Abstract:
The present disclosure provides a polarizer and fabrication method thereof. The polarizer includes a substrate made of transparent material and a first polarizing layer formed on the substrate having an optical alignment direction after being exposed to a polarized ultraviolet light. The substrate is the only substrate in the polarizer, and no additional substrate is configured on the polarizing layer.
Abstract:
An array substrate, including: a plurality of pixel units; an alignment layer covering the pixel units and having an alignment direction parallel to a plane of the array substrate; and a first electrode and a second electrode both disposed within each of the pixel units; where, the first electrode has at least one branch electrode, the branch electrode has a first straight portion and a second straight portion having an end connected with the first straight portion, the first straight portion and the second straight portion are inclined inversely with respect to a direction perpendicular to the alignment direction, and an angle formed between the first straight portion and the alignment direction is larger than or equal to 5° and smaller than or equal to 8°.
Abstract:
Display panel and display device are provided. The display panel includes a first display area and a second display area adjacent to the first display area. The second display area is multiplexed as a photosensitive element setting area. The first display area includes a plurality of first pixels arranged in an array. The second display area includes a plurality of second pixels arranged in an array. A first pixel of the plurality of first pixels includes a plurality of first sub-pixels. A second pixel of the plurality of second pixels includes a first area and a second area. The first area includes a plurality of second sub-pixels. The second area is in an open state when a photosensitive element is in operation. The second area is in a closed state when the display panel is in a full screen display.
Abstract:
A touch-control display device includes a driving module, a display panel having a first force touch-control component and a self-capacitance type touch control-electrode, and a backlight module disposed with the display panel and having a second force touch-control component, with a variable gap formed between the first force touch-control component and the second force touch-control component. The first touch-control component comprises a plurality of first electrodes arranged in a matrix. The second force touch-control component is an electrical conductive layer. The self-capacitance type touch-control electrode comprises a plurality of second electrodes arranged in a matrix.
Abstract:
The present disclosure provides a conversion film configured on the electronic device. The conversion film includes a first regionalized polarizing film having at least two different polarization directions, a second regionalized polarizing film configured on the first regionalized polarizing film having at least one polarization direction, and an adhesive layer configured between the first regionalized polarizing film and the second regionalized polarizing film to bond the first regionalized polarizing film and the second regionalized polarizing film together. One of the polarization directions of the second regionalized polarizing film is same as one of the polarization directions of the first regionalized polarizing film.
Abstract:
A display panel includes a color filter film, a first polarizing film, and a second polarizing film. The color filter film comprises a color filter region and a light blocking region. The first polarizing film, placed at one side of the color filter film, comprises a first region corresponding to the color filter region of the color filter film and a second region corresponding to the light blocking region of the color filter film. The second polarizing film, placed at the one side of the color filter film, comprises a first region corresponding to the color filter region of the color filter film and a second region corresponding to the light blocking region of the color filter film, wherein a polarization axis of the second region of the second polarizing film and a polarization axis of the second region of the first polarizing film are perpendicular to each other.
Abstract:
A liquid crystal display panel includes a first substrate, a second substrate, a liquid crystal layer sandwiched between the first substrate and the second substrate, a color filter having a plurality of first color barriers, second color barriers, and third color barriers. A lower alignment layer is disposed on the first substrate having a plurality of first lower alignment units, second lower alignment units, and third lower alignment units corresponding to the plurality of first color barriers, second color barriers, and third color barriers, respectively. An upper alignment layer is disposed on the second substrate having a plurality of first upper alignment units, second upper alignment units, and third upper alignment units corresponding to the plurality of first color barriers, second color barriers, and third color barriers, respectively. A lower regionalized polarizer is disposed on the first substrate, and an upper regionalized polarizer is disposed on the second substrate.
Abstract:
An array substrate, a display panel and a display device. The array substrate includes: a plurality of pixel units; an alignment layer covering the pixel units and having an alignment direction parallel to a plane of the array substrate; and a first electrode and a second electrode both disposed within each of the pixel units; where, the first electrode has at least one branch electrode, the branch electrode has a median electrode and an end electrode disposed at at least one end of the median electrode, an angle formed between the end electrode and the alignment direction is different from that formed between the median electrode and the alignment direction, and the angle formed between the end electrode and the alignment direction is larger than or equal to 30° and smaller than or equal to 40°.
Abstract:
Embodiments of the invention disclose a pixel unit and an array substrate of an LCD device with an FFS mode; the pixel unit includes a pixel electrode and a common electrode insulated from each other, the pixel electrode includes at least two branch electrodes arranged in parallel and an end electrode connecting to ends of the branch electrodes; the branch electrode includes a body and an inclined connection part, the inclined connection part is connected between an end of the body and the end electrode, and extends in a direction different from extension direction of the body; at least one of the branch electrodes includes a protrusion at an end of the body; the protrusion is arranged opposite to the end electrode along the extension direction of the body. Embodiments of the invention can suppress the DLS phenomenon at the edge of the pixel unit, thereby improving display performance.
Abstract:
Embodiments of the present disclosure provides a display panel, a display device, and a display method. A density of a first pixel unit in a first display area is smaller than a density of a second pixel unit in a second display area. In the first pixel unit, a first sub-pixel row includes sub-pixels of different colors arranged along a first direction, and a second sub-pixel row includes first high-transmittance sub-pixels. A plurality of first pixel units are arranged along a second direction to form a first pixel unit column. In one of first pixel unit columns, the first sub-pixel rows and the second sub-pixel rows are alternately arranged. Two closest first sub-pixel rows are located in two adjacent first pixel unit columns and staggered from each other in the first direction.