Production of face images having preferred perspective angles
US-2016134803-A1 · May 12, 2016 · US
US9648236B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9648236-B2 |
| Application number | US-201514625737-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 19, 2015 |
| Priority date | Feb 19, 2015 |
| Publication date | May 9, 2017 |
| Grant date | May 9, 2017 |
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Official abstract text for this publication.
A device with a front facing camera having two discrete focus positions is provided. The device comprises: a chassis comprising a front side; a display and a camera each at least partially located on the front side; the camera adjacent the display, the camera facing in a same direction as the display, the camera configured to: acquire video in a video mode; acquire an image in a camera mode; and, discretely step between a first and second focus position, the first position comprising a depth of field (“DOF”) at a hyperfocal distance and the second position comprising a DOF in a range of about 20 cm to about 1 meter; and, a processor configured to: when the camera is in the camera mode, automatically control the camera to the first position; and, when the camera is in the video mode, automatically control the camera to the second position.
Opening claim text (preview).
What is claimed is: 1. A device comprising: a chassis comprising a front side and a back side; a display device located on the front side of the chassis; a camera device at least partially located on the front side of the chassis adjacent the display device, the camera device facing in a same direction as the display device, the camera device configured to: acquire video in a video mode; acquire an image in a camera mode, the camera device being in one of the video mode or the camera mode at any given time; and, discretely step between a first focus position and a second focus position, the first focus position comprising a depth of field (“DOF”) at a hyperfocal distance and the second focus position comprising a DOF in a range of about 20 cm to about 1 meter; a proximity detector configured to determine a distance between the device and a face in a field of view of the camera device; and, a processor configured to: determine, using the proximity detector, the distance between the device and the face; when the distance is greater than about 20 cm, automatically control the camera device to the camera mode, and when the camera device is in the camera mode, automatically control the camera device to the first focus position; and, when the distance is less than about 20 cm, automatically control the camera device to the video mode, and when the camera device is in the video mode, automatically control the camera device to the second focus position. 2. The device of claim 1 , wherein each of the first focus position and the second focus position are discrete focus positions of the camera device. 3. The device of claim 1 , wherein the camera device is configured to step only between the first focus position and the second focus position. 4. The device of claim 1 , wherein there are no further focus positions of the camera device other than the first focus position and the second focus position. 5. The device of claim 1 , wherein the camera device is configured to discretely step between the first focus position, the second focus position and a third focus position. 6. The device of claim 1 , wherein the video mode corresponds to a video chat mode and the camera mode corresponds to a selfie mode. 7. The device of claim 1 , further comprising an input device, the processor further configured to: control the camera device to the first focus position or the second focus position based on input data received at the input device. 8. A method comprising: at a device comprising: a chassis comprising a front side and a back side; a display device located on the front side of the chassis; a camera device at least partially located on the front side of the chassis adjacent the display device, the camera device facing in a same direction as the display device, the camera device configured to: acquire video in a video mode; acquire an image in a camera mode, the camera device being in one of the video mode or the camera mode at any given time; and, discretely step between a first focus position and a second focus position, the first focus position comprising a depth of field (“DOF”) at a hyperfocal distance and the second focus position comprising a DOF in a range of about 20 cm to about 1 meter; a proximity detector configured to determine a distance between the device and a face in a field of view of the camera device; and, a processor: determining, using the proximity detector, the distance between the device and the face; when the distance is greater than about 20 cm, automatically controlling the camera device to the camera mode, and when the camera device is in the camera mode, automatically controlling, using the camera device, the camera device to the first focus position; and, when the distance is less than about 20 cm, automatically controlling the camera device to the video mode, and when the camera device is in the video mode, automatically controlling, using the camera device, the camera device to the second focus position. 9. The method of claim 8 , wherein each of the first focus position and the second focus position are discrete focus positions of the camera device. 10. The method of claim 8 , wherein the camera device is configured to step only between the first focus position and the second focus position. 11. The method of claim 8 , wherein there are no further focus positions of the camera device other than the first focus position and the second focus position. 12. The method of claim 8 , wherein the camera device is configured to discretely step between the first focus position, the second focus position and a third focus position. 13. The method of claim 8 , wherein the video mode corresponds to a video chat mode and the camera mode corresponds to a selfie mode. 14. The method of claim 8 , wherein the device further comprises an input device, and the method further comprises: controlling the camera device to the first focus position or the second focus position based on input data received at the input device. 15. A non-transitory computer-readable medium storing a computer program, wherein execution of the computer program is for: at a device comprising: a chassis comprising a front side and a back side; a display device located on the front side of the chassis; a camera device at least partially located on the front side of the chassis adjacent the display device, the camera device facing in a same direction as the display device, the camera device configured to: acquire video in a video mode; acquire an image in a camera mode, the camera device being in one of the video mode or the camera mode at any given time; and, discretely step between a first focus position and a second focus position, the first focus position comprising a depth of field (“DOF”) at a hyperfocal distance and the second focus position comprising a DOF in a range of about 20 cm to about 1 meter; a proximity detector configured to determine a distance between the device and a face in a field of view of the camera device; and, a processor: determining, using the proximity detector, the distance between the device and the face; when the distance is greater than about 20 cm, automatically controlling the camera device to the camera mode, and when the camera device is in the camera mode, automatically controlling, using the camera device, the camera device to the first focus position; and, when the distance is less than about 20 cm, automatically controlling the camera device to the video mode, and when the camera device is in the video mode, automatically controlling, using the camera device, the camera device to the second focus position.
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