CPC

CPC Class H04N

67 patents in CPC class H04N

67 Patents
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Updated 1/21/2026

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A parking assistance apparatus for a vehicle, and including a camera configured to photograph surroundings of the vehicle; an interface configured to receive sensor information from the vehicle; a display configured to display a graphic image about an automatic parking function of the vehicle; and a processor configured to initiate the automatic parking function by controlling the vehicle to travel to a target parking position, detect a traveling resistance of the vehicle from the sensor information while the vehicle is traveling to the target parking position, determine a factor causing the traveling resistance, continue controlling the vehicle to travel to the target parking position when the detected traveling resistance is less than a predetermined resistance, and change the controlling of the vehicle to travel to the target parking position to offset the factor causing the traveling resistance, when the detected traveling resistance is equal to or greater than the predetermined resistance.

Steering assistant
US-101313492018

A steering assistant includes a lane width setting unit and a determination unit. The lane width setting unit provides setting of a lane width between lane lines on right and left sides of an own vehicle. The determination unit monitors a lane line state to determine how the lane line state has transited, in which the lane line state involves presence or absence of the lane lines on the right and left sides of the own vehicle. The lane width setting unit provides the setting of the lane width, with a virtual lane line assumed on side on which the lane line is missing, when it is determined that the lane line state has transited to a state in which the lane line is provided on either one of the right and left sides of the own vehicle.

A refrigerating device includes a camera module for capturing a first digital image with markings in the interior of the refrigerating device. The refrigerating device includes a processing device which is configured to convert the first digital image into a second digital image on the basis of the captured markings.

Using the same image sensor to capture both a two-dimensional (2D) image of a three-dimensional (3D) object and 3D depth measurements for the object. A laser point-scans the surface of the object with light spots, which are detected by a pixel array in the image sensor to generate the 3D depth profile of the object using triangulation. Each row of pixels in the pixel array forms an epipolar line of the corresponding laser scan line. Timestamping provides a correspondence between the pixel location of a captured light spot and the respective scan angle of the laser to remove any ambiguity in triangulation. An Analog-to-Digital Converter (ADC) in the image sensor generates a multi-bit output in the 2D mode and a binary output in the 3D mode to generate timestamps. Strong ambient light is rejected by switching the image sensor to a 3D logarithmic mode from a 3D linear mode.

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