IP Library Granted Patent US 8,648,884
Granted Patent B2
US 8,648,884 · App. 12/505,010 · Granted Feb 11, 2014

Display device

Inventor: Shuuichirou Matsumoto (Mobara, JP)
Assignees: Japan Display Inc.; Panasonic Liquid Crystal Display Co., Ltd.
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Quick Facts
Patent No.
US 8,648,884
App. No.
12/505,010
Granted
Feb 11, 2014
Kind
B2
Abstract

A display device includes a display panel having a plurality of pixels arranged in a matrix, a printed circuit board connected to the display panel, and a first drive circuit and a second drive circuit mounted on the display panel or the printed circuit board, in which each of the first drive circuit and the second drive circuit includes a gray scale voltage generating circuit generating a gray scale voltage to be applied to a first electrode of the pixel based on a gray scale reference voltage and a reference gray scale voltage circuit generating the gray scale reference voltage, and each of the gray scale voltage generating circuit of the first drive circuit and the gray scale voltage generating circuit of the second drive circuit generates the gray scale voltage based on the gray scale reference voltage generated in the reference gray scale voltage circuit of the first drive circuit.

Claims (72)

1. A display device comprising:

a display panel having a plurality of pixels arranged in a matrix, wherein the matrix includes a plurality of video signal data lines and a plurality of scanning signal lines, and wherein each of the pixels is coupled to one of the video signal data lines and one of the scanning signal lines;

a printed circuit board connected to the display panel; and

a first drive circuit and a second drive circuit mounted on the display panel or the printed circuit board, wherein the first drive circuit is connected to a first group of the video signal data lines to provide video signals to a first group of the pixels via the first group of video signal data data lines, and wherein the second drive circuit is connected to a second group of the video signal lines, different from the first group of video signal data lines, to provide video signals to a second group of the pixels via the second group of video signal data lines,

each of the first drive circuit and the second drive circuit including

a gray scale voltage generating circuit generating a gray scale voltage based on a gray scale reference voltage and

a reference gray scale voltage circuit generating the gray scale reference voltage, wherein

the gray scale voltage generating circuit of the second drive circuit is connected to the reference gray scale voltage circuit of the first drive circuit, and

each of the gray scale voltage generating circuit of the first drive circuit and the gray scale voltage generating circuit of the second drive circuit are configured to generate the gray scale voltage based on the gray scale reference voltage generated in the reference gray scale voltage circuit of the first drive circuit rather than based on the gray scale reference voltage generated in the reference gray scale voltage circuit of the second drive circuit.

2. A display device according to claim 1 , wherein

the first drive circuit and the second drive circuit each operate

in a master mode where the reference gray scale voltage circuit provided in the drive circuit is used or

in a slave mode where a gray scale reference voltage output from the other drive circuit is input, and

the master mode or the slave mode is selected in accordance with the connecting pattern of external terminals of the drive circuit.

3. A display device according to claim 1 , wherein

the reference gray scale voltage circuit of the first drive circuit and the gray scale voltage generating circuit of the second drive circuit are connected to each other via a wiring of the display panel and a wiring of the printed circuit board.

4. A display device according to claim 1 , wherein

the reference gray scale voltage circuit of the first drive circuit and the gray scale voltage generating circuit of the first drive circuit are connected to each other via a wiring of the display panel and a wiring of the printed circuit board, and

the reference gray scale voltage circuit of the first drive circuit and the gray scale voltage generating circuit of the second drive circuit are connected to each other via the wiring of the display panel and the wiring of the printed circuit board.

5. A display device according to claim 1 , wherein

the display panel is a liquid crystal display panel having a liquid crystal composition sealed between a pair of substrates.

6. A display device comprising:

a display panel having a plurality of pixels arranged in a matrix, wherein the matrix includes a plurality of video signal data lines and a plurality of scanning signal lines, and wherein each of the pixels is coupled to one of the video signal data lines and one of the scanning signal lines,

the plurality of pixels each having a pixel electrode;

a printed circuit board connected to the display panel; and

a first drive circuit and a second drive circuit mounted on the display panel or the printed circuit board, wherein the first drive circuit is connected to a first group of the video signal data lines to provide video signals to a first group of the pixels via the first group of video signal data lines, and wherein the second drive circuit is connected to a second group of the video signal data lines, different from the first group of video signal data lines, to provide video signals to a second group of the pixels via the second group of video signal data lines,

each of the first drive circuit and the second drive circuit including

a gray scale voltage generating circuit generating a gray scale voltage to be applied to the pixel electrode based on a gray scale reference voltage,

an output amplifier supplying the gray scale voltage generated in the gray scale voltage generating circuit to the pixel electrode,

a bias line configured for supplying a bias current to the output amplifier, and

a bias circuit generating a bias current, wherein

the bias circuit of the first drive circuit includes a terminal outputting the bias current generated by the bias circuit of the first drive circuit,

the bias circuit of the second drive circuit is configured to connect the bias line of the second drive circuit to the terminal outputting the bias current generated by the bias circuit of the first drive circuit, and

based on the connection of bias line of the bias circuit of the second drive circuit to the terminal, each of the output amplifier of the first drive circuit and the output amplifier of the second drive circuit is input with the bias current generated by the bias circuit of the first drive circuit rather than being input with bias current generated by the bias circuit of the second drive circuit.

7. A display device according to claim 6 , wherein

the first drive circuit and the second drive circuit each can select a master mode or a slave mode,

the bias line is connected to the bias circuit provided in the drive circuit in the master mode, and

the bias line is connected to an input terminal of a reference voltage output from the other drive circuit in the slave mode.

8. A display device according to claim 6 , wherein

the first drive circuit has an output terminal outputting a reference current output from the bias circuit, and

the supply of the reference voltage from the first drive circuit to the second drive circuit is carried out with the reference current output from the bias circuit.

9. A display device according to claim 6 , wherein

the first drive circuit includes a band-gap circuit generating a reference voltage.

10. A display device according to claim 6 , wherein

the display panel is a liquid crystal display panel having a liquid crystal composition sealed between a pair of substrates.

11. A display device comprising:

a display panel having a plurality of pixels arranged in a matrix, wherein the matrix includes a plurality of video signal data lines and a plurality of scanning signal lines, and wherein each of the pixels is coupled to one of the video signal data lines and one of the scanning signal lines;

the plurality of pixels each having a pixel electrode,

a printed circuit board connected to the display panel; and

a first drive circuit and a second drive circuit mounted on the display panel or the printed circuit board, wherein the first drive circuit is connected to a first group of the video signal data lines to provide video signals to a first group of the pixels via the first group of video signal data lines, and wherein the second drive circuit is connected to a second group of the video signal data lines, different from the first group of video signal data lines, to provide video signals to a second group of the pixels via the second group of video signal data lines,

each of the first drive circuit and a second drive circuit including

a gray scale voltage generating circuit generating a gray scale voltage to be applied to the pixel electrode based on a gray scale reference voltage,

a reference gray scale voltage circuit generating the gray scale reference voltage, and

a gamma correction circuit correcting a potential of the gray scale voltage generated in the gray scale voltage generating circuit, wherein

the gamma correction circuit of the second drive circuit is connected to the reference gray scale voltage circuit of the first drive circuit, and

each of the gamma correction circuit of the first drive circuit and the gamma correction circuit of the second drive circuit are configured to correct the potential of the gray scale voltage based on the gray scale reference voltage generated in the reference gray scale voltage circuit of the first drive circuit rather than based on the gray scale reference voltage generated in the reference gray scale voltage circuit of the second drive circuit.

12. A display device according to claim 11 , wherein

the first drive circuit and the second drive circuit each can select a master mode or a slave mode,

the reference gray scale voltage circuit provided in the drive circuit and the gamma correction circuit are connected to each other in the master mode, and

an input terminal of a gray scale reference voltage output from the other drive circuit is connected to the gamma correction circuit in the salve mode.

13. A display device according to claim 11 , wherein

the reference gray scale voltage circuit of the first drive circuit and the gamma correction circuit of the second drive circuit are connected to each other via a wiring of the display panel and a wiring of the printed circuit board.

14. A display device according to claim 11 , wherein

the reference gray scale voltage circuit and gamma correction circuit both in the first drive circuit are connected to each other via a wiring of the display panel and a wiring of the printed circuit board, and

the reference gray scale voltage circuit of the first drive circuit and the gamma correction circuit of the second drive circuit are connected to each other via the wiring of the display panel and the wiring of the printed circuit board.

15. A display device according to claim 11 , wherein

the gamma correction circuit includes a variable resistance circuit.

16. A display device according to claim 11 , wherein

the display panel is a liquid crystal display panel having a liquid crystal composition sealed between a pair of substrates.

17. A display device according to claim 1 , further comprising a scanning signal line drive circuit coupled to said scanning signal lines to provide scanning signals to the first and second groups of pixels via the scanning signal lines.

18. A display device according to claim 6 , further comprising a scanning signal line drive circuit coupled to said scanning signal lines to provide scanning signals to the first and second groups of pixels via the scanning signal lines.

19. A display device according to claim 11 , further comprising a scanning signal line drive circuit coupled to said scanning signal lines to provide scanning signals to the first and second groups of pixels via the scanning signal lines.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2025
From: JAPAN DISPLAY INC
To: MAGNOLIA PURPLE CORPORATION
Reel/Frame 071890/0202 →
NUNC PRO TUNC ASSIGNMENT Recorded Nov 17, 2023
From: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 065615/0327 →
CHANGE OF NAME Recorded Dec 26, 2013
From: JAPAN DISPLAY EAST INC.
To: JAPAN DISPLAY INC.
Reel/Frame 031869/0448 →
CHANGE OF NAME Recorded Dec 26, 2013
From: HITACHI DISPLAYS, LTD.
To: JAPAN DISPLAY EAST INC.
Reel/Frame 031869/0405 →
COMPANY SPLIT PLAN TRANSFERRING FIFTY (50) PERCENT SHARE IN PATENT APPLICATIONS Recorded Oct 20, 2011
From: HITACHI DISPLAYS, LTD.
To: IPS ALPHA SUPPORT CO., LTD.
Reel/Frame 027092/0684 →
MERGER Recorded Oct 20, 2011
From: IPS ALPHA SUPPORT CO., LTD.
To: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
Reel/Frame 027093/0937 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2009
From: MATSUMOTO, SHUUICHIROU
To: HITACHI DISPLAYS, LTD.
Reel/Frame 022970/0862 →
Priority Claims (1)
JP 2008-185719 · Jul 17, 2008 · national
Continuity (1)
Related Publication 20100013869A1 · Jan 21, 2010