Abstract:
An image adjusting method applied to an image adjusting device of a display panel includes applying content analysis to an original image, determining one related specific light power saving mode to reduce intensity of specific color of the original image in accordance with a result of the content analysis, and executing the related specific light power saving mode.
Abstract:
A portable device has an adaptive panoramic image processor. The portable device further has a plurality of image sensors having overlapping fields of view and an input device receiving a trigger signal that triggers the plurality of image sensors to capture a plurality of images. The adaptive panoramic image processor of the portable device processes the images to form a panorama based on side information about the portable device.
Abstract:
An optical sensing method capable of changing a sensing direction of an optical sensing module is applied to a portable device, which includes a housing, an optical sensing module and an optical diverting mechanism. The optical sensing module is disposed inside the housing. The optical sensing module includes an optical emitter adapted to emit an optical sensing signal out of the housing and an optical receiver adapted to receive an optical modulated signal reflected from an external object. The optical diverting mechanism is adjacent by the optical sensing module. The optical sensing signal is directly projected while the optical sensing signal is not diverted by the optical diverting mechanism, and the optical sensing signal is transmitted to a second direction different from the first direction while the optical sensing signal is diverted by the optical diverting mechanism.
Abstract:
An electronic device for sensing touch force is provided. The electronic device includes a display screen, a pressure sensor, a processor and a memory. The pressure sensor senses at least one touch force in a direction that is perpendicular to a plane of the display screen and generates at least one sensing signal responsive to the at least one touch force. The processor is coupled to the pressure sensor and the display screen. The memory is operatively coupled to the processor. The processor is configured to execute program code stored in the memory by: generating a control signal corresponding to the at least one sensing signal; and performing an operation according to the control signal.
Abstract:
An electronic device is provided. The electronic device includes a housing; a camera module disposed in the housing and having a lens outstanding from a surface of the housing; and a protection unit connected to the housing, wherein when the camera module is in an off-state, a top surface of the protection unit is higher than a surface of the lens, when the camera module is in an on-state, the top surface of the protection unit is lower than the surface of the lens.
Abstract:
A wearable device interactive system and techniques, methods and apparatuses thereof are described. A wearable device may sense a movement by a user wearing the wearable device. The wearable device may also determine whether a path of the movement corresponds to one or more predefined patterns. The wearable device may further perform one or more operations in response to a determination that the path of the movement corresponds to at least one of the one or more predefined patterns.
Abstract:
A visual data processing method applied to a visual data processing system. The visual data processing method comprises: (a) detecting a gazing point position of a user on a display; and (b) performing at least one process operation to visual data according to at least one distance between at least one display location for the visual data on the display and the gazing point position.
Abstract:
A data processing apparatus has a de-compressor and an input interface. The de-compressor de-compresses a compressed display data in an input bitstream. The input interface receives the input bitstream from another data processing apparatus via a display interface, parses indication information included in the input bitstream, and configures the de-compressor to employ a de-compression algorithm according to the indication information.
Abstract:
A data processing apparatus has a first compressor, a second compressor, a first output interface, and a second output interface. The first compressor performs compression upon a first portion of an input display data of a frame to generate a first compressed display data, wherein the compression performed upon the first portion of the input display data has a first compression configuration. The second compressor performs compression upon a second portion of the input display data of the frame to generate a second compressed display data, wherein the compression performed upon the second portion of the input display data has a second compression configuration. The first output interface transmits the first compressed display data over a first display port of a display interface. The second output interface transmits the second compressed display data over a second display port of the display inter face.
Abstract:
A data processing apparatus has a mapper, a plurality of compressors, and an output interface. The mapper receives pixel data of a plurality of pixels of a picture, and splits the pixel data of the pixels of the picture into a plurality of pixel data groups. The compressors compress the pixel data groups and generate a plurality of compressed pixel data groups, respectively. The output interface packs the compressed pixel data groups into at least one output bitstream, and outputs the at least one output bitstream via a camera interface.