IP Library › Granted Patent US 10,469,694
Granted Patent B2
US 10,469,694 · App. 16/214,241 · Granted Nov 5, 2019

Image sensor panel and method for capturing graphical information using same

Inventors: Hsuan-Yeh Chang (Chestnut Hill, MA); Anping Liu (Acton, MA)
Assignee: Bidirectional Display, Inc.
H04N1/10G02F1/13338G02F1/133512G06F3/0304G06F3/042G06F3/0484G06F3/0488G09F9/35G09G3/36H01L27/14605H01L27/14607H01L27/14612H01L27/14623H01L27/14636H01L27/14645H01L27/14649H01L27/323H01L27/3234H01L31/1055H04N5/335G09G3/3413G09G2300/04G09G2360/14
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Quick Facts
Patent No.
US 10,469,694
App. No.
16/214,241
Granted
Nov 5, 2019
Kind
B2
Abstract

The present disclosure provides an image sensor panel and a method for capturing graphical information using the image sensor panel. In one aspect, the image sensor panel includes a substrate and a sensor array on the substrate, the sensor array including a plurality of photosensitive pixels. The substrate includes a first region defined by the sensor array and a second region other than the first region. The second region is optically transparent and has an area greater than that of the first region.

Claims (36)

1. An image sensor panel, comprising:

a transparent substrate having a first surface devoid of information display pixels; and

a sensor array comprising a plurality of photosensitive pixels on the first surface and spaced apart from each other;

wherein each of the photosensitive pixels comprises a control component, a photosensitive component, and a dielectric layer between the control component and the photosensitive component.

2. The image sensor panel of claim 1 , wherein the sensor array defines a first region on the first surface, within which the photosensitive pixels are disposed, and a second region on the first surface other than the first region, and wherein the first region is optically non-transparent to visible light and the second region is optically transparent to visible light.

3. The image sensor panel of claim 2 , wherein the second region has an area greater than that of the first region.

4. The image sensor panel of claim 1 , wherein the control component is electrically coupled to the photosensitive component through a via hole of the dielectric layer.

5. The image sensor panel of claim 1 , wherein the control component comprises at least one thin film transistor.

6. The image sensor panel of claim 1 , wherein the control component, the dielectric layer, and the photosensitive component form a vertically stacked structure.

7. The image sensor panel of claim 6 , wherein the vertically stacked structure further comprises a light block layer that is optically opaque so as to prevent undesirable light from reaching the photosensitive component.

8. An image sensor device, comprising:

a planar light source having a light emitting surface; and

an image sensor panel disposed directly on the light emitting surface of the planar light source, the image sensor panel being devoid of information display pixels and comprising:

a transparent substrate having a first surface, and

a sensor array comprising a plurality of photosensitive pixels on the first surface and spaced apart from each other,

wherein each of the photosensitive pixels comprises a control component, a photosensitive component, and a dielectric layer between the control component and the photosensitive component.

9. The image sensor of claim 8 , wherein the sensor array defines a first region on the first surface, within which the photosensitive pixels are disposed, and a second region on the first surface other than the first region, and wherein the first region is optically non-transparent to visible light and the second region is optically transparent to visible light, thereby allowing at least a portion of light of the planar light source to penetrate through the second region.

10. The image sensor of claim 9 , wherein the second region has an area greater than that of the first region.

11. The image sensor of claim 8 , wherein the control component, the dielectric layer, and the photosensitive component form a vertically stacked structure.

12. The image sensor of claim 11 , wherein the vertically stacked structure further comprises a light block layer that is optically opaque so as to prevent light of the planar light source from reaching the photosensitive pixels.

13. The image sensor of claim 12 , wherein the light block layer comprises an electrically conductive material electrically coupled with the photosensitive component.

14. The image sensor of claim 8 , wherein the control component is electrically coupled to the photosensitive component through a via hole of the dielectric layer.

15. The image sensor of claim 8 , wherein the control component comprises at least one thin film transistor.

16. An electronic device, comprising:

a display module having one or more substrates, the display module comprising a plurality of display pixels; and

an image sensor panel disposed on the display module, the image sensor panel being devoid of information display pixels and comprising:

a transparent substrate having a first surface, the transparent substrate being different from said one or more substrates of the display module, and

a sensor array comprising a plurality of photosensitive pixels on the first surface and spaced apart from each other,

wherein each of the photosensitive pixels comprises a control component, a photosensitive component, and a dielectric layer between the control component and the photosensitive component.

17. The electronic device of claim 16 , wherein the control component, the dielectric layer, and the photosensitive component form a vertically stacked structure.

18. The electronic device of claim 17 , wherein the vertically stacked structure further comprises a light block layer that is optically opaque so as to prevent light signal of the display module from reaching the photosensitive pixels.

19. The electronic device of claim 16 , wherein the sensor array defines a first region on the first surface, within which the photosensitive pixels are disposed, and a second region on the first surface other than the first region, and wherein the first region is optically opaque to visible light and the second region is optically transparent to visible light.

20. The electronic device of claim 19 , wherein the display pixels of the display module are aligned with the second region of the image sensor panel.

21. The electronic device of claim 16 , wherein the photosensitive pixels are configured to have a sensor resolution greater than a display resolution of the display module.

22. The electronic device of claim 16 , wherein the display module comprises one of (i) an organic light emitting diode (OLED) display device having a single substrate and (ii) a liquid crystal display (LCD) device having a thin-film transistor substrate and a color filter substrate.

23. The electronic device of claim 16 , wherein the electronic device is one of a smartphone device, a smart watch device, a handheld video game device, a tablet computer, and a laptop computer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 10, 2018
From: CHANG, HSUAN-YEH; LIU, ANPING
To: BIDIRECTIONAL DISPLAY INC.
Reel/Frame 047719/0600 →
Continuity (5)
Continuation 15268624 · Sep 18, 2016
Continuation PCTUS2015021199 · Mar 18, 2015
Provisional Application 62025772 · Jul 17, 2014
Provisional Application 61955223 · Mar 19, 2014
Related Publication 20190149687A1 · May 16, 2019
Cited By (1)
US 12,499,285