Photoelectric conversion device, image reading apparatus, image forming apparatus, and method of photoelectric conversion
US-2019289163-A1 · Sep 19, 2019 · US
US11223768B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11223768-B2 |
| Application number | US-202117340121-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 7, 2021 |
| Priority date | Jun 8, 2020 |
| Publication date | Jan 11, 2022 |
| Grant date | Jan 11, 2022 |
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A position detection device includes a background member, a reader, and processing circuitry. The background member has a higher absorption characteristic in an invisible wavelength region than in a visible wavelength region. The reader opposite the background member irradiates a recording medium having a mark and the background member with light of a visible wavelength to output a visible image or with light of an invisible wavelength to output an invisible image. The processing circuitry is configured to: detect an end position of the recording medium and a position of the mark on the recording medium from a read image output from the reader; and select the visible or invisible image as the read image used for position detection, according to an absorption characteristic of a color material forming the mark read by the reader and an absorption characteristic of the recording medium in the invisible wavelength region.
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The invention claimed is: 1. A position detection device, comprising: a background member having a higher absorption characteristic in an invisible wavelength region than in a visible wavelength region; a reader disposed opposite the background member and configured to irradiate a recording medium having a mark and the background member with light of a visible wavelength to output a visible image or with light of an invisible wavelength to output an invisible image; and processing circuitry configured to: detect an end position of the recording medium and a position of the mark on the recording medium from a read image output from the reader; and select the visible image or the invisible image as the read image used for position detection, according to an absorption characteristic of a color material forming the mark read by the reader and an absorption characteristic of the recording medium in the invisible wavelength region. 2. The position detection device according to claim 1 , wherein the processing circuitry is configured to perform the position detection using the invisible image as the read image when the reader reads a recording medium on which the mark is formed with a color material having a higher absorption characteristic than the recording medium in the invisible wavelength region and having a lower absorption characteristic than the background member in the invisible wavelength region. 3. The position detection device according to claim 1 , wherein the processing circuitry is configured to perform the position detection using the visible image as the read image when the reader reads the recording medium on which the mark is not formed with a color material having a higher absorption characteristic than the recording medium in the invisible wavelength region or when the reader reads a recording medium having no lower absorption characteristic than the background member in the invisible wavelength region. 4. The position detection device according to claim 1 , wherein the reader is configured to irradiate the recording medium having the mark and the background member with near-infrared light as the light of the invisible wavelength to output a near-infrared image as the invisible image. 5. An image forming apparatus, comprising: the position detection device according to claim 1 , wherein the processing circuitry is configured to correct an image formation position on the recording medium, based on a detection result of the position detection; and an image forming device configured to form an image on the image formation position having been corrected by the processing circuitry. 6. The image forming apparatus according to claim 5 , wherein the image forming device is configured to form at least a part of the mark, with a color material having a lower absorption characteristic in a specific region of the visible wavelength region, onto a recording medium having a higher absorption characteristic in the invisible wavelength region than in the visible wavelength region. 7. The image forming apparatus according to claim 5 , wherein the image forming device is configured to form, on the recording medium, at least a part of the mark with both a color material having a higher absorption characteristic in the invisible wavelength region than in the visible wavelength region and another color material having a lower absorption characteristic in a specific region of the visible wavelength region. 8. The image forming apparatus according to claim 5 , wherein the image forming device is configured to change the color material forming the mark, according to set information of the recording medium. 9. A position detection method to be executed in a position detection device including a reader disposed opposite a background member having an absorption characteristic in a visible wavelength region than in an invisible wavelength region and configured to irradiate the background member and a recording medium having a mark, at least a part of which is formed with a color material having an absorption characteristic in the invisible wavelength region than in the visible wavelength region, with light of a visible wavelength to output a visible image or with light of an invisible wavelength to output an invisible image, the method comprising: detecting an end position of the recording medium and a position of the mark on the recording medium, from a read image output from the reader; and selecting the visible image or the invisible image as the read image used in the detecting, according to an absorption characteristic of a color material forming the mark read by the reader in the invisible wavelength region and an absorption characteristic of the recording medium in the invisible wavelength region. 10. A non-transitory storage medium storing computer readable code for controlling a position detection device that includes a reader disposed opposite a background member having an absorption characteristic in a visible wavelength region than in an invisible wavelength region and configured to irradiate the background member and a recording medium having a mark, at least a part of which is formed with a color material having an absorption characteristic in the invisible wavelength region than in the visible wavelength region, with light of a visible wavelength to output a visible image or with light of an invisible wavelength to output an invisible image, the computer readable code for controlling the position detection device to execute: detecting an end position of the recording medium and a position of the mark on the recording medium, from a read image output from the reader; and selecting the visible image or the invisible image as the read image used in the detecting, according to an absorption characteristic of a color material forming the mark read by the reader in the invisible wavelength region and an absorption characteristic of the recording medium in the invisible wavelength region.
by shifting the lens or sensor position · CPC title
by controlling the scanning position, e.g. windowing · CPC title
involving a correlated sampling function, e.g. correlated double sampling [CDS] or triple sampling · CPC title
by measuring the characteristics of an image on the copy material · CPC title
by measuring the characteristics of an intermediate image carrying member or the characteristics of an image on an intermediate image carrying member, e.g. intermediate transfer belt or drum, conveyor belt · CPC title
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