Abstract:
The disclosure discloses a compensation method for a display module including: using a first group of program code to make the display module display a first greyscale value; acquiring a screen image to determine a normal display area and a poor display area; changing an output voltage for the poor display area, and recording a compensated output voltage that makes the luminance of the poor display area identical with that of the normal display area; and writing program code corresponding to the compensated output voltage into the first group of program code. The disclosure also discloses a compensation device for a display module.
Abstract:
An intelligent infusion system and an infusion method using an intelligent infusion system are disclosed. The system includes: a positioning device configured to determine a coordinate origin; an imaging device configured to capture a first image of an object in a first state and a second image of the object in a second state; a processing device configured to compare the first image and the second image to determine one or more objects to be processed and image data of each object to be processed; a calculation device configured to select a target object, select a first position on the target object, and determine coordinates of the first position based on the coordinate origin; and a control device configured to control a robotic arm to reach a liquid input region, and control the robotic arm to move a infusion needle to the coordinates of the first position for liquid infusion.
Abstract:
The embodiments of the present invention disclose a method, a device and a system of touch panel display control. The method of touch panel display control comprises: acquiring the changes of the capacitances at respective positions of coupling capacitors, and determining pressed pixel units; determining the pressure on the pressed pixel units according to a first corresponding relationship between the changes and the pressure; and according to a second corresponding relationship between the pressure and a current gray level and a compensation signal, outputting a compensation signal corresponding to the pressure on the pressed pixel units, and the compensation signal is used for keeping the consistency of the light transmittance of the pressed pixel units with that of non-pressed pixel units. The method of the present invention keeps a consistent light transmittance between the liquid crystal molecules of the pressed pixel units and the liquid crystal molecules of the non-pressed pixel units, so that the image display of the overall touch panel keeps consistent, and the quality of the image displayed by the touch panel is improved.
Abstract:
Embodiments of the present invention disclose an array substrate and a manufacturing method thereof, a display device, which relates to the display field, and can increase transmittance of the product, and also has improvement effect to defects such as crosstalk, flicker, etc. An embodiment of the present invention provides an array substrate, comprising: a substrate, a data line, a gate line, a thin film transistor and a pixel electrode formed on the substrate, the thin film transistor comprises a gate insulating layer, a part of the gate insulating layer corresponding to a light-transmissive area of a pixel is removed.
Abstract:
A liquid crystal panel, a display device, and a manufacturing method and a driving method thereof are provided. The liquid crystal panel comprises an array substrate (20), a color filter substrate (10), and a liquid crystal layer (30) disposed between two substrates; the array substrate (20) is provided with a first electrode (21) and a second electrode (22) thereon in different layers, the color filter substrate (10) is provided with a third electrode (12) and a fourth electrode (11) thereon in different layers, the first electrode (21) and the third electrode (22) are disposed opposite to each other, the first electrode (21) and the third electrode (12) are slit-like electrodes, the second electrode (22) and the fourth electrode (11) are plate-like electrodes, the first electrode (21) and the third electrode (12) are respectively located on sides close to the liquid crystal layer of the second electrode (22) and the fourth electrode (11). The driving method of a display device comprises: with regard to each frame of image, calculating and acquiring an average value of pixel voltages applied to pixel electrodes when the frame of image is shown, and applying the average value to the third electrode (12) or the fourth electrode (11) of the color filter substrate (10); or, in any one pixel region, the third electrode (12) is applied with a same signal as the first electrode (11), and the fourth electrode (11) is applied with a same signal as the second electrode (22).