IP Library Granted Patent US 9,773,852
Granted Patent B2
US 9,773,852 · App. 14/597,232 · Granted Sep 26, 2017

Organic electroluminescence display

Inventors: Chang-Ming Chiu (Shanghai, CN); Ying-Hsiang Tseng (Shanghai, CN)
Assignee: EVERDISPLAY OPTRONICS (SHANGHAI) LIMITED
H01L27/3276H01L27/3262G09G3/3233G09G2300/0426
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Quick Facts
Patent No.
US 9,773,852
App. No.
14/597,232
Granted
Sep 26, 2017
Kind
B2
Abstract

An organic electroluminescence display includes a plurality of scan lines, a plurality of data lines, at least one first pixel circuit, and at least one second pixel circuit. The scan lines and the data lines cross. Each of the first and second pixel circuits is electrically connected to one of the scan lines and one of the data lines. The first pixel circuit includes at least one first driving transistor having a first channel in a first channel direction. The second pixel circuit includes at least one second driving transistor having a second channel in a second channel direction. The second channel direction is different from that of the first channel direction.

Claims (32)

1. An organic electroluminescence display comprising:

a plurality of scan lines;

a plurality of data lines crossing the plurality of scan lines;

a plurality of first pixel circuits forming a plurality of at least 2×2 first pixel circuit arrays, each of the first pixel circuits electrically connected to one of the plurality of scan lines and one of the plurality of data lines, wherein each of the first pixel circuit comprises:

at least one first organic light-emitting diode; and

at least one first driving transistor configured to actuate the at least one first organic light-emitting diode, wherein the at least one first driving transistor has a first channel in a first channel direction; and

a plurality of second pixel circuits forming a plurality of at least 2×2 second pixel circuit arrays, each of the second pixel circuits electrically connected to one of the plurality of scan lines and one of the plurality of data lines, wherein the at least one second pixel circuit comprises:

at least one second organic light-emitting diode; and

at least one second driving transistor configured to actuate the at least one second organic light-emitting diode, wherein the at least one second driving transistor has a second channel in a second channel direction, and the second channel direction is different from that of the first channel direction, wherein the at least 2×2 first pixel circuit arrays and the at least 2×2 second pixel circuit arrays are interlaced arranged in a repeated pattern along the first channel direction and the second channel direction.

2. The organic electroluminescence display of claim 1 , wherein the at least one first driving transistor has a first source electrode and a first drain electrode, the first channel electrically connects the first source electrode and the first drain electrode, and the first channel direction extends across the first source electrode and the first drain electrode; and

wherein the at least one second driving transistor has a second source electrode and a second drain electrode, the second channel electrically connects the second source electrode and the second drain electrode, and the second channel direction extends across the second source electrode and the second drain electrode.

3. The organic electroluminescence display of claim 1 , wherein the first channel direction is substantially orthogonal to the second channel direction.

4. The organic electroluminescence display of claim 1 , wherein the first channel and the second channel are formed by excimer laser annealing (ELA), the ELA has a laser scanning direction, and the first channel direction is different from that of the laser scanning direction.

5. The organic electroluminescence display of claim 4 , wherein the second channel direction is substantially parallel with the laser scanning direction.

6. The organic electroluminescence display of claim 1 , wherein the first channel and the second channel are formed by excimer laser annealing (ELA), the ELA has a laser scanning direction, and the first channel direction is substantially orthogonal to the laser scanning direction.

7. The organic electroluminescence display of claim 6 , wherein the second channel direction is substantially parallel with the laser scanning direction.

8. An organic electroluminescence display comprising:

a plurality of scan lines;

a plurality of data lines crossing the plurality of scan lines;

a plurality of first pixel circuits forming a plurality of at least 2×2 first pixel circuit arrays, each of the first pixel circuits electrically connected to one of the plurality of scan lines and one of the plurality of data lines, wherein the at least one first pixel circuit comprises:

at least one first organic light-emitting diode; and

at least one first driving transistor configured to actuate the at least one first organic light-emitting diode, wherein the at least one first driving transistor has a first channel in a first lengthwise direction; and

a plurality of second pixel circuits forming a plurality of at least 2×2 second pixel circuit arrays, each of the second pixel circuits electrically connected to one of the plurality of scan lines and one of the plurality of data lines, wherein the at least one second pixel circuit comprises:

at least one second organic light-emitting diode; and

at least one second driving transistor configured to actuate the at least one second organic light-emitting diode, wherein the at least one second driving transistor has a second channel in a second lengthwise direction, and the first lengthwise direction and the second lengthwise direction intersect, wherein the at least 2×2 first pixel circuit arrays and the at least 2×2 second pixel circuit arrays are interlaced arranged in a repeated pattern along the first lengthwise direction and the second lengthwise direction.

9. The organic electroluminescence display of claim 8 , wherein the at least one first driving transistor has a first source electrode and a first drain electrode, the first channel electrically connects the first source electrode and the first drain electrode, and the first lengthwise direction extends across the first source electrode and the first drain electrode; and

wherein the at least one second driving transistor has a second source electrode and a second drain electrode, the second channel electrically connects the second source electrode and the second drain electrode, and the second lengthwise direction extends across the second source electrode and the second drain electrode.

10. The organic electroluminescence display of claim 8 , wherein the first lengthwise direction is substantially orthogonal to the second lengthwise direction.

11. The organic electroluminescence display of claim 8 , wherein the first channel and the second channel are formed by excimer laser annealing (ELA), the ELA has a laser scanning direction, and the first lengthwise direction and the laser scanning direction intersect.

12. The organic electroluminescence display of claim 11 , wherein the second lengthwise direction is substantially parallel with the laser scanning direction.

13. The organic electroluminescence display of claim 8 , wherein the first channel and the second channel are formed by excimer laser annealing (ELA), the ELA has a laser scanning direction, and the first lengthwise direction is substantially orthogonal to the laser scanning direction.

14. The organic electroluminescence display of claim 13 , wherein the second lengthwise direction is substantially parallel with the laser scanning direction.

Assignments (2)
CHANGE OF NAME Recorded Aug 3, 2020
From: EVERDISPLAY OPTRONICS (SHANGHAI) LIMITED
To: EVERDISPLAY OPTRONICS (SHANGHAI) CO., LTD.
Reel/Frame 053379/0236 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 15, 2015
From: CHIU, CHANG-MING; TSENG, YING-HSIANG
To: EVERDISPLAY OPTRONICS (SHANGHAI) LIMITED
Reel/Frame 034732/0565 →
Priority Claims (1)
CN 2014 1 0394808 · Aug 12, 2014 · national
Continuity (1)
Related Publication 20160049455A1 · Feb 18, 2016