Abstract:
A voltage detection method for detecting a voltage source includes generating a first voltage with a first negative temperature coefficient, wherein the first voltage is related to the voltage source, generating a second voltage with a second negative temperature coefficient, wherein the second voltage is related to the voltage source, and through a comparator to connect the first voltage and the second voltage, for generating a detection result voltage without temperature coefficient according to a voltage difference between the first voltage and the second voltage, and the relationship that the first negative temperature coefficient is equivalent to the second negative temperature coefficient, to perform the voltage detection.
Abstract:
A liquid crystal display having dual data signal generation mechanism is disclosed for simplifying the display structure and retaining high display quality. The liquid crystal display includes a dual data signal generator, a preliminary data line, a first data line, a second data line, and a pixel unit. The dual data signal generator functions to convert a preliminary data signal, received from the preliminary data line, into a first data signal and a second data signal. The first and second data signals are furnished to the first and second data lines respectively. The pixel unit includes a first sub-pixel unit and a second sub-pixel unit. The first sub-pixel unit is coupled to the first data line for receiving the first data signal. The second sub-pixel unit is coupled to the second data line for receiving the second data signal.
Abstract:
The present disclosure discloses a liquid crystal display panel and a driving method thereof. The liquid crystal display panel comprises a plurality of pixel units, each pixel unit comprising: a data line, a first scanning line, a second scanning line, a first switch, a second switch, and a pixel electrode. One pixel presenting different voltages during different time of one frame can be realized through the new liquid crystal display panel and the driving method proposed by the present disclosure. Moreover, the aperture ratio and the penetration of the LCD panel would not be reduced by the design of the pixel unit.
Abstract:
The present invention provides a manufacturing method for LCD panel by coating the first sealant having electrical conductibility on the PSVA testing pad of the lower substrate or on the position of the upper substrate corresponding to the PSVA testing pad of the lower substrate such that the PSVA testing pad electrically connects to the transparent electrode through the first sealant.The present invention also provides a manufacturing method for the LCD device and a manufacturing equipment for the LCD panel. By the above ways, the present invention can improve the uneven phenomenon around the screen of the active viewing area of LCD panel and reduce the occurrence of broken bright spot and realize narrow frame design of the LCD panel.
Abstract:
An array substrate includes a plurality of data lines arranged along a row direction to input data signal, a plurality of scanning lines arranged along a column direction to input scanning signals, and a plurality of pixels. Each of the pixels includes a first sub-pixel, a second sub-pixel, a third sub-pixel, and a fourth sub-pixel horizontally arranged along the data lines in turn. And each of the sub-pixels respectively connects to one data lines and one scanning lines. When entering a 3D display mode, the data lines cooperatively operates with the scanning lines so that one of the sub-pixels displays a black image to form an equivalent black matrix. A liquid crystal device including the array substrate is also disclosed. The above array substrate and the liquid crystal device may satisfy the view angle requirement and reduce the crosstalk between two eyes.
Abstract:
The present invention discloses a thin-film transistor (TFT) liquid crystal display device, a substrate, and a manufacturing method thereof. The TFT substrate includes: a glass substrate and signal lines, scan lines, a first pixel electrode, a second pixel electrode, a common electrode, and the TFT. The first pixel electrode and the second pixel electrode at least partially overlap each other. The second pixel electrode forms a plurality of horizontally arranged slits and the first pixel electrode forms a hollow structure in a portion overlapping the second pixel electrode. Through the above method, the present invention increases transmittance, improve view angle color shift, and improve the quality of image.
Abstract:
The present invention provide an LCD panel comprising, comprising an array substrate; a color filter substrate disposed relatively to the array substrate; and a data driver IC and a scan driver IC for driving the LCD panel, wherein, the data driver IC and the scan driver IC are electrically connected through a wire on array disposed on the array substrate; wherein, an electric field shielding layer connected to the ground is further disposed between the wire on array and the color filter substrate. The present invention also provides an LCD device comprising an LCD panel. Accordingly, the present invention can avoid driver ICs malfunctioning due to the voltage change of the wire on array in order to improve display quality of the LCD panel.
Abstract:
The present invention provides a manufacturing method for LCD panel by coating the first sealant having electrical conductibility on the PSVA testing pad of the lower substrate or on the position of the upper substrate corresponding to the PSVA testing pad of the lower substrate such that the PSVA testing pad electrically connects to the transparent electrode through the first sealant.The present invention also provides a manufacturing method for the LCD device and a manufacturing equipment for the LCD panel. By the above ways, the present invention can improve the uneven phenomenon around the screen of the active viewing area of LCD panel and reduce the occurrence of broken bright spot and realize narrow frame design of the LCD panel.
Abstract:
The present invention relates to a liquid crystal display (LCD) panel and its manufacturing method. The LCD panel comprises a first substrate, a second substrate, a sealant, and a barrier wall. The first substrate and the second substrate are disposed relatively. The sealant disposed surrounding between the first substrate and the second substrate. The barrier wall is disposed at the outer side of the area surrounded by the sealant, and the barrier wall is respectively abutted against the first substrate and the second substrate. In summary, the present invention could improve the overflow of the sealant, reducing the difficulty for narrow frame design and the requirement for cutting precision of the LCD panel.
Abstract:
The present disclosure involves a method of performing a maskless lithography process. The method includes providing a proximity correction pattern. The method includes generating a deformed pattern based on the proximity correction pattern. The method includes performing a first convolution process to the proximity correction pattern to generate a first proximity correction pattern contour. The method includes processing the first proximity correction pattern contour to generate a second proximity correction pattern contour. The method includes performing a second convolution process to the deformed pattern to generate a first deformed pattern contour. The method includes processing the first deformed pattern contour to generate a second deformed pattern contour. The method includes identifying mismatches between the second proximity correction pattern contour and the second deformed pattern contour. The method includes determining whether the deformed pattern is lithography-ready in response to the identifying.