Logo controller and logo control method
US-2020074708-A1 · Mar 5, 2020 · US
US11217164B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11217164-B2 |
| Application number | US-202016840259-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 3, 2020 |
| Priority date | Apr 4, 2019 |
| Publication date | Jan 4, 2022 |
| Grant date | Jan 4, 2022 |
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An image display apparatus is disclosed. The image display apparatus includes a current calculator configured to calculate pixel current of an input image, an accumulated current calculator configured to calculate accumulated current of the input image, and an afterimage reducer configured to output a second brightness level less than a brightness level of the input image with respect to a detection region if a level of the accumulated current is equal to or greater than a reference value. Thus, the lifespan of an image display apparatus including an organic light emitting diode panel is increased.
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What is claimed is: 1. A signal processing device comprising: a current calculator configured to determine subpixel current for each subpixel of an input image; an accumulated current calculator configured to determine accumulated current for each region of the input image based at least in part on the determined subpixel current for each subpixel; and an afterimage reducer configured to output an output brightness level for each subpixel less than an input brightness level of the input image with respect to a subpixels based at least in part on a determination that a level of the accumulated current for each subpixel is greater than or equal to a reference value, wherein a difference between the input brightness level and the output brightness level is different for each subpixel. 2. The signal processing device of claim 1 , wherein the current calculator is further configured to: add the subpixel current, and output pixel current based at least in part on the added subpixel current. 3. The signal processing device of claim 2 , wherein the accumulated current calculator is further configured to accumulate the pixel current from the current calculator and to determine accumulated current of regions including a pixel. 4. The signal processing device of claim 1 , wherein the afterimage reducer is further configured to vary contrast to decrease a difference from a surrounding region of a first region. 5. The signal processing device of claim 1 , further comprising: a gain map generator configured to generate a gain map including a gain set based at least in part on the determined accumulated current for the region from the accumulated current calculator, wherein the afterimage reducer is further configured to vary brightness and contrast of the input image based at least in part on the set gain in the gain map. 6. The signal processing device of claim 5 , wherein the afterimage reducer is further configured to vary brightness and contrast of the input image in inverse proportion to the set gain of the gain map. 7. The signal processing device of claim 5 , wherein the gain map generator comprises a scaler configured to upscale accumulated current for the region to accumulated current for pixel. 8. The signal processing device of claim 7 , wherein the gain map generator further comprises a lookup table configured to set a gain corresponding to the accumulated current for pixel; and wherein the gain map is generated based at least in part on the set gain. 9. The signal processing device of claim 7 , wherein the scaler is further configured to perform the upscaling to decrease a current difference between a first region and a surrounding region around the first region in units of pixels rather than a current difference between the first region and the surrounding region around the first region in units of regions. 10. The signal processing device of claim 1 , wherein the current calculator comprises: a grayscale converter configured to convert the input image data into grayscale data; a plurality of subpixel current calculators configured to determine subpixel current of subpixel data from the grayscale converter; and an adder configured to add subpixel current from the plurality of subpixel current calculators and to output pixel current. 11. The signal processing device of claim 1 , wherein the accumulated current calculator comprises: a region accumulator configured to determine consumption current for the region based at least in part on consumption current for pixel from the current calculator; and a filter configured to perform determining the accumulated current for the region based at least in part on the determined consumption current for the region. 12. The signal processing device of claim 1 , wherein the afterimage reducer comprises a brightness reducer configured to reduce brightness of a first region based at least in part on a gain corresponding to accumulated current for pixel. 13. The signal processing device of claim 1 , wherein the afterimage reducer further comprises a contrast reducer configured to reduce a contrast difference between the first region and a surrounding region around the first region based at least in part on a gain corresponding to accumulated current for pixel. 14. The signal processing device of claim 1 , wherein a first region comprises a translucent logo region or a test region; and wherein the afterimage reducer is configured to perform control to decrease brightness of the first region compared with the input image. 15. The signal processing device of claim 14 , wherein the afterimage reducer is configured to perform control to decrease brightness of a surrounding region around the first region compared with the input image. 16. The signal processing device of claim 1 , wherein the afterimage reducer is configured to perform control to decrease a difference between a first brightness level of the input image and a second brightness level as a brightness level of the input image corresponding to a first region decreases, and to perform control to increase the difference between the first brightness level of the input image and the second brightness level as the brightness level of the input image corresponding to the first region increases. 17. The signal processing device of claim 1 , wherein the afterimage reducer is configured to perform control to increase an inclination as an input brightness level is lowered and to reduce the inclination as the input brightness level is increased compared with a brightness level of the input image in a plot of a second brightness level. 18. The signal processing device of claim 1 , wherein the afterimage reducer varies brightness in a first region using a gain for each subpixel of the input image and a frame gain. 19. A signal processing device comprising: a current calculator configured to determine subpixel current for each subpixel of an input image; an accumulated current calculator configured to determine accumulated current for each region of the input image based at least in part on the determined subpixel current for each subpixel; and an afterimage reducer configured to vary contrast with respect to a first region if a level of the accumulated current is equal to or greater than a reference value, wherein the afterimage reducer performs control to decrease brightness with respect to a first pixel of the first region, which is brighter than the surrounding region of the first region, and performs control to increase brightness with respect to a second pixel of the first region, which is darker than the surrounding region of the first region, wherein a level of brightness decrease in the first pixel is different for each subpixel, wherein a level of brightness increase in the second pixel is different for each subpixel. 20. An image display apparatus comprising: a display; and a signal processor configured to output display data on the display, wherein the signal processor includes: a current calculator configured to determine subpixel current for each subpixel of an input image; an accumulated current calculator configured to determine accumulated current for each region of the input image based at least in part on the determined subpixel current for each subpixel; and an afterimage reducer configured to output an output brightness level for each subpixel less than an input brightness level of the input image with respect to a subpixels based at least in part on a determination that a level of the accumulated curr
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