Abstract:
A transparent display device has a first substrate, a second substrate, and a display medium disposed between the first substrate and the second substrate. A pixel unit of the transparent display includes a transparent region and a display region. In the display region, a first reflective material is disposed between the first substrate and the display medium, and a second reflective material is disposed between the second substrate and the display medium.
Abstract:
A display device includes a switching panel. The switching panel includes a first polarizer, a second polarizer, a first substrate, a second substrate, and a display medium layer. The first polarizer includes a first absorption axis. The second polarizer is disposed opposite to the first polarizer. The second polarizer includes a second absorption axis parallel to the first absorption axis. The first substrate is disposed between the first polarizer and the second polarizer. The first substrate includes a first alignment layer having a first alignment direction. The second substrate is disposed between the first polarizer and the second polarizer. The second substrate includes a second alignment layer having a second alignment direction. The second alignment direction is parallel or anti-parallel to the first alignment direction. The display medium layer is disposed between the first substrate and the second substrate.
Abstract:
A transparent display device has a transparent region and a display region. The transparent display device includes a first panel. The first panel includes a first substrate, a reflective material disposed on the first substrate in the display region, and a first electrode disposed in the display region and transparent region. In the display region, the reflective material is disposed between the first substrate and first electrode.
Abstract:
A transflective liquid crystal display (LCD) device, comprising: a display panel, comprising: a first substrate; a second substrate opposite to the first substrate; a reflective layer disposed on parts of the first substrate; a first electrode disposed on the first substrate and the reflective layer; a second electrode disposed on the first substrate and the reflective layer, and electrically insulating with the first electrode; and a liquid crystal layer disposed between the second substrate and the first electrode as well as the second electrode, wherein the liquid crystal layer has a retardation of 180 nm˜300 nm at a wavelength of 550 nm, and absolute values of twist angles of some of liquid crystal molecules included in the liquid crystal layer are 90°˜135° when the display panel is in an off state.
Abstract:
A 2D/3D switchable and touch sensitive display, comprising a display panel with a plurality of pixels and a LC cell is disclosed. The LC cell is disposed on the display panel for providing 2D/3D switchable and touch sensitive function. The LC cell comprises a first substrate and a second substrate opposite to each other, a plurality of first electrodes disposed on the first substrate, a plurality of second electrodes disposed on the second substrate, and a liquid crystal layer disposed between the first electrodes and the second electrodes. The second electrodes interlaced with the first electrodes. The liquid crystal layer is controlled by a voltage between the first electrodes and the second electrodes for adjusting light path from the display panel and/or touch sensing.
Abstract:
A transflective liquid crystal display includes a plurality of pixels. At least one of the plurality of the pixels includes a first sub-pixel having a blue color and a second sub-pixel having a color different from the blue color. Each of the first sub-pixel and the second sub-pixel has a transmissive region and a reflective region. A ratio of the transmissive region to the reflective region of the first sub-pixel is different from a ratio of the transmissive region to the reflective region of the second sub-pixel. A first voltage is applied to the first sub-pixel. A second voltage is applied to the second sub-pixel. The second voltage is different from the first voltage.
Abstract:
An autostereoscopic display apparatus is provided. The autostereoscopic display apparatus includes a liquid-crystal panel and a barrier cell. The barrier cell includes a first substrate, a second substrate, and a liquid-crystal layer. The first substrate includes a first electrode. The second substrate includes a second electrode and a third electrode, wherein the second and third electrodes are separated from each other. The liquid-crystal layer is disposed between the first and second substrates. A black region between the first and third electrodes is formed when a first voltage is applied to the first and second electrodes and a second voltage is applied to the third electrode.