Optical filter and near-infrared cut filter
US-2018136380-A1 · May 17, 2018 · US
US2016165214A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016165214-A1 |
| Application number | US-201514962756-A |
| Country | US |
| Kind code | A1 |
| Filing date | Dec 8, 2015 |
| Priority date | Dec 8, 2014 |
| Publication date | Jun 9, 2016 |
| Grant date | — |
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Disclosed is an image processing apparatus which includes a light projection unit for projecting infrared light having a predetermined pattern onto an object, an image acquisition unit for absorbing light having a visible-light band and transmitting light having an infrared wavelength band to acquire an image having a target pattern projected onto the object, and an image processing unit for obtaining information on 3D distance of the object using the light acquired by the image acquisition unit.
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What is claimed is: 1 . An image processing apparatus, comprising: a light projection unit projecting infrared light having a predetermined pattern onto an object; an image acquisition unit absorbing light having a visible-light band and transmitting light having an infrared wavelength band to acquire an image having a target pattern projected onto the object; and an image processing unit obtaining information on a three-dimensional (3D) distance of the object using the light acquired by the image acquisition unit. 2 . The image processing apparatus of claim 1 , wherein the infrared light has a wavelength band of 800 nm to 850 nm. 3 . The image processing apparatus of claim 1 , wherein the light projection unit comprises: a light source emitting the infrared light; and a pattern generation unit providing the predetermined pattern to the emitted infrared light to project the emitted infrared light. 4 . The image processing apparatus of claim 3 , wherein the pattern generation unit comprises a light diffusion plate diffusing light emitted from the light source. 5 . The image processing apparatus of claim 1 , wherein the image acquisition unit comprises: an image sensor converting optical signals into electrical signals; a lens unit focusing the image having the target pattern onto the image sensor; and an infrared filter arranged between the image sensor and the lens unit to absorb light having a visible-light band and to transmit light having an infrared wavelength band. 6 . The image processing apparatus of claim 5 , wherein the infrared filter transmitting the infrared light having a wavelength band of a first wavelength to a second wavelength comprises: a first dye for absorbing light having a wavelength band less than the first wavelength and transmitting light having a wavelength band greater than or equal to the first wavelength; and a second dye for absorbing light having a wavelength band of the second wavelength to a third wavelength and transmitting light having a wavelength band less than the second wavelength or greater than the third wavelength. 7 . The image processing apparatus of claim 6 , wherein the infrared filter comprises: a substrate; and a first dye layer arranged on the substrate in a direction in which the image is acquired and comprising the first and second dyes. 8 . The image processing apparatus of claim 7 , wherein the first dye layer comprises the first and second dyes in a mixed form. 9 . The image processing apparatus of claim 7 , wherein the first dye layer comprises: a 1-1 st dye layer comprising the first dye; and a 1-2 nd dye layer comprising the second dye and arranged to overlap the 1-1 st dye layer in a direction in which the image is acquired. 10 . The image processing apparatus of claim 6 , wherein the infrared filter comprises a substrate comprising the first and second dyes. 11 . The image processing apparatus of claim 7 , wherein the infrared filter further comprises a second dye layer in the form of a multilayered thin film. 12 . The image processing apparatus of claim 11 , wherein the first dye layer has front and rear surfaces facing the object and the substrate, respectively. 13 . The image processing apparatus of claim 12 , wherein the second dye layer is arranged on the front surface of the first dye layer. 14 . The image processing apparatus of claim 12 , wherein the second dye layer is positioned on the rear surface of the first dye layer so that the second dye layer is arranged between the substrate and the first dye layer. 15 . The image processing apparatus of claim 11 , wherein the substrate has front and rear surfaces facing the first dye layer and the image sensor, respectively, and the second dye layer is arranged on the rear surface of the substrate. 16 . The image processing apparatus of claim 7 , wherein the substrate is made of at least one material selected from the group consisting of plastic and glass. 17 . The image processing apparatus of claim 1 , wherein the image processing unit comprises a distance generation unit obtaining the information on 3D distance using the light acquired by the image acquisition unit. 18 . The image processing apparatus of claim 17 , wherein the image processing unit further comprises a map generation unit generating a 3D map of the object using the information on 3D distance obtained by the distance generation unit. 19 . The image processing apparatus of claim 1 , further comprising a housing for holding the light projection unit and the image acquisition unit. 20 . A mobile camera comprising the image processing apparatus defined in claim 1 .
Optical parts specially adapted for electronic image sensors; Mounting thereof · CPC title
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
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