Abstract:
A photographic system for photographing a warm-blooded animal in a background is provided, including an infrared sensor, a host, and a camera module. The infrared sensor is configured to identify the position of the warm-blooded animal in the background, and generate position data according to the position. The host is coupled to the infrared sensor, and configured to receive the position data and generate at least one parameter according to the position data. The camera module is coupled to the host, and includes a camera and a controller. The controller is configured to receive the parameter and adjust the photographing direction of the camera according to the parameter.
Abstract:
An electronic device includes a panel. The panel includes a plurality of scan electrodes, a plurality of data electrodes and a cholesteric liquid crystal layer. The plurality of data electrodes and the plurality of scan electrodes are intersected with each other to define a plurality of pixels. The cholesteric liquid crystal layer is disposed between the plurality of scan electrodes and the plurality of data electrodes. In a writing mode, a first voltage difference is applied to at least one pixel disposed in a writing area, and a second voltage difference is applied to at least a portion of the other pixels disposed in a non-writing area. In an erasing mode, a third voltage difference is applied to at least one pixel disposed in an erasing area, where the first voltage difference is different from the second voltage difference, and the first voltage difference is different from the third voltage difference.
Abstract:
An electronic device includes a substrate, a plurality of first pads, a plurality of sensing units and a plurality of test pads. The first pads are disposed on the substrate, the sensing units are disposed on the substrate and electrically connected to the first pads, and the test pads are disposed on the substrate and electrically connected to the sensing units.
Abstract:
A display device includes a peripheral circuit, a display gate line and a fingerprint gate line. The peripheral circuit includes a demultiplexer. The display gate line is electrically connected to the demultiplexer for transmitting a display scan signal. The fingerprint gate line is electrically connected to the demultiplexer for transmitting a fingerprint scan signal.
Abstract:
An electronic device with a plurality of panels is provided. The electronic device also has a plurality of scan line driving circuits that correspond to the panels in order to drive the panels. The electronic device also has a controller that is configured to control the scan line driving circuits. Each panel includes a plurality of scan lines. Prior to image refreshing, the controller controls the scan line driving circuits to reset the panels. The controller performs image refreshing by controlling each scan line driving circuit to scan the scan lines of its corresponding panel in a jumping mode scanning procedure.
Abstract:
Sensing pixels each store a sensing voltage level. A method for driving the plurality of sensing pixels includes providing a plurality of readout scan signals to the plurality of sensing pixels, and providing a plurality of reset scan signals to the plurality of sensing pixels. One of the plurality of readout scan signals enables one of the plurality of sensing pixels to output the sensing voltage level stored in the one of the plurality of sensing pixels. One of plurality of reset scan signals resets the sensing voltage level stored in one of the plurality of sensing pixels. An nth reset scan signal of the plurality of reset scan signals is started behind an nth readout scan signal of the plurality of readout scan signals in time domain.
Abstract:
A display device includes a first substrate, a second substrate, an icon sensor, a conductive material, and a first conductive pad. The second substrate is provided opposite the first substrate and has a display area and a non-display area. The icon sensor is provided on the first substrate and is disposed at least partially corresponding to the non-display area. The conductive material is provided between the first substrate and the second substrate. The first conductive pad is provided on the second substrate. The icon sensor is electrically connected to the first conductive pad on the second substrate through the conductive material.
Abstract:
A display touch device includes a touch panel disposed on one side of a display panel and third patterned electrodes disposed on a supporting substrate. The touch panel includes a transparent substrate; first and second patterned electrodes respectively disposed on the transparent substrate in first and second direction. Mutual capacitors are formed between the first and second patterned electrodes, and the first and second patterned electrodes form a touch sensor structure. The first patterned electrodes or the second pattern electrodes partially overlap with the third patterned electrodes in a third direction to form a pressure sensor structure. The third direction is a stacking direction of the display panel and the touch panel. The touch sensor structure performs touch sensing in a first period of a frame and performs pressure sensing in a second period of the frame. The first period does not overlap the second period.
Abstract:
A display touch device includes a display panel; a touch panel disposed on one side of the display panel; and the third patterned electrodes disposed on a supporting substrate. The touch panel includes a transparent substrate; the first patterned electrodes disposed on the transparent substrate in a first direction; the second patterned electrodes disposed on the transparent substrate in a second direction. Mutual capacitors are formed between the first patterned electrodes and the second patterned electrodes, and the first patterned electrodes and the second patterned electrodes form a touch sensor structure. The first patterned electrodes partially overlap with the third patterned electrodes in a third direction, or the second patterned electrodes partially overlap with the third patterned electrodes in the third direction to form a pressure sensor structure. The third direction is a stacking direction of the display panel and the touch panel.
Abstract:
The present disclosure provides a touch display panel, comprising: a first substrate; a second substrate disposed opposite to the first substrate; a display medium layer disposed between the first substrate and the second substrate; a sensing electrode layer disposed on the first substrate; and an electrostatic releasing layer disposed on the second substrate, and a sheet resistance of the electrostatic releasing layer is 109-1012Ω/□. The present disclosure also discloses a touch display device using the said touch display panel.