Abstract:
A display panel is disclosed. The display panel can include: a first substrate; a second substrate, arranged opposite to the first substrate; a first pressure-sensitive detection electrode, arranged on the first substrate and positioned proximal to one side of the second substrate; a second pressure-sensitive detection electrode, arranged on the second substrate and positioned proximal to one side of the first substrate, and a third pressure-sensitive detection element, positioned at one side of the first substrate distant from the second substrate and arranged at intervals from the first substrate. A first capacitance is formed between the second pressure-sensitive detection electrode and the first pressure-sensitive detection electrode. A second capacitance is formed between the third pressure-sensitive detection element and the first pressure-sensitive detection electrode. When the display panel is pressed, a magnitude of pressure is determined by detecting a variation of the first capacitance and a variation of the second capacitance.
Abstract:
A reticle is provided. The reticle comprises a substrate having at least a first region and a second region; and an organic layer aligned in certain directions by an irradiation of a polarized UV light formed on a surface of the substrate. Wherein the organic layer in the first region has a first polarization direction; the organic layer in the second region has a second polarization direction; and the first polarization direction and the second polarization direction have a predetermined angle.
Abstract:
A display panel and fabrication method is provided. The display panel includes a first transparent substrate, a second transparent substrate, a plurality of sub-regions arranged in a matrix, a first organic film layer formed and a first alignment layer formed on the first transparent substrate, a second organic film layer and a second alignment layer formed on the second transparent substrate, and a liquid crystal layer sandwiched between the first transparent substrate and the second transparent substrate. Further, the plurality of sub-regions arranged in the matrix include at least one first sub-region and at least one second sub-region. The first organic film layer has a first polarization axis in the first sub-region, the second organic film layer has a second polarization axis in the first sub-region, the first polarization axis has an angle α with the second polarization axis, wherein 89°≤α≤91°.
Abstract:
A liquid crystal display panel includes a first substrate and a second substrate arranged opposite to the first substrate, a liquid crystal layer disposed between the first substrate and the second substrate, a first alignment layer, a second alignment layer, a first organic film layer, and a second organic film layer. The display panel includes a plurality of regions arranged in an array, and n regions form a region group, n being an integer and n≥3. The first alignment layer has a first alignment direction and is disposed on the first substrate, and the first alignment direction in each of the n regions is different. The second alignment layer has a second alignment direction and is disposed on the second substrate, the second alignment direction in each of the n regions is different, and the second alignment direction is same as the first alignment direction in a same region.
Abstract:
The present disclosure provides a liquid crystal display panel. The liquid crystal display panel includes an upper substrate configured with a color filter having a plurality of first color barriers, second color barriers, and third color barriers, a lower substrate configured with a thin film transistor array facing toward the upper substrate, a liquid crystal layer sandwiched between the upper substrate and the lower substrate, an upper polarizer disposed on the upper substrate having a second absorption axis, a lower polarizer disposed on the lower substrate having a first absorption axis that is orthogonal to the second absorption axis, and a regionalized polarizer having a plurality of first polarizing units, second polarizing units, and third polarizing units with polarization directions forming a first angle, a second angle, and a third angle with the polarization direction of the upper polarizer respectively.
Abstract:
An array substrate includes a substrate, a plurality of gate lines and a plurality of data lines intersecting the gate lines and insulated from the gate lines. The intersections of the gate lines and data lines define a plurality of pixel units, each of the pixel units comprise a first electrode and a second electrode laminated, with the second electrode having at least one branch electrode, and the first electrode having at least one first slit disposed between the pixel units and extending in a direction of the data lines. In the array substrate, the display panel and the display device, the electrode under the black matrix is removed by hollowing out to reduce the electric field strength under the black matrix.
Abstract:
A liquid crystal display panel and a method for manufacturing the same, and a display device are provided. The liquid crystal display panel includes: an array substrate, a color film substrate, a liquid crystal layer, a first alignment layer and a second alignment layer. The first alignment layer includes a first alignment region corresponding to an opening region and a second alignment region corresponding to a light shielding region. An alignment direction of the first alignment region is different from an alignment direction of the second alignment region, and an alignment direction of a region in the second alignment layer is parallel to an alignment direction of a region in the first alignment layer corresponding to the region in the second alignment layer. According to the present disclosure, a color mixing and color cast phenomenon in the liquid crystal display panel is alleviated.
Abstract:
An array substrate includes a substrate, a plurality of gate lines and a plurality of data lines intersecting the gate lines and insulated from the gate lines. The intersections of the gate lines and data lines define a plurality of pixel units, each of the pixel units comprise a first electrode and a second electrode laminated, with the second electrode having at least one branch electrode, and the first electrode having at least one first slit disposed between the pixel units and extending in a direction of the data lines. In the array substrate, the display panel and the display device, the electrode under the black matrix is removed by hollowing out to reduce the electric field strength under the black matrix.
Abstract:
A display panel and a display device are provided. The display panel includes a first display region and a second display region that are arranged adjacent to each other. The second display region is multiplexed as a photosensitive element disposure region. The first display region includes first sub-pixels, and the second display region includes second sub-pixels and third sub-pixels. The display panel also includes a first substrate and a second substrate that are oppositely disposed. The first substrate is provided with a plurality of signal lines, the plurality of signal lines at least include scan lines and data lines, and the scan lines and the data lines are isolated and crossed to define regions where the first sub-pixel, the second sub-pixel, and the third sub-pixel are located. A signal line of the plurality of signal lines in the second display region is made of a transparent conductive material.
Abstract:
A display panel and a display apparatus are provided in the present disclosure. The display panel includes a plurality of pixel units, where the pixel unit at least includes a color pixel region and a highlighted pixel region. A side of the first substrate facing the second substrate includes a first light-blocking layer, and a side of the second substrate facing the first substrate includes a second light-blocking layer and a color-resist layer. A first light-blocking portion at least includes a first opening and a first sub-portion; and a second light-blocking portion at least includes a second sub-portion and a second opening. An orthographic projection of the second opening onto the first substrate overlaps an orthographic projection of the first sub-portion onto the first substrate; and an orthographic projection of the first opening onto the first substrate overlaps an orthographic projection of the second sub-portion onto the first substrate.