Image drawing apparatus, image drawing method, and non-transitory computer readable medium storing program
US-2017332059-A1 · Nov 16, 2017 · US
US10659740B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10659740-B2 |
| Application number | US-201715686654-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 25, 2017 |
| Priority date | Feb 25, 2015 |
| Publication date | May 19, 2020 |
| Grant date | May 19, 2020 |
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An image rendering apparatus includes a light source unit, a detecting unit, an optical scanner, a light source driving unit, and an adjusting unit. The light source driving unit is configured to control the light source unit in such a way that a rendered image is generated by the scan of the optical scanner inside a scan area scanned by the optical scanner and that a characteristic laser beam is emitted at a position and in a pattern corresponding to a rendered content of the rendered image. The rendered image includes an indicator related to a speed of a vehicle. The light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam in such a way that a scale for the indicator related to the speed of the vehicle is rendered.
Opening claim text (preview).
What is claimed is: 1. An image rendering apparatus comprising: a light source unit configured to emit a laser beam; a detecting unit configured to detect an intensity of the laser beam; an optical scanner configured to scan the laser beam emitted from the light source unit in a scan area, the scan area having a rendering area and a blanking area; a light source driving unit configured to control the light source unit in such a way (i) that a rendered image based on input image data is generated by the scan of the optical scanner inside the rendering area of the scan area scanned by the optical scanner and not in the blanking area, and (ii) that a characteristic laser beam for detecting the intensity of the laser beam is emitted to at least an adjusting area at a position in the rendering area and in a pattern corresponding to a rendered content of the rendered image; and an adjusting unit configured to adjust an output of the laser beam based on a detected value of the characteristics detecting laser beam emitted in at least the adjusting area detected by the detecting unit; wherein the rendered image includes an indicator related to a speed of a vehicle to which the image rendering apparatus is applied; wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam in such a way that a scale for the indicator related to the speed of the vehicle is rendered within the adjusting area; wherein the light source unit includes a plurality of laser light sources configured to emit laser light of a plurality of colors; and wherein the scale comprises a plurality of sectioned areas rendered by the characteristics detecting laser beam in the adjusting area within the rendering area, a color of each respective sectioned area corresponding to a color of the laser light source. 2. The image rendering apparatus according to claim 1 , wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam at the position and in the pattern corresponding to the rendered content of the rendered image for the respective laser light sources. 3. The image rendering apparatus according to claim 2 , wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam with a luminance value based on the input image data. 4. The image rendering apparatus according to claim 1 , wherein the light source driving unit controls the light source unit to emit the characteristics detecting laser beam at a position and in a pattern that constitutes a part of the rendered image. 5. A head up display that uses the image rendering apparatus according to claim 1 and presents a rendered image to a user by reflecting an image rendered by the image rendering apparatus by a transparent member. 6. An image luminance adjusting method comprising: using an image rendering apparatus comprising a light source unit configured to emit a laser beam, a detecting unit configured to detect an intensity of the laser beam, and an optical scanner configured to scan the laser beam emitted from the light source unit in a scan area, the scan area having a rendering area and a blanking area; controlling the light source unit in such a way that a rendered image based on input image data is generated by the scan of the optical scanner inside the rendering area of the scan area scanned by the optical scanner and not in the blanking area, the rendered image includes an indicator related to a speed of a vehicle to which the image rendering apparatus is applied; controlling the light source unit in such a way that a characteristic laser beam for detecting an intensity of the laser beam to be emitted to at least an adjusting area at a position in the rendering area and in a pattern corresponding to a rendered content of the rendered image; controlling the light source unit to emit the characteristics detecting laser beam in such a way that a scale for the indicator related to the engine speed of the vehicle is rendered within the adjusting area; detecting an intensity of the characteristics detecting laser beam; and adjusting an output of the laser beam based on a detected intensity value of the characteristics detecting laser beam emitted in at least the adjusting area; wherein the light source unit includes a plurality of laser light sources configured to emit laser light of a plurality of colors; and wherein the scale comprises a plurality of sectioned areas rendered by the characteristics detecting laser beam in the adjusting area within the rendering area, a color of each respective sectioned area corresponding to a color of the laser light source. 7. An image rendering apparatus comprising: a light source unit configured to emit a laser beam; a detecting unit configured to detect an intensity of the laser beam; an optical scanner configured to scan the laser beam emitted from the light source unit in a scan area, the scan area having a rendering area and a blanking area; a light source driving unit configured to control the light source unit in such a way (i) that a rendered image based on input image data is generated by the scan of the optical scanner inside the rendering area of the scan area scanned by the optical scanner and not in the blanking area, and (ii) that a characteristic laser beam for detecting the intensity of the laser beam is emitted to at least an adjusting area at a position in the rendering area and in a pattern corresponding to a rendered content of the rendered image; and an adjusting unit configured to adjust an output of the laser beam based on a detected value of the characteristics detecting laser beam emitted in at least the adjusting area detected by the detecting unit; wherein the rendered image includes an indicator related to an engine speed of a vehicle to which the image rendering apparatus is applied; wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam in such a way that a scale for the indicator related to the engine speed of the vehicle is rendered within the adjusting area; wherein the light source unit includes a plurality of laser light sources configured to emit laser light of a plurality of colors; and wherein the scale comprises a plurality of sectioned areas rendered by the characteristics detecting laser beam in the adjusting area within the rendering area, a color of each respective sectioned area corresponding to a color of the laser light source. 8. The image rendering apparatus according to claim 7 , wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam at the position and in the pattern corresponding to the rendered content of the rendered image for the respective laser light sources. 9. The image rendering apparatus according to claim 8 , wherein the light source driving unit is configured to control the light source unit to emit the characteristics detecting laser beam with a luminance value based on the input image data. 10. The image rendering apparatus according to claim 7 , wherein the light source driving unit controls the light source unit to emit the characteristics detecting laser beam at a position and in a pattern that constitutes a part of the rendered image. 11. A head up display that uses the image rendering apparatus according to claim 7 and presents a rendered image to a user by reflecting an image rendered by the image rendering apparatus by a transparent member. 12. An image luminance
Indicating devices, e.g. for remote indication (indicating working conditions of vehicles G07C5/00) · CPC title
based on modulation of the reflection angle, e.g. micromirrors (micromirrors devices per se G02B26/0833) · CPC title
scanning a light beam on the display screen (scanning a light beam on a screen in displays other than projection devices G09G3/02; scanning systems in general G02B26/10; projectors using laser light sources in general H04N9/3161) · CPC title
applied to monitoring the characteristics of a beam, e.g. laser beam, headlamp beam (monitoring arrangements for lasers in general H01S3/0014) · CPC title
including sensor feedback · CPC title
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