IP Library Granted Patent US 9,305,520
Granted Patent B2
US 9,305,520 · App. 13/740,683 · Granted Apr 5, 2016

Image display apparatus, method of driving image display apparatus, grayscale conversion program, and grayscale conversion apparatus

Inventors: Amane Higashi (Aichi, JP); Tsutomu Harada (Kanagawa, JP); Yasuyuki Teranishi (Aichi, JP); Masaya Tamaki (Kanagawa, JP)
Assignee: Japan Display Inc.
G09G5/10G09G3/2059G09G2340/0428
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Quick Facts
Patent No.
US 9,305,520
App. No.
13/740,683
Granted
Apr 5, 2016
Kind
B2
Abstract

An image display apparatus includes: a grayscale conversion device configured to perform grayscale conversion processing on input data to output data; and a display device configured to operate in accordance with the output data to display an image by pixels arranged in a two-dimensional matrix state, wherein the grayscale conversion device is configured to perform first error diffusion processing for converting N 0 -grayscale input data into N 1 -grayscale data (2<N 1 <N 0 ), to perform second error diffusion processing for converting data having a predetermined grayscale or less into lower grayscale data having N2 grayscales (1<N 2 <N 1 ), to perform third error diffusion processing for converting data having the predetermined grayscale or more into higher grayscale data having N3 grayscales (1<N 3 <N 1 ), and to combine the lower grayscale data and the higher grayscale data to generate N 4 -grayscale output data (1<N 4 <N 1 ).

Claims (23)

1. An image display apparatus comprising:

a grayscale conversion device configured to perform grayscale conversion processing on input data and to output grayscale-converted output data; and

a display device configured to operate in accordance with the output data from the grayscale conversion device and to display an image by pixels arranged in a two-dimensional matrix state,

wherein the grayscale conversion device is configured to perform first error diffusion processing for converting N 0 -grayscale input data into N 1 -grayscale data (note that N 0 and N 1 are integers that satisfy 2<N 1 <N 0 ), next,

to perform second error diffusion processing for converting data having a predetermined grayscale or less out of the N 1 -grayscale data into lower grayscale data having N2 grayscales (note that N 2 is an integer that satisfies 1<N 2 <N 1 ), to perform third error diffusion processing for converting data having the predetermined grayscale or more out of the N 1 -grayscale data into higher grayscale data having N3 grayscales (note that N 3 is an integer that satisfies 1<N 3 <N 1 ), and then

to combine the lower grayscale data and the higher grayscale data to generate N 4 -grayscale output data (note that N 4 is an integer that satisfies 1<N 4 <N 1 ).

2. The image display apparatus according to claim 1 ,

wherein when one piece of input data corresponds to both lower grayscale data and higher grayscale data, the grayscale conversion device is configured to select the higher grayscale data, and to generate output data.

3. The image display apparatus according to claim 1 ,

wherein the grayscale conversion device is configured to generate output data having been subjected to grayscale conversion for each of a plurality of kinds of input data associated with a corresponding one of a plurality of primary color displays.

4. A method of driving an image display apparatus including a grayscale conversion device configured to perform grayscale conversion processing on input data and to output grayscale-converted output data, and a display device configured to operate in accordance with the output data from the grayscale conversion device and to display an image by pixels arranged in a two-dimensional matrix state, the method causes the grayscale conversion device to perform processing comprising:

performing first error diffusion processing for converting N 0 -grayscale input data into N 1 -grayscale data (note that N 1 and N1 are integers that satisfy 2<N 1 <N 0 ); next,

performing second error diffusion processing for converting data having a predetermined grayscale or less out of the N 1 -grayscale data into lower grayscale data having N2 grayscales (note that N 2 is an integer that satisfies 1<N 2 <N 1 ); and performing third error diffusion processing for converting data having the predetermined grayscale or more out of the N 1 -grayscale data into higher grayscale data having N3 grayscales (note that N 3 is an integer that satisfies 1<N 3 <N 1 ); and then

combining the lower grayscale data and the higher grayscale data to generate N 4 -grayscale output data (note that N 4 is an integer that satisfies 1<N 4 <N 1 ).

5. A grayscale conversion program executed on a grayscale conversion device configured to perform grayscale conversion processing on input data and to output grayscale-converted output data, the grayscale conversion program performs processing comprising:

performing first error diffusion processing for converting N 0 -grayscale input data into N 1 -grayscale data (note that N 0 and N1 are integers that satisfy 2<N 1 <N 0 ); next,

performing second error diffusion processing for converting data having a predetermined grayscale or less out of the N 1 -grayscale data into lower grayscale data having N2 grayscales (note that N 2 is an integer that satisfies 1<N 2 <N 1 ) and performing third error diffusion processing for converting data having the predetermined grayscale or more out of the N 1 -grayscale data into higher grayscale data having N3 grayscales (note that N 3 is an integer that satisfies 1<N 3 <N 1 ); and then

combining the lower grayscale data and the higher grayscale data to generate N 4 -grayscale output data (note that N 4 is an integer that satisfies 1<N 4 <N 1 ).

6. A grayscale conversion apparatus including a grayscale conversion device configured to perform grayscale conversion processing on input data and to output grayscale-converted output data,

the grayscale conversion processing comprising:

performing first error diffusion processing for converting N 0 -grayscale input data into N 1 -grayscale data (note that N 0 and N1 are integers that satisfy 2<N 1 <N 0 ); next,

performing second error diffusion processing for converting data having a predetermined grayscale or less out of the N 1 -grayscale data into lower grayscale data having N2 grayscales (note that N 2 is an integer that satisfies 1<N 2 <N 1 ); and performing third error diffusion processing for converting data having the predetermined grayscale or more out of the N 1 -grayscale data into higher grayscale data having N3 grayscales (note that N 3 is an integer that satisfies 1<N 3 <N 1 ); and then

combining the lower grayscale data and the higher grayscale data to generate N 4 -grayscale output data (note that N 4 is an integer that satisfies 1<N 4 <N 1 ).

Assignments (2)
CHANGE OF NAME Recorded Dec 2, 2015
From: JAPAN DISPLAY WEST INC.
To: JAPAN DISPLAY INC.
Reel/Frame 037190/0139 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2013
From: HIGASHI, AMANE; HARADA, TSUTOMU; TERANISHI, YASUYUKI; TAMAKI, MASAYA
To: JAPAN DISPLAY WEST INC.
Reel/Frame 029740/0532 →
Priority Claims (1)
JP 2012-039705 · Feb 27, 2012 · national
Continuity (1)
Related Publication 20130222439A1 · Aug 29, 2013