OPTIMAL SPATIAL DISTRIBUTION FOR MULTIPRIMARY DISPLAY
To have a good resolution/sharpness for the displayed pictures (e.g. low interference banding in case of showing a pattern having Nyquist limit problems), the multiprimary display ( 100 ), has more than 3 additive primaries (R,C,G,B), in which that half of the primaries (C,G) having the highest output luminances of the more than 3 additive primaries (R,C,G,B) when a corresponding driving signal (r) for the respective primary is maximal, is generatable by subpixels ( 104, 108 ) of the display at approximately equidistant subpixel positions (Dd).
1 . A multiprimary display ( 100 ), having more than 3 additive primaries (R,C,G,B), in which that half of the primaries (C,G) having the highest output luminances of the more than 3 additive primaries (R,C,G,B) when a corresponding driving signal (r) for the respective primary is maximal, is generatable by subpixels ( 104 , 108 ) of the display at approximately equidistant subpixel positions (Dd).
2 . A multiprimary display as claimed in claim 1 , in which each subpixel ( 108 ) usable for generating a primary (G) of the half of the primaries having the highest output luminances, has adjacent subpixels ( 109 , 111 ) usable for generating other primaries of the more than 3 additive primaries.
3 . A multiprimary display as claimed in claim 2 , having some primaries which are closer in hue to each other than 360 degrees divided by the number of primaries, e.g. having a first red (R), a cyan (C), a green (G), a second red (R′), a blue (B), and a yellow (Y), in which successively adjacent subpixels ( 101 , 104 , 109 , 108 ) of at least one row (R 1 ) of the multiprimary display are usable for generating in the following order: the first red, the cyan, the second red, the green, the blue, and the yellow, or: the green, the blue, the yellow, the first red, the cyan, and the second red.
4 . A multiprimary display as claimed in claim 1 , in which a subpixel ( 104 ) usable for generating one of the primaries (C) of the half of the primaries having the highest output luminances, has at least one of its adjacent subpixels ( 101 ) constructed to be usable for generating a primary (R) from the more than 3 additive primaries having a maximally complementary color to the color of the one of the primaries of the half of the primaries having the highest output luminances.
5 . A multiprimary display as claimed in claim 1 , in which the adjacent subpixels are in successive order a blue (B), a yellow (Y), a red (R), a cyan (C), a magenta (M), and a green (G), or a blue (B), a yellow (Y), a magenta (R), a cyan (C), a red (M), and a green (G).
6 . A method of driving a multiprimary display as claimed in claim 1 comprising a step of calculating from an input color (C) a set of driving values for driving the particular subpixels to yield the color (C) {r,c,r′,g,b,y}.