Imaging systems with reference pixels for image flare mitigation
US-9224782-B2 · Dec 29, 2015 · US
US9344691B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9344691-B2 |
| Application number | US-201214235613-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 24, 2012 |
| Priority date | Jul 29, 2011 |
| Publication date | May 17, 2016 |
| Grant date | May 17, 2016 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
An imaging device includes an optical filter. The optical filter has a configuration in which a polarization filter layer and a spectral filter layer are laminated in light transmission direction. Of the polarization filter layer and the spectral filter layer, the layer on the lower side in lamination direction has an uneven top face in the lamination direction. The optical filter is formed by filling the uneven top face with a predetermined filling material so as to even out the top face and then forming other layer.
Opening claim text (preview).
The invention claimed is: 1. An imaging device for capturing images within an imaging area comprising: an optical filter; and an image sensor that is configured with a pixel array having a two-dimensional arrangement of light receiving elements, wherein the optical filter has a configuration in which a polarization filter layer and a spectral filter layer are laminated in light transmission direction, the polarization filter layer includes a first type area, which selectively transmits a polarization component of light in only a particular direction, and a second type area, which either transmits light without selecting a polarization component or selectively transmits a polarization component of light in a different direction than the particular direction, the first and second type areas being segmented into areas each corresponding to a unit area formed with one or more light receiving elements of the image sensor, the spectral filter layer includes a third type area, which selectively transmits light of only a specific wavelength band included in used wavelength bands that can pass through the polarization filter layer, and a fourth type area, which either transmits light without selecting a wavelength or transmits light of a wavelength band that is different than the specific wavelength band and that is included in the used wavelength bands, the third and fourth type areas being segmented into areas each corresponding to a unit area formed with one or more light receiving elements of the image sensor, of the polarization filter layer and the spectral filter layer, the layer on the lower side in lamination direction has an uneven top face in the lamination direction, the optical filter is formed by filling the uneven top face with a predetermined filling material so as to even out the top face and then forming other layer, the fourth type area of the spectral filter layer transmits light without selecting a wavelength, and the spectral filter layer is formed by first uniformly forming a filter film serving as the third type area and then removing the filter film from the location corresponding to the fourth type area. 2. The imaging device according to claim 1 , wherein the layer on the lower side in the lamination direction is the polarization filter layer. 3. The imaging device according to claim 1 , wherein the polarization filter layer has a wire grid structure. 4. The imaging device according to claim 1 , wherein the filling material is an inorganic material. 5. The imaging device according to claim 1 , wherein the unit areas corresponding to the third type area and the fourth type area in the spectral filter layer are identical to the unit areas corresponding to the first type area and the second type area in the polarization filter layer, and the third type area and the fourth type area in the spectral filter layer are arranged in an alternate manner, and the first type area and the second type area in the polarization filter layer are also arranged in an alternate manner. 6. An object detecting apparatus comprising: the imaging device according to claim 1 ; and an object detection operation unit that, based on captured images that are captured by the imaging unit, detects a detection target object present in the imaging area. 7. The object detecting apparatus according to claim 6 , wherein the imaging device captures images with a vehicle-travelling direction front area of own motor vehicle serving as the imaging area, the detection target object includes an oncoming motor vehicle travelling in the opposite direction to own motor vehicle and a proceeding vehicle travelling in the same direction as own motor vehicle, the specific wavelength band corresponding to light transmitted by the third type area of the spectral filter layer is a wavelength band containing the wavelength of the color of a tail lamp of a motor vehicle, the fourth type area of the spectral filter layer transmits light without selecting a wavelength, and the object detection operation unit detects a proceeding motor vehicle based on an output signal of a light receiving element of an image sensor which received the transmitted light from the third type area of the spectral filter layer, and detects an oncoming motor vehicle either based on an output signal of a light receiving element of the image sensor which received the transmitted light from the first type area of the polarization filter layer and from the fourth type area of the spectral filter layer or based on an output signal of low signal level from among output signals of a light receiving element of the image sensor which received the transmitted light from the second type area of the polarization filter layer and from the fourth type area of the spectral filter layer. 8. The object detecting apparatus according to claim 6 , wherein the imaging device captures images with a vehicle-travelling direction front area of own motor vehicle serving as an imaging area, the detection target object includes a demarcation line drawn on a road surface, and the object detection operation unit detects a demarcation line based on a predetermined index value that is calculated by referring to an output signal of a light receiving element of the image sensor which received the transmitted light from the first type area of the polarization filter layer and by referring to an output signal of a light receiving element of the image sensor which received the transmitted light from the second type area that is adjacent to the first type area of the polarization filter layer. 9. An optical filter disposed in an imaging device, which includes an image sensor configured with a pixel array having a two-dimensional arrangement of light receiving elements, between the image sensor and an imaging area, the optical filter comprising: a polarization filter layer and a spectral filter layer laminated in light transmission direction, wherein the polarization filter layer includes a first type area, which selectively transmits a polarization component in only a particular direction, and a second type area, which either transmits light without selecting a polarization component or selectively transmits a polarization component in a different direction than the particular direction, the first and second type areas being segmented into areas each corresponding to a unit area formed with one or more light receiving elements of the image sensor, the spectral filter layer includes a third type area, which selectively transmits light of only a specific wavelength band included in used wavelength bands that can pass through the polarization filter layer, and a fourth type area, which either transmits light without selecting a wavelength or transmits light of a wavelength band that is different than the specific wavelength band and that is included in the used wavelength bands, the third and fourth type areas being segmented into areas each corresponding to a unit area formed with one or more light receiving elements of the image sensor, of the spectral filter layer and the polarization filter layer, the layer on the lower side in lamination direction has an uneven top face in the lamination direction, the optical filter is formed by filling the uneven top face with a predetermined filling material so as to even out the top face and then forming other layer, the fourth type area of the spectral filter layer transmits light without selecting a wavelength, and the spectral filter layer is formed by first uniformly forming a filter film serving as the third type area and then removing the filter film from the location corresponding to the fourth type area. 10. A manufacturing method for manufact
Colour filters · CPC title
Optical viewing arrangements; Real-time viewing arrangements for drivers or passengers using optical image capturing systems, e.g. cameras or video systems specially adapted for use in or on vehicles · CPC title
Electricity · mapped topic
Physics · mapped topic
Physics · mapped topic
Related publications grouped by family.
Answers are generated from the same data shown on this page.