IP Library › Granted Patent US 7,355,229
Granted Patent B2
US 7,355,229 · App. 11/476,759 · Granted Apr 8, 2008

Masked spacer etching for imagers

Assignee: Micron Technology, Inc.
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Quick Facts
Patent No.
US 7,355,229
App. No.
11/476,759
Granted
Apr 8, 2008
Kind
B2
Abstract

The invention relates to a dual masked spacer etch for improved dark current performance in imagers. After deposition of spacer material such as oxide, N-channel regions are first opened for N + source/drain implant and P-channel regions are then opened for P + source/drain implant. Prior to the N + source/drain implant, the wafer receives a patterned first spacer etch. During this first spacer etch, the photosensor region is covered with resist. Prior to the P + source/drain implant, a masked second spacer etch is performed. Again the photosensor region is protected with photoresist. In such a manner, spacers are formed on the gates of both the N-channel and P-channel transistors but in the photodiode region the spacer insulator remains.

Claims (48)

1. An imaging array comprising:

at least one pixel, wherein the pixel is part of a CCD imager, comprising:

a photosensitive region;

a gate structure;

a first insulating layer formed over substantially all of the photosensitive region;

an insulating spacer formed from the first insulating layer and on at least one side of the gate structure; and

a second insulating layer formed over said first insulating layer, said gate structure, and said spacer.

2. An integrated circuit with an imaging array comprising:

at least one pixel, wherein the pixel is part of a CCD imager, comprising:

a photosensitive region;

a first gate structure;

a first insulating layer formed over the photosensitive region;

a first insulating spacer formed from the first insulating layer and on at least one side of the first gate structure;

a peripheral circuit, said peripheral circuit having at least one transistor with a second gate structure and a second insulating spacer formed from the first insulating layer and on at least one side of the second gate structure; and

a second insulating layer formed over said first insulating layer, said first gate structure, and said first insulating spacer.

3. The integrated circuit of claim 2 , wherein said second gate structure is a source follower gate.

4. The integrated circuit of claim 2 , wherein said second gate structure is a reset gate.

5. An imaging device comprising:

a semiconductor substrate; and

a pixel array, said pixel array comprising:

at least one photosensor, said photosensor covered by a continuous layer of spacer material;

at least one N-channel transistor, wherein at least one spacer formed from said spacer material is along at least one side of at least one of each said N-channel transistor's gate;

at least one of an N-channel transistor or a P-channel transistor outside said pixel array, wherein spacers formed from said spacer material are along at least one side of at least one of either said P-channel or N-channel transistor's gate; and

a translucent or transparent insulating layer formed over said imaging device.

6. The imaging device of claim 5 , wherein said insulating layer is selected from the group consisting of SiO 2 , BPSU, TEOS, BPSG, PSG, BSG, and SOG.

7. The imaging device of claim 6 , wherein electrical contacts are formed through said insulating layer.

8. An image pixel array in a CMOS imaging device, comprising:

at least one photosensor, said photosensor substantially covered by a continuous layer of spacer material;

at least one N-channel transistor having a gate and, along at least one side of the gate, a spacer formed of said spacer material; and

an insulating layer formed over said photosensor, said gate, and spacer material,

wherein each pixel of said pixel array comprises a pinned photodiode for performing photoelectric conversion.

9. The image pixel array of claim 8 , wherein said spacer material comprises at least one of an oxide, nitride, oxide/nitride, and metal oxide.

10. The image pixel array of claim 8 , wherein said pixel array comprises about 0.1 megapixels to about 20 megapixels.

11. The imaging array of claim 8 , wherein said gate is a transfer gate.

12. The imaging array of claim 8 , wherein said gate is a reset gate.

13. The imaging array of claim 8 , wherein said gate is a row select gate.

14. The imaging array of claim 8 , wherein said gate is a source follower gate.

15. An imager system, comprising:

a processor; and

an imaging device connected to provide signals to said processor, said imaging device comprising:

a semiconductor substrate; and

a pixel array, said pixel array comprising:

at least one photosensor, said photosensor covered by a continuous layer of spacer material;

at least one N-channel transistor, wherein at least one spacer formed from said spacer material is along at least one side of at least one of each said N-channel transistor's gate; and

at least one N-channel or P-channel transistor outside said pixel array, wherein at least one spacer formed from said spacer material is along at least one side of at least one of each said N-channel and P-channel transistor's gate; and

a translucent or transparent insulating layer formed over said imaging device.

16. The imager system of claim 15 , wherein said spacer material comprises at least one of an oxide, nitride, oxide/nitride, and metal oxide.

17. The imager system of claim 15 , wherein said insulating layer is selected from the group consisting of SiO 2 , BPSU, TEOS, BPSG, PSG, BSG, and SOG.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2016
From: RHODES, HOWARD E.
To: MICRON TECHNOLOGY, INC.
Reel/Frame 040329/0824 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2016
From: MICRON TECHNOLOGY, INC.
To: APTINA IMAGING CORPORATION
Reel/Frame 040329/0950 →
Continuity (3)
Division 1092127400 · Aug 19, 2004
Division 1066369400 · Sep 17, 2003
Related Publication 20060243981A1 · Nov 2, 2006