IP Library Granted Patent US 8,417,020
Granted Patent B2
US 8,417,020 · App. 12/638,020 · Granted Apr 9, 2013

Method for detecting the line broken fault of common electrode lines of LCD

Inventors: Xiangfei He (Beijing, CN); Zhilong Peng (Beijing, CN)
Assignee: Beijing BOE Optoelectronics Technology Co., Ltd.
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Quick Facts
Patent No.
US 8,417,020
App. No.
12/638,020
Granted
Apr 9, 2013
Kind
B2
Abstract

A method for detecting line broken faults of common electrode lines of liquid crystal display comprising: loading detection picture to the liquid crystal display, wherein said detection picture comprises at least one detection picture for line broken of common electrode lines, wherein, in the detection picture of same frame, the voltage difference of storage capacitor corresponding to pixel electrode with one polarity is larger than voltage difference of a storage capacitor corresponding to pixel electrode with another polarity; when the detection picture for line broken of common electrode line is displayed on the liquid crystal display, detecting whether there is black line or white line gradually changed in horizontal direction in said detection picture for line broken of common electrode line, and determining line broken fault of common electrode line exists in the liquid crystal display when there is a black line or white line gradually changed in horizontal direction.

Claims (15)

1. A method for detecting line broken faults of common electrode lines of a liquid crystal display, comprising the steps of:

loading a detection picture to a liquid crystal display, wherein said detection picture comprises at least one detection picture for line broken of common electrode lines, which has following features: in the detection picture of the same frame, a voltage difference of a storage capacitor corresponding to a pixel electrode with one polarity is larger than a voltage difference of a storage capacitor corresponding to a pixel electrode with another polarity;

when the detection picture for line broken of common electrode line is displayed on the liquid crystal display, detecting whether there is a black line or white line gradually changed in horizontal direction in said detection picture for line broken of common electrode line, and determining line broken fault of common electrode line exists in the liquid crystal display when there is a black line or white line gradually changed in horizontal direction.

2. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 1 , said detection picture for line broken of common electrode line has following features: in the detection picture of the same frame under the normal white mode, a first pixel electrode voltage is applied to the pixel electrode with positive polarity, and a second pixel electrode voltage is applied to the pixel electrode with negative polarity, and |the first pixel electrode voltage-common electrode voltage|>|the second pixel electrode voltage-common electrode voltage|.

3. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 2 , the relationship between the first pixel electrode voltage and the second pixel electrode voltage is: |the first pixel electrode voltage-common electrode voltage|=(1.5 to 3.5)×|the second pixel electrode voltage-common electrode voltage|.

4. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 3 , the relationship between the first pixel electrode voltage and the second pixel electrode voltage is: |the first pixel electrode voltage-common electrode voltage|=2×|the second pixel electrode voltage-common electrode voltage|.

5. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 4 , the gray level presented by the pixel electrode with the polarity corresponding to the first pixel electrode voltage is L 0 , while the gray level presented by the pixel electrode with the polarity corresponding to the second pixel electrode voltage is L 100 , or the gray level presented by the pixel electrode with the polarity corresponding to the second pixel electrode voltage is L 0 , while the gray level presented by the pixel electrode with the polarity corresponding to the first pixel electrode voltage is L 100 .

6. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 3 , the gray level presented by the pixel electrode with the polarity corresponding to the first pixel electrode voltage is L 0 to L 130 , while the gray level presented by the pixel electrode with the polarity corresponding to the second pixel electrode voltage is L 63 to L 150 .

7. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 3 , the gray level presented by the pixel electrode with the polarity corresponding to the second pixel electrode voltage is L 0 to L 130 , while the gray level presented by the pixel electrode with the polarity corresponding to the first pixel electrode voltage is L 63 to L 150 .

8. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 1 , said detection picture for line broken of common electrode line has following features: in the detection picture of the same frame under the normal white mode, a first pixel electrode voltage is applied to the pixel electrode with negative polarity, and a second pixel electrode voltage is applied to the pixel electrode with positive polarity, and |the first pixel electrode voltage-common electrode voltage|>|the second pixel electrode voltage-common electrode voltage|.

9. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 2 , the relationship between the first pixel electrode voltage and the second pixel electrode voltage is: |the first pixel electrode voltage-common electrode voltage|=(1.5 to 3.5)×|the second pixel electrode voltage-common electrode voltage|.

10. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 1 , said detection picture for line broken of common electrode line has following features: in the detection picture of the same frame under the normal black mode, a second pixel electrode voltage is applied to the pixel electrode with positive polarity, and a first pixel electrode voltage is applied to the pixel electrode with negative polarity, and |the first pixel electrode voltage-common electrode voltage|>|the second pixel electrode voltage-common electrode voltage|.

11. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 2 , the relationship between the first pixel electrode voltage and the second pixel electrode voltage is: |the first pixel electrode voltage-common electrode voltage|=(1.5 to 3.5)×|the second pixel electrode voltage-common electrode voltage|.

12. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 1 , said detection picture for line broken of common electrode line has following features: in the detection picture of the same frame under the normal black mode, a second pixel electrode voltage is applied to the pixel electrode with negative polarity, and a first pixel electrode voltage is applied to the pixel electrode with positive polarity, and |the first pixel electrode voltage-common electrode voltage|>|the second pixel electrode voltage-common electrode voltage|.

13. The method for detecting line broken faults of common electrode lines of a liquid crystal display as claimed in claim 2 , the relationship between the first pixel electrode voltage and the second pixel electrode voltage is: |the first pixel electrode voltage-common electrode voltage|=(1.5 to 3.5)×|the second pixel electrode voltage-common electrode voltage|.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2015
From: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD
To: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO. LTD
Reel/Frame 036644/0601 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2009
From: HE, XIANGFEI; PENG, ZHILONG
To: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 023653/0901 →
Priority Claims (1)
CN 2008 1 0240378 · Dec 18, 2008 · national
Continuity (1)
Related Publication 20100158347A1 · Jun 24, 2010