for a same pixel column, circuits provided for each one of the plurality of the vertical signal lines are disposed so that circuits of the same type are to be close.

6. The photoelectric conversion device according to claim 1 , wherein each one of the plurality of determination circuits is an auto-zero differential amplifier with a function that takes the signal and a reference value used in the determination as input and cancels input offset.

7. The photoelectric conversion device according to claim 1 , wherein each one of the plurality of determination circuits is driven by a current source connected to the vertical signal line of the pixel.

8. A photoelectric conversion device, comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines;

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device;

holding circuits respectively connected to the vertical signal lines and hold the signals; and

analog-to-digital conversion circuits that perform analog-to-digital conversion of signals held in the holding circuits;

a selection circuit that selectively outputs signals held by two or more of the holding circuits to a corresponding analog-to-digital conversion circuit; and

a switching circuit that selectively connects the plurality of determination circuits to the shared signal line,

wherein each of the analog-to-digital conversion circuits is provided for two or more of the holding circuits, and

the switching circuit is provided at a position closer to the pixel array than the selection circuit.

9. The photoelectric conversion device according to claim 8 , wherein

the switching circuit has a smaller circuit size than the selection circuit.

10. A photoelectric conversion device, comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines;

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device;

holding circuits respectively connected to the vertical signal lines and hold the signals;

analog-to-digital conversion circuits that perform analog-to-digital conversion of signals held in the holding circuits; and

a selection circuit that selectively outputs signals held by two or more of the holding circuits to a corresponding analog-to-digital conversion circuit,

wherein each of the analog-to-digital conversion circuits is provided for two or more of the holding circuits, and

the plurality of determination circuits are connected to the shared signal line at a position closer to the pixel array than the selection circuit.

11. The photoelectric conversion device according to claim 10 , wherein each one of the plurality of determination circuits is an auto-zero differential amplifier with a function that takes the signal and a reference value used in the determination as input and cancels input offset.

12. A photoelectric conversion device, comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines; and

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device; and

a plurality of analog-to-digital conversion circuits connected to the vertical signal lines that perform analog-to-digital conversion of the signals read out from the vertical signal lines,

wherein the plurality of analog-to-digital conversion circuits are a slope type, and

the plurality of determination circuits are comparators included in the plurality of analog-to-digital conversion circuits.

13. The photoelectric conversion device according to claim 12 , wherein

each one of the plurality of analog-to-digital conversion circuits controls a gradient of a ramp signal used in the analog-to-digital conversion on the basis of a result of the determination.

14. A photoelectric conversion device, comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines;

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device;

a plurality of amplifier circuits that control gain applied to the signal on the basis of a result of the determination by the plurality of determination circuits; and

a plurality of analog-to-digital conversion circuits respectively connected to the vertical signal lines that perform analog-to-digital conversion of the signals read out from the vertical signal lines,

wherein each one of the analog-to-digital conversion circuits performs analog-to-digital conversion of the signal to which a gain has been applied by one of the plurality of amplifier circuits.

15. An electronic device, comprising:

a photoelectric conversion device; and

a control apparatus that controls operations of the photoelectric conversion device, wherein

the photoelectric conversion device comprising:

a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns;

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines; and

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit inside the photoelectric conversion device,

wherein after a result of the determination is output from one determination circuit of the plurality of determination circuits to the shared signal line, a result of the determination is output from another determination circuit of the plurality of determination circuits to the shared signal line.

16. A substrate stacked on a substrate provided with a pixel array including pixels each generates a signal via photoelectric conversion arranged in rows and columns, comprising:

a plurality of determination circuits that perform determination of an amplitude of signals read out from the pixel array via different vertical signal lines; and

a shared signal line shared by the plurality of determination circuits that transmits results of the determination from the plurality of determination circuits to a circuit other than the plurality of determination circuits provided on the substrate,

wherein after a result of the determination is output from one determination circuit of the plurality of determination circuits to the shared signal line, a result of the determination is output from another determination circuit of the plurality of determination circuits to the shared signal line.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2022
From: KOBAYASHI, HIDEO
To: CANON KABUSHIKI KAISHA
Reel/Frame 059634/0517 →
Priority Claims (1)
JP 2021-045160 · Mar 18, 2021 · national
Continuity (1)
Related Publication 20220303486A1 · Sep 22, 2022
Cited By (1)
US 12,689,846