Temporally dispersed modulation method
A display system includes a controller for carrying out a data bit modulation sequence for driving a display pixel. The controller applies a plurality of sets of data bits for representing a data word and temporarily dispersing the sets for sequentially writing to the display pixel whereby the display pixel displaying a temporarily dispersed intensity. The display system may be wide varieties of display systems including but not limited to a liquid crystal on silicon display, a digital micromirror display, a plasma panel display, or a direct view liquid crystal device.
1 . A data bit modulation sequence for driving a display pixel wherein:
a plurality of sets of data bits representing a data word wherein said sets are temporarily dispersed for sequentially writing to said display pixel whereby said display pixel displaying an temporarily dispersed intensity.
2 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets.
3 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are binary weighted sets.
4 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are binary weighted sets and time contiguously written to said display pixel.
5 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are binary weighted sets and time contiguously written to said display pixel near a middle portion of a sequence for writing said sets to said display pixel.
6 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets and dispersed in a first half and a second half of a sequence for writing said sets to said display pixel.
7 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets wherein said equally weighted sets are adjacent sets in said data word.
8 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets wherein said equally weighted sets are adjacent sets in said data word and time-contiguously written to said display pixel.
9 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets wherein none of said equally weighted sets are time-contiguously written to said display pixel.
10 . The data bit modulation sequence of claim 1 wherein:
at least two pairs of said sets of data bits are equally weighted sets wherein said two pairs of equally weighted sets are adjacent sets in said data word and each of said pairs are time-contiguously written to said display pixel.
11 . The data bit modulation sequence of claim 1 wherein:
at least two of said sets of data bits are equally weighted sets and at least two of said sets of data bits are binary weighted sets wherein said binary weighted sets are temporarily dispersed between said equally weighted sets.
12 . A display system having a controller for carrying out a data bit modulation sequence for driving a display pixel wherein:
said controller applying a plurality of sets of data bits for representing a data word and temporarily dispersing said sets for sequentially writing to said display pixel whereby said display pixel displaying an temporarily dispersed intensity.
13 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets.
14 . The display system of claim 12 wherein:
at least two of said sets of data bits are binary weighted sets.
15 . The display system of claim 12 wherein:
at least two of said sets of data bits are binary weighted sets and time contiguously written to said display pixel.
16 . The display system of claim 12 wherein:
at least two of said sets of data bits are binary weighted sets and time contiguously written to said display pixel near a middle portion of a sequence for writing said sets to said display pixel.
17 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets and dispersed in a first half and a second half of a sequence for writing said sets to said display pixel.
18 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets wherein said equally weighted sets are adjacent sets in said data word.
19 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets wherein said equally weighted sets are adjacent sets in said data word and time-contiguously written to said display pixel.
20 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets wherein none of said equally weighted sets are time-contiguously written to said display pixel.
21 . The display system of claim 12 wherein:
at least two pairs of said sets of data bits are equally weighted sets wherein said two pairs of equally weighted sets are adjacent sets in said data word and each of said pairs are time-contiguously written to said display pixel.
22 . The display system of claim 12 wherein:
at least two of said sets of data bits are equally weighted sets and at least two of said sets of data bits are binary weighted sets wherein said binary weighted sets are temporarily dispersed between said equally weighted sets.
23 . The display system of claim 12 wherein:
said display system comprising a liquid crystal on silicon display.
24 . The display system of claim 12 wherein:
said display system comprising a digital micromirror display.
25 . The display system of claim 12 wherein:
said display system comprising a plasma panel display.
26 . The display system of claim 12 wherein:
said display system comprising a direct view liquid crystal device.