Abstract:
A local stereo image display system controls an image output in a display area which includes a planar image frame and a stereo image frame. The planar image frame has a planar image region. The stereo image frame is disposed between two adjacent planar image frames and has a stereo image region. The planar image frame and the stereo image frame are outputted orderly with a display frequency. When the planar image frame is outputted, only the planar image region has image content, and when the stereo image frame is outputted, only the stereo image region has image content. An optical grating control signal is outputted according to the sequence of the planar image frame and the stereo image frame and is synchronized to the display frequency.
Abstract:
The present disclosure provides a touch module with liquid crystal lens that includes only two transparent substrates, a touch sensing conductive pattern, a liquid crystal light valve conductive pattern, a shielding conductive layer, an insulating layer and a liquid crystal layer. The touch sensing conductive pattern is formed on the lower surface of the first transparent substrate. The liquid crystal light valve conductive pattern is formed on the upper surface of the second transparent substrate. The shielding conductive layer is formed under the first transparent substrate. The insulating layer is formed between the first transparent substrate and the shielding conductive layer and covers the touch sensing conductive pattern to insulate the touch sensing conductive pattern from the shielding conductive layer. The liquid crystal layer is positioned between the shield conductive layer and the second transparent substrate.
Abstract:
A stereoscopic image control module that can be disposed on a display module to form a stereoscopic image display module is provided. The stereoscopic image control module includes a first substrate, a touch composite layer, and a grating composite layer. The first substrate has a first surface and a second surface opposite to the first surface, and the touch composite layer is disposed on at least one of the first surface and the second surface and includes a plurality of touch electrodes. The grating composite layer is disposed on the second surface and includes a plurality of grating control electrodes and a grating layer, wherein the grating control electrodes change a polarity of the grating layer to determine a display mode.
Abstract:
A display device includes a transparent display panel and an adjustable light valve. The transparent display panel and the adjustable light valve are disposed opposite to each other. The transparent display panel includes a plurality of pixels including active-matrix organic light-emitting diodes for generating an image. When the display device operates under a transparent display mode, the adjustable light valve is in a transparent status. When the display device operates under a high color saturation display mode, the adjustable light valve is in a non-transparent status. Thereby, the display device will not be limited to having only a display mode.
Abstract:
An integrated gate driver circuit includes a control circuit, a plurality of drive stages and a plurality of discharge transistors. The control circuit is configured to output a plurality of clock signals within a frame period and to output a discharge enabling signal within a blanking period of the frame period. Each of the drive stages receives the clock signals and includes an output terminal configured to output a gate driving signal. Each of the discharge transistors is coupled to the output terminal of one of the drive stages and discharges the output terminal according to the discharge enabling signal thereby eliminating the voltage fluctuation of the output terminal in the blanking period.
Abstract:
The present invention provides a display method for a stereoscopic display device. First, a frame formed by a left-eye frame with a first color and a right-eye frame with a second color different from the first color is generated with a liquid crystal panel. A first light source emitting a first light beam of the first color and a second light source emitting a second light beam of the second color of the stereoscopic display device are turned on. The first light beam and the second light beam are guided separately toward the liquid crystal panel with the directional light guide plate. When the liquid crystal panel generates the frame, the first light beam and the second light beam penetrate the liquid crystal panel separately, and the left-eye frame and the right-eye frame are displayed at a first view angle and a second view angle respectively.
Abstract:
There is provided an OLED package including a substrate, a lighting component, a compound barrier layer, a moisture absorption zone and an inorganic barrier layer. The lighting component is formed on the substrate. The compound barrier layer completely seals the lighting component configured to block moisture and oxygen. The moisture absorption zone is formed on the substrate surrounding the compound barrier layer and is not formed upon the lighting component. The inorganic barrier layer completely seals the compound barrier layer and the moisture absorption zone configured to block moisture and oxygen.
Abstract:
A testing design for flip chip connection process. In one embodiment the testing design has a substrate, a plurality of connections formed on said substrate, at least one integrated device and a plurality of bumps formed on said integrated device, wherein at least one of said bumps is electrically connected to said plurality of connectors to form an electrical channel.
Abstract:
A liquid crystal display device comprises a liquid crystal panel, a flexible printed circuit (FPC) film connecting to the liquid crystal panel, and a plurality of driver IC chips formed on the liquid crystal panel directly. The present invention is characterized in that a power circuit, a gamma compensating circuit and a ground circuit are formed on the FPC film and are electrically connected to each of the driver IC chips respectively and that the driver IC chips are formed on the glass substrate of the liquid crystal panel directly to save the space of the PCB and lower the cost.
Abstract:
A foldable and hang-able liquid crystal display apparatus is introduced to have a display panel and a device base pivotally connected with the display panel. The device base further includes a first side, a second side opposing to the first side, and a lateral side connecting the first side and the second side. On the second side, a plurality of holes is provided for the apparatus to be hooked on a wall. When the device base is pivoted to fold up with the display panel, the first side and a back side of the display panel are complementarily contacted.