Abstract:
A display device and a display method are provided. The display device includes a display screen, and wherein the display screen includes a first displaying area and a second displaying area. The first displaying area is in a non-displaying state when a main control system receives a specific signal for driving a recognizing module, and the first displaying area is in a displaying state when the main control system does not receive the specific signal for driving the recognizing module.
Abstract:
The present application discloses a touch liquid crystal display panel, color filter substrate and touch display apparatus, the display and touch of the touch liquid crystal display panel adapts the time sharing driving way, in a first time period of the cycle, the scanning for the n rows of the gate scanning lines is performed; in a second time period of the cycle, the touch detecting scanning is performed; and is performed sequentially alternatively until the completion of the frame of the image displayed, wherein k times scan the gate scanning line is performed in one cycle, the thickness of the RGB color layer corresponding to the scan for the (k−1) n+1th row of the gate scanning line is smaller than the thickness of the RGB color layer of other rows, k≥2, n≥1. By the above approach, the present application can avoid dark line and improve the display quality.
Abstract:
A converting method of driving data of display panels having a plurality of display areas includes: A) initializing M to be zero; B) A(m, n)=1−q×M, wherein q is greater than zero and smaller than one, (m, n) represents a coordinate of the display area, and A(m, n) represents to adjustment parameters corresponding to the display area; C) converting inputted RGB data into intermediate RGBW data corresponding to the display area in accordance with the adjustment parameter; D) calculating a color saturation value of the HSV color space in accordance with the intermediate RGBW data; E) determining whether the color saturation value is not smaller than a predetermined saturation value corresponding to the display area; and F) outputting the intermediate RGBW data when the color saturation value is not smaller than the predetermined saturation value.
Abstract:
The present disclosure relates to a driving system of display panels. The driving system includes a main board and a display panel. The main board is configured with a driving chip, and the driving chip electrically connects to the display panel via a flexible circuit board to drive the display panel to display. With such configuration, the driving system is configured with the main board and the driving chip, and the driving chip is arranged on the main board, instead of the flexible circuit board. With such configuration, the space of the display area occupied by the components is reduced so as to realize the narrow border design for a top border and a bottom border of the display panel. In this way, the screen ratio of the display panel is increased.
Abstract:
An array substrate includes: a substrate, scan lines, and wires connecting to the scan lines. A gate driver provides scan signals to the scan lines through the wires. The wires extend dispersedly along the direction from the gate driver to the scan lines. The number of amplifiers corresponding to some output channels of the gate driver is different, so that an output drive capability provide to the some output channels of the gate driver is different. The output drive capability of the scan signals provided by the gate driver to the wires is larger if the wires is closer to the edge of the substrate, so that the RC delay are the same when the scan signals pass through the wires. It prevents uneven brightness or color of the displayed images due to different RC delays of scan signals, thus elevates the display quality.
Abstract:
A touch driving circuit and a touch sensitive display panel are provided. The touch driving circuit is disposed on a corresponding touch sensitive display panel. The touch driving circuit includes a touch driving chip, driving signals encoders, driving lines, sensing lines, driving wires, and sensing wires. Preliminary touch driving signals herein include touch data signals and touch clock signals, and the driving signals encoders convert the touch data signals into the touch driving signals according to the touch clock signals.
Abstract:
An in-cell type touch panel, a manufacturing method thereof and a LCD device are provided. The touch panel includes an array substrate including: a glass substrate, thin film transistors, a planarization layer overlying the thin film transistors, a connecting wire on the planarization layer, a first insulating layer overlying the connecting wire, a touch sensing electrode on the first insulating layer, a second insulating layer overlying the touch sensing electrode and a pixel electrode on the second insulating layer. The connecting wire is connected to the touch sensing electrode by a first via hole, and the pixel electrode is connected to one of the thin film transistors by a second via hole. The touch sensing electrode further is configured as a common electrode, and during a displaying time period of an image frame, the touch sensing electrode transmits a common voltage and a touch control signal in time division manner.
Abstract:
The invention provides a conversion method of three-color data to four-color data, including steps: A) converting input RGB data to intermediate RGBW data according to first, second and third predetermined saturation parameters; B) obtaining first, second and third saturation adjust parameters according to the intermediate RGBW data and standard RGBW data; C) using the first, second and third saturation adjust parameters to respectively adjust the first, second and third predetermined saturation parameters; D) using the first, second and third predetermined saturation parameters after being adjusted to convert the input RGB data to output RGBW data. The invention further includes a conversion system of three-color data to four-color data.
Abstract:
A force touch liquid crystal display (LCD) and a method of fabricating the same are proposed. The force touch LCD includes: a touch panel and an LCD module. The LCD module includes a thin-film transistor (TFT) substrate, a liquid crystal layer, and a color filter substrate layered subsequently. The force touch LCD further includes a force film and a shield metal layer. The force film is formed on a surface of the touch panel, and the surface facing the LCD module. The shield metal layer is arranged on a surface of the color filter substrate. The shield metal layer can prevent the LCD display signal from being disturbed by the touch panel signal and vice versa to ensure the accuracy of display and touch.
Abstract:
A force touch liquid crystal display (LCD) includes: a touch panel configured to undertake a touch operation, a display module arranged on one side of the touch panel opposite to the touch panel, and a force film formed on a surface of the touch panel opposite to the display module. A method of fabricating the force touch LCD includes: forming a force film on one surface of a touch panel, and arranging the force film to face the display module, and attaching the touch panel to the display module. By using the force touch LCD, the problems that a force film is easily damaged because of backlight heat and force touch imbalance easily occurs are solved effectively and further the quality of force touch is well improved.