IP Library Granted Patent US 11,270,620
Granted Patent B2
US 11,270,620 · App. 16/985,382 · Granted Mar 8, 2022

Scan needle and scan display system including same

Inventors: Qunchao Xu (Shanghai, CN); Qiming Li (Albuquerque, NM)
Assignee: Jade Bird Display (Shanghai) Limited
G09G3/2003G09G3/32H01L27/156H01L33/08G02B3/0056G09G2300/0452G09G2310/0267
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Quick Facts
Patent No.
US 11,270,620
App. No.
16/985,382
Granted
Mar 8, 2022
Kind
B2
Abstract

A scan display system includes a picture receiving unit, a scan needle, a picture display screen having first and second opposing surfaces, and a driving unit. The scan needle includes a substrate, a first color light emitting pixel array comprising a plurality of first color light emitting pixels, a second color light emitting pixel array comprising a plurality of second color light emitting pixels, and a third color light emitting pixel array comprising a plurality of third color light emitting pixels. The first color light emitting pixel array is parallel to the second color light emitting pixel array, and the second color light emitting pixel array is parallel to the third color light emitting pixel array. The first color light emitting pixel array, the second color light emitting pixel array, and the third color light emitting pixel array extend in the horizontal direction.

Claims (62)

1. A scan display system, comprising:

a scan needle; and

a picture display screen having first and second opposing surfaces,

wherein the scan needle includes:

a substrate; and

only one first color light emitting pixel array formed on the substrate and comprising a plurality of first color light emitting pixels;

only one second color light emitting pixel array formed on the substrate and comprising a plurality of second color light emitting pixels; and

only one third color light emitting pixel array formed on the substrate and comprising a plurality of third color light emitting pixels,

wherein, the first color light emitting pixel array is parallel to the second color light emitting pixel array, and the second color light emitting pixel array is parallel to the third color light emitting pixel array, and

the first color light emitting pixel array, the second color light emitting pixel array, and the third color light emitting pixel array extend in a horizontal direction,

wherein the scan needle is configured to emit light to the picture display screen to project image portions onto the picture display screen, each image portion being formed by the scan needle, and the image portions together forming an image to be displayed on the picture display screen,

wherein each of the first color light emitting pixel comprises a first segment of a first metal layer and a first segment of a first color light emitting layer, stacked in an order on the substrate,

each of the second color light emitting pixel comprises a second segment of the first metal layer, a second segment of the first color light emitting layer, a first segment of a second metal layer, and a first segment of a second color light emitting layer, stacked in an order on the substrate, and at least one first electrical connector electrically connecting the second segment of the first metal layer and the first segment of the second metal layer, and

each of the third color light emitting pixel comprises a third segment of the first metal layer, a third segment of the first color light emitting layer, a second segment of the second metal layer, a second segment of the second color light emitting layer, a third metal layer, and a third color light emitting layer, stacked in an order on the substrate, and at least one second electrical connector electrically connecting the third segment of the first metal layer, the second segment of the second metal layer, and the third metal layer.

2. The scan display system according to claim 1 , wherein:

the plurality of first color light emitting pixels in the first color light emitting pixel array are formed in a single row or in a two-dimensional array having at least two rows and two columns;

the plurality of second color light emitting pixels in the second color light emitting pixel array are formed in a single row or in a two-dimensional array having at least two rows and two columns; and

the plurality of third color light emitting pixels in the third color light emitting pixel array are formed in a single row or in a two-dimensional array having at least two rows and two columns.

3. The scan display system according to claim 2 , wherein:

the first color light emitting pixel array is a 4000×50 array;

the second color light emitting pixel array is a 4000×50 array; and

the third color light emitting pixel array is a 4000×50 array.

4. The scan display system according to claim 1 , wherein:

a pitch of the first color light emitting pixels in a row of the first color light emitting pixel array is less than 5 μm;

a spacing between the first color light emitting pixel array and the second color light emitting pixel array is less than 100 μm;

a pitch of the second color light emitting pixels in a row of the second color light emitting pixel array is less than 5 μm;

a spacing between the second color light emitting pixel array and the third color light emitting pixel array is less than 100 μm; and

a pitch of the third color light emitting pixels in a row of the third color light emitting pixel array is less than 5 μm.

5. The scan display system according to claim 1 , wherein:

an aspect ratio of the first color light emitting pixel array is not less than 10:1;

a size of one of the first color light emitting pixels in a row direction of the first color light emitting pixel array is same as a size of one of the second color light emitting pixels in a row direction of the second color light emitting pixel array; and

the size of the one of the second color light emitting pixels in the row direction of the second color light emitting pixel array is same as a size of one of the third color light emitting pixels in a row direction of the third color light emitting pixel array.

6. The scan display system according to claim 5 , wherein

the aspect ratio of the first color light emitting pixel array is not less than 100:1.

7. The scan display system according to claim 1 , wherein:

each of the first color light emitting pixels comprises a first color light emitting diode;

each of the second color light emitting pixels comprises a second color light emitting diode; and

each of the third color light emitting pixels comprises a third color light emitting diode.

8. The scan display system according to claim 1 , wherein

a total width of the scan needle is not more than 1 mm.

9. The scan display system according to claim 8 , wherein a total aspect ratio of the scan needle is not less than 3:1.

10. The scan display system according to claim 1 , wherein:

a number of the first color light emitting pixels in the first color light emitting pixel array is the same as a number of the second color light emitting pixels in the second color light emitting pixel array; and

the number of the second color light emitting pixels in the second color light emitting pixel array is the same as a number of the third color light emitting pixels in the third color light emitting pixel array.

11. The scan display system according to claim 1 , wherein a shape of each of the first color light emitting pixels, the second color light emitting pixels, and the second color light emitting pixels is circular or rectangular.

12. The scan display system according to claim 1 , wherein:

each of the first color light emitting pixels comprises a red light emitting pixel;

each of the second color light emitting pixels comprises a blue light emitting pixel; and

each of the third color light emitting pixels comprises a green light emitting pixel.

13. The scan display system according to claim 12 , wherein:

an area of one of the first color light emitting pixels is larger than an area of one of the second color light emitting pixels; and

an area of the one of the second light emitting pixels is larger an area of one of the third light emitting pixels.

14. The scan display system according to claim 1 , wherein the scan needle further includes:

light-isolating walls formed on the substrate and between the first color light emitting pixel array and the second color light emitting pixel array, and between the second color light emitting pixel array and the third color light emitting pixel array.

15. The scan display system according to claim 14 , wherein a height of the light-isolating walls is greater than a height of the highest one of the first color light emitting pixels, the second color light emitting pixels, and the third color light emitting pixels.

16. The scan display system according to claim 1 , wherein an area of one of the first color light emitting pixels is the same as an area of one of the second color light emitting pixels, and

the area of one of the second color light emitting pixels is the same as an area of one of the third color light emitting pixels.

17. The scan display system according to claim 1 , wherein:

an area of one of the first color light emitting pixels is larger than an area of one of the second color light emitting pixels; and

the area of the one of the second light emitting pixels is larger an area of one of the third light emitting pixels.

18. The scan display system according to claim 1 , further comprising:

microlenses respectively formed on at least one of the first color light emitting pixels, second color light emitting pixels, and third color light emitting pixels.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 9, 2026
From: JADE BIRD DISPLAY (SHANGHAI) LIMITED
To: HUE INC.
Reel/Frame 075373/0207 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 25, 2020
From: HONG KONG BEIDA JADE BIRD DISPLAY LIMITED
To: JADE BIRD DISPLAY (SHANGHAI) LIMITED
Reel/Frame 054467/0755 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 24, 2020
From: XU, QUNCHAO; LI, QIMING
To: HONG KONG BEIDA JADE BIRD DISPLAY LIMITED
Reel/Frame 054461/0459 →
Continuity (1)
Related Publication 20220044613A1 · Feb 10, 2022