IP Library Granted Patent US 7,427,798
Granted Patent B2
US 7,427,798 · App. 10/886,125 · Granted Sep 23, 2008

Photonic crystal-based lens elements for use in an image sensor

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Quick Facts
Patent No.
US 7,427,798
App. No.
10/886,125
Granted
Sep 23, 2008
Kind
B2
Abstract

The invention, in various exemplary embodiments, incorporates a photonic crystal lens element into an image sensor. The photonic crystal lens element comprises a substrate and a plurality of pillars forming a photonic crystal structure over the substrate. The pillars are spaced apart from each other. Each pillar has a height and a horizontal cross sectional shape. A material with a different dielectric constant than the pillars is provided within the spacing between the pillars. The photonic crystal element can be a lens configured to focus electromagnetic radiation onto an underlying pixel cell.

Claims (37)

1. An image sensor comprising:

an array of pixel cells at a surface of a substrate, each pixel cell comprising a photo-conversion device; and

at least one photonic crystal lens element over the substrate configured to focus light onto at least one photo-conversion device, wherein a shape of the photonic crystal lens element is approximately the same shape as the photo-conversion device and the photonic crystal lens element is approximately aligned with the photo-conversion device.

2. An image sensor comprising:

an array of pixel cells at a surface of a substrate, each pixel cell comprising a photo-conversion device; and

at least one lens element having a photonic crystal structure over at least one of the photo-conversion devices for focusing light onto the at least one photo-conversion device wherein the photonic crystal lens element comprises a plurality of pillars spaced apart from each other, and a material within the spacing between the pillars has a dielectric constant that is lower than a dielectric constant of the pillars.

3. An image sensor comprising:

an array of pixel cells at a surface of a substrate, each pixel cell comprising a photo-conversion device; and

at least one lens element over at least one of the photo-conversion devices, the lens element comprising a photonic crystal structure comprising a plurality of pillars spaced apart from each other and a material within the spacing between the pillars, the material having a dielectric constant that is different than a dielectric constant of the pillars.

4. An image sensor comprising:

an array of pixel cells at a surface of a substrate, each pixel cell comprising a photo-conversion device; and

at least one photonic crystal lens element over the substrate configured to focus light onto at least one photo-conversion device, wherein the photonic crystal lens element comprises a plurality of pillars being spaced apart from each other, and wherein the photonic crystal lens element further comprises a material within the spacing between the pillars, the material having a dielectric constant that is lower than a dielectric constant of the pillars.

5. The image sensor of claim 4 , wherein the pillars comprise aluminum oxide.

6. The image sensor of claim 4 , wherein the photonic crystal lens element has a top surface and a bottom surface, the top and bottom surfaces being approximately parallel with respect to each other.

7. The image sensor of claim 4 , wherein the photonic crystal lens element is configured to have a negative index of refraction.

8. A photonic crystal lens element for an image sensor, the lens element comprising:

a substrate;

a plurality of pillars over the substrate forming a photonic crystal structure configured to focus electromagnetic radiation, the pillars being spaced apart from each other; and

a material within the spacing between the pillars having a dielectric constant that is different than a dielectric constant of the pillars.

9. The photonic crystal lens element of claim 8 , wherein the dielectric constant of the material within the spacing is lower than the dielectric constant of the pillars.

10. The photonic crystal lens element of claim 8 , wherein the pillars and material within the spacing together have an approximately flat top surface.

11. The photonic crystal lens element of claim 8 , wherein the pillars have a height within the range of approximately 100 Å to approximately 5000 Å.

12. The photonic crystal lens element of claim 8 , wherein a ratio of the spacing between any two of the pillars to a height of any one of the pillars is within the range of approximately 1 to approximately 10.

13. The photonic crystal lens element of claim 8 , wherein the pillars each have a circular horizontal cross sectional shape.

14. The photonic crystal lens element of claim 8 , wherein the pillars each have a pentagonal horizontal cross sectional shape.

15. The photonic crystal lens element of claim 8 , wherein the pillars each have a rectangular horizontal cross sectional shape.

16. The photonic crystal lens element of claim 8 , wherein the pillars comprise aluminum oxide.

17. The photonic crystal lens element of claim 8 , wherein the pillars comprise tantalum oxide.

18. The photonic crystal lens element of claim 8 , wherein the pillars comprise zirconium oxide.

19. The photonic crystal lens element of claim 8 , wherein the pillars comprise hafnium oxide.

20. The photonic crystal lens element of claim 8 , wherein the pillars comprise a Hafnium-based silicate.

21. The photonic crystal lens element of claim 8 , wherein the material within the spacing is spun-on glass.

22. The photonic crystal lens element of claim 8 , wherein the material within the spacing is silicon dioxide.

23. The photonic crystal lens element of claim 8 , further comprising a base layer over the substrate, the pillars being formed on the base layer.

24. The photonic crystal lens element of claim 23 , wherein the base layer has an approximately flat top surface.

25. The photonic crystal lens element of claim 23 , wherein the base layer comprises a dielectric material.

26. The photonic crystal lens element of claim 8 , wherein the photonic crystal structure is configured to have a negative index of refraction.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 28, 2009
From: MICRON TECHNOLOGY, INC.
To: APTINA IMAGING CORPORATION
Reel/Frame 023245/0186 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 23, 2008
From: MICRON TECHNOLOGY, INC.
To: APTINA IMAGING CORPORATION
Reel/Frame 022012/0764 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2004
From: MOULI, CHANDRA
To: MICRON TECHNOLOGY, INC.
Reel/Frame 015559/0801 →