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04 Feb, 2023 729 Views Author: Cherry Shen

Principle of three primary colors of chroma meter

We know that the main purpose of the research and development of chroma meter is to detect the color of products and control the color quality of products. To better analyze and manage color information, it is necessary to understand the color. The change of color is closely related to color. To learn color, we should first know what the three primary colors are.

The chroma meter detects the product color according to its color light ternary principle and complementary color principle. The essence of the three primary colors is independent, and none of the three primary colors can be combined with the other two colors. In addition, as the basic color of color, the three primary colors can be mixed into various colors through the color gamut. During the formation of color perception, the color of light source is related to the three factors of light source, eyes and brain. Therefore, the selection of the three primary colors of color light involves such factors as the wavelength and energy of light source, and the spectral response range of human eyes. This is also a detail that must be paid attention to in the development process of the colorimeter.

However, from the energy point of view, the mixed brightness superposition of colored light means that the colored light after mixing must be brighter than each colored light before mixing. Only the colored light with low brightness can be used as the primary color to mix a large number of colors. Otherwise, the colored light with high brightness can be used as the primary color, and its addition will be brighter, so that the colored light with low brightness can never be mixed. In addition, we also know that the three primary colors are distributed in different areas of the visible spectrum. If they are concentrated in a certain area, they will not be able to mix more colored light.

Principle of three primary colors of chroma meter

Red, green and blue

In the white light dispersion experiment of the colorimeter, we can observe that the red, green and blue colors are more evenly distributed in the whole visible spectrum, and occupy a wide area. However, if we adjust the prism angle of the experiment to narrow the spectrum, we will find that the area occupied by the corresponding colored light will also change. In the color experiment of the colorimeter, on the narrowed spectrum, it will be found that the obvious red, green, and blue light changes most significantly, and the other light colors gradually fade, and some are about to disappear. The wavelength ranges of three kinds of colored light can be obtained through experiments: R (600~700nm), G (500~570nm), B (400~470nm).

In chromatics, the whole visible spectrum is generally divided into blue light area, green light area and red light area for research. When red light, green light and blue light are mixed, yellow light, cyan light and magenta light can be obtained respectively. Magenta light is not found in the spectrum, and we call it extraspectral color. If we mix the three colors equally, we can get white light; By mixing the three colored lights in different proportions, a variety of different colored lights can be obtained.

Because the colorimeter is an instrument developed to simulate the principle of human eyes to see color, the visual physiological characteristics must not be ignored when analyzing color light and three primary colors. When the human eye looks at an object, there are three kinds of color sensitive cells in the retina — red cells, green cells, and blue cells. These three cells are sensitive to red light, green light, and blue light, respectively. When one of the color sensitive cells is strongly stimulated, it will cause the excitement of the color sensitive cells, and then the color feeling will be generated. Similarly, in the color measurement process of the colorimeter, when the instrument receives a red light stimulus, it will send a red message to the instrument’s microprocessor. The three color sensing cells of the human eye have the ability to combine colors. When a polychromatic light stimulates the human eye, the color sensing cells of the human eye can decompose it into red, green and blue monochromatic light, and then mix them into a color. It is precisely because of this color combination ability that we can recognize a wider range of colors except red, green and blue.

To sum up, we can determine that there are three basic colored lights in the colored light, and their colors are red, green and blue. These three kinds of colored light are not only the main colored light obtained after white light decomposition, but also the main component of mixed colored light, and can match the spectral response range of human eye retinal cells, which is consistent with the visual physiological effect of the human eye. These three kinds of colored lights are mixed in different proportions, and almost all the colored lights in nature can be obtained, with the largest mixed color gamut; Moreover, these three colors are independent. One of the primary colors cannot be mixed with the other primary colors. Therefore, we call red, green and blue the three primary colors of color light. In order to unify the understanding, the International Commission on Illumination (CIE) stipulated the wavelength of three primary colors in 1931 λ R=700.0nm, λ G=546.1nm, λ B=435.8nm。 In the research of chromatics, in order to facilitate the qualitative analysis, white light is often regarded as a combination of red, green and blue primary colors.

There are many places involving chromatic light and three primary colors in the use of chromatic aberration meter, not only these simple conceptual problems. There are more complex analysis and comparison, but those are more professional knowledge. We are involved in different aspects in the process of using the colorimeter. Therefore, as long as we are familiar with these primary color concepts, we can better measure and understand the test results.

LISUN lauched Portable Colorimeter/Chroma Meter is an innovation color measuring tool with powerful configuration to make color measurement easier and more professional; It support Bluetooth to connect with Android and ISO devices, Portable Colorimeter/Chroma Meter will take you into a new world of color management; It can be widely used to measure color value, color difference value and find similar color from color cards for printing industry, paint industry, textile industry, etc.

Principle of three primary colors of chroma meter

CD-320PRO_Portable Colorimeter/Chroma Meter

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