IP Library Granted Patent US 12678034
Granted Patent B2
US 12678034 · App. 18/748,401 · Granted Jul 14, 2026

Imaging device, endoscope, imaging system, and imaging method

Inventors: Mayu Hirano (Tachikawa, JP); Takanori Tanaka (Hachioji, JP)
Assignee: OLYMPUS MEDICAL SYSTEMS CORP.
A61B1/051H04N25/00
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Quick Facts
Patent No.
US 12678034
App. No.
18/748,401
Granted
Jul 14, 2026
Kind
B2
Abstract

An imaging device includes multiple pixels. When a first mode is set, at least one pixel of the multiple pixels sets a state of a transfer switch to an ON state and outputs a first pixel signal in accordance with an electric charge held in a floating diffusion. When a second mode is set, the at least one pixel sets the state of the transfer switch to an OFF state, sets a state of the reset switch to the ON state, and outputs a second pixel signal in accordance with the electric charge held in the floating diffusion in an output period.

Claims (53)

1 . An imaging device, comprising multiple pixels disposed in a matrix shape, each of the pixels including:

a photoelectric conversion element configured to perform photoelectric conversion and generate an electric charge in accordance with an amount of received light;

a floating diffusion configured to hold the electric charge;

a transfer switch configured to transfer the electric charge generated by the photoelectric conversion element to the floating diffusion; and

a reset switch configured to reset the electric charge held in the floating diffusion,

wherein a state of each of the transfer switch and the reset switch is switchable between an ON state and an OFF state,

wherein an operation mode that is switchable between a first mode and a second mode is set,

wherein, when the first mode is set, at least one pixel sets a state of the transfer switch to the ON state so as to transfer the electric charge to the floating diffusion and outputs a first pixel signal in accordance with the electric charge held in the floating diffusion,

wherein, after the electric charge is transferred to the floating diffusion, the at least one pixel sets the state of the transfer switch to the OFF state so as to stop transfer of the electric charge to the floating diffusion,

wherein, when the second mode is set, the at least one pixel sets a state of the reset switch to the ON state so as to reset the electric charge held in the floating diffusion, fixes the state of the transfer switch to the OFF state, and outputs a second pixel signal in accordance with the electric charge held in the floating diffusion in an output period, and

wherein the state of the reset switch in the at least one pixel is fixed to the ON state in the output period.

2 . The imaging device according to claim 1 ,

wherein each of the multiple pixels includes a selection switch that includes a gate terminal and is configured to output the first pixel signal or the second pixel signal when a row selection signal is input to the gate terminal.

3 . The imaging device according to claim 1 , comprising a signal-holding circuit configured to hold the second pixel signal,

wherein the output period includes a period during which the signal-holding circuit holds the second pixel signal.

4 . The imaging device according to claim 1 ,

wherein the state in the transfer switch of the at least one pixel is fixed to the OFF state in the output period.

5 . The imaging device according to claim 1 ,

wherein each of two or more vertical scanning periods of the imaging device includes a first period during which the first mode is set and a second period during which the second mode is set.

6 . The imaging device according to claim 1 ,

wherein the second mode is set in at least one vertical scanning period of two or more vertical scanning periods of the imaging device.

7 . An endoscope, comprising:

a scope to be inserted into a living body; and

the imaging device according to claim 1 ,

wherein the imaging device is disposed in a distal end of the scope.

8 . An imaging system, comprising:

the imaging device according to claim 1 ; and

a correction circuit configured to receive the first pixel signal and the second pixel signal and correct the first pixel signal by using the second pixel signal.

9 . The imaging system according to claim 8 ,

wherein the correction circuit is configured to:

receive the first pixel signal and the second pixel signal output from the at least one pixel in a first period during which no light is incident on the multiple pixels;

receive the first pixel signal and the second pixel signal output from the at least one pixel in a second period different from the first period;

perform correction using the second pixel signal of the first period on the first pixel signal of the first period so as to generate a reference pixel signal;

correct the first pixel signal of the second period by using the second pixel signal of the second period; and

correct the corrected first pixel signal of the second period by using the reference pixel signal.

10 . The imaging system according to claim 8 ,

wherein the correction circuit is configured to correct the first pixel signal by using the second pixel signal output from a pixel disposed in at least one row among the multiple pixels.

11 . An imaging method using an imaging device that includes multiple pixels disposed in a matrix shape, the imaging method comprising an imaging step,

wherein each of the multiple pixels includes:

a photoelectric conversion element configured to perform photoelectric conversion and generate an electric charge in accordance with an amount of received light;

a floating diffusion configured to hold the electric charge;

a transfer switch configured to transfer the electric charge generated by the photoelectric conversion element to the floating diffusion; and

a reset switch configured to reset the electric charge held in the floating diffusion,

wherein a state of each of the transfer switch and the reset switch is switchable between an ON state and an OFF state,

wherein an operation mode that is switchable between a first mode and a second mode is set,

wherein the imaging step includes:

setting a state of the transfer switch of at least one pixel to the ON state so as to transfer the electric charge to the floating diffusion when the first mode is set;

outputting a first pixel signal in accordance with the electric charge held in the floating diffusion when the first mode is set;

setting the state of the transfer switch of the at least one pixel to the OFF state so as to stop transfer of the electric charge to the floating diffusion after the electric charge is transferred to the floating diffusion;

setting a state of the reset switch of the at least one pixel to the ON state so as to reset the electric charge held in the floating diffusion when the second mode is set; and

outputting a second pixel signal in accordance with the electric charge held in the floating diffusion in an output period,

wherein, when the second mode is set, the state of the transfer switch of the at least one pixel is fixed to the OFF state, and

wherein the state of the reset switch in the at least one pixel is fixed to the ON state in the output period.