DocumentCode :
52947
Title :
A 2D-3D Switchable Driving Method for Reducing Power Consumption of Thin-Film Transistor Liquid Crystal Display TV With Film-Type Patterned Retarder
Author :
Do-Sung Kim ; Hee-Young Chae ; Sung-Hak Jo ; Oh-Kyong Kwon
Author_Institution :
Dept. of Electron. & Comput. Eng., Hanyang Univ., Seoul, South Korea
Volume :
10
Issue :
4
fYear :
2014
fDate :
Apr-14
Firstpage :
299
Lastpage :
307
Abstract :
This paper presents a new 2D-3D switchable driving method for a 3D thin-film transistor liquid crystal display (TFT-LCD) TV. The proposed driving method, which uses a film-type patterned retarder (FPR), can reduce unnecessary power consumption while displaying 2D images. The proposed driving method can change a part of a pixel according to the driving mode; the part is operated as a black matrix in a 3D display mode, whereas in a 2D display mode, the part is operated as a normal pixel. To realize the proposed driving method without increasing the data signal rates, the number of gate driver integrated circuits (ICs), and the bezel size of the panel, a novel pixel structure and an integrated a-Si:H gate driver, which can be implemented in a small size, are developed. The power consumption of the proposed driving method measured at the full white gray level is 67 W in a 47-in full-high-definition (FHD) TFT-LCD TV. This result shows that the power consumption of the proposed driving method decreases by 28% compared with that of the conventional driving method in the 2D display mode.
Keywords :
amorphous semiconductors; driver circuits; elemental semiconductors; hydrogen; liquid crystal displays; matrix algebra; optical retarders; power consumption; silicon; television displays; thin film circuits; thin film transistors; three-dimensional displays; three-dimensional television; 2D image display mode; 2D-3D switchable driving method; 3D TFT-LCD TV; 3D image display mode; FHD; FPR; IC; Si:H; black matrix; data signal rate; driving mode; film type patterned retarder; full high definition; gate driver integrated circuits; integrated a-Si:H gate driver; pixel structure; power 67 W; power consumption reduction; thin film transistor liquid crystal display TV; Driver circuits; Logic gates; Power demand; Switches; TV; Thin film transistors; Three-dimensional displays; 2D-3D switchable driving; 3D TV; film-type patterned retarder (FPR); integrated a-Si:H gate driver; power consumption;
fLanguage :
English
Journal_Title :
Display Technology, Journal of
Publisher :
ieee
ISSN :
1551-319X
Type :
jour
DOI :
10.1109/JDT.2014.2298917
Filename :
6705584
Link To Document :
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