Abstract:
A backlight driving method, which provides three kinds of light sources comprising a red light source, a blue light source, and a green light source. The driving method includes dividing a frame into four sub-frames, and lighting the green light sources twice during two sub-frames respectively, dividing the first frame and the second frame into four sub-frames respectively, lighting the four light sources in the four sub-frames in a first lighting order during the first frame, and lighting the four light sources in the four sub-frames using a second lighting order during the second frame, wherein the first order is different from the second order.
Abstract:
A liquid crystal display device that comprises a panel, a timing controller for providing control signals to the panel, a video chip for receiving video signals and providing decoded video signals to the panel, a phase lock loop for providing a reference clock frequency, and a source driver for receiving the control signals and video signals to drive the panel, wherein the timing controller, the video chip and the phase lock loop are incorporated into the source driver in an integrated circuit.
Abstract:
A backlight driving method, which provides three kinds of light sources comprising a red light source, a blue light source, and a green light source. The driving method includes dividing a frame into four sub-frames, and lighting the green light sources twice during two sub-frames respectively, dividing the first frame and the second frame into four sub-frames respectively, lighting the four light sources in the four sub-frames in a first lighting order during the first frame, and lighting the four light sources in the four sub-frames using a second lighting order during the second frame, wherein the first order is different from the second order.
Abstract:
A liquid crystal display device that comprises a panel, a timing controller for providing control signals to the panel, a video chip for receiving video signals and providing decoded video signals to the panel, a phase lock loop for providing a reference clock frequency, and a source driver for receiving the control signals and video signals to drive the panel, wherein the timing controller, the video chip and the phase lock loop are incorporated into the source driver in an integrated circuit.
Abstract:
The present invention is related to an electrochemical paper towel sterilizing device, which mainly comprises: at least one sterilizing device, at least one first accommodating space, at least one water-inlet portion, at least one electrolytic component, at least one power-supply element, and at least one second accommodating space. In this way, the second accommodating space is provided with a dry wiping-object (such as a paper towel), and the user can add water into the first accommodating space via the water-inlet portion and electrolyze the water through the electrolytic component to generate the high active oxygen species, and combine the water and the high active oxygen species into the wiping-object, thereby producing a wet wiping-object with sterilizing effect.
Abstract:
An energy saving device for accelerated pressurization in an injection molding machine includes a mold needing vapor and cooled water or oil in an injection molding process. The cooled water or oil is provided by a pump, followed by connecting to the mold through a water or oil supply pipeline. The interior of the accelerated pressurization energy saving pipe is a through hole. Three or more spiral grooves are provided on the inner peripheral surface of the through hole and having an angle rotated in a front direction, with the lateral direction of each spiral groove having an inclined angle. The vapor or water or oil enforces angle rotation and inclined angle accelerated pressurization.
Abstract:
An image processing apparatus and an image processing method are provided. When a display apparatus is in the 3D display mode, a mode-switching unit adjusts the way to generate a vertical-count-value by counting every two rows of pixels and outputs the adjusted vertical-count-value. A dither unit outputs a carry value corresponding to the adjusted vertical-count-value. An adding unit adds the carry value and the surplus pixel bit together.
Abstract:
The present invention provides a 3D image signal controlling method. The method comprises inputting a left eye image into the first liquid crystal layer, turning off the backlight module and switching gray levels of the second liquid crystal layer to a minimum gray level during (4N−3)th time interval, wherein N is natural number; stopping inputting the left eye image, turning on the backlight module and remaining the gray levels of the second liquid crystal layer as the minimum gray level during (4N−2)th time interval; inputting a right eye image into the first liquid crystal layer, turning off the backlight module and switching the gray levels of the second liquid crystal layer as a maximum gray level during (4N−1)th time interval; and stopping inputting the right eye image, turning on the backlight module and remaining the gray levels of the second liquid crystal layer as the maximum gray level during (4N)th time interval.
Abstract:
A remote controller includes a housing, a direction sensor, a microphone, a controller, and a wireless transmitter. A control method of the remote controller includes detecting an angle between an axis of a remote controller and a vertical axis, enabling a microphone of the remote controller when the angle is within a predetermined range in order to generate a voice signal according to a voice command, and generating a first control signal according the voice signal and transmit the first control signal wirelessly.
Abstract:
A method for driving an OLED panel includes the following steps. An image signal is inputted to a power control unit, wherein the power control unit includes a calculator and a power control look-up table. A display loading ratio is calculated by the calculator according to the image signal, wherein the power control unit can find an emitting time ratio by the power control look-up table corresponding to the display loading ratio, the emitting time ratio can be transformed to an emitting time signal, and the emitting time signal can be inputted to the OLED panel so as to control the power consumption of the OLED panel.