Abstract:
A manufacturing method for a liquid crystal panel, comprising: coating a photoresist layer on a substrate; utilizing a first exposure energy and a first mask for executing a first exposure process to form a spacing column having a first height, wherein, the first mask has a first light transparent area corresponding to a dark area; utilizing a second exposure energy and a second mask for executing a second exposure process to form a spacing column having a second height, wherein, the second mask has a second light transparent area corresponding to the dark area, and the second height is greater than the first height; and removing an unexposed portion of the photoresist layer. Through above way, the present invention can improve the pixel transmittance of the dark area in order to reduce or eliminate the dark area.
Abstract:
An LCD panel applied to a curved screen includes display sections and a black matrix layer. The black matrix layer is used for adjusting an area of the primary sub-pixel and an area of the secondary sub-pixel in each of display section, so that an area ratio of the secondary sub-pixel to the primary sub-pixel in the first display section equals to an area ratio of the secondary sub-pixel to the primary sub-pixel in the central display section, an area ratio of the secondary sub-pixel to the primary sub-pixel in the second display section is greater than that of the secondary sub-pixel to the primary sub-pixel in the first display section, an area of the primary sub-pixel in the central display section is lower than that of the primary sub-pixel in the first display section. Therefore, brightness and quality of the curved screen on image display are improved.
Abstract:
A flat panel display includes scan lines, data lines, and pixels. Each pixel including at least one first subpixel and a second subpixel, the first subpixel and the second subpixel of the pixel are coupled different scan lines but coupled to the same data line. All of the first subpixels of the pixels are scanned in a first display period, and all of the second subpixels of the pixels are scanned in a second display period after all of the first subpixels are scanned. One color of subpixel is scanned at a time in the flat panel display featuring interlaced scanning. Because video data does not change obviously in general, video data of the single one color of subpixel does not obviously change. The data line is not overloaded, neither. In this way, the color cast occurring in the conventional technology does not happen anymore.
Abstract:
A method for driving a liquid crystal display panel is disclosed. In 3D display mode, said method comprising the following steps: providing a scanning signal to a second scanning line of a pixel row N, so as to turn on a second switching unit; and providing, after X scanning cycles, a scanning signal to a first scanning line of the pixel row N to turn on a first switching unit, so that a corresponding pixel unit is charged by image data information of a data line. A polarity of said image data information is reversed once through each two frames. According to the method of the present disclosure, the shutter glass 3D image can be displayed without image spiking, while it is not necessary to change the structures of the liquid crystal display panel, the display panel control circuit, the core panel of the display, and other kinds of hardware.
Abstract:
A stereoscopic display device, an LCD panel, and an array substrate are provided. The array substrate includes gate lines, share lines, and a switching circuit including a vertical switching circuit, a first switch, a second switch, and an inverter. The first switch includes a gate, a first terminal, and a second terminal; respectively connected with the vertical switching circuit, the Nth share line, and the (N+X)th gate line. The second switch includes a gate, a first terminal, and a second terminal; respectively connected with the vertical switching circuit, the Nth share line, and a control signal. The inverter disposes between the gate of the first or second switch and the vertical switching circuit. The share lines can be independent controlled and low color shift effect is achieved. No additional IC chips and COFs are required, and solving the image blurs and the brightness difference of the two eyes.
Abstract:
A method for driving a liquid crystal display panel is disclosed. In 3D display mode, said method comprising the following steps: providing a scanning signal to a second scanning line of a pixel row N, so as to turn on a second switching unit; and providing, after X scanning cycles, a scanning signal to a first scanning line of the pixel row N to turn on a first switching unit, so that a corresponding pixel unit is charged by image data information of a data line. A polarity of said image data information is reversed once through each two frames. According to the method of the present disclosure, the shutter glass 3D image can be displayed without image spiking, while it is not necessary to change the structures of the liquid crystal display panel, the display panel control circuit, the core panel of the display, and other kinds of hardware.
Abstract:
A manufacturing method of a mask plate and an array substrate is provided. The mask plate is for manufacturing fanout leads in a non-effective display area on an array substrate. The mask plate includes a fanout lead pattern having a plurality of fanout impression lines, wherein each fanout impression line has a predetermined line width, and each of some of the fanout impression lines has at least one curve portion, wherein for one fanout impression line, a line width of the at least one curve portion is smaller than the predetermined line width of the fanout impression line. A manufacturing method of an array substrate utilizes the foregoing mask plate to manufacture the array substrate.