Claims
- 1. A scrolling display method, comprising the following steps of:
- providing a light emitting cell column of a first color wherein m light emitting cells of the first color are arranged linearly with a small distance a left therebetween, a light emitting cell column of a second color wherein m light emitting cells of the second color are arranged linearly with the small distance a left therebetween, and arranging said light emitting cell column of the first color and said light emitting cell column of the second color in parallel to each other with a distance b left therebetween which is substantially equal to the distance a to form a light emitting cell set;
- preparing and arranging n sets of said light emitting cell column substantially in parallel to each other in a great pitch greater than substantially three times the distance b such that, by the arrangement, a physical screen wherein the n light emitting cell columns of the first color and the n light emitting cell columns of the second color are connected to each other like a belt and each column includes m dots while each row includes 2n dots;
- producing bit map image data with regarding the physical screen as an imaginary screen of a pixel construction wherein one column includes m dots and one row includes w dots, so that a multiple color image may be displayed in the dot density on the imaginary screen, the image data being data of separated colors of image data of the first color and image data of the second color, w being an integer equal to or larger than (3n-1)
- arranging the n sets of light emitting cell column which form said physical screen in an average and substantially uniform dispersion in the imaginary screen, where the light emitting cell column of the first color and the light emitting cell column of the second color in one of said light emitting cell column sets correspond to two pixel columns adjacent each other in the imaginary screen;
- when it is assumed that bit map image data which includes m dots in one column and includes w dots in on row are expanded on the imaginary screen to display the same, distributing data for n columns selected at intervals from among the image data of the first color for the w columns to said n sets of light emitting cell columns of the first color so that the m light emitting cells of the first color in each of the selected n columns are controlled and driven with the data for m dots of each of the selected columns, and distributing data for n columns selected at intervals from among the image data of the second color for the w columns to said n light emitting cell columns of the second color so that the m light emitting cells of the second color in each of the selected columns are controlled and driven with the data for m dots for each of the selected columns;
- in the control wherein data for n columns are selected at intervals from the image data of the first and second colors for the w columns and distributed to the n light emitting cell columns of the first and second colors, respectively, setting the distance between the columns selected at intervals corresponding to the arrangement distance between said light emitting cell column sets arranged dispersedly on the imaginary screen;
- in one of said light emitting cell column sets, when the light emitting cell column of the first color is controlled and driven with data of the first color of a certain column selected at intervals, controlling to drive the light emitting cell column of the second color with data of the second color for a column adjacent the selected column; and
- repeatedly conducting a data processing wherein the light emitting cells of the individual light emitting cell column sets are controlled and driven with the image data selected at intervals while the bit map image data to be expanded on the imaginary screen are successively shifted by one pixel in a direction of a row so that each column of the bit map image scrolls while being alternately displayed by the light emitting cell column of the first color and the light emitting cell column of the second color, so that a scrolling multiple color image having a density if m dots per one column and w dots per one row is visually observed due to an after-image effect of a person who watches the imaginary screen.
- 2. A scrolling display method, comprising the following steps of:
- providing a light emitting cell column of a first color wherein m light emitting cells of the first color are arranged linearly with a small distance a left therebetween, a light emitting cell column of a second color wherein m light emitting cells of the second color are arranged linearly with the small distance a left therebetween, and, besides, a light emitting cell column of a third color wherein m light emitting cells of the third color are arranged linearly with the small distance a left therebetween, and arranging said light emitting cell column of the first color, said light emitting cell column of the second color, and said light emitting cell column of the third color in parallel to each other with a distance b left therebetween which is substantially equal to the distance a to form a light emitting cell set;
- preparing and arranging n sets of said light emitting cell column substantially in parallel to each other in a great pitch greater than substantially four times the distance b such that, by the arrangement, a physical screen wherein the n light emitting cell columns of the first color, the n light emitting cell columns of the second color, and the n light emitting cell columns of the third color are connected to each other like a belt and each column includes m dots while each row includes 3n dots;
- producing bit map image data with regarding the physical screen as an imaginary screen of a pixel construction wherein one column includes m dots and one row includes w dots, so that a multiple color image may be displayed in the dot density on the imaginary screen, the image data being data of separated colors of image data of the first color, image data of the second color and image data of the third color, w being a integer equal to or larger than (4n-1);
- arranging the n light emitting cell column sets which form said physical screen in an average and substantially uniform dispersion in the imaginary screen, so that the light emitting cell column of the first color, the light emitting cell column of the second color, and the light emitting cell column of the third color in one of said light emitting cell column sets correspond to three pixel columns adjacent each other in the imaginary screen;
- when it is assumed that bit map image data which includes m dots in one column and includes w dots in one row are expanded on the imaginary screen to display the same, distributing data for n columns selected at intervals from among the image data of the first color for the w columns to said n light emitting cell columns of the first color so that the m light emitting cells of the first color in each of the selected n columns are controlled and driven with the data for m dots of each of the selected columns, distributing data for n columns selected at intervals from among the image data of the second color for the w columns to said n light emitting cell columns of the second color so that the m light emitting cells of the second color in each of the selected columns are controlled and driven with the data for m dots for each of the selected columns, and distributing data for n columns selected at intervals from among the image data of the third color for the w columns to said n light emitting cell columns of the third color so that the m light emitting cells of the third color in each of the selected columns are controlled and driven with the data for m dots for each of the selected columns;
- in the control wherein data for n columns are selected at intervals from the image data of the first, second, and third colors for the w columns and distributed to the n light emitting cell columns of the first, second, and third colors, respectively, setting the distance between the columns selected at intervals corresponding to the arrangement distance between said light emitting cell column sets arranged dispersedly on the imaginary screen;
- in one of said light emitting cell column sets, when the light emitting cell column of the first color is controlled and driven with data of the first color of a certain column selected at intervals, controlling to drive the light emitting cell column of the second color with data of the second color for a column adjacent the selected column, and controlling to drive the light emitting cell column of the third color with data of the third color for a column further adjacent the selected column; and
- repeatedly conducting a data processing wherein the light emitting cells of the individual light emitting cell column sets are controlled and driven with the image data selected at intervals while the bit map image data to be expanded on the imaginary screen are successively shifted by one pixel in a direction of a row so that each column of the bit map image scrolls while being sequentially displayed by the light emitting cell column of the third color, the light emitting cell column of the second color, and the light emitting cell column of the first color, so that a scrolling multiple color image having a density of m dots per one column and w dots per one row is visually observed due to an after-image effect of a person who watches the imaginary screen.
- 3. A scrolling display apparatus which performs scrolling display in accordance with the method according to claim 1 comprising:
- the n sets of light emitting cell columns;
- a memory in which bit map image data to be displayed are stored;
- data processing means for reading out the data from said memory in accordance with an algorithm for selection at intervals and distributing the data to said light emitting cell columns; and
- driving means for latching the data distributed to said light emitting cell columns by said data processing means to drive the light emitting cells of the columns.
- 4. A scrolling display apparatus which performs scrolling display in accordance with the method according to claim 2 comprising:
- the n sets of light emitting cell columns;
- a memory in which bit map image data to be displayed are stored;
- data processing means for reading out the data from said memory in accordance with an algorithm for selection at intervals and distributing the data to said light emitting cell columns; and
- driving means for latching the data distributed to said light emitting cell columns by said data processing means to drive the light emitting cells of the columns.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8-126718 |
May 1996 |
JPX |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a U.S. national application of international application serial No. PCT/JP97/01655 filed May 16, 1997, which claims priority to Japanese Serial No. 8-126718 filed May 22, 1996.
PCT Information
Filing Document |
Filing Date |
Country |
Kind |
102e Date |
371c Date |
PCT/JP97/01655 |
5/16/1997 |
|
|
1/6/1998 |
1/6/1998 |
Publishing Document |
Publishing Date |
Country |
Kind |
WO97/44773 |
11/27/1997 |
|
|
US Referenced Citations (5)
Foreign Referenced Citations (8)
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Jul 1996 |
JPX |
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May 1997 |
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