Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
Cyan is severely under-represented by monitors, so the extra pixel is a dedicated cyan. It dramatically improves the ability to display blue/green colours. *edit: found the link I was after on this: https://moultano.wordpress.com/2026/06/19/where-to-find-the-...
Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
11–20 of 57 posts
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#12Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#13Preventing selection is quite the useless and user antagonistic pattern...
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#14"TV Displays Explained at the Fundamental Level" https://www.youtube.com/watch?v=WhFwPAfwdLo
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#15Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#16Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
The RGB setup we have strikes a balance between cost and visual quality. If the cost of adding primaries goes down you can add more to increase the quality. One issue is that the signals often assume RGB (channels), so the hardware manufacturer would have to adapt the RGB signal to their multi-primary hardware.
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#17So where does this stand in 'backlit' or 'self emmission' panels? "TV Displays Explained at the Fundamental Level" https://www.youtube.com/watch?v=WhFwPAfwdLo
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#18Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#19Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
The reason the visible colors form a horseshoe rather than a triangle is due to how the cones’ sensitivity ranges overlap [1]. They cannot be excited independently by the primaries of a display.
[0] https://upload.wikimedia.org/wikipedia/commons/1/1e/CIE1931x...
[1] https://upload.wikimedia.org/wikipedia/commons/thumb/0/04/Co...
Re: Multi-Primary Color Display Emerges as Next-Gen Color Reproduction Technology
#20Can anyone explain how this works? Humans have 3 (sometimes 4) cones, so I thought that going beyond 3 primaries wouldn't increase the perceivable gamut. Update: thanks for all the great explanations!
You are probably familiar with the horseshoe-shaped chromaticity diagram [0] of human-visible colors. A light source with three color primaries spans a triangle in that coordinate system. To cover the whole horseshoe, at least one of the vertices would need to be way outside the horseshoe. With four color primaries, you get a quadrilateral that makes it easier to cover a larger portion of the horseshoe. The reason th…
I'd like to add that no light source can lie outside the horseshoe of the CIE xyz diagram: pure wavelengths are points on the curved line, everything that mixes them moves towards the inside of the space. So you're stuck with triangles that fit within it.