Abstract:
The present disclosure relates to a backlight module and a display panel. The backlight module includes a light source, a QD tube and a light guiding plate, the light source being arranged at a lateral side of the light guiding plate, the QD tube being arranged between the light source and the light guiding plate. A light incident surface of the light guiding plate depresses toward an internal of the light guiding plate such that one side of the QD tube is embedded into the light guiding plate and the other side of the QD tube abuts against the light source. The structure is simple and may be easily assembled. In addition, such configuration contributes to the light and thin design.
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:
Disclosed are a sensing circuit and a capacitive touch panel having the sensing circuit. The capacitive touch panel has a glass substrate, first lead wires, second lead wires, third lead wires, signal input channels and signal output channels; amounts of the second, third lead wires are N, and any two of the first, the second and the third lead wires are isolated; each signal input channel is coupled to the first lead wire corresponding thereto; each third lead wire signal output channel of the signal output channels is coupled to the N/2 third lead wires, and an amount of the second lead wire signal output channels is N/2, and each second lead wire signal output channel of the signal output channels is coupled to two second lead wires. The amount of the IC channels is decreased to save the touch panel material cost with the present invention.
Abstract:
A driving circuit and a shift register circuit are disclosed. The driving circuit includes a plurality of cascaded multi-stages shift register circuits. Each of the shift register circuit includes a transmission door latch circuit and a signal transmission circuit. The transmission door latch circuit includes a transmission door, first clock signals triggering the transmission door such that transmission signals of two stages ahead are transmitted to the signal transmission circuit via the transmission door to generate transmission signals for the current stage. Second clock signals control the transmission signals of the current stage to pass through the signal transmission circuit to generate gate driving signals for the current stage. In this way, the driving circuit is feasible for CMOS manufacturing process, and owns the advantages such as low power consumption and high noise tolerance.
Abstract:
A control circuit of a thin film transistor, comprising: a substrate; a silicon nitride layer disposed on the substrate; a silicon dioxide layer disposed on the silicon nitride layer; a light shielding layer disposed inside the silicon nitride layer, which comprising a first light shielding region and a second light shielding region; at least one N type metal oxide semiconductor disposed on the silicon dioxide layer at a position corresponding to the first light shielding region; at least one P type metal oxide semiconductor disposed on the silicon dioxide layer at a position corresponding to the second light shielding region; each of the N type metal oxide semiconductor and the P type metal oxide semiconductor has a gate electrode layer, a first control signal received by voltage pulses of the gate electrode layer synchronized with a second control signal received by the light shielding layer in voltage variation.
Abstract:
The invention provides a liquid crystal display device with touch-sensing function and a conductive layer structure thereof. Multiple first electrode patterns of the conductive layer structure are arranged around multiple second electrode patterns; each of the multiple first electrode patterns includes a first sub-electrode pattern and a second sub-electrode pattern, a first side of the first sub-electrode pattern near the second sub-electrode pattern and a second side of the second sub-electrode pattern near the first sub-electrode pattern each are disposed with a right angle structure, and the first side and the second side are meshed with each other to thereby make the first electrode pattern and the second sub-electrode pattern together define a rectangular shape. The invention can improve the touch precision of the edge region of a self-capacitor touch panel.
Abstract:
The present invention discloses a TFT substrate and a display device. The TFT substrate comprises a scan line, a data line and a common electrode covering the scan line and the data line, wherein the data line and the scan line are disposed in a stagger, in order to divide the crosswise formed region into a plurality of pixel units; the common electrode comprises a plurality of common electrode units and a plurality of bridging portions overlapping with the scan lines and the data lines, wherein the common electrode unit and the pixel unit are correspondingly disposed, each bridging portion is connected with at least two adjacent common electrodes in order to make all of the common electrodes be electrically connected. Through the above ways, the present invention can reduce the RC constant and power consumption, thereby improving the product quality.
Abstract:
The present invention provides a scan method of a touch signal. The different scan pulse signals with an amount corresponding to a plurality of driving lines are employed to perform scan simultaneously, and a corresponding coding is performed to each scan pulse signal; meanwhile, each of a plurality of receiving lines synchronously receives all the scan pulse signals, and a control chip is employed to decode the receiving signal received by each receiving line to determine the sources of the different signal segments in the receiving signal; as the finger touches, it is determined that the driving line corresponding to the number of the scan pulse signal is touched by the finger, and with combination of the receiving line corresponded with the receiving signal of the signal segment, of which the signal value becomes smaller, an touch position is acquired. The method can decrease an occupied period of performing scan to a touch signal by an In Cell touch control display device to increase the period of display signal scan for urging the In Cell touch control display device to be developed with higher resolution.
Abstract:
The present invention provides a method for manufacturing a curved liquid crystal display panel, which comprises coating a sealing gum on a first or a second frame sealing region; filing liquid crystals between the two substrates and adhering the two substrates together; performing a first curing on partial sealing gum on a first set or a third set of frame bodies; bending the first set and the third set of frame bodies obtained after the first curing along the extension direction of the first set of frame bodies; performing a second curing on uncured sealing gum on the two bended substrates.
Abstract:
A light guide plate has a light incident surface having an arc configuration and also includes upper and lower surfaces that are respectively provided with a first slope surface and a second slope surface, so that light passes through and is converged by the arc light incident surface and is subjected to total internal reflection at the first and second slope surfaces to have the light guided into the light guide plate and then projecting out through a light exit surface. The light guide plate demonstrates an excellent effect of convergence for light of all angles, so that the light guide plate can be structured thinner without deteriorating light coupling efficiency. Also provided is a backlight module, which involves the light guide plate.