Abstract:
A liquid crystal display apparatus includes scan lines, data lines perpendicular to the scan lines, a first pixel, a second pixel adjacent to the first pixel, and a black matrix layer. The first pixel includes a first main pixel and a first sub pixel. The first main pixel and the first sub pixel are arranged along a direction of the scan line. The second pixel includes a second main pixel and a second sub pixel. The second main pixel and the second sub pixel are arranged along the direction of the scan line. The black matrix layer covers the first pixel and the second pixel. The black matrix layer covers portions of the first main pixel, the first sub pixel, the second main pixel, and the second sub pixel. The first pixel and the second pixel are arranged along a direction of the data line.
Abstract:
A pixel driving method of a liquid crystal display (LCD) device, the LCD device comprising a first stage pixel, a second stage pixel, a first transistor, a second transistor, a third transistor, a first scan line, a second scan line, a plurality of data lines, a main pixel electrode, a sub pixel electrode, and a share capacitance, and the pixel driving method comprising the following steps: A step of driving the first scan line during the first driving period to charge the main pixel electrode and the sub pixel electrode of the first stage pixel, a step of ceasing to drive the first scan line during the second driving period to reduce voltages of the main pixel electrode and the sub pixel electrode of the first stage pixel, a step of driving the second scan line during the third driving period to turn on the third transistor of the first stage pixel, and a step of ceasing to drive the second scan line during the fourth driving period and pulling down the voltages of the main pixel electrode and the sub pixel electrode of the first stage pixel by implementing the share capacitance, which is connected with the third transistor during the third and the fourth driving period.
Abstract:
A thin-film transistor (TFT) array substrate is provided. The TFT array substrate is structured to change the way that sub-pixels are arranged so that during a displaying period of a frame of image, the sub-pixels that have inconsistent brightness/darkness become alternate with each other spatially so that a displaying defect of vertical bright/dark lines can be improved and the overall resistance of the data line can be reduced to thereby reduce resistance-capacitance delay and prevent incorrect charging at a tail end of a scan line or a data line.
Abstract:
The present disclosure provides a liquid crystal display device, an array substrate, and a method for manufacturing the array substrate. The array substrate includes a glass substrate, gate scan lines formed on the glass substrate, and a pixel electrode. An edge of the pixel electrode has an overlapping region with the gate scan lines, and the pixel electrode and the gate scan lines form a parasitic capacitance in the overlapping region. The overlapping region between the pixel electrode and the gate scan lines is configured with at least one protection layer that reduces the parasitic capacitance.
Abstract:
The present invention provides a TFT array substrate structure, which includes first and second gates (11, 13), a semiconductor layer (20), first and second sources (31, 33), and first and second drains (42, 44). The first gate (11) and the first drain (42) are arranged to overlap in space so as to form a first overlapping zone (D). The second gate (13) and the second drain (44) are arranged to overlap in space so as to form a second overlapping zone (E). The first gate (11) has a first edge (113) corresponding to the first overlapping zone (D). The second gate (13) has a second edge (133) corresponding to the second overlapping zone (E). The first edge (113) and the first drain (42) intersect in space in an inclined manner. The second edge (133) and the second drain (44) intersect in space in an inclined manner. When the first and second drains (42, 44) are moved relative to the first and second gates (11, 13), areas of the first overlapping zone (D) and the second overlapping zone (E) undergo identical change.
Abstract:
A panel inspection apparatus and a display panel are provided in the present invention. The panel inspection apparatus includes a data line detecting circuit and a scan line detecting circuit. The data line detecting circuit includes a data line detection switch, a control line of the data line detection switch, and a data line of the data line detection switch. The scan line detecting circuit includes a scan line detection switch, a control line of the scan line detection switch, and a data line of the scan line detection switch. The present invention further provides a display panel. The panel inspection apparatus does not need to be removed after detection of the panel in accordance with the panel inspection apparatus and the display panel of the present invention. Therefore, production costs of the display panel are reduced, and productivity of the display panel is improved.
Abstract:
A panel inspection apparatus and a display panel are provided in the present invention. The panel inspection apparatus includes a data line detecting circuit and a scan line detecting circuit. The data line detecting circuit includes a data line detection switch, a control line of the data line detection switch, and a data line of the data line detection switch. The scan line detecting circuit includes a scan line detection switch, a control line of the scan line detection switch, and a data line of the scan line detection switch. The present invention further provides a display panel. The panel inspection apparatus does not need to be removed after detection of the panel in accordance with the panel inspection apparatus and the display panel of the present invention. Therefore, production costs of the display panel are reduced, and productivity of the display panel is improved.
Abstract:
The present invention provides a thin-film transistor (TFT) array substrate. The TFT array substrate is structured to change the way that sub-pixels are arranged so that during a displaying period of a frame of image, the sub-pixels that have inconsistent brightness/darkness become alternate with each other spatially so that a displaying defect of vertical bright/dark lines can be improved and the overall resistance of the data line can be reduced to thereby reduce resistance-capacitance delay and prevent incorrect charging at a tail end of a scan line or a data line.
Abstract:
A pixel driving method of a liquid crystal display (LCD) device, the LCD device comprising a first stage pixel, a second stage pixel, a first transistor, a second transistor, a third transistor, a first scan line, a second scan line, a plurality of data lines, a main pixel electrode, a sub pixel electrode, and a share capacitance, and the pixel driving method comprising the following steps: A step of driving the first scan line during the first driving period to charge the main pixel electrode and the sub pixel electrode of the first stage pixel, a step of ceasing to drive the first scan line during the second driving period to reduce voltages of the main pixel electrode and the sub pixel electrode of the first stage pixel, a step of driving the second scan line during the third driving period to turn on the third transistor of the first stage pixel, and a step of ceasing to drive the second scan line during the fourth driving period and pulling down the voltages of the main pixel electrode and the sub pixel electrode of the first stage pixel by implementing the share capacitance, which is connected with the third transistor during the third and the fourth driving period.
Abstract:
The present invention discloses a liquid crystal display (LCD) panel which includes a thin film transistor array substrate, a color filter substrate, a liquid crystal layer and a frame. The color filter substrate includes a transparent substrate, a black matrix layer and a coloring layer. The frame is disposed at an outer side edge of the liquid crystal layer. The present invention further discloses a method for manufacturing the LCD panel. The present invention can block an UV light by the black matrix layer and the coloring layer, and an UV mask can be omitted.