Solid-state imaging device, imaging apparatus, electronic appliance, and method of driving the solid-state imaging device
Abstract
A solid-state imaging device includes: a device portion in which unit constituent elements, each of which includes a charge detection unit detecting a charge that is generated on the basis of changes in physical information and a transfer unit transferring a signal charge detected by the charge detection unit, are arranged in a predetermined direction; and a supplied voltage control portion capable of transferring a part of the charge detected by the charge detection unit through supplying of a control voltage for suppressing blooming to the transfer unit and capable of transferring the signal charge detected by the charge detection unit through supplying of a first control voltage that is different from the control voltage for suppressing the blooming to the transfer unit.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An imaging device, comprising:
a pixel unit comprising a plurality of pixels, at least one of the pixels comprising:
a photoelectric conversion unit configured to detect a charge that is generated on an incident light;
a transfer transistor configured to transfer the charge detected by the photoelectric conversion unit to a floating diffusion unit; and
a reset transistor configured to reset the charge stored in the floating diffusion unit; and
a supplied voltage control portion comprising a transfer drive buffer configured to supply a transfer pulse to a gate of the transfer transistor, wherein the transfer pulse includes a first, a second, and a third control voltage, and the first control voltage is between the second control voltage and the third control voltage.
2 . The imaging device according to claim 1 , wherein the supplied voltage control portion supplies the first control voltage for suppressing a blooming.
3 . The imaging device according to claim 2 , wherein the reset transistor is configured to reset the charge stored in the floating diffusion unit on or after inputting the at least one first control voltage to the transfer transistor.
4 . The imaging device according to claim 3 , wherein when the time taken from a start of charge detection through the photoelectric conversion unit to a stop of the supply of the at least one first control voltage for suppressing the blooming to the transfer transistor is Tbm and a charge amount reaches a saturation charge amount Hs of the charge detection unit at a storage time Ts, the supplied voltage control portion sets the at least one first control voltage for suppressing the blooming to a value at which the photoelectric conversion unit can maintain the charge amount of TbmxHs/Ts.
5 . The imaging device according to claim 1 , wherein when the amount of the charge exceeds a saturation charge amount of the photoelectric conversion unit, apart of the charge that is detected by the photoelectric conversion unit is transferred, when the at least one first control voltage for suppressing the blooming is supplied to the transfer transistor.
6 . The imaging device according to claim 1 , wherein the at least one first control voltage for suppressing the blooming is a voltage at which the photoelectric conversion unit can maintain a charge amount that corresponds to a saturation charge amount of the photoelectric conversion unit when the at least one first control voltage for suppressing the blooming is supplied to the transfer transistor.
7 . The imaging device according to claim 1 , wherein the at least one first control voltage for suppressing the blooming is a voltage at which the photoelectric conversion unit can maintain a charge amount that corresponds to the saturation charge amount of the photoelectric conversion unit when the at least one first control voltage for suppressing the blooming is supplied to the transfer transistor.
8 . The imaging device according to claim 1 , wherein the supplied voltage control portion continues a supply of the at least one first control voltage for suppressing the blooming to the transfer transistor until a predetermined time from the start of charge detection.
9 . The imaging device according to claim 7 , wherein the at least one first control voltage for suppressing the blooming is a voltage at which the photoelectric conversion unit can maintain a charge amount that corresponds to a saturation charge amount of the photoelectric conversion unit when the supply of the at least one first control voltage for suppressing the blooming to the transfer transistor is stopped.
10 . The imaging device according to claim 1 , wherein the at least one first control voltage for suppressing the blooming is a voltage at which the photoelectric conversion unit can maintain a charge amount that corresponds to a saturation charge amount of the photoelectric conversion unit when the at least one first control voltage for suppressing the blooming is supplied to the transfer transistor.
11 . The imaging device according to claim 1 , further comprising:
a first driving unit configured to read the charge stored in the floating diffusion unit in a first charge detection period and to output the readout charge from the pixel unit as a first image signal; and a second driving unit driven to read the charge stored in the floating diffusion unit that output the first image signal in proportion to the first charge detection period that is determined by a time interval to drive the transfer transistor in the first charge detection period and to output the readout charge from the pixel unit as a second image signal having a different sensitivity than the first image signal.
12 . The imaging device according to claim 15 , wherein the at least one first control voltage for suppressing the blooming is supplied to the transfer transistor in a range in which time for acquiring the second image signal can be ensured between a time point where the at least one first control voltage for suppressing the blooming is supplied and a time point where a first control voltage is supplied.
13 . The imaging device according to claim 1 , wherein the supplied voltage control portion comprises:
a first supplied voltage control unit supplying the at least one first control voltage to the transfer transistor; a second supplied voltage control unit sequentially supplying one or a plurality of second control voltages having a different voltage value from the at least one first control voltage to the transfer transistor; and a third supplied voltage control unit supplying a third control voltage having the same voltage value as the second control voltages prior to the supply the control voltages.
14 . An electronic appliance comprising the imaging device according to claim 1 .Join the waitlist — get patent alerts
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