Abstract:
A method for automatic adjusting brightness includes receiving pixel information. The pixel information are analyzed to obtain an image load. The image load is compared with a predetermined range. If the image load is less than the range, then a display duty cycle is set to be an upper limit. If the image load is greater than the range, then the display duty cycle is set to be a lower limit. If the image load is in the range, then the display duty cycle is set to an operation quantity between the upper limit and the lower limit, according to a current image load. Further, according to the changing of display duty cycle, two ranges are set to have the hysteresis effect.
Abstract:
A display capable of displaying multi-color space and including a display unit, a control circuit, and a light source is provided. The control circuit is electrically connected to the display unit and the light source respectively. In addition, the light source is controlled by the control circuit to switch between different illumination modes, such that the display is capable of displaying multi-color space with different specifications, for example, sRGB, NTSC, SMPTE, PAL, etc.
Abstract:
A color backlight device and fabrication method thereof is provided. A surface conduction emitter display with more than one color serves as the color backlight device. The color backlight device can be used in a liquid crystal display (LCD) to obviate the use of a color filter. The invention also provides a color display control method of the LCD and a pixel arrangement method of the color backlight device.
Abstract:
A method for automatic adjusting brightness includes receiving pixel informations. The pixel informations are analyzed to obtain an image load. The image load is compared with a predetermined range. If the image load is less than the range, then a display duty cycle is set to be an upper limit. If the image load is greater than the range, then the display duty cycle is set to be a lower limit. If the image load is in the range, then the display duty cycle is set to an operation quantity between the upper limit and the lower limit, according to a current image load. Further, according to the changing of display duty cycle, two ranges are set to have the hysteresis effect.
Abstract:
A driving method for driving a plasma display unit of a plasma display panel. The plasma display unit includes two electrodes, and the plasma display unit is filled with ionized gas. A driving circuit drives the ionized gas back and forth between the two electrodes to cause the plasma display panel to emit light. The driving circuit includes a rating source receiver and an energy-storing current source whereby the rating source receiver is able to receive and supply a rating current. The driving method first involves the rating source receiver charging. A first electric potential difference thus occurs between the two electrodes of the plasma display unit to allow the ionized gas within the plasma display unit to discharge. While the ionized gas is discharging, the plasma display unit is supplied with a compensation current to prevent an electric potential difference drop.
Abstract:
A driving method during the reset period of a plasma display, which includes a display panel with a plurality of display units for sealing the inert gas. Each display unit forms an equivalent capacitor and includes a first electrode, a second electrode, and a driving circuit that exerts voltage pulses to the display units to form wall charges on the surfaces of the two electrodes or to reduce the wall charges that have been formed. The method involves applying a first soft erase pulse on the first electrodes of the plurality of display units to reduce the wall charges of the plurality of the display units followed by applying a soft priming pulse on the second electrodes of the plurality of display units to re-generate the wall charges of the plurality of display units. Then, a second soft erase pulse is exerted on the first electrodes of the plurality of the display units to reduce the wall charges of the plurality of the display units and make the voltages of the remaining wall charges of the plurality of the display units relatively the same.
Abstract:
A parallax barrier device includes: a first substrate; a first patterned transparent electrode layer disposed on the first substrate; a first patterned electrochromic material layer disposed on the first patterned transparent electrode layer and including a plurality of electrochromic structures, in which lengths, widths or diameters of the electrochromic structures are 50 nm to 500 nm, and included angles of the electrochromic structures and a surface of the first substrate to be deposited are 30° to 89°; a second substrate; a second patterned transparent electrode layer disposed on the second substrate; a second patterned electrochromic material layer disposed on the second patterned transparent electrode layer; and an electrolyte disposed between the first patterned electrochromic material layer and the second patterned electrochromic material layer.
Abstract:
An electroluminescence display and a manufacturing method therefore are disclosed in the present invention. The present invention combines an electroluminescence component and a passive component into a single display component for a display screen. The present invention has a simple manufacturing process, and decreases power consumption and the total size of a display screen.
Abstract:
A plasma display panel includes a rear plate, a front plate formed parallel with and spaced apart from the rear plate, a plurality of electrode pairs, and a plurality of data electrodes. Each electrode pair includes a first transparent electrode and a second transparent electrode formed in parallel on a bottom surface of the front plate. Each data electrode is formed in parallel on a top surface of the rear plate and is orthogonal to each electrode pair. A plurality of display cells is defined at an intersection of each data electrode and each electrode pair. The plurality of display cells include at least a first display cell, a second display cell, and a third display cell for displaying three different colors. At least one recessed portion is formed in the electrode pairs in the second display cell and the third display cell.
Abstract:
An electrode pair structure of a plasma display panel (PDP). The electrode pair structure includes a first metal electrode, and a second metal electrode in parallel with the first metal electrode, installed on a front substrate. The first metal electrode and the second metal electrode are both composed of a series of hollow and hexagonal metal structures.