Display device and electronic device
A technology for a display device and a white color filter, applied in lighting devices, circuits, electric light sources, etc., can solve the problems of impossible to prevent the change of the color of the reflected light, the change of the color of the reflected light, etc.
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no. 1 example
[0053] 1.1. Structure example of organic EL panel
[0054] 1.2. Absolute reflectance of external light reflection and color of reflected light
[0055] 1.3. Hue control by adding colorants
[0056] 1.4. Allowable range of color change
[0057] 2. The second embodiment
no. 5 example
[0061]
[0062] 1.1. Structure example of organic EL panel
[0063] figure 1 is a cross-sectional view illustrating an organic EL panel 1000 according to an embodiment of the present invention. Note that the following description is made by taking the organic EL panel 1000 as an example, but the embodiment of the present invention is applicable not only to the organic EL panel 1000 but also to a liquid crystal display panel (LCD). Such as figure 1 As shown, the organic EL panel 1000 includes a glass plate 100 , a color filter 200 , a resin layer 300 , a protective layer 400 , a transparent electrode 500 , an organic EL element 600 and a metal electrode 700 in sequence from the uppermost layer. The color filter 200 includes a red (R) color filter 200R, a green (G) color filter 200G, a blue (B) color filter 200B, and a white (W) color filter 200W. Color filters 200R, 200G, 200B, and 200W are arranged to correspond to red, green, blue, and white pixels, respectively.
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no. 2 example
[0096] Next, a second embodiment of the present invention will be described. In the second embodiment, the brightness of the white pixels of the organic EL panel 1000 is adjusted by reducing the aperture ratio of the white pixels. This makes it possible to reduce external light reflection.
[0097] Figure 20 It is shown that the respective aperture ratios of the red pixel, the green pixel, and the blue pixel are fixed at 32%, and the aperture ratio of the colorless and transparent white pixel (ND transmittance 100%) is set to 100%, Characteristic graph of xy chromaticity for external light reflection at 80%, 60%, 40%, 20%, and 0%. Similarly, Figure 21 It is shown that the respective aperture ratios of the red pixel, green pixel, and blue pixel are fixed at 32%, and the aperture ratio ratio of the colorless and transparent white pixel (ND transmittance 100%) is set to 100%, Characteristic graph of absolute reflectance at 80%, 60%, 40%, 20%, and 0%. Here, the aperture rat...
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