IP Library › Granted Patent US 12,652,872
Granted Patent B2
US 12,652,872 · App. 18/476,637 · Granted Jun 9, 2026

Image sensor and method of manufacturing the same

Inventor: Younggu Jin (Suwon-si, KR)
Assignee: SAMSUNG ELECTRONICS CO., LTD.
H10F39/80373H10F39/18H10F39/014H10F39/807
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Quick Facts
Patent No.
US 12,652,872
App. No.
18/476,637
Granted
Jun 9, 2026
Kind
B2
Abstract

An image sensor includes a substrate, a vertical gate including a vertical extension vertically extending into the substrate from a top of the substrate, and a horizontal extension extending in parallel with a top surface of the substrate from a top of the vertical extension, a photodiode (PD) disposed under the vertical gate inside the substrate, a spacer disposed between the horizontal extension and the substrate, and a gate insulation layer. A bottom surface and side surfaces of the vertical extension and a bottom surface of the horizontal extension are covered by the gate insulation layer, and the spacer is disposed between the substrate and the gate insulation layer of the horizontal extension.

Claims (55)

1 . An image sensor, comprising:

a substrate;

a vertical gate comprising a vertical extension vertically extending into the substrate from a top of the substrate, and a horizontal extension extending in parallel with a top surface of the substrate from a top of the vertical extension;

a photodiode (PD) disposed under the vertical gate inside the substrate;

a spacer disposed between the horizontal extension and the substrate; and

a gate insulation layer,

wherein a bottom surface and side surfaces of the vertical extension and a bottom surface of the horizontal extension are covered by the gate insulation layer, and

the spacer is disposed between the substrate and the gate insulation layer of the horizontal extension.

2 . The image sensor of claim 1 , wherein the vertical gate comprises a dual vertical gate comprising two vertical extensions spaced apart from each other in a first direction parallel to the top surface of the substrate, and

the horizontal extension extends in the first direction and connects the two vertical extensions to each other.

3 . The image sensor of claim 2 , further comprising:

a substrate insulation layer disposed between the substrate and the spacer, and

a gate contact is disposed at a center of the horizontal extension in the first direction.

4 . The image sensor of claim 2 , wherein the spacer is disposed only under the horizontal extension.

5 . The image sensor of claim 3 , wherein at least one of the gate insulation layer and the substrate insulation layer is disposed on a portion of the substrate outside the vertical gate where the spacer is not present.

6 . The image sensor of claim 5 , wherein the spacer comprises an inner spacer disposed under the horizontal extension and an outer spacer disposed on the portion of the substrate outside the vertical gate.

7 . The image sensor of claim 6 , wherein the outer spacer extends to a length of about 300 nm or less in the first direction from the side surfaces of the vertical extension.

8 . The image sensor of claim 1 , wherein the image sensor has a single pixel structure in which one PD is disposed in correspondence to one floating diffusion (FD) region, or

a shared pixel structure in which a plurality of PDs including the PD are arranged in correspondence to the one FD region and the plurality of PDs share the one FD region.

9 . The image sensor of claim 8 , wherein the image sensor has the shared pixel structure in which four PDs surround the one FD region,

at least one transistor is disposed in a pixel corresponding to one of the four PDs, and

a gate of the transistor has a planar structure without the spacer disposed therebelow.

10 . The image sensor of claim 1 , wherein the spacer has a thickness of about 10 nm or more.

11 . An image sensor, comprising:

a substrate;

a dual vertical gate comprising two vertical extensions vertically extending from a top of the substrate into the substrate and spaced apart from each other in a first direction parallel to a top surface of the substrate, and a connection portion connecting the two vertical extensions to each other on the substrate;

a photodiode (PD) disposed under the dual vertical gate inside the substrate;

a floating diffusion (FD) region disposed over the substrate and adjacent to the dual vertical gate in a second direction parallel to the top surface of the substrate and perpendicular to the first direction;

a transistor (TR) region disposed opposite to the FD region around the dual vertical gate and having at least one transistor disposed therein;

a gate insulation layer; and

a spacer disposed between the connection portion and the substrate,

wherein a bottom surface and side surfaces of each of the two vertical extensions and a bottom surface of the connection portion are covered by the gate insulation layer, and

the spacer is disposed between the substrate and a portion of the gate insulation layer covering the connection portion.

12 . The image sensor of claim 11 , wherein the spacer is disposed only under the connection portion.

13 . The image sensor of claim 11 , wherein the spacer comprises an inner spacer disposed under the connection portion and an outer spacer disposed on a portion of the substrate outside the dual vertical gate.

14 . The image sensor of claim 11 , wherein a gate of the transistor has a planar structure without the spacer disposed therebelow.

15 . An image sensor, comprising:

a substrate;

a dual vertical gate comprising two vertical extensions vertically extending from a top of the substrate into the substrate and spaced apart from each other in a first direction parallel to a top surface of the substrate, and a connection portion connecting the two vertical extensions to each other on the substrate;

a photodiode (PD) disposed under the dual vertical gate inside the substrate;

one floating diffusion (FD) region disposed over the substrate and adjacent to the dual vertical gate in a second direction parallel to the top surface of the substrate and perpendicular to the first direction;

a transistor (TR) region disposed opposite to the one FD region around the dual vertical gate and having at least one transistor;

a gate insulation layer; and

a spacer disposed between the connection portion and the substrate,

wherein a bottom surface and side surfaces of each of the two vertical extensions and a bottom surface of the connection portion are covered by the gate insulation layer,

the spacer is disposed between the substrate and a portion of the gate insulation layer covering the connection portion, and

the image sensor has a shared pixel structure in which a plurality of PDs including the PD are arranged in correspondence to the one FD region and the plurality of PDs share the one FD region.

16 . The image sensor of claim 15 , wherein, in the shared pixel structure, an even number of PDs surrounds the one FD region, and

at least one transistor is disposed on a side opposite to the one FD region around the dual vertical gate in a pixel corresponding to one of the PDs.

17 . The image sensor of claim 15 , wherein, in the shared pixel structure, four PDs surround the one FD region,

a source-follower transistor, a reset transistor, and a selection transistor are arranged in three pixels from among four pixels respectively corresponding to the four PDs, and

the source-follower transistor or a dummy transistor is disposed in the remaining one pixel.

18 . The image sensor of claim 15 , wherein the spacer is disposed only under the connection portion.

19 . The image sensor of claim 15 , wherein the spacer comprises an inner spacer disposed under the connection portion and an outer spacer disposed on a portion of the substrate outside the dual vertical gate.

20 . The image sensor of claim 15 , wherein a gate of the transistor has a planar structure without the spacer disposed therebelow.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 28, 2023
From: JIN, YOUNGGU
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 065060/0476 →
Priority Claims (2)
KR 10-2022-0154018 · Nov 16, 2022 · national
KR 10-2023-0014900 · Feb 3, 2023 · national
Continuity (1)
Related Publication 20240162258A1 · May 16, 2024
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