Abstract:
A pixel structure substrate including a substrate, a first dielectric layer and a second dielectric layer is provided. A data line and a first electrode are disposed on the substrate. The first dielectric layer directly covers the data line. The second dielectric layer covers the first electrode and the first dielectric layer. A thickness of the second dielectric layer is smaller than a thickness of the first dielectric layer, and the following equation is satisfied u1*A1/d1
Abstract:
A liquid crystal display panel comprise a first substrate, a second substrate and a electrode structure. The electrode structure is disposed on the first substrate and defining a pixel. The electrode structure further comprises a first sub-electrode having a first stem electrode with a first end edge and a first branch electrode nearest the first end edge, and a second sub-electrode having a second stem electrode with a second end edge and a second branch electrode nearest the second end edge. The first sub-electrode and the second sub-electrode are adjacent to each other, and the first end edge and the second end edge are adjacent to the same side of the pixel. A first distance between the first end edge and the first branch electrode is different from a second distance between the second end edge and the second branch electrode.
Abstract:
A liquid crystal display panel comprise a first substrate, a second substrate and a electrode structure. The electrode structure is disposed on the first substrate. The electrode structure further comprises a first sub-electrode having a first stem electrode with a first end edge and a first branch electrode nearest the first end edge, and a second sub-electrode having a second stem electrode with a second end edge and a second branch electrode nearest the second end edge. The first sub-electrode and the second sub-electrode are adjacent to each other, and the first end edge are adjacent to the second end edge. A first distance between the first end edge and the first branch electrode is different from a second distance between the second end edge and the second branch electrode.
Abstract:
A display device is provided. The display device includes a pixel driving circuit including a liquid crystal capacitor coupled to a first node, a first storage capacitor, and a first voltage control unit. The first storage capacitor has a first terminal directly connected to a second node and a second terminal coupled to a common electrode. The first voltage control unit has first and second output terminals coupled to the first and second nodes, respectively. In a first period, the first voltage control unit feeds a first data voltage to the first node according to a first scan signal. In a second period later than the first period, the first voltage control unit feeds the first data voltage to the second node according to a second scan signal, such that a voltage level at the first node is changed to a first pixel voltage from the first data voltage.
Abstract:
A display device is disclosed, which includes: a first substrate; a plurality of scan lines and a plurality of data lines, wherein the plurality of scan lines intersects with the plurality of data lines, the plurality of scan lines and the plurality of data lines are disposed above the first substrate, and the plurality of scan lines extend along a first direction; a common electrode disposed above the first substrate, wherein the common electrode has a first part extending along the first direction, a second part substantially parallels to the one of the plurality of data lines, and the first part connects to the second part.
Abstract:
A display panel is disclosed. The display panel includes a first substrate, a light shielding layer and a color block. The first substrate has a first surface with a first edge and a second edge, and the second edge is connected to the first edge. The second edge substantially extends along a first direction. The light shielding layer is disposed on the first surface and includes a plurality of openings. The color block closest to the second edge is disposed on the light shielding layer and extending along the first direction. The color block does not overlap the plurality of openings. Wherein the color block has a third edge which is closest to the second edge, and the third edge is not aligned evenly.
Abstract:
A display panel is disclosed, which includes: a first substrate; plural scan lines disposed on the first substrate and extending along a first direction; plural data lines disposed on the first substrate and extending along a second direction, wherein at least one pixel region is defined by the scan lines and the data lines, and the first direction and the second direction are different; a common electrode disposed in the pixel region; and a metal line electrically connecting to the common electrode and extending along the first direction, wherein the metal line has a first portion overlapping the common electrode and a second portion overlapping one of the data lines; wherein the first portion has a first maximum width along the second direction, the second portion has a second maximum with along the second direction, and the first maximum width is greater than the second maximum width.
Abstract:
In a display panel, a light shielding layer includes first and second openings adjacent to a first edge of a first substrate. First and second color blocks adjacent to each other are disposed on the light shielding layer along a first direction. The first color block is injected into the first opening and overlaps partial of the light shielding layer. The second color block is injected into the second opening and overlaps partial of the light shielding layer. The first color block has a first overlap portion adjacent to the first edge on the light shielding layer, the second color block has a second overlap portion adjacent to the first edge on the light shielding layer, and the area of the first overlap portion and the area of the second overlap portion are different. A display medium layer is sandwiched between the first substrate and a second substrate.
Abstract:
A liquid crystal display panel comprise a first substrate, a second substrate and a electrode structure. The electrode structure is disposed on the first substrate. The electrode structure further comprises a first sub-electrode having a first stem electrode with a first end edge and a first branch electrode nearest the first end edge, and a second sub-electrode having a second stem electrode with a second end edge and a second branch electrode nearest the second end edge. The first sub-electrode and the second sub-electrode are adjacent to each other, and the first end edge are adjacent to the second end edge. A first distance between the first end edge and the first branch electrode is different from a second distance between the second end edge and the second branch electrode.
Abstract:
A liquid crystal display panel is disclosed, which comprises: a first substrate; a second substrate opposite to the first substrate; an optically isotropic liquid crystal layer disposed between the first substrate and the second substrate; and a protruding electrode layer composed of a polymer conductive material and disposed on the first substrate. Besides, when a protruding part is composed of a non-conductive organic material, the liquid crystal display panel further comprises: an electrode layer disposed on the protruding electrode layer; and a submicron structure layer, a multilayer film, or a micro-reflection layer is disposed between the protruding electrode layer and the first substrate.