Head-up display device
US-9423615-B2 · Aug 23, 2016 · US
US9575231B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9575231-B2 |
| Application number | US-201314027155-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 13, 2013 |
| Priority date | Sep 2, 2013 |
| Publication date | Feb 21, 2017 |
| Grant date | Feb 21, 2017 |
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An infrared filter includes a transparent substrate, and an infrared-filtering multilayer film. The infrared-filtering multilayer film is coated on the transparent substrate, and the infrared-filtering multilayer film includes a plurality of the first kind of film layers, a plurality of the second kind of film layers, a plurality of the third kind of film layers and a plurality of the fourth kind of film layers, wherein the four kinds of film layers are arranged in order of gradient refractive indexes. At least two kinds of film layers are made of composite materials.
Opening claim text (preview).
What is claimed is: 1. An infrared filter comprising: a transparent substrate; and an infrared-filtering multilayer film, wherein the infrared-filtering multilayer film is coated on the transparent substrate, and the infrared-filtering multilayer film comprises: a plurality of the first kind of film layers; a plurality of the second kind of film layers; a plurality of the third kind of film layers; and a plurality of the fourth kind of film layers; wherein the infrared-filtering multilayer film is wave-like arranged with the four kinds of film layers in order of gradient refractive indexes, a thickness of any of the first kind of film layers is greater than a thickness of any of the second kind of film layers and a thickness of any of the third kind of film layers, a thickness of any of the fourth kind of film layers is greater than the thickness of any of the second kind of film layers and the thickness of any of the third kind of film layers, at least two kinds of film layers are made of composite materials, which are made of Nb 2 O 5 and SiO 2 , a refractive index of the first kind of film layers is NA, a refractive index of the second kind of film layers is NB, a refractive index of the third kind of film layers is NC, a refractive index of the fourth kind of film layers is ND, a total number of the film layers of the infrared-filtering multilayer film is TL, a decay rate of transmittance responsivity value through the infrared filter between 554 nm and 700 nm is D, and the following conditions are satisfied: 2.2 ≦NA< 2.4; 1.9 ≦NB< 2.2; 1.6 ≦NC< 1.9; 1.4 ≦ND< 1.6; 80 ≦TL ; and 1%≦ D≦ 30%. 2. The infrared filter of claim 1 , wherein the refractive index of the first kind of film layers is NA, the refractive index of the second kind of film layers is NB, the refractive index of the third kind of film layers is NC, the refractive index of the fourth kind of film layers is ND, and the following conditions are satisfied: NA−NB≧ 0.1; NB−NC≧ 0.1; and NC−ND≧ 0.1. 3. The infrared filter of claim 2 , wherein the refractive index of the first kind of film layers is NA, the efractive index of the second kind of film layers NB, the refractive index of the third kind of film layers is NC, the refractive index of the fourth kind of film layers ND, and the following conditions are satisfied: NA−NB≧ 0.15; NB−NC≧ 0.15; and NC−ND≧ 0.15. 4. The infrared filter of claim 1 , wherein the decay rate of the transmittance responsivity value through the infrared filter between 554 nm and 700 nn is D, and the following condition is satisfied: 1%≦ D≦ 20%.
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