IP Library Granted Patent US 11,515,353
Granted Patent B2
US 11,515,353 · App. 17/018,906 · Granted Nov 29, 2022

Mechanically stacked multicolor focal plane arrays and detection devices

Inventors: Daniel Chmielewski (Mason, OH); Yajun Wei (Saratoga, CA); Nansheng Tang (Mason, OH); Darrel Endres (West Chester, OH); Michael Garter (Lebanon, OH); Mark Greiner (Loveland, OH)
Assignee: L3 CINCINNATI ELECTRONICS CORPORATION
H01L27/14652H01L27/1462H01L27/1465H01L27/14636H01L27/14687
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Quick Facts
Patent No.
US 11,515,353
App. No.
17/018,906
Granted
Nov 29, 2022
Kind
B2
Abstract

Multicolor, stacked detector devices, focal plane arrays including multicolor, stacked detector devices, and methods of fabricating the same are disclosed. In one embodiment, a stacked multicolor detector device includes a first detector and a second detector. The first detector includes a first detector structure and a first ground plane adjacent the first detector structure. The second detector includes a second detector structure and a second ground plane adjacent the second detector structure. At least one of the first ground plane and the second ground plane is transmissive to radiation in a predetermined spectral band. The first detector and the second detector are in a stacked relationship.

Claims (64)

1. A stacked multicolor detector device comprising:

a first detector comprising:

a first detector structure; and

a first ground plane adjacent the first detector structure; and

a second detector comprising:

a second detector structure; and

a second ground plane adjacent the second detector structure;

wherein:

at least one of the first ground plane and the second ground plane is transmissive to radiation in a predetermined spectral band;

the first detector and the second detector are in a stacked relationship;

the first detector and the second detector are reticulated such that the first detector structure and the second detector structure are fully reticulated and the first ground plane and the second ground plane are one of not reticulated and partially reticulated.

2. The stacked multicolor detector device of claim 1 , further comprising one or more additional detectors comprising:

an additional detector structure; and

an additional ground plane adjacent the additional detector structure, wherein the additional ground plane is transmissive to radiation in the predetermined spectral band and the one or more additional detectors are in the stacked relationship with the first detector structure and the second detector structure.

3. The stacked multicolor detector device of claim 1 , wherein the first detector and the second detector are individually reticulated.

4. The stacked multicolor detector device of claim 1 , wherein the first detector and the second detector are reticulated together.

5. The stacked multicolor detector device of claim 1 , wherein:

the first detector further comprises a first dielectric structure coupled to the first detector structure; and

the second detector further comprises a second dielectric structure coupled to the second detector structure;

one or more of the first dielectric structure and the second dielectric structure comprises one or more of a filter, a distributed Bragg reflector, and an anti-reflection coating.

6. The stacked multicolor detector device of claim 1 , further comprising a read-out integrated circuit, wherein:

one of the first detector and the second detector is coupled to the read-out integrated circuit;

the stacked multicolor detector device further comprises:

a first insulated conductive signal path electrically coupling the first detector structure to a first signal electrical contact of the read-out integrated circuit; and

a second insulated conductive signal path electrically coupling the second detector structure to a second signal electrical contact of the read-out integrated circuit.

7. The stacked multicolor detector device of claim 1 , wherein one or more of the first detector structure and the second detector structure is bias-selectable to select one of at least two colors.

8. A multicolor focal plane array comprising a plurality of active pixels, each active pixel comprising a stacked multicolor detector device further comprising:

a first detector comprising:

a first detector structure; and

a first ground plane adjacent the first detector structure; and

a second detector comprising:

a second detector structure; and

a second ground plane adjacent the second detector structure;

wherein:

at least one of the first ground plane and the second ground plane is transmissive to radiation in a predetermined spectral band; and

the first detector and the second detector are in a stacked relationship;

the first detector and the second detector are reticulated such that the first detector structure and the second detector structure are fully reticulated, and the first ground plane and the second ground plane are one of not reticulated and partially reticulated such that the first ground plane and the second ground plane are continuous across the focal plane array.

9. The multicolor focal plane array of claim 8 , further comprising one or more additional detectors comprising:

an additional detector structure; and

an additional ground plane adjacent the additional detector structure, wherein the additional ground plane is transmissive to radiation in the predetermined spectral band and the one or more additional detectors are in the stacked relationship with the first detector structure and the second detector structure.

10. The multicolor focal plane array of claim 8 , wherein the first detector and the second detector are individually reticulated.

11. The multicolor focal plane array of claim 8 , wherein the first detector and the second detector are reticulated together.

12. The multicolor focal plane array of claim 8 , wherein:

the first detector further comprises a first dielectric structure coupled to the first detector structure;

the second detector further comprises a second dielectric structure coupled to the second detector structure; and

one or more of the first dielectric structure and the second dielectric structure comprises one or more of a filter, a distributed Bragg reflector, and an anti-reflection coating.

13. The multicolor focal plane array of claim 8 , further comprising a read-out integrated circuit, wherein:

one of the first detector and the second detector is coupled to the read-out integrated circuit; and

the stacked multicolor detector device further comprises:

a first insulated conductive signal path electrically coupling the first detector structure to a first signal electrical contact of the read-out integrated circuit; and

a second insulated conductive signal path electrically coupling the second detector structure to a second signal electrical contact of the read-out integrated circuit.

14. The multicolor focal plane array of claim 8 , further comprising at least one ground pixel comprising:

a first detector of the at least one ground pixel; and

a second detector of the at least one ground pixel, wherein the first detector of the at least one ground pixel and the second detector of the at least one ground pixel are in the stacked relationship.

15. The multicolor focal plane array of claim 14 , wherein one or more of the first detector of the at least one ground pixel and the second detector of the at least one ground pixel comprises one or more conductive layers.

16. The multicolor focal plane array of claim 14 , further comprising a read-out integrated circuit, wherein the first detector of the at least one ground pixel and the second detector of the at least one ground pixel are electrically coupled together and electrically coupled to one or more ground electrical contacts of the read-out integrated circuit.

17. The multicolor focal plane array of claim 16 , wherein the first detector of the at least one ground pixel and the second detector of the at least one ground pixel are electrically coupled together and also electrically coupled to the one or more ground electrical contacts by one or more non-insulated conductive paths through the first detector of the at least one ground pixel and the second detector of the at least one ground pixel.

18. The multicolor focal plane array of claim 14 , further comprising a read-out integrated circuit, wherein the first detector and the second detector of the at least one ground pixel are electrically isolated from one another such that:

the first detector of the at least one ground pixel is electrically coupled to one or more first ground electrical contacts of the read-out integrated circuit; and

the second detector of the at least one ground pixel is electrically coupled to one or more second ground electrical contacts of the read-out integrated circuit.

19. The multicolor focal plane array of claim 18 , wherein:

the first detector of the at least one ground pixel is electrically coupled to the one or more first ground electrical contacts of the read-out integrated circuit by one or more first conductive paths that are not insulated in the first detector and are insulated in the second detector; and

the second detector of the at least one ground pixel is electrically coupled to the one or more second ground electrical contacts of the read-out integrated circuit by one or more second conductive paths through the second detector.

20. The multicolor focal plane array of claim 8 , wherein one or more of the first detector structure and the second detector structure is bias-selectable to select one of at least two colors.

Assignments (2)
CHANGE OF NAME Recorded Dec 22, 2022
From: L3 CINCINNATI ELECTRONICS CORPORATION
To: L3HARRIS CINCINNATI ELECTRONICS CORPORATION
Reel/Frame 062206/0635 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 30, 2021
From: CHMIELEWSKI, DANIEL; WEI, YAJUN; TANG, NANSHENG; ENDRES, DARREL; GARTER, MICHAEL; GREINER, MARK
To: L3 CINCINNATI ELECTRONICS CORPORATION
Reel/Frame 055760/0952 →
Continuity (2)
Provisional Application 62899299 · Sep 12, 2019
Related Publication 20210082991A1 · Mar 18, 2021