IP Library Granted Patent US 9,059,069
Granted Patent B2
US 9,059,069 · App. 13/927,363 · Granted Jun 16, 2015

Linear sensor, image sensor, and electronic apparatus

Inventor: Kandai Fukuyama (Kanagawa, JP)
Assignee: SONY CORPORATION
H01L27/14812H01L27/1461H01L27/14643
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Quick Facts
Patent No.
US 9,059,069
App. No.
13/927,363
Granted
Jun 16, 2015
Kind
B2
Abstract

There is provided a linear sensor including a plurality of sensor elements that are disposed in line, each including a light sensing part that senses light, generates an electric charge according to an amount of the sensed light, and accumulates the electric charge, a readout gate used to read out the electric charge accumulated in the light sensing part, and a reset gate used to discharge the electric charge accumulated in the light sensing part so as to be reset, wherein a region having a highest concentration of an impurity included in the light sensing part is formed in a position similarly away from the readout gate and the reset gate in the light sensing part.

Claims (45)

1. A linear sensor comprising a plurality of sensor elements that are disposed in line, each sensor element including:

a light sensing part that senses light, generates an electric charge according to an amount of the sensed light, and accumulates the electric charge,

a readout gate that effects a read out of the electric charge accumulated in the light sensing part, and

at least one reset gate that effects a discharge of the electric charge accumulated in the light sensing part so as to reset the light sensing part,

wherein,

in plan view, the light sensing part has at least one higher impurity region with an impurity concentration higher than that of a remainder of the light sensing part, the at least one higher impurity region being equidistant from the readout gate and the at least one reset gate.

2. The linear sensor according to claim 1 , wherein for at least one sensor element:

the light sensing part has an elongate shape with opposite short sides and opposite long sides and with end regions at opposite ends of the elongate shape, the long sides being longer than the short sides,

the readout gate is disposed along one short side of the light sensing part at one end region, and

the at least one reset gate is disposed along one long side of the one end region of the light sensing part.

3. The linear sensor according to claim 2 , wherein a width of the readout gate is narrower than a width between side surfaces of the long sides of the light sensing part.

4. The linear sensor according to claim 2 , wherein the light sensing part includes an inclined surface in the one end region that extends between the other long side and the one short side causing the light sensing part to taper in plan view proceeding toward the one short side.

5. The linear sensor according to claim 2 , wherein,

a corner portion of the one end region defined by the other long side and the one short side includes an impurity different than that of the light sensing part so as to cause the light sensing part to taper in plan view proceeding toward the one short side.

6. The linear sensor according to claim 1 , wherein for at least one sensor element:

the light sensing part has an elongate shape with opposite short sides and opposite long sides and with end regions at opposite ends of the elongate shape, the long sides being longer than the short sides,

in plan view, each corner of one end region includes an inclined side so that the one end region tapers between the opposite long sides proceeding toward one short side,

the readout gate is disposed along the one short side,

the sensor element comprises two reset gates, and

each reset gate is disposed along a respective one of the inclined sides.

7. The linear sensor according to claim 1 , wherein for at least one sensor element:

the light sensing part has an elongate shape with opposite short sides and opposite long sides and with end regions at opposite ends of the elongate shape, the long sides being longer than the short sides,

the readout gate is disposed along one short side at one end region of the light sensing part,

each of the long sides includes a step portion making the one end region narrower than a remainder of the light sensing part,

the sensor element comprises two reset gates, and

each reset gate is disposed in a respective one of the step portions such that an interval between side surfaces that are long sides of the light sensing part becomes narrower near a lower side surface.

8. The linear sensor according to claim 1 , wherein for at least one sensor element:

the light sensing part has an elongate shape with opposite short sides and opposite long sides and with end regions at opposite ends of the elongate shape, the long sides being longer than the short sides,

the readout gate is disposed along one short side at one end region of the light sensing part,

the sensor element comprises two reset gates,

each reset gate is disposed along a respective one of the long sides in the one end region,

the light sensing part has two higher impurity regions, and

each higher impurity region is positioned equidistantly from the readout gate and a respective one of the reset gates.

9. An image sensor, comprising a plurality of pixels that are disposed in a matrix, each pixel including:

a light sensing part that senses light, generates an electric charge according to an amount of the sensed light, and accumulates the electric charge,

a readout gate that effects a read out of the electric charge accumulated in the light sensing part, and

at least one reset gate that effects a discharge of the electric charge accumulated in the light sensing part so as to reset the light sensing part,

wherein,

in plan view, the light sensing part has at least one higher impurity region with an impurity concentration higher than that of a remainder of the light sensing part, the at least one higher impurity region being equidistant from the readout gate and the at least one reset gate.

10. An electronic apparatus comprising an image sensor including a plurality of pixels that are disposed in a matrix, each pixel including:

a light sensing part that senses light, generates an electric charge according to an amount of the sensed light, and accumulates the electric charge,

a readout gate that effects a read out of the electric charge accumulated in the light sensing part, and

at least one reset gate that effects a discharge of the electric charge accumulated in the light sensing part so as to be reset,

wherein,

in plan view, the light sensing part has at least one higher impurity region with an impurity concentration higher than that of a remainder of the light sensing part, the at least one higher impurity region being equidistant from the readout gate and the at least one reset gate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 19, 2016
From: SONY CORPORATION
To: SONY SEMICONDUCTOR SOLUTIONS CORPORATION
Reel/Frame 040419/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2013
From: FUKUYAMA, KANDAI
To: SONY CORPORATION
Reel/Frame 030688/0955 →
Priority Claims (1)
JP 2012-151115 · Jul 5, 2012 · national
Continuity (1)
Related Publication 20140008704A1 · Jan 9, 2014