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In abstract case, you'd probably want to use xy color coordinates from xyY color space to specify LED color. Or even wavelength + spread, as you've tried. Those
by ansgri 11mo ago
In abstract case, you'd probably want to use xy color coordinates from xyY color space to specify LED color. Or even wavelength + spread, as you've tried. Those were the models that were used in one microLED-related research project I was part of.
Using those in images however would be another can of worms, you'll need some kind of physics-based rendering with good HDR tone mapping, as the human perception of light-emitting object against reflective background is highly non-linear.
For your use case it would probably be better to develop a standardized testing setup and just take RGB or XYZ coordinates from an image taken with a calibrated camera. Something like this:
* "standard gray" material surface
* a hole for LED with some kind of light pipe of standard shape
* uniform diffuse lighting of intensity computed to be proportional to your LED power measured in a standard way.
In this way it should be possible to create a catalog of LEDs useful for designing products.
- exmadscientist 11mo agoPart of the motivation for doing this was to be able to visualize things without having actual parts in hand, to save on prototyping effort. I agree that just measuring the thing is probably the solution, though I'm perennially disappointed that following the Official Rules for just calculating the result is so terrible.